Showing posts with label 2009. Show all posts
Showing posts with label 2009. Show all posts

Kia Soulster Concept, 2009

>> Saturday, May 14, 2011

Kia Soulster Concept, 2009

 
 

The open-air concept of  Kia Soulster  is a variation of the highly anticipated Soul.
The Kia Soulster delivers something new, intriguing and relevant to today's buyers - a fun, affordable convertible for active people who like to share good times with friends.
The two-door concept with roadster roots, the brightly colored Soul'r yellow Soulster projects a hip industrial look with screw borders, reminiscent of a rivet design found on a fighter jet. The windshield is shortened for a sportier and hunkered down appearance. A two-piece top enables passengers to expose the front and back seating areas independently, using elbow-grease technology. The roll bar serves a dual purpose and includes a place for the slider tracks, while providing protection not found in traditional convertibles.

Kia Soulster has a tough but refined character with a unique face .
The toughness is expressed through details like the anodized skid-pad insert, which matches the fender vents, roll bar header and wheels.
Kia Soulster's attitude incorporates lighting that shines through with an amber glow under the headlamps. The side vents, side-mirror turn signals, unique LED headlamps, fog and tail lamps incorporate blue shades.
The energetic, distinctive look carries from front to rear with dual chrome exhaust and polished aluminum exhaust tips featuring carbon-fiber interior sleeves. The large 19-inch, five-spoke aluminum alloy wheels perfect the Kia Soulster's appearance. Regardless of Soulster being viewed from front, back or side, it offers innovative perspectives derived from the original Soul.

Inside Out
Kia Soulster takes even more progressive variations from Soul beginning with the new four-passenger seating design, a diversion from Soul's five-passenger arrangement, lending spacious versatility for long summer weekends. The surprisingly flexible Kia Soulster provides real seating for two in the front with comfortable seating for two more adults in the back. Fold-flat passenger and rear seats combined with ample headroom make this the perfect car for social outings outdoors and on the beach with friends. Making basic features hot, its crank-up windows are a purposefully key interior design element as are the dashboard-integrated audio speakers.
Adding to the edgy design scheme, the non-floor-mounted cantilevered seats project the illusion of being suspended in space when viewed from the side allowing for increased rear legroom. Storage compartments below each of the fold-flat rear seats, offer room for myriad cargo needs. In addition to the spacious cargo area, dual storage compartments also can be found in the rear and underneath the cargo hold area.

All Revved Up
With young buyers in mind, Kia Soulster offers an agile, smooth and spirited ride. As with its Soul cousin, Soulster's can be made available with a myriad of engine choices depending upon each market's needs. A 1.6-liter, four-cylinder engine is mated to a five-speed manual transmission, which produces approximately 120 horsepower. For those looking for a little more power, a 2.0-liter four-cylinder engine is available with either the five-speed manual or a four-speed automatic transmission, producing approximately 140 horsepower. Fuel economy for both engines is estimated at 30 or more miles per gallon. Other markets might choose the 1.6-liter four-cylinder engine producing 124 horsepower or a 1.6-liter turbodiesel.

Read more...

Kia No3 Concept, 2009

Kia No3 Concept, 2009

 
 
 
 The all-new, Kia No3 concept car.
The concept features a unique extended windscreen and panorama glass roof with a diagonal supporting bar, an automatic sun visor and the evolving 'face of Kia' which displays the front grille, head lamps and brand logo in a new constellation.

The 4045 mm long concept, which is finished in matt Titanium Grey with contrasting gloss-white accents, stands out from the crowd with its powerful proportions, dynamic lines, a modern, sophisticated interior and generous cabin space for flexible use. It delivers urban utility with a sporty touch.

The car brings all the features and strengths of a highly versatile multi-purpose vehicle (MPV) into the urban compact class, combining up-to-date mobility with individual style. Kia No3 excels in particular through its unique design language characterised by refreshing clarity and modern, youthful sportiness.

Compact sportiness combined with versatility and spaciousness creates a unique interaction and a truly innovative style in Kia No3. The new concept car establishes the image of the brand and Kia's new design philosophy that will extend beyond the segment of compact cars. The fresh 'face' of the brand is clearly characterised by the proportions of three crucial elements and the relationship between them — the new radiator grille, the extra-large headlights, and the brand logo placed precisely on the centre-line, create a new 'constellation' that will also be highlighted on Kia's future models.

Extremely short overhangs accentuate the compact exterior dimensions of the car, powerfully contoured bumpers and large wheel arches as well as extra-large diameter wheels, bring out the sporty character of Kia No3. The concept clearly boasts a dynamic wedge shape characterised in particular by the window graphics and the lines rising up to the rear. The rear light clusters are wrapped distinctly around the side panels.
Nineteen-inch light-alloy wheels running on all-weather high-speed tyres, provide a clear hint at the car's sporting performance. The wheel rims, painted black on the outside and finished in glossy chrome on the inside, exude a strong feeling of power.

Kia No3's long wheelbase (2615 mm) and short overhangs front and rear, together with generous height (1600 mm) and width (1760 mm), provide all the features and qualities typical of an MPV. Extra comfort and space, plus the economic use of the available space are ensured by the ergonomically ideal, slightly elevated seating position. The split rear seats are adjustable independently, with sliding and folding functions.

An extra-large panorama glass roof extends directly out of the windscreen and stretches all the way to the rear spoiler. The result is not only excellent all-round visibility, but also a truly generous feeling of interior space. A diagonally arranged roofbar barely breaks the elegant, seemingly uninterrupted flow of the tinted glass surface.
The highlights of the car's exterior design — modern style, individual character, sporty performance, and unparalleled diversity — also characterise the interior, taking up and repeating the contrast of high-gloss white and black surfaces. Kia No3 clearly demonstrates the highlights of Kia's future in interior design, with the focus on sophisticated materials, top-quality finish, stylish features, and the most advanced IT technology — all combined with a contemporary lifestyle feeling.

The Kia No3 is the forerunner of future production model which will combine compact B-segment exterior dimensions with the interior spaciousness and versatility that is more typical of a C-segment car. The concept's name 'Kia No3' is related to the production car's position (third in terms of size after Picanto and Rio) in the future Kia model line-up.

