New Modern Design Automotive RORMaxx Wind EV

New  Modern Design Automotive RORMaxx Wind EVLuxury Modern Design RORMaxx Wind EV Furniture Concept Car


Student venture RORMaxx Automotive utilizes ultracapacitors, solar panels, and airflow recovery to construct an alternative energy vehicle. RORMaxx Automotive, a student venture out of Harvard-Westlake High School, is constructing a wind and electric powered vehicle. Eighteen-year-old high school seniors Rory Handel and Maxx Bricklin are developing the first student-built wind-assisted vehicle called Formula AE

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wow this design car is futuristic because this rormaxx wind ev a supercar and this car a modern hight technology.

New  Modern Design Automotive RORMaxx Wind EVNice Modern Design RORMaxx Wind EV Furniture Concept Car onBack Body


The ultracapacitors utilized in the vehicle will provide easily accessible power to the car at all times, avoiding the voltage drop problem in normal batteries. The ultracapacitors will address the high acceleration demands of a car, boosting the Formula AE car from zero to sixty miles per hour in less than 4 seconds. The vehicle will be limited by its gearing to a top speed around 155 miles per hour. Formula AE will implement solar technology in the form of newly developed flexible thin-film photovoltaic cells. Laminated with a flexible flouropolymer, the cells will be protected from any damage and will be flexible enough to fit the aerodynamic form of the vehicle

New  Modern Design Automotive RORMaxx Wind EVBeauty Modern Design RORMaxx Wind EV Furniture Concept Car with Red Color


RORMaxx Automotive, a student venture out of Harvard-Westlake High School, is constructing a wind and electric powered vehicle. Eighteen-year-old high school seniors Rory Handel and Maxx Bricklin are developing the first student-built wind-assisted vehicle called Formula AE. The ultracapacitors utilized in the vehicle will provide easily accessible power to the car at all times, avoiding the voltage drop problem in normal batteries. The ultracapacitors will address the high acceleration demands of a car, boosting the Formula AE car from zero to sixty miles per hour in less than 4 seconds. The vehicle will be limited by its gearing to a top speed around 155 miles per hour.



New  Modern Design Automotive RORMaxx Wind EVAmazing Modern Design RORMaxx Wind EV Furniture Concept Car


Formula AE will implement solar technology in the form of newly developed flexible thin-film photovoltaic cells. Laminated with a flexible flouropolymer, the cells will be protected from any damage and will be flexible enough to fit the aerodynamic form of the vehicle. The battery of the car is projected to have a range greater than 200 miles per full charge, and should handle a full one-hour race without difficulty. The charge time of the battery is less than 1.5 hours, but a prototype battery currently in development could cut the charge time to just six minutes. Finally, the vehicle will recover wind flow energy using intakes channeling air to a turbine fan. By constructing ducting to achieve an optimal wind speed, an appropriate generator Awill convert the airflow into usable energy for the car.


New  Modern Design Automotive RORMaxx Wind EVBeauty and Cool Modern Design RORMaxx Wind EV Furniture Concept Car


The RORMaxx Formula AE is a wind-assisted supercar concept designed by two high school students. With a 200 kW electric motor and lithium ion batteries, the RORMaxx gets a 50% boost in efficiency from its wind recovery system. It has a top speed of 155 mph and is covered flexible photovoltaic panels.

New  Modern Design Automotive RORMaxx Wind EV
Greats Modern Design RORMaxx Wind EV Furniture Concept Car with powered EV sportscar
Although wind is not frequently contemplated of as a latent source of energy for automobiles, two aspiring high school students in California are doing studies into the possibilities. The founders of RORMaxx Rory Handel and Max Bricklin are working out the minor difficulties on an electric vehicle chiefly propelled by the wind and the sun.Only in its infancy, their Formula AE race vehicle exists only in an early-design stage. The race vehicle that come with alternative energy will be propelled by a 285 hp AC induction motor, using the most current available sustainable energy technologies. Lightweight, and extremely thin SolarPly paneling will recharge the vehicle’s lithium-phosphate batteries, at the same time adding more to the vehicle’s range to between 15% to 30%. Once mobile, the four air vents channel airflow into four small turbines. These turbines generate electric charges which are stored in ultracapacitors for instant utilization, something that is essential to rapid acceleration. Details and photos after the jump!

