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The mechanism of stick-slip phenomenon during friction process at low temperature environment

机译:低温环境下摩擦过程中的粘滑现象机理

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摘要

When a material is immersed in a low-temperature medium, e.g., liquid nitrogen, its Young’s modulus and surface roughness will change as the temperature of the material decreases as a result of different friction behaviors. In this study, a high-precision friction test device was constructed to perform a detailed comparative study on the friction properties of a pure copper strand immersed in liquid nitrogen, air, and water. The force and displacement resolutions of the experimental system were as high as 0.01mN and 0.03μm, respectively. It was found that the stick-slip phenomenon in the liquid nitrogen was significant, while the slope of the stick-slip was larger than those observed in the air and water media. These experimental results were simulated using a spring-slider model that considered the influence of hydrophilicity on surface roughness. The roughness was shown to change the amplitude of the friction curve with time, while the slope of the stick-slip was dominated by the modulus’ magnitude variety.
机译:当材料浸入低温介质(例如液氮)中时,由于不同的摩擦行为,其杨氏模量和表面粗糙度将随着材料温度的降低而变化。在这项研究中,构造了一个高精度的摩擦测试装置,以对浸入液氮,空气和水中的纯铜线材的摩擦性能进行详细的比较研究。实验系统的力和位移分辨率分别高达0.01mN和0.03μm。发现液氮中的粘滑现象是显着的,而粘滑的斜率比在空气和水介质中观察到的大。这些实验结果是使用考虑了亲水性对表面粗糙度影响的弹簧滑块模型进行模拟的。结果表明,粗糙度会随着时间改变摩擦曲线的幅度,而粘滑的斜率则由模量的大小变化决定。

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