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Traction performance of a pushed/pulled drive wheel

机译:推/拉驱动轮的牵引性能

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摘要

A comprehensive method for prediction of off-road driven wheel performance is presented, assuming a parabolic wheel-soil contact surface. The traction performance of a driven wheel is predicted for both driving and braking modes. Simulations show significant non-symmetry of the traction performance of the driving and braking wheels. The braking force is significantly greater than the traction force reached in the driving mode. In order to apply the suggested model for prediction of the traction performance of a 4WD vehicle, the load transfer effect was considered. Simulated traction performances of front and rear driven wheels differ significantly, due to the load transfer. In the driving mode, the rear driven wheel develops a net traction force greater than that of the front wheel. On the other hand, in the braking mode the front driven wheel develops a braking force significantly greater than that of the rear driven wheel due to a pushed/pulled force affected by the load transfer. The suggested model was successfully verified by the data reported in literature and by full-scale field experiments with a special wheel-testing device. The developed approach may improve the prediction of off-road multi-drive vehicle traction performance.
机译:提出了一种预测越野驱动轮性能的综合方法,并假设抛物线轮与土壤接触表面。在驱动和制动模式下都可以预测从动轮的牵引性能。仿真表明,驱动轮和制动轮的牵引性能明显不对称。制动力明显大于在行驶模式下达到的牵引力。为了将建议的模型用于预测4WD车辆的牵引性能,考虑了载荷传递效应。由于负载转移,前后从动轮的模拟牵引性能差异很大。在行驶模式下,后从动轮产生的净牵引力大于前轮。另一方面,在制动模式下,由于受载荷传递的推/拉力,前从动轮产生的制动力明显大于后从动轮。所建议的模型已通过文献报道的数据进行了验证,并通过特殊的车轮测试装置进行了全面的现场试验。所开发的方法可以改善对越野多驱动车辆牵引性能的预测。

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