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Tribological properties of flexspline materials regulated by micro-metallographic structure

机译:微金相结构调节柔韧性材料的摩擦学性质

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摘要

Flexspline wear is a critical factor leading to harmonic drive failure. This study investigates the tribological properties of five typical flexspline materials under dry friction conditions. A wear mechanism regulated by micro-metallographic structure is proposed. Tempered sorbate was confirmed to be the desired metallographic structure from a tribological perspective. Additionally, a suitable cementite content could promote the anti-wear characteristics of friction interfaces. However, the metallographic structure of granular ferrite was found to be unfavorable. Tribological experiments under start-stop conditions were conducted to analyze the impact effect during harmonic drive operation. The grain level and speed-dependent properties of the flexspline materials were determined. This research provides important information for avoiding flexspline wear and consequent failure of harmonic drives.
机译:Flexspline佩戴是导致谐波驱动失败的关键因素。 本研究调查了在干摩擦条件下五种典型的柔韧性材料的摩擦学特性。 提出了一种通过微金相结构调节的磨损机制。 钢化山酸盐被证实是来自摩擦学的观点的所需的金相结构。 另外,合适的渗碳盐含量可以促进摩擦界面的抗磨损特性。 然而,发现粒状铁氧体的金相结构是不利的。 进行了起始稳定条件下的摩擦学实验,以分析谐波驱动操作期间的冲击效果。 测定柔韧纤维材料的晶粒水平和速度依赖性。 本研究提供了避免Flexspline磨损和随之而来的谐波驱动器失败的重要信息。

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