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Fatigue testing of flexure hinges for the purpose of the development of a high-precision micro manipulator

机译:挠性铰链的疲劳测试,旨在开发高精度的微型机械手

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An approach was initially proposed for the estimation of the maximum von Mises stress in flexure hinges. It relied on recognizing relevant stress factors that were calculated from empirical functions set up by using the finite element method. Afterwards, a fatigue test bench was designed and realized for the examination of flexure hinge specimens. As functional failure occurred before fracture, crack initiation and propagation were observed permanently with the help of a monitoring system and sporadically by means of scanning electron microscopy. On the basis of results obtained thereby, where varying the maximum rotation angle, the operating frequency and the quality of the notch surfaces, a correlation was established between the stress limit and the number of cycles up to functional failure. This was utilized for the optimal dimensioning of flexure hinges within the framework of the development of a high-precision micro manipulator.
机译:最初提出了一种估算挠性铰链中最大冯·米塞斯应力的方法。它依靠识别相关应力因子,这些应力因子是通过使用有限元方法建立的经验函数计算得出的。之后,设计并实现了疲劳试验台,用于检查挠性铰链样品。由于在断裂之前发生了功能故障,因此借助于监控系统可以永久性地观察到裂纹的萌生和扩展,并且通过扫描电子显微镜可以零星地观察到裂纹的萌生和扩展。根据由此获得的结果,在改变最大旋转角度,工作频率和槽口表面质量的情况下,应力极限与直至功能失效的循环次数之间建立了相关性。在高精度微操纵器开发的框架内,这用于挠性铰链的最佳尺寸。

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