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Friction characteristics of polymers applicable to small-scale devices

机译:适用于小规模器件的聚合物的摩擦特性

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摘要

A review of the critical features of a published micro-tribometer design, which was intended to improve on the dynamic response of typical commercial instruments, leads to its use with a modified technique. Data post processing is introduced to partially compensate for some potential systematic errors. This approach is demonstrated by a preliminary study of the coefficient of friction (CoF) in sub-mm length reciprocating sliding motion for samples of polytetrafluoroethylene (PTFE) and an R11 acrylic formulation made by micro-stereo-lithography, with an SiO2-coated silicon wafer used as a control sample. Testing covered normal loads in the region of 10 mN-60 mN, at scan frequencies up to 9 Hz, corresponding to sliding speeds in the broad region of 1 mm s(-1). While the control samples closely adhered to Amonton's laws over all the test parameter ranges, the CoFs of the two polymers showed contrasting patterns of dependence on sliding speed and repetition rate. Such results have implications for how polymers might be used effectively in future designs for small mechanical systems. They indicate a clear need for further development of the testing methods and large-scale studies of tribological behaviour and its underlying mechanisms under the specified micro-scale conditions.
机译:对已发布的微摩擦计设计的关键特征进行了回顾,该设计旨在改善典型商业仪器的动态响应,并将其用于改进技术。引入数据后处理来部分补偿一些潜在的系统误差。通过对聚四氟乙烯(PTFE)和R11丙烯酸配方样品在亚毫米长往复滑动运动中的摩擦系数(CoF)的初步研究,证明了这种方法,该配方由微立体光刻制成,使用SiO2涂层的硅片作为对照样品。测试覆盖了10 mN-60 mN范围内的正常载荷,扫描频率高达9 Hz,对应于1 mm s(-1)宽范围内的滑动速度。虽然对照样品在所有试验参数范围内都严格遵守阿蒙顿定律,但两种聚合物的COF显示出对滑动速度和重复率的依赖性的对比模式。这些结果对聚合物如何在未来小型机械系统的设计中有效使用具有重要意义。它们表明,显然需要进一步开发测试方法,并在特定的微观条件下对摩擦学行为及其潜在机制进行大规模研究。

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