Read more...

Hyundai ix-onic Concept, 2009

Hyundai ix-onic Concept, 2009

 

The designed to assertive but not aggressive, the Hyundai ix-onic Concept (pronounced "ik-sonnik") combines dynamic styling with an environmentally-friendly power train and thoughtful everyday utility. It creates a vehicle that will change the way consumers think about compact crossover vehicles.
With an overall length of 4,400mm, the 1,850mm-wide and 1,650mm-high Hyundai ix-onic Concept has an imposing stance and road presence but takes up little more space on the road than a C-segment hatchback.
The Key attributes of Hyundai's 'dynamic sculpture' design philosophy are the athleticism and sophistication that ix-onic demonstrates through its dynamic and flowing lines. These are emphasised by specially developed, high-contrast exterior paint. Employing an advanced-effect pigment, the innovative paint gives the car's skin a brilliant shine.
The hexagonal grille is a further evolution of the style introduced on the 2006 Genus concept car and developed for its appearance on the Hyundai i-mode concept in 2008. The headlamps feature innovative LED daytime running lights which move down electrically whenever the 'dipped beam' is switched on.

The profile of Hyundai ix-onic Concept features a dynamic glass line and a sports car-like theme with a muscular, double-zigzag treatment for the wheel arches that wrap around the 21-inch polished alloy wheels. Unusually, the concave sills have a wedge-shaped profile which extends rearwards and wraps around into the rear bumper. The sills and bumper are finished in a contrasting colour, with an aluminium garnish that echoes the trim in the door handles to enhance the perception of premium quality.

With high-mounted tail lamps, multi-surfaced glass and a sculpted bumper, the rear of Hyundai ix-onic Concept also incorporates 'dynamic design' elements. The rear lamp clusters feature a grille mesh inspired by nature, while the rear bumper also neatly incorporates the dual, polished aluminium exhaust tailpipes.

The rear window has been designed and produced by Hyundai in close cooperation with the QarmaQ-partner SABIC Innovative Plastics. Using Lexan high-performance plastics instead of conventional glass enabled the designers to give the rear window a much more three-dimensional shape. On each side of the rear window two vertical spoilers are integrated to reduce aerodynamic drag. The upper part of the window features a strongly concave shape to make it possible to integrate the roof spoiler in the rear window.
The Inside, the five-seater Hyundai ix-onic Concept offers a commanding view of the road and evokes an adventurous ambience that is also laid-back and relaxing.

An X-shaped visual theme is repeated across numerous areas of the cabin, with embossed leather to accentuate key areas while light-alloy magnesium accents provide flashes of visual brilliance. The sleek shapes of the interior are outlined with 'ice blue' seams that replicate the colour of both the ribbed ice blue floor carpet, which contains a high percentage of natural cashmere wool, and the exterior.

Shapely seats feature centre panels trimmed in breathable fabric with attractive and functional cushion side bolsters, plus additional lateral support for occupants' shoulders - all trimmed in contrasting magnesium grey.
The mounted much higher than usual in the doors, the audio speakers present occupants with a true and highly detailed, top-quality sound reproduction. The interior rear-view mirror has a 'blind spot' warning light that alerts the driver to other road users in close proximity.

The Beneath its sensational exterior, the Hyundai ix-onic Concept's power train is equipped with a 170PS, 1.6-litre GDi turbocharged, four-cylinder petrol engine, with ISG (Idle Stop & Go) technology and a double-clutch six-speed transmission. Power is transferred to the road by an intelligent four-wheel drive system fine-tuned to deliver outstanding on-road driving dynamics, together with significant off-road ability. The next-generation, eco-friendly engine emits just 149 g/km of CO2, an impressive figure for an SUV and comparable with conventional hatchbacks and superminis.

Read more...

Hyundai Blue-Will Concept, 2009

Hyundai Blue-Will Concept, 2009


The Hyundai has revealed the first pictures of an innovative plug-in hybrid Hyundai Blue-Will Concept car. It has exceptionally advanced technology crammed inside its striking bodyshell.

The Recycled PET soft drink bottles were used to make the material for the headlamp bezels while use has also been made of bio-plastics: PLA for the interior while PA11 was specified for the engine cover. These materials are made from plants extract rather than fossil fuels and are bio-degradable.

The Hyundai Blue-Will Concept is powered by an all-aluminium Gasoline Direct Injected 1.6-litre engine which is coupled to a Continuously Variable Transmission and a 100kw electric motor which is at the heart of Hyundai's parallel hybrid drive architecture.

The Electric power, stored by a Lithium Ion Polymer battery pack, is neatly bundled with the fuel tank under the rear seat to maximise luggage space.
The Hyundai will be the first automaker in the world to apply Lithium Ion Polymer in a mass production vehicle.

A further expression of the concept's design flexibility is found on the panoramic roof. The glass area integrates dye-sensitized solar cells which can generate power for the batteries from the sun without impeding visibility.

Read more...

Mazda 6 SAP Wagon, 2009

Mazda 6 SAP Wagon, 2009

 
 
 
The second-generation Mazda 6 was launched in November 2007 and represented an evolution of Mazda Zoom-Zoom. It set a new standard in the non-premium CD segment for its combination of eye-catching stylishness, exclusive driving experience and insightful packaging, all offered in three distinct body styles. Since launch, it has found over 85,000 owners in Europe and has been contributing to Mazda Motor Europe's record sales in 2008. Now the Mazda 6 is about to get even more popular with the introduction of a new Mazda-developed 2.2-litre turbo diesel engine that is one of the quietest and most powerful in its segment and a new rear vehicle monitoring system for more active safety.

Mazda 6 has always been a driver's car and with the launch of the new-generation model last year, the fun factor was improved even further. The second-generation Mazda 6 was introduced originally with four different engines - three lively MZR petrol engines (in 2.5, 2.0 and 1.8-litre displacements) delivering power between 170 PS to 120 PS, and a MZR-CD 2.0-litre common-rail turbo diesel producing 140 PS and 330 Nm of torque. Mazda now introduces a new clean turbo diesel in three power derivatives that is one of the quietest and most powerful in its class.

