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You are reading an Entry #454812 on Enduro2 Electric MotoBike in the A' Design Awards' Design+Encyclopedia, the crowdsourced encyclopedia of art, architecture, design, innovation and technology. You too can contribute to the Design+Encyclopedia with your insights, ideas and concepts. Create a New Entry now. | ||||||||||||||||||
Enduro2 Electric MotoBikeEnduro2 Electric MotoBikeEnduro2 Electric MotoBike is an innovative hybrid vehicle that represents a groundbreaking fusion between mountain bikes and enduro motorcycles, embodying a sophisticated blend of carbon fiber and precision-engineered Ergal components. This revolutionary design, created by Italian designer Andrea Agazzini, features a lightweight yet robust frame that seamlessly integrates electrical components within its sleek architecture. The vehicle's distinctive dual-power system combines a powerful 4000W electric motor delivering 120 Nm of maximum torque with independent pedaling capability, offering users unprecedented versatility in off-road environments. The design's technical excellence is manifested through its unique construction, utilizing autoclave-molded carbon fiber for the front section and CNC-machined Ergal 7075 aluminum for the engine housing and rear components, achieving a remarkably light total weight of 27.5 kg. The vehicle's innovative architecture features 29-inch front and 27.5-inch rear wheels, optimizing both stability and maneuverability. Distinguished by its sinuous front profile and technically robust rear section, this motobike represents a significant advancement in sustainable transportation design, earning recognition with a Platinum A' Design Award in the Vehicle, Mobility and Transportation Design category. The design's emphasis on maintenance accessibility and assembly precision, achieved through a plug-in technology system that eliminates traditional welded joints, demonstrates a forward-thinking approach to vehicle engineering. This Italian-manufactured vehicle combines sporty performance capabilities with practical functionality, suitable for both intensive enduro use and recreational woodland excursions. Author: Adam Dawson Keywords: electric mobility, sustainable transportation, hybrid vehicle design, carbon fiber engineering, off-road innovation, advanced motorbike technology SOURCES: |
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