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Adaptive Numerical Simulation of Machining Process Involving Chip Creation

机译:涉及芯片创建的加工过程的自适应数值模拟

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摘要

Orthogonal machining is one of the most complex metal forming operations involving a diversity of physical phenomena, such as large deformation, complicated contact/friction condition, thermo-mechanical coupling and chip separation mechanisms. In this study, numerical simulation of this class of problems has been performed using advanced adaptive re-meshing procedures for inelastic problems, making it possible to capture shear band localization of realistic orthogonal machining. Blanking is another complex metal forming process which needs adaptive re-meshing procedure to avoid large finite element distortion. Both orthogonal machining and blanking have been numerically simulated and discussed.
机译:正交加工是最复杂的金属成型操作之一,涉及多种物理现象,例如大变形,复杂的接触/摩擦条件,热机械耦合和切屑分离机制。在这项研究中,已经使用非弹性问题的高级自适应重新网格化程序对此类问题进行了数值模拟,从而有可能捕获现实正交加工中的剪切带局部化。落料是另一种复杂的金属成型工艺,需要自适应的重新网格化程序以避免较大的有限元变形。正交加工和落料均已进行了数值模拟和讨论。

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