Mazda's new MZR-CD 2.2-litre turbo diesel has a lively yet cultivated character that will offer a truly exclusive driving experience under the bonnet of the second-generation Mazda 6. Offered in three versions producing 185, 163 and 125 PS of maximum output and powerful torque of 400, 360 and 310 Nm respectively, the MZR- CD 2.2 will meet the demands of a wide spectrum of customers in Europe.

Delivering the Power - Output and Torque
To realise this kind of power and torque with 2.2-litres of displacement, the MZR-CD 2.2 employs a highly efficient variable-geometry turbo charger (VGT) with curved (instead of straight) vanes on the turbine (exhaust) side. This increases maximum available torque at both low and high engine speeds, while also increasing all-important low- end response (as low as only 1,800 rpm with a lat maximum torque curve that continues until 3,000 rpm) that contributes smooth and powerful driving feel. When combined with an abradable seal on the compressor side (intake side), which reduces the clearance between the blade and the compressor housing, these deliver superior turbocharger response at just about all engine speeds.

Converting the engine's combustion energy into this much engine torque meant the pistons had to be designed to take the resulting high combustion pressure and temperatures. As a consequence, the pistons are made of an aluminium alloy with improved high- temperature fatigue strength. A half-Keystone cross-section top- ring with improved carbon scavenging abilities is used, and the groove for the top ring is made more durable with the adoption of a cooled ring carrier that increases the groove's cooling capability.

Mazda engineers also increased the fuel injection pressure to 200 MPa (by comparison, the previous generation MZR-CD 2.0- litre turbo diesel uses 180 MPa). They realised this by making functional improvements to the high-pressure pump, among other improvements, and by new injectors featuring 10 spray holes per injector (instead of the 6 spray holes for the MZR-CD 2.0-litre) that are smaller (reduced from 0.13 mm to just 0.119 mm). These changes enable more precise injection timing, and an increase in the number of times of injection and injection amount. And it allowed the fuel injection patterns at transitional states to be more precisely controlled. As a result, the Mazda 6 MZR-CD 2.2 provides superior acceleration in those situations you need it most, like entering the motorway. It also surpasses its competitors in lower speed acceleration. Acceleration in 3rd gear from 50 to 100 km/h, for example, is 1.7 seconds faster than the MZR-CD 2.0-litre.

Low Fuel Consumption
This new diesel engine also meets the requirements of Mazda's 'Sustainable Zoom-Zoom' plan by being frugal at the pump: all power derivatives use between 5.5 and 5.7 litres of fuel per 100 km (combined), some of the segment's lowest.

New injector with 10 spray holes
It achieves this by employing highly responsive solenoids for the common-rail injection system that achieve a minimum injection interval of just 0.2 ms (the MZR-CD 2.0 is 0.3 ms), which speeds up the minimum injection interval by about 30 percent, improves its responsiveness and lowers fuel usage. Fuel is also saved by lowering the compression ratio to 16.3:1 and utilizing the temperature cooling effect this causes, which secures more mixing time until ignition, and allows a more precise fuel-injection pattern. As a result, fuel consumption is a low 5.5 to 5.7 litres (depending on derivative) with CO 2 emissions from between 147 to 152 g/km. In fact, the MZR- CD 2.2-litre offers substantially higher power and torque than the previous-generation MZR-CD 2.0-litre, while delivering equal levels of fuel consumption and CO 2 emissions.

Low Emissions - Particulate Filter with World's First Ceramic Support Matrix Structure
Mazda engineers not only made the new 2.2-litre turbo diesel powerful and low consumption, they also lowered the amount of raw emissions and raised the efficiency of its after-treatment technologies. The engine's highly responsive fuel-injection technologies have new injectors (see above) that yield better atomized spray characteristics. These are combined with an exhaust-gas recirculation (EGR) system with a cooler bypass structure - that decreases unburned gases and NOx - and the high- response solenoids described above, to realise superior emissions performance without sacrificing power.

Emissions are then treated by a diesel particulate filter that uses a unique Mazda-developed, ceramic support matrix structure, which is the first of its kind to go into production in the world. Previous diesel particulate filters converted particulate matter (PM) into CO 2 by reacting the PM with the oxygen in the exhaust gas at the surface of the catalytic particle. This meant that the time needed for filter regeneration was determined by the amount of oxygen on the surface of the catalyst.

When the temperature of the exhaust gas is raised to quicken the regeneration time, then technological issues - like higher fuel usage or the ceramics exceeding their thermal resistance limit - can occur. Mazda solved these issues by using highly thermal resistant material for the ceramic monolith of its new diesel particulate filter, and designing the internal structure of the ceramic support matrix with passages for oxygen to enable a large amount of oxygen to be utilized for PM combustion. With this, Mazda has succeeded in significantly increasing the PM combustion speed. As a result, the number of times the diesel particulate filter has to regenerate (in combined mode) is cut in half, and the time necessary for each regeneration phase is shortened by one third. For owners of the new Mazda 6 MZR-CD 2.2-litre turbo diesel, this means worry-free filter regeneration and, because fewer regeneration phases are required and each takes less time, less fuel consumption overall.

Running Quiet
The new Mazda 6 MZR-CD 2.2-litre common-rail not only offers superior output, fuel economy and emissions performance, it is also one of the quietest engines in its segment with this amount of torque. This ensures a driving experience that is one of the non- premium segment's most exclusive. To achieve this, the new engine has a lower block with a very rigid aluminium-alloy structure, with the bottom of the cylinder block skirt and the cylinder block's main bearing caps bolted to the lower block at 18 separate locations. This high structural rigidity is combined with a front chain-driven cassette-type balancer shaft to suppress booming noise and lower radiated noise, and to deliver optimised pedal response and engine sound for a reined acceleration feel.

Packaging and Weight Management
Keeping the new MZR-CD 2.2-litre engine as close as possible in size and weight to that of the MZR-CD 2.0-litre diesel was a key factor in ensuring exhilarating performance combined with fuel efficiency and low emissions. Some of the newly adopted technologies, such as the balancer shaft and DOHC, result in increased size and weight. Nonetheless, numerous innovations were added to manage size and weight increases, with the goal of maintaining packaging and keeping the weight increase within just 6.0 kg of the previous MZR- CD 2.0-litre turbo diesel.

