首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >An energy consumption model based on the electron work function and Fermi energy for predicting adhesion and low-load friction between 3d transition metals
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An energy consumption model based on the electron work function and Fermi energy for predicting adhesion and low-load friction between 3d transition metals

机译:基于电子功函数和费米能的能耗模型,用于预测3d过渡金属之间的附着力和低负荷摩擦

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摘要

The friction between 3d transition metals under light loads was investigated for friction prediction and control in micro- and nano-devices. Attempts were made to correlate the light-load friction to surface electron behavior and mechanical properties. An energy consumption friction (ECF) model for light-load contact was proposed to calculate friction coefficients of different metals in contact. This model assumes elastic contact between two metals in contact and the calculation includes adhesion energy and deformation energy when the two metals slide on each other. It was demonstrated that friction coefficients of 3d transition metals in contact with Zn predicted using the model was consistent with experimental observations under low contact loads. The study showed that adhesion dominated friction under light loads.
机译:研究了轻负载下3d过渡金属之间的摩擦,以预测和控制微型和纳米设备中的摩擦。尝试将轻载摩擦力与表面电子行为和机械性能相关联。提出了一种轻载接触的能耗摩擦模型,以计算不同金属在接触中的摩擦系数。该模型假设接触的两种金属之间存在弹性接触,并且计算包括两种金属彼此滑动时的粘附能和变形能。结果表明,利用该模型预测的与锌接触的3d过渡金属的摩擦系数与低接触载荷下的实验观察结果一致。研究表明,在轻负载下,粘附力占主导地位。

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