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The effect of active and passive third body film in friction of carbons Part 1: friction and wear performance at various scales

机译:活性和被动第三体膜在碳摩擦摩擦中的影响:各种尺度的摩擦和磨损性能

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In the friction of carbon materials, it has been found that the coefficient of friction is dependent on the total energy absorbed by a given mass and the rate at which the energy is dissipated. Usually, low energy absorption and low rate of energy dissipation produces relatively high coefficients of friction. Conversely, high energy absorption and high rate of energy dissipation leads to lower coefficients of friction. In addition, testing at low energy input in a moist environment produces a low coefficient of friction, which may increase significantly during the course of the test. Similar friction transitions occur during high energy tests. However, these do not appear related to moisture effects. In some higher velocity tests, very high local temperatures were detected even though the bulk temperature rise is relatively low. The scope of this paper focuses on the transient changes of friction coefficient and the hot spotting phenomena. The tests were conducted using both pin-on-disk and disk-on-disk setups. Although test scales were different in both tests, a very good match in results was found.
机译:在碳材料的摩擦中,已经发现,摩擦系数取决于通过给定质量吸收的总能量和能量耗散的速率。通常,低能量吸收和低的能量耗散率产生相对高的摩擦系数。相反,高能量吸收和高能量耗散率导致较低的摩擦系数。此外,在潮湿环境中的低能量输入中测试产生低摩擦系数,在测试过程中可能会显着增加。在高能量测试期间发生类似的摩擦转变。然而,这些与水分效应无关。在一些更高的速度测试中,即使散装温度升高相对较低,也检测到非常高的局部温度。本文的范围侧重于摩擦系数和热点现象的瞬态变化。使用引脚磁盘和磁盘上设置进行测试。虽然两个测试中的测试尺度不同,但发现结果非常好。

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