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Temperature sensitivity of mechanical properties and microstructure during moderate temperature deformation of selective laser melted Ti-6Al-4V alloy

机译:选择性激光熔化Ti-6A-4V合金中等温度变形的力学性能温度敏感性和微观结构

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In this paper, the temperature sensitivity of mechanical properties and microstructure of the additive manufactured Ti-6Al-4V alloy via selective laser melting was investigated in the deformation temperature range between room temperature (RT) and 550 degrees C. Mechanical properties and microstructure were characterized by the means of tensile testing, optical microscope, scanning electron microscope and transmission electron microscope. The results show that the ultimate tensile strength (UTS) of the experimental Ti-6Al-4V alloy exhibits two-stage temperature sensitivity, which is reflected in the fact that the temperature sensitivity of UTS below 500 degrees C is conventional, whereas, the UTS decreases drastically from 834 MPa to 562 MPa as the temperature increases from 500 degrees C to 550 degrees C. Compared with the Ti-6Al-4V alloys prepared by conventional processing methods and other additive manufacturing methods, this experimental Ti-6Al-4V alloy exhibits a competitive strength below 500 degrees C and possesses excellent comprehensive mechanical properties at RT. The analysis shows that the microstructure is composed of alpha' martensite with plenty of twinning structures when the as-built samples are deformed below 500 degrees C. However, above 500 degrees C, martensite gradually transformed into equilibrium alpha phase, the microstructure changed from acicular to lamellar, and beta and alpha(2) (Ti3Al) appear due to the elemental distribution homogenization and martensite decomposition, which account for the dramatic decrease of the tensile strength of the experimental Ti-6Al-4V alloy above 500 degrees C.
机译:在本文中,在室温(RT)和550℃之间的变形温度范围内研究了通过选择性激光熔化的添加剂制造的Ti-6Al-4V合金的机械性能和微观结构的温度敏感性。表征机械性能和微观结构通过拉伸检测,光学显微镜,扫描电子显微镜和透射电子显微镜的装置。结果表明,实验Ti-6Al-4V合金的极限拉伸强度(UTS)表现出两级温度敏感性,这反映在500摄氏度以下的UTS温度敏感度是常规的事实中,而UTS从834MPa至562MPa急剧下降,因为温度从500℃升高到550℃。与通过常规加工方法和其他添加剂制造方法制备的Ti-6Al-4V合金相比,该实验Ti-6Al-4V合金展示竞争强度低于500摄氏度,在室温下具有优异的综合机械性能。该分析表明,当砂浆在500℃下变形时,微结构由大量的孪晶结构组成,并且马氏体逐渐转化为平衡α相,微观结构从针状变为平衡α相位由于元素分布均质和马氏体分解,β和α(2)(2)(2)(2)(2)(2)(Ti3Al),这考虑了500℃的实验Ti-6Al-4V合金的拉伸强度的显着降低。

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