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首页> 外文期刊>Journal of Applied Physics >Effect of phase transformations on laser forming of Ti-6Al-4V alloy
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Effect of phase transformations on laser forming of Ti-6Al-4V alloy

机译:相变对Ti-6Al-4V合金激光成形的影响

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摘要

In laser forming, phase transformations in the heat-affected zone take place under steep thermal cycles, and have a significant effect on the flow behavior of Ti-6Al-4V alloy and the laser-forming process. The flow-stress data of a material are generally provided as only dependent on strain, strain rate, and temperature, while phase transformations are determined by both temperature and temperature history. Therefore, effect of phase transformations on the flow behavior of materials in thermomechanical processing is not given necessary considerations. In the present work, both the α → β transformation during heating and the decomposition of β phase, producing martensite α′ or lamellae α dependent on cooling rate, are numerically investigated. The spatial distribution of volume fractions of phases is obtained by coupling thermal and phase transformation kinetic modeling. Consequently, the flow stress of Ti-6Al-4V alloy is calculated by the rule of mixtures based on the phase ratio and the flow stress of each single phase, which is also a function of temperature, strain, and strain rate. According to the obtained flow-stress data, the laser-forming process of Ti-6Al-4V alloy is modeled by finite element method, and the deformation is predicted. A series of carefully controlled experiments are conducted to validate the theoretically predicted results.
机译:在激光成形中,热影响区中的相变在陡峭的热循环下发生,并且对Ti-6Al-4V合金的流动行为和激光成形过程产生重大影响。通常仅根据应变,应变速率和温度来提供材料的流变应力数据,而由温度和温度历史记录确定相变。因此,没有必要考虑相变对材料在热机械加工中的流动行为的影响。在目前的工作中,对加热过程中的α→β相变和β相的分解(取决于冷却速率)产生马氏体α'或片状α进行了数值研究。相的体积分数的空间分布是通过耦合热和相变动力学模型获得的。因此,Ti-6Al-4V合金的流变应力是根据相比和每个单相的流变应力通过混合规则计算的,这也是温度,应变和应变率的函数。根据获得的流动应力数据,采用有限元方法对Ti-6Al-4V合金的激光成形过程进行建模,并预测其变形。进行了一系列精心控制的实验,以验证理论上的预测结果。

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