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Modification of spider gear back to uniform the stress and improve the anti-wear performance of a real thrust washer

机译:修改十字齿轮使其均匀受力并提高实际止推垫圈的抗磨性能

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摘要

The maintenance cost of a heavy truck increases due to the severe damage of thrust washer in the differential. The wear was usually related to the contact stress concentration. In the study, the finite element analysis (FEA) was performed for identifying the source of the abnormal wear of thrust washer. An improved approach of modifying the surface profile of spider gear back was proposed. FEA simulations were further conducted to investigate the effect of different spider gear back parameters on the tribological behavior of thrust washer. The FEA simulation results were verified by tribological experiments. Results showed that: (i) the abnormal wear of thrust washer pairing the original gear was caused by the local stress concentration; (ii) the local stress concentration could be eliminated by modifying the surface profile of spider gear back; (iii) using the modified spider gear back, the wear mass loss of the thrust washer was reduced significantly; (iv) the promising surface radius of spider gear back was 73.15 mm. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于差速器中止推垫圈的严重损坏,重型卡车的维护成本增加。磨损通常与接触应力集中有关。在这项研究中,进行了有限元分析(FEA)以识别推力垫圈异常磨损的来源。提出了一种改进的星形轮背表面轮廓的改进方法。进一步进行了有限元分析,以研究不同的星形齿轮后退参数对止推垫圈的摩擦学性能的影响。 FEA仿真结果通过摩擦学实验验证。结果表明:(i)推力垫圈与原始齿轮配对的异常磨损是由局部应力集中引起的; (ii)局部应力集中可以通过修改星形齿轮背的表面轮廓来消除; (iii)使用改进的星形轮背,大大减少了止推垫圈的磨损质量损失; (iv)星形齿轮背的有希望的表面半径为73.15 mm。 (C)2015 Elsevier Ltd.保留所有权利。

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