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Finite Element Analysis of Normal Contact Stiffness between Real Rough Surfaces Based on ANSYS

机译:基于ANSYS的真实粗糙表面之间法向接触刚度的有限元分析

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The data of real rough surface are captured by using the morphology measuring instrument LEXT OLS4000. Contraposing the scarcities that no rough surface produced with either statistical model or fractal model can represent the real surface and reflect the surface stress, the real rough surface model is built based on the idea of reverse engineering. ANSYS is employed in research on the normal contact between the real rough surfaces, which is predigested with the contact between a rigid plane and a rough surface. The study shows that hysteresis phenomenon presents itself between the normal loading curve and the normal unloading curve as a result of some asperities' plastic deformation, which also brings on residual press-stress benefits for material properties on the rough surface after unloading completely and the residual stress varies with the amount of load at the start of unloading. Normal contact stiffness increases first and then decreases along with the normal load, and is also affected by surface topography and the residual surface stress of the micro-body.
机译:使用形态测量仪器LEXT OLS4000捕获真实的粗糙表面数据。与统计模型或分形模型所产生的粗糙表面都无法代表真实表面并反映表面应力的稀缺性相反,真实粗糙表面模型是基于逆向工程的思想构建的。 ANSYS用于研究实际粗糙表面之间的法向接触,而该接触是通过刚性平面和粗糙表面之间的接触来预先消化的。研究表明,由于一些凹凸不平的塑性变形,在正常加载曲线和正常卸载曲线之间会出现滞后现象,这也给完全卸载后的粗糙表面上的材料性能带来了残余压力应力的好处,应力随卸载开始时的负载量而变化。法向接触刚度首先增加,然后随法向载荷而减小,并且还受表面形貌和微体的残余表面应力影响。

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