According to Pearce, one of the advantages of Loopwheels is the fact that unlike a suspension fork, they can absorb shocks delivered not just from underneath or above but also from the front (as might happen when running into a curb head-on). He also admits that many other inventors have come up with designs for wheels with tangential suspension over the past hundred years or so, although he believes that today’s modern materials will allow his to work where others have proved impractical.
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The design most likely requires a drum or disc brake since the rim’s position would likely change too much for rim brakes. We’re thinking this could be a fun design for commuter and city bikes where aerodynamics and weight are slightly trumped by comfort, particularly where the streets are a bit rough. More info as it comes online, and another pic after the break… Androo on April 14th, 2013 - 1:57pm
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.
I love it when my headtube angle steepens and my wheelbase shortens when I hit an obstacle. (deleted) TheKaiser on May 20th, 2016 - 12:16pm
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Meanwhile, Rozanes said the company is developing a prototype for bicycles called the Fluent and hopes to move on to other devices down the road. Reinventing the wheelchair for children in need Mom's invention lets special-needs children walk for the first time From wooden to wondrous: The technology of wheelchairs
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.
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Leaf springs are likely to wear because they have several moving parts. They should be inspected at intervals specified by the car manufacturer, or at major service intervals - usually every 12,000 miles (20,000 km). Facebook @howacarworks Twitter @howacarworks YouTube @howacarworks
When driven wheels are independently suspended, the differential is fixed to the frame and drives the wheels by jointed drive shafts.
The front wheels must be free to pivot on their steering swivels. The driven wheels, whether front or rear, must also be free to rotate with the drive shafts .
The Acrobat doesn't exactly "reinvent the wheel," as the cliche goes, but it does improve upon it. Eliane Rozanes, one of the Acrobat’s engineers, said it has a built-in symmetrical and selective suspension system. In layman's terms, that means it takes the bumps so you don't have to.
Why allow weather to limit your performance? TRX employs an initial 45/55 torque split and manages engine horsepower for optimal launch performance on snow and ice.
That’s why you don’t want suspension between the ground and your hubs. Plus, many, many other reasons. potbellyjoe on May 20th, 2016 - 11:27pm