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A STUDY OF THE AVERAGE REAL CONTACT PRESSURE BETWEEN ROUGH SURFACES

机译:粗糙表面平均真正接触压力的研究

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It is well known that the friction, wear, fatigue life, and contact resistance (electrical and thermal) are dependent on the contact between the rough profiles of the surfaces. Several different techniques have been used to model this contact (fractal, wavelet, statistical, multiscale, and deterministic methods). Several of these methods have found that the relationship between the real area of contact and load is linear. This suggests that there is a constant contact pressure between two surfaces (the average real contact pressure). Somewhat surprisingly, several works have found that this pressure may be greater than traditional hardness, even when the contact is heavily loaded and the contacts are deforming plastically. This mechanism is often called the asperity persistence. The current work uses a recent multiscale contact model and other theories to explain this mechanism and to help predict the average real contact pressure, especially during heavily loaded contacts.
机译:众所周知,摩擦,磨损,疲劳寿命和接触电阻(电气和热)取决于表面的粗糙轮廓之间的接触。已经使用了几种不同的技术来模拟这种接触(分形,小波,统计,多尺度和确定性方法)。这些方法中的几种方法发现,接触和负载的真实区域之间的关系是线性的。这表明两个表面(平均真正接触压力)之间存在恒定的接触压力。有些令人惊讶的是,即使当接触被大量装载并且触点是塑性而变形的,也发现这种压力可能大于传统硬度。这种机制通常称为粗糙持久性。目前的工作采用了最近的多尺度接触型号和其他理论来解释该机制,并帮助预测平均真正的接触压力,特别是在大量装载的触点期间。

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