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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Modified material constitutive models for serrated chip formation simulations and experimental validation in machining of titanium alloy Ti-6Al-4V
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Modified material constitutive models for serrated chip formation simulations and experimental validation in machining of titanium alloy Ti-6Al-4V

机译:用于钛合金Ti-6Al-4V的锯齿状切屑形成模拟和实验验证的改进材料本构模型

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摘要

Titanium alloys present superior properties such as high strength-to-weight ratio and resistance to corrosion but, possess poor machinability. In this study, influence of material constitutive models and elastic-viscoplastic finite element formulation on serrated chip formation for modeling of machining Ti-6Al-4V titanium alloy is investigated. Temperature-dependent flow softening based modified material models are proposed where flow softening phenomenon, strain hardening and thermal softening effects and their interactions are coupled. Orthogonal cutting experiments have been conducted with uncoated carbide (WC/Co) and TiAlN coated carbide cutting tools. Temperature-dependent flow softening parameters are validated on a set of experimental data by using measured cutting forces and chip morphology. Finite Element simulations are validated with experimental results at two different rake angles, three different undeformed chip thickness values and two different cutting speeds. The results reveal that material flow stress and finite element formulation greatly affects not only chip formation mechanism but also forces and temperatures predicted. Chip formation process for adiabatic shearing in machining Ti-6Al-4V alloy is successfully simulated using finite element models without implementing damage models.
机译:钛合金具有优越的性能,例如高的重量/重量比和耐腐蚀性,但可加工性差。在这项研究中,研究了材料本构模型和弹性-粘塑性有限元配方对锯齿切屑形成的影响,以加工Ti-6Al-4V钛合金。提出了基于温度的流动软化改性材料模型,其中将流动软化现象,应变硬化和热软化效应及其相互作用耦合在一起。已经使用未涂层的硬质合金(WC / Co)和TiAlN涂层的硬质合金刀具进行了正交切削实验。通过使用测得的切削力和切屑形态,可以在一组实验数据上验证与温度相关的流动软化参数。在两个不同的前角,三个不同的未变形切屑厚度值以及两个不同的切削速度下,通过实验结果验证了有限元模拟。结果表明,材料流动应力和有限元公式不仅极大地影响切屑形成机理,而且还影响预测的力和温度。使用有限元模型成功地模拟了Ti-6Al-4V合金加工中绝热剪切的切屑形成过程,而没有实现损伤模型。

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