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TRX awaits your command. Create a tailored driving experience by dialing in your preferred steering feel, torque split, suspension firmness and more.
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Kerbs are less of an obstacle with loopwheels. Loopwheels reduce jolting, soften the impact of landing, and so can help manage pain. Over 95% of the customers rate Loopwheels as high or very high quality Over 85% of the users felt positive about Loopwheels after using them for 2 weeks Over 80% of our customers said they’d chosen Loopwheels to reduce the amount of vibration they experienced in their wheelchair
Loopwheels are designed, engineered and made in Nottinghamshire by Jelly Products Ltd. It’s a registered design with patents pending. The story of loopwheels is one of determination, and a streak of madness. They were invented and developed by Sam Pearce, in his home in Nottinghamshire, England. By training and profession, Sam is a mechanical engineer and industrial designer. By nature, he is some one who loves making things: designing, building, doing. He loves simplicity, and products that work well. Sam is practical and hands-on. He is stubborn and doesn’t give up easily. All useful traits when you find you’ve set out on a journey to reinvent the wheel. About Our Work Services Blog Contact About Our Work Services Blog Contact About Our Work Services Blog Contact Loopwheels Choose Wyze We are delighted to announce that Loopwheels has chosen Wyze as their digital marketing partner.
Currently, this is just a concept with renderings, no prototype or production is planned.
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Suspension Wheels Loopwheel & Softwheel Home Parts & Accessories Accessories Suspension Wheels SoftWheel state that their wheel's innovative in-wheel suspension technology can help reduce pain and provide a more comfortable ride. 3 suspension arms are built inside the wheel and automatically compress when encountering an obstacle or rough terrain, but remain rigid and strong over flat surfaces The arms are set equidistant around a central hub to provide shock absorption - no matter what the angle of impact is. The suspension arms immediately reset and return the wheelchair – and rider, to a level ride. Standard Specifications Carbon Fibre springs with Hydraulic and Pneumatic damper suspension rams Aluminium hub - to suit 1/2" quick release axles Max Travel: 32mm Carbon Fibre rims Standard 6-tab hard anodised push-rims 32mm clearance required if you have mud guards Wheels are not interchangeable between left and right sides * Wheel weight without pushrim and tyres A Loopwheel is a wheel with integral suspension, designed to reduce vibration and increase performance and provide greater comfort. Loopwheels give you a smoother ride. They are more comfortable than standard wheels: the carbon springs absorb tiring vibration, as well as bumps and shocks. They’re designed for everyday use and are strong and durable. They won’t run as true as a spoked wheel, but they will be a lot more comfortable. Loopwheels are not just a wheel, they’re a suspension system. Loopwheels help people push over uneven streets, rough tracks and gravel paths, with less effort, and the carbon springs give you extra power to get up or down kerbs. They reduce jolting and vibration, by as much as two thirds compared with a spoked wheel. Users report that this helps them manage pain. With standard quick release axles, a choice between 12mm or ½ inch bearings and available in 24″ and 25″ sizes, loopwheels fit most manual wheelchairs. Standard Specifications Carbon fibre Loop suspension Load limit: 120kg Max Travel: 70mm Double wall aluminium rims Standard 6-tab hard anodised push-rims Contact us for available colours * Wheel weight without pushrim and tyres
The “Triple Absorber” aims to lessen the stress placed on MTB riders. Normal wheels pass bumps through into the frame (and rider), causing fatigue.
When you’re on uneven ground, vibrations can wear you out, making it harder to drive your chair and triggering spasms and pain. Loopwheels make travelling over bumpy ground more fun and less tiring.
I suppose that there may be some readers who have not yet heard about this trike. If you haven’t – it was featured on a recent Laidback Bike Report (laidbackbikereport.com), so you might want to check that out – after you read this, of course! But seriously, getting a chance to see that trike in action, whether in-person or via that LBR, is a good idea. When you do, perhaps the first thing you notice is what I mention in the title – this trike leans! Read More »
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From an aesthetics point of view they are gorgeous to look at, but from riding them it is obvious that Sam and Gemma have created something special. Riding 20″ slicks is not normally the most fun way to enjoy the farm tracks of the UK, but with the Loopwheels it suddenly changed, the rough buzz disappeared and you find yourself enjoying the ride rather than worrying about your wheels and the bike bouncing everywhere!
i think it depends on what your unique situation is. if there are rims you really like, buy them and work around it. plus, if your facing winter every year, you do not want to be dropped too much, you'll be sliding all over since you will have a lower center of gravity and have more of a grip demand on your tires. if you drop it three inches, now you need to stick with a really high offset, so that will limit your wheel choices. i think it works the same way no matter what you do-suspension first will limit your wheel options...wheels first will limit your suspension options. do you want to be scraping low with small wheels, or keep it practical with bigger wheels, it's your choice!!
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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They didn’t even mention the rim profile, surface treatment or wind tunnel results. I mean come on! Call me when there’s an aero version. Maxx on May 20th, 2016 - 11:05pm
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