Due to the increase in displacement, the stroke of the MZR-CD 2.2 was lengthened by 8 mm compared to the MZR-CD 2.0. At the same time, the overall length of the connecting rods was shortened by optimizing their design. As a result, their weight remains at the same level as in the MZR-CD 2.0. The adoption of a balancer shaft that decreases vibration caused by reciprocating motion made a thinner cylinder block with fewer ribs possible (if the MZR-CD 2.2 had no balancer shaft, the cylinder block would have been 1.9 kg heavier than that of MZR-CD 2.0, and its crankshaft 1.3 kg heavier.). Furthermore, decrease in size and weight was achieved by making the balancer housing, oil pump housing, and the oil suction pipe a single structure. To achieve even more weight reduction, while increasing the cooling capability of the new engine, the oil cooler is made of aluminium (-0.6 kg). The weight of the cam cover is also reduced by making it out of plastic (-1.0 kg).

Read more...

Mazda 6 SAP, 2009

Mazda 6 SAP, 2009

 
 
The second-generation Mazda 6 was launched in November 2007 and represented an evolution of Mazda Zoom-Zoom. It set a new standard in the non-premium CD segment for its combination of eye-catching stylishness, exclusive driving experience and insightful packaging, all offered in three distinct body styles. Since launch, it has found over 85,000 owners in Europe and has been contributing to Mazda Motor Europe's record sales in 2008. Now the Mazda 6 is about to get even more popular with the introduction of a new Mazda-developed 2.2-litre turbo diesel engine that is one of the quietest and most powerful in its segment and a new rear vehicle monitoring system for more active safety.

Mazda 6 has always been a driver's car and with the launch of the new-generation model last year, the fun factor was improved even further. The second-generation Mazda 6 was introduced originally with four different engines - three lively MZR petrol engines (in 2.5, 2.0 and 1.8-litre displacements) delivering power between 170 PS to 120 PS, and a MZR-CD 2.0-litre common-rail turbo diesel producing 140 PS and 330 Nm of torque. Mazda now introduces a new clean turbo diesel in three power derivatives that is one of the quietest and most powerful in its class.

Mazda's new MZR-CD 2.2-litre turbo diesel has a lively yet cultivated character that will offer a truly exclusive driving experience under the bonnet of the second-generation Mazda 6. Offered in three versions producing 185, 163 and 125 PS of maximum output and powerful torque of 400, 360 and 310 Nm respectively, the MZR- CD 2.2 will meet the demands of a wide spectrum of customers in Europe.

Delivering the Power - Output and Torque
To realise this kind of power and torque with 2.2-litres of displacement, the MZR-CD 2.2 employs a highly efficient variable-geometry turbo charger (VGT) with curved (instead of straight) vanes on the turbine (exhaust) side. This increases maximum available torque at both low and high engine speeds, while also increasing all-important low- end response (as low as only 1,800 rpm with a lat maximum torque curve that continues until 3,000 rpm) that contributes smooth and powerful driving feel. When combined with an abradable seal on the compressor side (intake side), which reduces the clearance between the blade and the compressor housing, these deliver superior turbocharger response at just about all engine speeds.

Converting the engine's combustion energy into this much engine torque meant the pistons had to be designed to take the resulting high combustion pressure and temperatures. As a consequence, the pistons are made of an aluminium alloy with improved high- temperature fatigue strength. A half-Keystone cross-section top- ring with improved carbon scavenging abilities is used, and the groove for the top ring is made more durable with the adoption of a cooled ring carrier that increases the groove's cooling capability.

Mazda engineers also increased the fuel injection pressure to 200 MPa (by comparison, the previous generation MZR-CD 2.0- litre turbo diesel uses 180 MPa). They realised this by making functional improvements to the high-pressure pump, among other improvements, and by new injectors featuring 10 spray holes per injector (instead of the 6 spray holes for the MZR-CD 2.0-litre) that are smaller (reduced from 0.13 mm to just 0.119 mm). These changes enable more precise injection timing, and an increase in the number of times of injection and injection amount. And it allowed the fuel injection patterns at transitional states to be more precisely controlled. As a result, the Mazda 6 MZR-CD 2.2 provides superior acceleration in those situations you need it most, like entering the motorway. It also surpasses its competitors in lower speed acceleration. Acceleration in 3rd gear from 50 to 100 km/h, for example, is 1.7 seconds faster than the MZR-CD 2.0-litre.

Low Fuel Consumption
This new diesel engine also meets the requirements of Mazda's 'Sustainable Zoom-Zoom' plan by being frugal at the pump: all power derivatives use between 5.5 and 5.7 litres of fuel per 100 km (combined), some of the segment's lowest.

New injector with 10 spray holes
It achieves this by employing highly responsive solenoids for the common-rail injection system that achieve a minimum injection interval of just 0.2 ms (the MZR-CD 2.0 is 0.3 ms), which speeds up the minimum injection interval by about 30 percent, improves its responsiveness and lowers fuel usage. Fuel is also saved by lowering the compression ratio to 16.3:1 and utilizing the temperature cooling effect this causes, which secures more mixing time until ignition, and allows a more precise fuel-injection pattern. As a result, fuel consumption is a low 5.5 to 5.7 litres (depending on derivative) with CO 2 emissions from between 147 to 152 g/km. In fact, the MZR- CD 2.2-litre offers substantially higher power and torque than the previous-generation MZR-CD 2.0-litre, while delivering equal levels of fuel consumption and CO 2 emissions.

Low Emissions - Particulate Filter with World's First Ceramic Support Matrix Structure
Mazda engineers not only made the new 2.2-litre turbo diesel powerful and low consumption, they also lowered the amount of raw emissions and raised the efficiency of its after-treatment technologies. The engine's highly responsive fuel-injection technologies have new injectors (see above) that yield better atomized spray characteristics. These are combined with an exhaust-gas recirculation (EGR) system with a cooler bypass structure - that decreases unburned gases and NOx - and the high- response solenoids described above, to realise superior emissions performance without sacrificing power.

