论文标题

仪器滑块瞄准的设计和表征,在干燥的粗糙固体之间向局部微影响力

Design and characterization of an instrumented slider aimed atmeasuring local micro-impact forces between dry rough solids

论文作者

Grégoire, Camille, Laulagnet, Bernard, Liaudet, Joël Perret, Durand, Thibaut, Collet, Manuel, Scheibert, Julien

论文摘要

在光正常载荷下两个粗糙固体之间的滑动运动涉及拮抗剂微质量之间的无数微冲击。这些微冲击是许多新兴的宏观现象的起源,包括摩擦力,滑块的振动和周围环境中辐射的噪声。然而,微型施加的单个特性(例如,最大力,沿界面的位置,持续时间)基本上难以捉摸。在这里,我们介绍了一个仪器滑块,旨在测量在滑动沿崎track的轨道上滑动过程中微影响力的位置和正常成分。它基于一个压电传感器的数组,每个传感器都放在单个模型下。其动力学特性是通过实验建立的,并将其与有限元模型进行了比较。然后,我们通过使用它来验证其测量功能,以对抗简单,定义明确的地形特征的轨道轴承。得益于简单的多种障碍触点模型来解释测量结果。预计我们的滑块将在以后的研究中有用,以提供有关涉及干燥粗糙滑动界面的各种摩擦学问题的本地见解。

Sliding motion between two rough solids under light normal loading involves myriad micro-impacts between antagonist micro-asperities. Those micro-impacts are at the origin of many emerging macroscopic phenomena, including the friction force, the slider's vibrations and the noise radiated in the surroundings. However, the individual properties of the micro-impacts (e.g. maximum force, position along the interface, duration) are essentially elusive to measurement. Here, we introduce an instrumented slider aimed at measuring the position and the normal component of the micro-impact forces during sliding against a rough track. It is based on an array of piezoelectric sensors, each placed under a single model asperity. Its dynamical characteristics are established experimentally and compared to a finite elements model. We then validate its measurement capabilities by using it against a track bearing simple, well-defined topographical features. The measurements are interpreted thanks to a simple multi-asperity contact model. Our slider is expected to be useful in future studies to provide local insights into a variety of tribological questions involving dry rough sliding interfaces.

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