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Determination of Lubricant Bulk Modulus in Metal Forming by Means of a Simple Laboratory Test and Inverse FEM Analysis

机译:用简单的实验室试验和逆有限元分析确定金属成形中的润滑剂体积模量

摘要

The influence of workpiece surface topography on friction, lubrication and final surface equality in metal forming operations is well known and has been pointed out by many researchers.This is especially the case when liquid lubricants are applied in situations, where increased surface roughness facilitates the lubricant entrainment, pressurization and possible escape by micro-plasto-hydrodynamic lubrication. In order to model these mechanisms an important lubricant propertyd esignated as the bulk modulus is needed for characterizing the compressibility of the lubricant. The present paper describes a simple, practical test to determine the bulk modulus. Combination of the experimental upsetting of an axisymmetric metal workpiece containing a truncated conical surface pocket with an inverse finite element analysis of the test allows determining the lubricant bulk modulus. The finite element analysis couples lubricant flow with plastic deformation of the metal directly. Results show that the proposed procedure allows determining an approximate bulk modulus for the lubricant.
机译:工件表面形貌对金属成型操作中的摩擦,润滑和最终表面均等性的影响是众所周知的,并已被许多研究人员指出,特别是在表面粗糙度增加有助于润滑的情况下使用液体润滑剂的情况微塑性流体动力润滑导致夹带,加压并可能逸出。为了对这些机理进行建模,需要表征为体积模量的重要润滑剂来表征润滑剂的可压缩性。本文介绍了一种确定体积模量的简单实用的测试方法。包含截头圆锥形表面凹坑的轴对称金属工件的实验up粗与测试的逆有限元分析相结合,可以确定润滑剂的体积模量。有限元分析将润滑剂流与金属的塑性变形直接耦合。结果表明,提出的程序可以确定润滑剂的近似体积模量。

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