Emissions are then treated by a diesel particulate filter that uses a unique Mazda-developed, ceramic support matrix structure, which is the first of its kind to go into production in the world. Previous diesel particulate filters converted particulate matter (PM) into CO 2 by reacting the PM with the oxygen in the exhaust gas at the surface of the catalytic particle. This meant that the time needed for filter regeneration was determined by the amount of oxygen on the surface of the catalyst.

When the temperature of the exhaust gas is raised to quicken the regeneration time, then technological issues - like higher fuel usage or the ceramics exceeding their thermal resistance limit - can occur. Mazda solved these issues by using highly thermal resistant material for the ceramic monolith of its new diesel particulate filter, and designing the internal structure of the ceramic support matrix with passages for oxygen to enable a large amount of oxygen to be utilized for PM combustion. With this, Mazda has succeeded in significantly increasing the PM combustion speed. As a result, the number of times the diesel particulate filter has to regenerate (in combined mode) is cut in half, and the time necessary for each regeneration phase is shortened by one third. For owners of the new Mazda 6 MZR-CD 2.2-litre turbo diesel, this means worry-free filter regeneration and, because fewer regeneration phases are required and each takes less time, less fuel consumption overall.

Running Quiet
The new Mazda 6 MZR-CD 2.2-litre common-rail not only offers superior output, fuel economy and emissions performance, it is also one of the quietest engines in its segment with this amount of torque. This ensures a driving experience that is one of the non- premium segment's most exclusive. To achieve this, the new engine has a lower block with a very rigid aluminium-alloy structure, with the bottom of the cylinder block skirt and the cylinder block's main bearing caps bolted to the lower block at 18 separate locations. This high structural rigidity is combined with a front chain-driven cassette-type balancer shaft to suppress booming noise and lower radiated noise, and to deliver optimised pedal response and engine sound for a reined acceleration feel.

Packaging and Weight Management
Keeping the new MZR-CD 2.2-litre engine as close as possible in size and weight to that of the MZR-CD 2.0-litre diesel was a key factor in ensuring exhilarating performance combined with fuel efficiency and low emissions. Some of the newly adopted technologies, such as the balancer shaft and DOHC, result in increased size and weight. Nonetheless, numerous innovations were added to manage size and weight increases, with the goal of maintaining packaging and keeping the weight increase within just 6.0 kg of the previous MZR- CD 2.0-litre turbo diesel.

Due to the increase in displacement, the stroke of the MZR-CD 2.2 was lengthened by 8 mm compared to the MZR-CD 2.0. At the same time, the overall length of the connecting rods was shortened by optimizing their design. As a result, their weight remains at the same level as in the MZR-CD 2.0. The adoption of a balancer shaft that decreases vibration caused by reciprocating motion made a thinner cylinder block with fewer ribs possible (if the MZR-CD 2.2 had no balancer shaft, the cylinder block would have been 1.9 kg heavier than that of MZR-CD 2.0, and its crankshaft 1.3 kg heavier.). Furthermore, decrease in size and weight was achieved by making the balancer housing, oil pump housing, and the oil suction pipe a single structure. To achieve even more weight reduction, while increasing the cooling capability of the new engine, the oil cooler is made of aluminium (-0.6 kg). The weight of the cam cover is also reduced by making it out of plastic (-1.0 kg).

Read more...

Mazda 2 3-Door, 2009

Mazda 2 3-Door, 2009

 

Launched in October 2007 as Mazda's first new-generation vehicle to be evolved to a new level, the all-new Mazda 2 was an immediate hit with European customers, finding more than 18,000 owners through January 2008. In December last year, Mazda 2 five-door hatchback was awarded five stars for adult occupant protection at Euro-NCAP crash testing. It won a host of automotive awards as well, including Car of the Year in Austria, Belgium, Croatia and Denmark. Now Mazda 2 is about to get more popular with a new 3-door hatchback model that has all the award-winning attributes of the five-door hatchback, and is even sportier and more affordable.

Design - sportiness enhanced
The new Mazda 2 3-door hatchback builds on the five-door hatchback's exterior design - that evokes movement and athleticism using unique body panel articulation and compact dimensions - for even more sporty appeal. Its rear side window has a unique shape that, when combined with Mazda 2's rising belt line and wedge shape, communicates an even more fun-to-drive character. Fresh and dynamic-looking, its overall design communicates a calm strength achieved through formal beauty and the highest levels of build quality yet seen on a Mazda B-car. And its eye-catching design is also 4 percent more aerodynamic than the old Mazda 2 with a coefficient of drag (Cd) of only 0.31 and a coefficient of lift (CLF) of just 0.02, which helps reduce fuel consumption and operating costs, which is important to young, first- time buyers. For more sporty-minded customers, a sports appearance package is available with a special front bumper design and side sills that visually lower the car's centre of gravity, and a rear roof spoiler. On the inside, a dark keynote colour contrasts nicely with white instruments, silver accents, a three-spoke steering wheel similar to the Mazda MX-5 roadster, a silver ringed driver cluster and centre-console mounted shift lever for an ambiance that is both sporty and high quality.

Comfort, Functionality and Equipment
As with the five-door hatchback version, the new Mazda 2 3-door hatchback has a roomy interior, despite its compact and dynamic exterior design. The 3-door version includes handy walk-in functionally, which tips the seatback forward and slides the passenger seat forward for one of the segment's widest access widths for easy entry. It then returns to its original position. Once inside, passengers find themselves in a roomy and comfortable interior. A relatively long wheelbase (2,490 mm), an innovative roof header shape, reduced roof-lining thickness and a lower rear hip point height combine to deliver plenty of head, shoulder and leg room both front and back. The driver's seat can be slide adjusted up to 250 mm and height adjusted up to 55 mm. This is combined with adjustable steering wheel height and a centre console-mounted manual shift lever for a sporty, wrap- around cockpit with room for people of nearly all shapes and sizes.

