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GACW Inc has signed a Supply, Service and Exclusive Agent Agreement with Brownfield Engineering and Maintenance Pty Ltd, a leading Australian engineering and maintenance company to market and distribute GACW’s Air Suspension Wheel (ASW) technology to the mining Off the Road (OTR) sector.
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On smooth terrain The Acrobat’sTM innovative Adaptive RigidityTM technology keeps the wheel’s 3 shocks perfectly rigid like spokes. When encountering a bumpy surface, they automatically transform into soft and responsive shocks. With less energy lost to frame vibration and reduced impact to the rider’s body, The AcrobatTM offers a superior riding experience.
"Price on application." Not good news for anyone who wants Extans' Akhal Shadow Bike for anything more than a pipe dream. Or a photo on their desktop. But even as the latter, you have to admit this bike, inspired by the...
At ceremony in Manama with his Bahraini counterpart, FM says ‘Israel made a major, historical step today in the Gulf’ Lapid lands in Bahrain on landmark trip to open embassy, sign agreements First commercial flight between Israel and Bahrain lands at Ben Gurion Airport Andy Levin says friendship with Rashida Tlaib gives him hope for Mideast peace Detroit-area representative sets himself apart from father, uncle who proceeded him in Congress by taking more progressive stances on Israel and making it a front-and-center issue Refusing to ‘hotline’ Iron Dome bill, Republican slows its passage in Senate VP aides assure Jewish groups she’s pro-Israel after unrefuted ‘genocide’ remark With hours to spare, Biden signs bill to avert partial government shutdown Satellite images show alleged Iranian missile factory seriously damaged in blast Private Israeli intelligence firm releases photographs of facility outside Tehran, where at least two members of the Iranian military were killed earlier this week UN group blasts ‘staggering’ bias of judge against lawyer fighting Chevron
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
Both modeling and experimental results demonstrate several realistic scenarios in which wheel hubs experience accelerations greater than 100g, sometimes at very low vehicle speeds. This paper focuses on the experimental determination of suitable design goals for in-hub motors (wheel motors), describing the experimental test rig, experiment procedures, and experimental results from testing conducted at UT-CEM. The paper also discusses implications of these results on wheel motor design, leading to the conclusion that a realizable and feasible design goal for a combat vehicle wheel motor shock rating is 150 g's, with a 10 to 20 ms pulse width.
From a purely aesthetic standpoint, it gives the Taurus — a car once relegated to rental fleets around the country — a much bolder, more aggressive appearance, with wheel arches full of rubber and chromed alloy. On the performance end of the equation, larger wheels definitely provide better handling, thanks to their ability to put a larger contact patch in touch with the road.
Tag even a small pothole with a car shod with a 205/60R15 tire, and you might experience a cut sidewall, but the tire's fatter sidewall has the ability to withstand a lot more abuse before the wheel gets damaged. Hit that same pothole in something equipped with 19-inch wheels and low profile 255/45R19s, and you'll likely not only blow out the tire, you'll be in for some significant wheel repair since the tire simply doesn't have the sidewall flexibility to protect the wheel. Older steel wheels are less prone to damage from such a strike, but lightweight alloy wheels are essentially designed to deform on impact.
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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.
You can watch it all live or anytime after right here: https://youtu.be/5YVGB8RZ31o at 2 PM ET Sunday, July 11th
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they sent me another one with out having to return the first one and the tire on the second one is also bent. now I am waiting for a refund while I have 2 broken bikes. I am a police officer and bought this bike to train and exercise for bike patrol. Used the bike for the first time yesterday and it broke a few hours into training with maybe 6 miles on it. Front fork seals were in poor condition and leaked fluid right from the start. Front brake cable came loose during some braking drills. Finally the back gear system snapped and locked up the back tire almost causing me to crash. I know the is not a $2,000 or $3,000 dollar bike, but for almost $500, it should be a much better built bike then it was. Very disappointing. When I picked up the package, I was impressed at the condition of the box. There were no smashed corners or gashes. Upon opening the box, I was happy to see such efficient packing, padding and securing of items so nothing rubbed together. The bike arrived with no scratch whatsoever on it!
Imperial dimensions are illustrated in inches. Metric dimensions are shown in parenthesis or as noted. Unless noted, all metric dimensions are in millimeters and rounded to one decimal place.
We have made the difficult decision to postpone the 2021 Recumbent Cycle-Con. With the current surge in Covid cases, and so many unknowns about what may happen in the next two months, postponing seems like the most responsible thing to do at this point in time.