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Effect of friction on the contact stress of a coated polymer gear

机译:摩擦对涂层聚合物齿轮接触应力的影响

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Polymer gears are used extensively in various applications. However, durability issues have been emerging because of friction at gear tooth contact areas. To extend the lifetime of polymer gears, a low-frictional coating has been considered as a possible strategy. In this study, a finite element simulation method was performed to investigate the contact stress between a pair of coated polymer gears. The simulation included various friction coefficients (COFs) for studying the effects of friction during the operation. Numerical results revealed that the friction causes the contact stress to shift over the roll angle, which is attributed to the direction of the sliding friction based on a free-body diagram. We also investigated the effects of coating and found that a thin coating has little effect on the bulk deformation behavior of the gear. Moreover, the stress distribution in the coating at the pitch point was investigated as the COF increased. Under zero friction, three notable stress regions were observed: 1) the center of the surface, 2) the end of the contact, and 3) the overall contact area. As COF was increased in the micro-slip region of the contact interface, both tensile and compressive stresses in the coating increased. This study provides significant aid to engineers for understanding the stress response of the coating applied to polymer gears to achieve an optimal design.
机译:聚合物齿轮在各种应用中广泛使用。然而,由于齿轮牙齿接触区域的摩擦,耐久性问题已经出现。为了延长聚合物齿轮的寿命,低摩擦涂层被认为是可能的策略。在该研究中,进行有限元模拟方法以研究一对涂覆的聚合物齿轮之间的接触应力。该模拟包括各种摩擦系数(COF),用于研究操作期间摩擦的影响。数值结果表明,摩擦导致接触应力在辊角上移位,这归因于基于自由体图的滑动摩擦的方向。我们还研究了涂层的影响,发现薄涂层对齿轮的体积变形行为几乎没有影响。此外,随着COF增加,研究了俯仰点的涂层中的应力分布。在零摩擦下,观察到三个值应力区域:1)表面的中心,2)触点的结束,以及3)整个接触面积。随着COF在接触界面的微滑槽区域中增加,涂层中的抗拉和压缩应力增加。本研究为工程师提供了显着的辅助,以了解应用于聚合物齿轮的涂层的应力响应以实现最佳设计。

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