The higher shift lever placement makes room between the front seats for a ?oor console with a drink holder in the front and a storage tray in the rear large enough for a woman's handbag, along with an AUX jack for plugging in an MP3 player to use with the car's audio system (depending on grade) and a 12 volt power socket that can be used to power or charge electrical accessories. Other handy storage compartments include a unique magazine rack in the glove compartment, front door pockets with space for a half-litre bottle and an A4 atlas, and three compartments in the dashboard for smaller items. The luggage capacities are unchanged compared to the hatchback version. Behind the rear seats is a 250 litre luggage compartment that can hold two suitcases or a baby buggy, and can be extended to 787 litres when the rear seats are folded (60/40 functionality for all grades except base) to take larger items.

Mazda 2 3-door hatchback will be offered in three grades (depending on market) with a full slate of equipment for young, fun-minded drivers. The base grade includes remote central locking, electric adjustable side mirrors, electric power assist steering and ABS. The higher two grades include six airbags, heated and retractable door mirrors, 15 or 16-inch aluminium alloy wheels, manual or automatic air-conditioning, power front windows, rain and light sensor system, adjustable speed warning system, cruise control (1.5-litre petrol with board computer only), dynamic stability control (DSC), and keyless entry and start system, among other features.

Powertrains - low consumption and low CO 2 emissions
Mazda 2 3-door hatchback comes with the same petrol powertrain line-up as the five-door hatchback with engines that are lively and responsive, yet use low amounts of fuel and produce markedly less CO 2 than the engines of the outgoing model. The base MZR 1.3-litre aggregate has variable valve timing and comes in two power derivatives (depending on market): a Standard Power version producing 55 kW/75 PS and a High Power version producing 63 kW/86 PS. Both use just 5.4 litres of petrol per 100 km and produce a low 129 g/km of CO 2 emissions. The largest petrol engine is an MZR 1.5-litre that produces 76 kW/103 PS of power, while using just 5.9 litres of fuel per 100 km and producing 140 g/km of CO . 2 Also onboard is a MZ-CD 1.4-litre common-rail turbo diesel, special for the European market, with high fuel efficiency and low emissions. It produces 50 kW/68 PS of maximum power at 4,000 rpm and 160 Nm of torque at a low 2,000 rpm for lively acceleration and driving fun. At the same time, it uses just 4.3 litres of fuel per 100 km (combined) and produces a very low 114 g/km of CO 2 for low operating costs, which is a vital criteria for B-car customers. All engines come with Mazda's five-speed manual transmission with gear ratios that are between 3 to 10 percent higher than the outgoing five-speed, which contributes to lower fuel consumption.

Chassis and Safety - lightweight for low costs, with safety features equivalent to the five-door hatchback
The new Mazda 2 3-door and five-door hatchback have a body shell that is nearly 100 kg lighter compared to the previous Mazda 2. By keeping vehicle weight under the 1000 kg threshold, the new Mazda 2 reverses a general trend in the automotive industry of making each new model heavier. This outstanding result was achieved mostly by engineering solutions - like employing large amounts of strong yet light high-tensile steels and reducing weight wherever possible - but also by reducing the car's dimensions, making it agile with low fuel consumption and lower operating costs.

High tensile steel also delivers some of the B-segment's best crash safety, as was shown when the Mazda 2 five-door hatchback scored the highest possible ranking of five-stars on Euro-NCAP testing with 34 points for adult protection. Mazda 2 five-door hatchback also received an outstanding four-star ranking for child occupant protection with 37 points, making it one of the few sub-compacts to achieve this level of child protection. And for pedestrian safety, it achieved an admirable 18 points and two-star ranking. The Mazda 2 three- door hatchback's structure is reinforced around the B-pillar and in the doors, including specific side impact protection bars. Mazda 2 3-door's superior passive safety package includes six airbags (depending on grade), ABS, electronic brake-force distribution (EBD), emergency brake assist, DSC and a 40 mm lower beltline and lower side mirror placement for better visibility.

Read more...

Land Rover Freelander 2 TD4 e, 2009

Land Rover Freelander 2 TD4 e, 2009

 
 
The new Land Rover Freelander 2 TD4_e is Land Rover's most fuel-efficient vehicle to date. Featuring a new intelligent Stop/Start system, it is the first production vehicle to incorporate technologies from the company's programme of sustainable engineering initiatives, collectively named 'e_TERRAIN TECHNOLOGIES'.

On the standard EU4 cycle, the CO2 emissions of the Land Rover Freelander 2 TD4_e are reduced by 8 per cent, compared with the outgoing manual diesel Land Rover Freelander 2. Moreover, in additional tests, Land Rover engineers have measured fuel savings approaching 20 per cent in heavy urban traffic.

The 8 per cent improvement equates to a CO2 emissions reduction of 15 g/km compared with the standard Freelander 2 TD4 manual (from 194 g/km to 179 g/km). In terms of fuel efficiency, consumption is reduced from 7.5 l/100 km to 6.8 l/100 km, a saving of 0.7 litres of fuel every 100 km (62 miles).

These gains, coupled with the added benefits of the gearshift indicator light, software developments and efficiencies from low-rolling-resistance tyres, make the Land Rover Freelander 2 TD4_e the most fuel-efficient production Land Rover ever built.

Phil Popham, Land Rover's managing director, said: "The Stop/Start Freelander 2 is the first production vehicle to benefit from the massive £700 million investment in sustainable technologies by Jaguar and Land Rover. From mid-2009, the Stop/Start feature will be included as standard on all Land Rover Freelander 2 TD4 manual models, with no associated increase in list prices."

Land Rover's new Stop/Start system improves fuel efficiency in urban and stop-start driving. The vehicle automatically shuts down the engine in appropriate conditions, resulting in zero tailpipe emissions and saving fuel that would otherwise be used idling the engine when stationary. When the driver is ready to move off, the engine instantly re-starts.

Sophisticated controls ensure that the Stop/Start system does not compromise the needs of either the driver or the vehicle. For the engine to shut down, the vehicle must be stationary, the gearbox in neutral and the clutch pedal raised. To re-start, the driver simply depresses the clutch and the enhanced starter motor engages the engine, ready for when first gear is selected.
The Stop-Start system is automatically activated each time the ignition is turned on, although there is a switch on the fascia to disable the system, if the driver so desires.

