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This design takes suspension to the next level and could benefit mountain bikers who want a cushier ride. Or more attention.
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To our aesthetic, the e-tron’s resulting ride height is quite improved, garnering many more comments from other Audi owners at enthusiast events. Though the general car market may like crossovers, the more Avant-like stance of our long roof e-tron definitely resonates amongst car people.
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Give thanks, be humble23rd May 2018Getting started22nd May 2018LeJogLe, 6 years later21st May 2018#BeMoreMike – thoughts on a Welsh ride12th April 2017Early morning mountains in Geneva12th April 2017
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Speaking with Gemma and Sam, the brains behind Loopwheels it is clear that you are speaking to a pair of very passionate people.
This tri-shock wheel concept could, conceivably, make singletrack and downhill even less jarring. But with every bump that’s softened, there’s a little more energy that’s drained from the ride itself.
"This amazing mobility shop has been a fabulous help and support to me since my Ehlers Danlos Syndrome started affecting my vascular system and spine making walking and standing still extremely difficult for me. My decision to use a wheelchair for the first time was a difficult one, and I literally had no clue. Craig was fabulous from first con … "
https://loopwheels.com/wp-content/uploads/2020/07/Loopwheels-Testimonial-01-Helen.mp4
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Curve Tetra Grip & Curve Tetra Grip L push rims have the same ergonomic shape as the ‘Curve/Curve L’ but in addition are rubber coated for greater grip. Designed for tetraplegics with triceps function and for wheelchair users with complete hand function but little hand strength.
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I actually really like this design. I’m sure it’s heavy, but it also seems to keep lateral flex in check, and the idea of the suspension movement being able to travel in any direction necessary is fantastic. Dsand on May 20th, 2016 - 8:49am
The University of Texas at Austin Center for Electromechanics (UT-CEM) has conducted a set of simulations and full-scale experiments to determine suitable shock load design requirements for in-hub (wheel) propulsion motors for hybrid and all-electric combat vehicles. The characterization of these design parameters is required due to recent advancements in suspension technology that have made it feasible to greatly increase the tempo of battle. These suspension technologies allow vehicles to traverse off-road terrains with large rms values at greater speeds. As a result, design improvements for survivability of in-hub motors must be considered. Defining the design requirements for the improved survivability of in-hub motors is the driving factor for this research.
Designed for spring gears, the Shock Wheel™ system absorbs energy at landing and taxiing. It mounts very easily between the gear leg and the wheel axle.