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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >A Comparison of Coulomb Friction and Friction Stress Models Based on Multidimensional Nanocontact Experiments
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A Comparison of Coulomb Friction and Friction Stress Models Based on Multidimensional Nanocontact Experiments

机译:基于多维纳米接触实验的库仑摩擦模型和摩擦应力模型的比较

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摘要

The accuracy of the Oliver - Pharr approach for nanoindentation experiments critically depends on the interfacial friction condition. Although Coulomb friction is often used in finite element simulations for the correction, the friction stress model may give a more appropriate physical scenario. The measurement of the tangential contact stiffness by a recently developed multidimensional nanocontact system provides a direct verification of these two friction models. Both friction models will predict the tangential stiffess reduction as the consequence of interface microslip, but quantitative comparison to the experiments supports the friction stress model.
机译:用于纳米压痕实验的Oliver-Pharr方法的准确性主要取决于界面摩擦条件。尽管在有限元模拟中经常使用库仑摩擦进行校正,但摩擦应力模型可能会提供更合适的物理方案。通过最近开发的多维纳米接触系统对切向接触刚度的测量可直接验证这两个摩擦模型。两种摩擦模型都将预测切向刚度的减小,这是界面微滑动的结果,但是与实验的定量比较支持了摩擦应力模型。

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