Process Modelling and Control in Metal Forming

A. Kumar, R. Grandhi, A. Chaudhary, D. Irwin
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引用次数: 4

Abstract

In this paper, the state space modelling of metal forming and off-line design of process variables are addressed. A reduced order approach is used to develop state equations for the non-linear finite element model of deformation processes. The influence of optimally designed process variables is studied using the variance in strain-rates and input power as performance measures. The state variables include the forging die contact nodal velocities and nodal velocities of selected elements within the billet. The control input is the ram velocity which is found using the Linear Quadratic Regulator (LQR) theory to maintain desired strain-rates in the selected finite elements. The condensation techniques required to build the state space model and the results obtained from controlling various bulk deformation processes are discussed with examples.
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金属成形过程建模与控制
本文研究了金属成形过程的状态空间建模和过程变量的离线设计。采用降阶方法建立了变形过程非线性有限元模型的状态方程。以应变率方差和输入功率作为性能指标,研究了优化设计过程变量的影响。状态变量包括锻模接触节点速度和坯料内选定元素的节点速度。控制输入是使用线性二次调节器(LQR)理论在选定的有限元中保持所需的应变率而发现的冲压速度。通过实例讨论了建立状态空间模型所需的凝结技术以及控制各种体变形过程所得到的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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