A testing mechanism and testing procedure for materials in inertial drives

A. Bergander, J. Breguet
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引用次数: 9

Abstract

Stick-slip actuators and other friction based drives have a high potential for efficient low cost and high-resolution positioning applications. So for, they are mostly used in research laboratories; there is only a very small number of commercial products in the market. There might be several explanations for this, but the lacking information about wear in these actuators is certainly one reason. The goal in conceiving a testing mechanism for material combinations in stick-slip actuators is, as with any wear test, to be as close as possible to the final application. This means that a reciprocating ball-on-plate rig, driven by a linear motor, as it is used for many wear tests, is not very useful. We propose a testing apparatus and as well as possible testing methods, which permit the comparison of the different material combinations in the contact points of stick-slip actuators.
惯性驱动中材料的测试机构和测试程序
粘滑致动器和其他基于摩擦的驱动器具有高效、低成本和高分辨率定位应用的巨大潜力。因此,它们主要用于研究实验室;市场上只有极少数的商业产品。对此可能有几种解释,但缺乏关于这些执行器磨损的信息肯定是一个原因。与任何磨损测试一样,设计粘滑致动器材料组合测试机制的目标是尽可能接近最终应用。这意味着,一个由直线电机驱动的往复球-板钻机,因为它用于许多磨损试验,不是很有用。我们提出了一种测试装置和可能的测试方法,它允许在粘滑致动器的接触点上比较不同的材料组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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