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Effect of Asperity Plastic Deformation on the Interface Friction in Metal Forming

机译:粗糙度塑性变形对金属成形界面摩擦的影响

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This paper investigates the effect of the plastic deformation of surface asperities on the interface friction in metal forming involving multi-scale deformation with random surface topography. The equivalent interfacial layer (EIL) introduced by the authors previously was used to integrate the Reynolds equation with the plastic deformation of the randomly distributed surface asperities. The contributions of solid-lubricant interaction, lubricant viscosity and microscopic deformation were therefore included efficiently in a conventional macroscopic finite element analysis. The merit of the method was demonstrated by an investigation into the metal strip rolling, whose friction, lubrication and pressure distribution are otherwise hard to be characterized accurately.
机译:本文研究了表面粗糙度塑性变形对涉及随机表面形貌的多尺度变形的金属成形界面摩擦的影响。 作者之前引入的等效界面层(EIL)用于将雷诺等式与随机分布的表面粗糙的塑性变形集成。 因此,在常规的宏观有限元分析中有效地包括固体润滑剂相互作用,润滑剂粘度和微观变形的贡献。 通过研究金属条轧制的研究证明了该方法的优点,其摩擦力,润滑和压力分布是难以精确表征的。

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