Added fuel economy benefits
Along with the intelligent Stop/Start system, the Land Rover Freelander 2 TD4_e includes a series of additional enhancements that help to deliver fuel economy and CO2 benefits.

A new gearshift indicator light in the instrument pack advises the driver when to change gear if a higher gear will allow the vehicle to operate more fuel-efficiently. This is calculated by the Land Rover Freelander 2 TD4_e's fully mapped engine.

Software developments to the driveline systems on the Land Rover Freelander 2 TD4_e generate CO2 benefits without reducing Land Rover's renowned capability.
Land Rover engineers are also collaborating with tyre suppliers to drive improvements to fuel economy through reduced rolling losses. Tyre characteristics including rolling resistance are optimised for the entire range of available tyre sizes on Freelander 2 models.

Refined Stop/Start operation
Land Rover engineers have invested considerable effort in safeguarding levels of engine refinement. To reduce the engine shake associated with some diesel engines when stopping, the Land Rover Freelander 2 TD4_e features controlled throttle closing and ramps down fuel in a smooth fashion, while the alternator is also turned off during the shut-down procedure, reducing load on the engine. A software feature change and revised engine calibration further aid smooth shut-off, while engine shake on start-up is reduced by the Freelander 2's optimised engine-mounting strategy and inherent tuning.

Uncompromised durability
The increased frequency of stop-start cycles over the lifetime of the Land Rover Freelander 2 TD4_e will lead to increased use of the vehicle's affected components, so enhanced durability of these components was a priority for the Freelander 2's engineering team. They developed a new heavy-duty starter motor, a new ring gear, a new dual mass flywheel friction control plate and an absorption glass mat battery. These new features ensure that the Land Rover Freelander 2 TD4_e delivers characteristic Land Rover all-terrain performance and that the system's operation is always rapid and reliable.

Enhanced starter motor
The more frequent stop and start activity means that demands on the starter motor are forecast to increase up to threefold during the lifetime of the Land Rover Freelander 2 TD4_e. To accommodate the durability demands on the vehicle's 2 kW starter motor, a number of changes have been made.

The grease seals have been enhanced significantly and new hard-wearing copper contact material has been sourced and specified across the TD4_e range to enhance wear resistance within the starter solenoid.

New ring gear
An all-new ring gear is specified for all TD4_e models to cope with the increased frequency of starts. The ring gear is attached to the engine flywheel and comes into contact with the starter motor each time the engine is started. The new ring gear is manufactured from a harder grade of steel and contains over 25 per cent more carbon to improve durability.

Dual mass flywheel friction plate
Diesel-powered Freelanders with manual gearboxes have always featured a dual mass flywheel to ensure engine refinement at start, stop and low speeds. A new Polyetheretherketone friction control plate has been developed for the Land Rover Freelander TD4_e. This is able to withstand seven times the pressure of the outgoing plate, to ensure greater levels of refinement under even greater start and stop demands.

Read more...

Cadillac Escalade Hybrid, 2009

>> Wednesday, March 23, 2011

Cadillac Escalade Hybrid, 2009

 
 

Cadillac announced the world premiere of the Escalade Hybrid, the world's first fuel-saving hybrid applied to a large luxury SUV. Powered by an innovative, fuel-saving 2-Mode Hybrid system, Escalade Hybrid will deliver more than a 50-percent improvement in fuel economy in city driving - all while delivering the same distinctive style, segment-leading features and full-size capability that have made the Escalade an icon.

Escalade Hybrid extends Cadillac's leadership in the large luxury SUV category. Escalade sales have grown in the face of changing sales trends and increased competition. In fact, Escalade sales increased 22 percent in September over year-ago sales. Other models in the Escalade lineup include the extended-length Escalade ESV and the versatile Escalade EXT luxury-utility truck. The Hybrid model is available with the standard Escalade body style.

Patented 2-Mode Hybrid technology
The Escalade's 2-Mode Hybrid system allows it to return exceptional fuel economy in both city and highway while delivering the capabilities of a true luxury SUV. In city driving, this advanced hybrid power system enables Escalade to launch and drive low speeds on electricity alone. As additional power is demanded, the system blends output from the battery and gas engine smoothly.

GM's patented 2-Mode Hybrid system consists of an advanced electrically variable transmission (EVT) and 300-volt nickel-metal hydride Energy Storage System (ESS). These systems work in concert with the standard 6.0L V-8 Gen IV gasoline engine with Active Fuel Management (AFM) and late-intake valve closing (LIVC) technology. AFM enables the V-8 engine to seamlessly shut off half of its cylinders when less power is needed, such as during highway cruising. This new hybrid system not only enables the Escalade Hybrid to drive low speeds on electricity alone, it also allows the 6.0L V-8 engine to operate in its more economical four-cylinder mode for longer periods.

The key to Escalade's 2-Mode hybrid system is that the electric power used to propel the vehicle is generated by the hybrid system itself. When the brakes are applied or the vehicle is coasting, the electric motors within the hybrid system create electricity that is stored in the 300-volt battery. This stored energy is used to move the vehicle and the regenerative braking cycle is renewed.

The 2-Mode Hybrid system provides seamless, dependable power on demand in an efficient package. In fact, its electric motor is less than half the size of those in single-mode hybrid systems. This technology was developed and is still used in fleets of hybrid transit buses on the streets today in dozens of major North American cities. Scaled-down for use in full-size SUVs, the 2-Mode system delivers fuel savings where it is needed most - in large vehicles with high levels of capability. It is a core part of GM's energy diversity efforts, which are centered on reducing dependence on petroleum, improving fuel economy, reducing emissions and minimizing the automobile's impact on the environment.

Cadillac's smooth and quiet power
Acoustic details specific to the Hybrid model ensure it delivers the superior luxury that has been an Escalade hallmark since its inception. The details include:
    * A new exhaust system and resonator specially tuned for the 6.0L LIVC engine's Active Fuel Management operation. It ensures comfortable interior acoustics and a pleasant exhaust note during both V-4 and V-8 operation
    * An electrically driven, 300-volt air conditioning compressor reduces vibration and allows the HVAC system to cool the passenger compartment even when the gasoline engine is shut off. It includes the standard tri-zone climate system
    * An electrically driven, 42-volt variable-assist power steering reduces vibration and provides up to a 0.5-mpg fuel economy improvement by reducing parasitic losses common in belt-driven hydraulic systems
    * The Energy Storage System cooling system's internal fan is tuned to be quiet at low vehicle speeds, when the fan could more easily be heard by the occupants.

