首页> 外文会议>International ESAFORM Conference on Material Forming >Comparison of Johnson-Cook and Modified Johnson-Cook Material Constitutive Models and their Influence on Finite Element Modelling of Ti6Al4V Orthogonal Cutting Process
【24h】

Comparison of Johnson-Cook and Modified Johnson-Cook Material Constitutive Models and their Influence on Finite Element Modelling of Ti6Al4V Orthogonal Cutting Process

机译:约翰逊厨师和改装约翰逊烹饪材料本构模型的比较及其对Ti6Al4V正交切割过程有限元模拟的影响

获取原文

摘要

Titanium alloys such as Ti6Al4V are widely used and are well known as hard-to-machine material. The material behavior that is described by the constitutive equation plays a pivotal role in modeling and simulation of machining process. The Johnson-Cook material model is widely used for analysis of material flow stress, especially for those materials with a flow stress highly influenced by high values of temperature and strain rate. A continuous improvement on constitutive models for accurate prediction of the work material behavior under machining conditions is observed in the literature. The purpose of this study is to show the influence of the constitutive model by comparing and investigating Johnson-Cook constitutive model with calibrated or modified Johnson-Cook constitutive models that take into account temperature dependent hardening factor and its coupled effects between strain and temperature. This paper deals with the simulation of orthogonal cutting process with those constitutive models. The three constitutive models are included in a Lagrangian cutting finite element model to highlight their influence on the results. Cutting forces and chip morphology are mainly used in the comparison of the numerical results and their validation with an experimental reference.
机译:钛合金如Ti6Al4V被广泛使用,并且是众所周知的难以充气的材料。由本构方程描述的材料行为在加工过程的建模和仿真中起着枢转作用。 Johnson-Cook材料模型广泛用于分析材料流量应力,特别是对于那些具有高度温度和应变率高值的流量应力的材料的材料。加工条件下的构模型的连续改进加工材料行为的准确预测在文献中观察到的。本研究的目的是通过使用校准或修改的约翰逊烹饪本构模型进行比较和调查约翰逊康复本构模型来展示本构模型的影响,该模型考虑了温度相关的硬化因子及其应变和温度之间的耦合效果。本文涉及与这些本构模型进行正交切割过程的仿真。三个本构模型包括在拉格朗日切割有限元模型中,以突出它们对结果的影响。切割力和芯片形态主要用于比较数值结果及其对实验参考的验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号