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Influences of thermal exposure on the microstructural evolution and subsequent mechanical properties of a near-α high temperature titanium alloy

机译:热暴露对近α高温钛合金组织演变及后续力学性能的影响

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摘要

The microstructural evolution with respect to the precipitation of silicides and ordered α_2 phase in near-α TA29 Ti alloy during thermal exposure at 650 ℃ for different time has been investigated in this work, and the subsequent mechanical properties have been evaluated by tensile and fracture toughness tests. The results indicated that the (Ti, Zr)_6Si_3 silicides firstly precipitated in residual p films, and then began to precipitate within α plates. A large number of fine α_2 precipitates showing sphercial shape concurrently formed in the α plates at a short time. The ordered α_2 precipitates asymmetrically grew up along different crystallographic directions with increasing exposure time, leading to their spherical shape change to ellipsoidal shape and finally olive shape, in which the long axis was perpendicular to [0001]_α as viewed along [2110]_α direction. The number density of ordered α_2 was obviously decreased after 1000 h due to Ostwald ripening. The precipitation of silicides and ordered α_2 phase improved the tensile strength but deteriorated the ductility and fracture toughness, whereas the strength was decreased and the room temperature elongation was recovered slightly after long-term exposure because of α_2 ripening.
机译:研究了在近650℃的热暴露下不同时间下近αTA29 Ti合金中硅化物和有序α_2相的硅化物沉淀的微观结构演变,并通过拉伸和断裂韧性评估了其后续的力学性能。测试。结果表明,(Ti,Zr)_6Si_3硅化物首先在残留的p膜中析出,然后开始在α板中析出。在短时间内在α板上同时形成大量呈球形的细微α_2沉淀。随着曝光时间的增加,有序的α_2析出物沿不同的晶体学方向不对称地生长,导致其球形改变为椭圆形,最后变成橄榄色,长​​轴垂直于[2110]_α方向,垂直于[0001]_α 。由于奥斯特瓦尔德熟化,有序α_2的数量密度在1000小时后明显降低。硅化物的沉淀和有序的α_2相提高了抗拉强度,但延展性和断裂韧性却有所下降,而强度下降,并且由于α_2的熟化,长期暴露后强度略有恢复。

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  • 来源
    《Materials Science and Engineering》 |2020年第13期|138934.1-138934.7|共7页
  • 作者

  • 作者单位

    Key Laboratory of Aerospace Advanced Materials and Performance of Ministry of Education School of Materials Science and Engineering Beihang University Beijing 100191 China AECC Beijing Institute of Aeronautical Materials Beijing 100095 China;

    AECC Beijing Institute of Aeronautical Materials Beijing 100095 China;

    Key Laboratory of Aerospace Advanced Materials and Performance of Ministry of Education School of Materials Science and Engineering Beihang University Beijing 100191 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Titanium alloy; Thermal exposure; α_2 precipitates; Silicide; Mechanical properties;

    机译:钛合金热暴露;α_2沉淀;硅化物;机械性能;

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