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首页> 外文期刊>Journal of the Chinese Society of Mechanical Engineers, Series C: Transactions of the Chinese Society of Mechanical Engineers >Approach for Vertical Loading Error Compensation for Wheel Test Bench of Lunar Rover Vehicle
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Approach for Vertical Loading Error Compensation for Wheel Test Bench of Lunar Rover Vehicle

机译:月球车车轮试验台垂直载荷误差补偿方法

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摘要

A lunar roving vehicle (LRV) is the key for manned lunar explorations and for supporting a lunar base. It is therefore necessary for the maneuverability and adaptability to the environment of its wheels to be known during the design phase. Toward this end, it is essential to build a test bench for LRV wheels. A torsion spring loading mechanism with a parallelogram linkage instead of a counterweight enables continuous vertical loading of the testing wheel and reduces the inertia and start-up time of the testing wheel. However, the vertical load during transition from the initial stationary state to the stable movement state contains an error because of slip sinkage. The variation of sinkage leads to variations in the vertical displacement of the testing wheel, causing changes in the torque of the torsion spring and in turn causing vertical loading errors in the wheel. In this study, the vertical loading error of a testing wheel loaded by a torsion spring was analyzed, and an error compensation algorithm was deduced theoretically. Finally, highly accurate vertical loading of the wheel test bench for an LRV was realized. This should lay the foundation for future wheel experiments of LRVs.
机译:月球巡逻车(LRV)是载人月球探测和支撑月球基地的关键。因此,有必要在设计阶段就知道其车轮的可操纵性和适应性。为此,建立用于LRV车轮的测试台至关重要。带有平行四边形连杆机构而不是配重的扭力弹簧加载机构使测试轮能够连续垂直加载,并减少了测试轮的惯性和启动时间。但是,从初始静止状态到稳定运动状态的过渡期间的垂直载荷由于滑落而产生误差。凹陷的变化导致测试轮的垂直位移发生变化,从而导致扭簧的扭矩发生变化,进而导致测试轮的垂直负载误差。本研究分析了扭力弹簧加载的测试轮的垂直加载误差,并从理论上推导了误差补偿算法。最终,实现了用于LRV的车轮测试台的高精度垂直负载。这应该为将来的LRV车轮实验奠定基础。

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