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Advanced interface models for metal forming simulations

机译:用于金属成型仿真的高级界面模型

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摘要

Friction and heat transfer in metal forming simulations are usually restricted by software to be interface constants, a situation not reflected by the mechanics of real manufacturing processes. A better simulation approach is to use a micromechanics based method to estimate friction and heat transfer as evolutionary phenomenon. This paper presents a friction and heat transfer module for hot forging simulations. The friction model is based on a lubricant film thickness calculation using the Reynolds equation, and a calculation of the fractional contact area based on asperity flattening and roughening. Friction is then portioned between asperity and lubricant contacts. Heat transfer coefficients are calculated using a new model for heat conduction through asperity contact patches and lubricant that takes into account the restriction to heat flow at the contacts. The program is implemented as a user routine in a popular commercially available finite element code, DEFORM 2D.
机译:金属成形模拟中的摩擦和热传递通常受软件限制为界面常数,这种情况并未由实际制造过程的力学反映出来。更好的模拟方法是使用基于微力学的方法来估计摩擦和传热作为演化现象。本文提出了一种用于热锻模拟的摩擦和热传递模块。摩擦模型基于使用雷诺方程的润滑膜厚度计算,以及基于粗糙化平整和粗糙化的分数接触面积计算。然后在粗糙和润滑剂接触之间分配摩擦。传热系数是使用一种新的模型来计算的,该模型用于通过凹凸接触片和润滑剂进行导热,并考虑了对接触点热流的限制。该程序以流行的市售有限元代码DEFORM 2D作为用户例程实现。

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