论文标题
在不同的后处理条件下选择性激光熔体产生的TI-6AL-4V的相位场方法的Notch断裂预测
Notch Fracture predictions using the Phase Field method for Ti-6Al-4V produced by Selective Laser Melting after different post-processing conditions
论文作者
论文摘要
TI-6AL-4V是一种钛合金,具有出色的轻量应用特性,其通过增材制造工艺生产对不同的工业领域具有吸引力。在这项工作中,通过数值研究了机械性能对由选择性激光熔融产生的TI-6AL-4V的缺口断裂性的影响。文献数据用于为材料行为提供信息。将热量的脆性行为与热处理(HT)和热等速度压力(HIP)后处理后的延性脆性行为进行了比较。采用了一个相位框架来捕获两个不同的几何形状的损伤成核和传播,并讨论了断裂能和特征长度的影响。此外,通过在HT和髋关节期间再现非启动大气来分析氧气摄取的影响,这表明氧气会由于形成Alpha病例层的形成,尤其是对于V-Notch几何形状而导致的骨折转移到脆弱的失败。结果表明,可以假定纯粹的弹性行为,以实现的SLM条件,而弹性塑料现象必须针对接受热处理或热等静压压力进行建模。目前的脆性相位场框架与弹性塑构分析相结合,被证明是在不同的后处理途径后缺口断裂的可靠预测工具。
Ti-6Al-4V is a titanium alloy with excellent properties for lightweight applications and its production through Additive Manufacturing processes is attractive for different industrial sectors. In this work, the influence of mechanical properties on the notch fracture resistance of Ti-6Al-4V produced by Selective Laser Melting is numerically investigated. Literature data is used to inform material behaviour. The as-built brittle behaviour is compared to the enhanced ductile response after heat treatment (HT) and hot isostatic pressing (HIP) post-processes. A Phase Field framework is adopted to capture damage nucleation and propagation from two different notch geometries and a discussion on the influence of fracture energy and the characteristic length is carried out. In addition, the influence of oxygen uptake is analysed by reproducing non-inert atmospheres during HT and HIP, showing that oxygen shifts fracture to brittle failures due to the formation of an alpha case layer, especially for the V-notch geometry. Results show that a pure elastic behaviour can be assumed for the as-built SLM condition, whereas elastic-plastic phenomena must be modelled for specimens subjected to heat treatment or hot isostatic pressing. The present brittle Phase Field framework coupled with an elastic-plastic constitutive analysis is demonstrated to be a robust prediction tool for notch fracture after different post-processing routes.