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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Evaluation of Ductile Fracture Models in Finite Element Simulation of Metal Cutting Processes
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Evaluation of Ductile Fracture Models in Finite Element Simulation of Metal Cutting Processes

机译:金属切削过程有限元模拟中的韧性断裂模型评估

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摘要

In this paper, a systematic evaluation of six ductile fracture models is conducted to identify the most suitable fracture criterion for metal cutting processes. Six fracture models are evaluated in this study, including constant fracture strain, Johnson-Cook, Johnson-Cook coupling criterion, Wilkins, modified Cockcroft-Latham, and Bao-Wierzbicki fracture criterion. By means of abaqus built-in commands and a user material subroutine (VUMAT), these fracture models are implemented into a finite element (FE) model of orthogonal cutting processes in abaqus/Explicit platform. The local parameters (stress, strain, fracture factor, and velocity fields) and global variables (chip morphology, cutting forces, temperature, shear angle, and machined surface integrity) are evaluated. The numerical simulation results are examined by comparing to experimental results of 2024-T3 aluminum alloy published in the open literature. Based on the results, it is found that damage evolution should be considered in cutting process FE simulation. Moreover, the B-W fracture model with consideration of rate dependency, temperature effect and damage evolution gives the best prediction of chip removal behavior of ductile metals.
机译:在本文中,对六个延性断裂模型进行了系统评估,以确定最适合金属切削过程的断裂准则。本研究评估了六个断裂模型,包括恒定断裂应变,Johnson-Cook,Johnson-Cook耦合准则,Wilkins,改进的Cockcroft-Latham和Bao-Wierzbicki断裂准则。通过abaqus内置命令和用户材料子例程(VUMAT),这些断裂模型在abaqus / Explicit平台中被实现为正交切削过程的有限元(FE)模型。评估局部参数(应力,应变,断裂因子和速度场)和整体变量(切屑形态,切削力,温度,剪切角和机械加工表面完整性)。通过与公开文献中公布的2024-T3铝合金的实验结果进行比较,检查了数值模拟结果。根据结果​​,发现在切削过程有限元模拟中应考虑损伤的发展。此外,考虑到速率依赖性,温度效应和损伤演化,B-W断裂模型可以最好地预测韧性金属的切屑去除行为。

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