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Wear testing and measurement techniques for polymer composite gears

机译:聚合物复合齿轮的磨损测试和测量技术

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Injection-moulded composite gears using fibre-reinforced thermoplastics often exhibit increased performance compared with those made from unreinforced polymers. In general, materials are chosen on cost or simple performance grounds (such as, nominal flexural modulus or heat deflection temperature). Aspects of the performance of polymeric gears have been studied by a number of workers and efforts have been made to simulate the contact conditions during gear running. However, until now the wear performance of gears made from polymer matrix composites has not been studied systematically. While such materials have been studied using pin-on-disc or twin disc roll/slide wear techniques, no attempt has ever been made to directly compare the results from such studies with those from gear tests. This paper attempts to explain the comparative methods of measurement of various polymer matrix composite gear materials and to relate their performance to results obtained in contact simulation experiments by other workers. Methods of wear testing are compared including direct gear testing and disc testing, together with electronic (displacement) measurement, weight loss and direct measurement. A new method of characterising the wear of gears is presented, which relates actual contact conditions and gear tooth wear. This co-ordinate measurement technique provides wear rates as a function of roll angle, and hence load, sliding speed and slip ratio. It allows comparisons between gear tests and a simpler test configuration, the twin disc roll/slide test. The conclusions reached have interesting commercial implications for the producers and end users of polymer composite gears and for those involved in testing them.
机译:与由非增强聚合物制成的齿轮相比,使用纤维增强热塑性塑料的注塑复合齿轮通常表现出更高的性能。通常,材料是基于成本或简单的性能基础(例如,标称挠曲模量或热变形温度)选择的。许多工人已经研究了聚合物齿轮性能的各个方面,并且已经做出了努力来模拟齿轮运行过程中的接触条件。但是,到目前为止,尚未对由聚合物基复合材料制成的齿轮的磨损性能进行系统研究。尽管已经使用销盘式或双盘式滚动/滑动磨损技术研究了此类材料,但从未尝试直接将此类研究的结果与齿轮测试的结果进行比较。本文试图解释各种聚合物基复合齿轮材料的比较测量方法,并将其性能与其他工人在接触模拟实验中获得的结果联系起来。比较了磨损测试的方法,包括直接齿轮测试和盘式测试,以及电子(位移)测量,重量损失和直接测量。提出了一种表征齿轮磨损的新方法,该方法将实际接触条件与齿轮齿磨损相关联。这种坐标测量技术提供的磨损率是侧倾角的函数,因此是载荷,滑动速度和滑移率的函数。它允许在齿轮测试和更简单的测试配置(双盘滚动/滑动测试)之间进行比较。得出的结论对聚合物复合材料齿轮的生产商和最终用户以及参与测试的人都具有有趣的商业意义。

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