Lotus Sports Cars Evora Carbon Design Concept

The multi-award winning Lotus Evora provides the basis of the stunning carbon design concept unveiled at the 80th Geneva Motorshow. The car boasts a stylish carbon fibre, leather and alcantara interior, aggressive carbon diffuser and an evocative high tech composite body.
2010 Lotus Evora Carbon Concept
The head turning looks of the Evora Carbon Concept car provide a more purposeful, planted stance with the car looking lower and more aggressive. This styling direction is continued with a structural carbon fibre roof, Lotus Motorsport influenced carbon diffuser and carbon splitter. The Evora Carbon Concept car retains the same class leading handling and high tech aluminium bonded and extruded chassis of the production car.
2010 Lotus Evora Carbon Concept
Donato Coco, Director of Lotus Design announced, “The design of the Evora Carbon Concept car features exotic, high tech materials offering a good synergy with the Lotus brand image, expressing our motor sport heritage and history of stylish sports cars due to which Lotus are renowned”.
2010 Lotus Evora Carbon Concept
Carbon fibre panels with perforated leather and Matt Alcantara are featured in the interior. For example, the dashboard, footwell and inner roof are covered in Alcantara, while exposed carbon fibre can be seen on the centre console, air vents and others. It sports a carbon fibre roof, 19-inch alloy wheels with 235/35 front and 285/30 rear Pirelli P-Zero Corsa tyres.
2010 Lotus Evora Carbon Concept
While no engine tweaks have been mentioned, the drop in weight means the Toyota-sourced 3.5-litre V6 has a lot less mass to move thus performance has been significantly boosted. Be on the look-out for a production version of the Evora Carbon Concept in the not-too-distant future.
2010 Lotus Evora Carbon Concept

Suzuki Swift Rally Car, 2005

Suzuki Swift Rally Car, 2005


A redesigned Swift was announced at the Paris Auto Salon in September 2004. The Swift is intended to compete in the European B segment with the likes of Peugeot 206, Opel Corsa and the Fiat Punto. With 1.3 and 1.5 L engines, the new Swift is Suzuki's new "global car", to be produced in Hungary, India, Japan and by Chang'an in China. 3- and 5-door bodies are available.

The the new model is the first of its kind during which a Suzuki employed Indian engineers to design a car that would compete in the global market. The design of the new Swift was previewed on the Concept S and Concept S2 concept cars at auto shows, in the years leading up to its launch. It's proportions & essential shape are unmistakely like the BMW MINI, due to the blacked-out A-pillars and bumper-car stance. The exterior shape is described by some as "1.5 box".

Despite Suzuki's long-standing relationship with General Motors (which itself had prompted the development of the very first Swift), the new Swift is entirely Suzuki, and not based on the GM Gamma platform. The prestigious British Autocar magazine gave the new Swift a favourable 4/5 stars in road test, badging it a "thoroughly impressive all-rounder".
Mk4 Swift has received a 4 stars out of 5 rating in the EURO NCAP crash tests.

Standard equipment include leather steering wheel, dual air-bag, ABS with EBD (Electronic Brake-force Distribution), front disk brake with rear drum brake, sliding storage under passenger seat, single CD player.

Since its global launch in 2005, Mkq4 Swift recorded above forecast sales. In Japan, sales figure doubled forecast. Mk4 Swift enjoyed healthy sales in India where a substantial percentage of the car is built with locally made components. Rapid sales of the new Swift model contributed to the 64% rise in Q1 profits for the Maruti corporation. Waiting period in India for the car is at least 3 months.
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