Escalade aesthetic
The Escalade Hybrid retains the qualities that have made it the leading large luxury SUV and a standard-bearer of Cadillac's overall product renaissance. It is instantly identifiable as a Cadillac and incorporates styling cues from the landmark Sixteen concept vehicle, including a detailed signature grille, front fender vent ports and layers of chrome accents.

The Escalade's warm and inviting interior features a premium layout. It is available in two colors, Ebony and Cashmere. Standard features include a distinctive instrument panel; gauges with white needles and blue light inlays with continuously lit, white-LED backlighting; Nuance leather-covered seats; leather-covered door trim and center console; and a power-assisted rear liftgate that opens and closes with the touch of a button.

Read more...

Audi e-tron Concept, 2009

>> Thursday, January 6, 2011

Audi e-tron Concept, 2009

 
 

 Audi presents the highlight of the IAA 2009: the Audi e-tron Concept, a high-performance sports car with a purely electric drive system. Four motors - two each at the front and rear axles - drive the wheels, making the concept car a true quattro. Producing 230 kW (313 hp) and 4,500 Nm (3,319.03 lb-ft) of torque, the two-seater accelerates from 0 to 100 km/h (0 - 62.14 mph) in 4.8 seconds, and from 60 to 120 km/h (37.28 - 74.56 mph) in 4.1 seconds. The lithium-ion battery provides a truly useable energy content of 42.4 kilowatt hours to enable a range of approximately 248 kilometers.

The performance figures are by no means the only evidence of the consistent and holistic strategy. The design makes it clear that the Audi e-tron Concept belongs in the major leagues of sports cars, and the package takes into account the specific realities of an electric vehicle. The battery is directly behind the passenger cabin for an optimal center of gravity and axle load distribution.

The Audi e-tron Concept is able to freely distribute the powerful torque of its four electric motors to the wheels as required. This so-called torque vectoring allows for dazzling dynamics and an undreamed-of level of agility and precision when cornering.

Audi has taken a new and in some cases revolutionary approach to many of the technical modules. A heat pump is used to efficiently warm up and heat the interior. The drive system, the power electronics and the battery are controlled by an innovative thermal management system that is a crucial component for achieving the car's range without compromising its high level of interior comfort. Networking the vehicle electronics with the surroundings, which is referred to as car-to-x communication, opens new dimensions for the optimization of efficiency, safety and convenience.

The Concept
Electric drive systems are still very much outsiders. The first vehicles of this type took to the roads around 1900, yet in 2009 no volume car manufacturer has a car powered exclusively by batteries in its lineup. Fewer than 1,500 electric vehicles are currently registered in Germany, corresponding to only 0.035 percent of all registered vehicles.

Yet electric driving potentially offers numerous advantages. Electric cars reduce the dependence of transportation and the economy on the raw material petroleum. They produce no direct exhaust emissions and thus ease the local burden on the environment. Electric drive systems are also significantly more efficient than combustion engines, consequently making them easier on the customers' wallets. Other strengths include sportiness and the fun they bring to driving. All of the torque is essentially available the moment the driver steps on the accelerator, allowing for breathtaking acceleration.

There is still a lot of work to do before electric cars are ready for volume production, however. The greatest challenge is the integration of the energy storage system. Acceptable range and performance requires a traction battery that is heavy and takes up a lot of space. Audi is taking a new approach to offset these disadvantages - a holistic approach with a specific vehicle package, a systematic lightweight construction concept and an optimal configuration of all components for the electric drive.

Audi e-tron Concept - The Holistic Approach
The most important development related to batteries for electric drives are lithium-ion cells. Numerous experts throughout the world are working on their further development for use in cars, with the primary objectives being to reduce weight and increase capacity and performance. Audi has also opted for this technology, both for use in a hybrid production vehicle, such as the upcoming Q5 hybrid, and in the e-tron test platform.

The requirement specification for the concept vehicle goes far beyond battery technology and the replacement of the combustion engine with an electric drive system, however. The Audi development engineers decided back in the concept phase to design practically every component and technology based on the new requirements of electric mobility. The interaction of all elements has a decisive influence on the factors efficiency, range and practicality.

The Audi team therefore focused its attention on the total vehicle, which is reflected in the comprehensive requirement specification.
    * The reduction of road resistances and the resulting increase in range plays a major role with electric vehicles. Lightweight construction was therefore a top priority for the Audi e-tron Concept car. The body, in particular, combines low weight with supreme strength and rigidity. An intelligent aerodynamics concept with active elements helps to reduce consumption.
    * The package ensures the safe integration of the electric drive system and the battery. Placing the battery in front of the rear axle ensures an optimal axle load distribution without compromising the compact overall design and the generous amount of interior space.
    * Advanced battery technology enables a practical range. The battery system is water-cooled for optimal performance and service life.
    * A needs-based energy management system controls all functions for the chassis, convenience equipment and other auxiliary consumers.
    * The innovative thermal management system with optimally matched cooling and heating components considers the cooling requirements of the battery and the drive system in addition to the interior temperature.
    * Driving dynamics and road comfort are what Audi customers have come to expect in the sports car segment.
    * Vehicle safety is on par with the best of today's production vehicles.
    * The driver is provided with clear and comprehensive information.
    * The Audi e-tron Concept car uses car-to-x communication technology developed by Audi to improve the efficiency of conventionally powered vehicles. For example, information about traffic light cycle times and the flow of traffic - provided by the infrastructure and other vehicles - is used to compute an optimal driving strategy. Audi has already modeled such a solution in Ingolstadt as part of its "travolution" project.

Read more...

About This Blog

Lorem Ipsum

  © Blogger templates Romantico by Ourblogtemplates.com 2008

Back to TOP