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TC18钛合金锻造过程细晶亮带缺陷的形成机理研究
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1.西北有色金属研究院;2.西部超导材料科技股份有限公司;3.江苏理工学院

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国防科工局军品配套项目(JPPT-135-HX-010-1)、国家自然科学基金(51905233)及常州市市属项目(CQ20210088)


Study on the Formation Mechanism of Bright Band during Forging of TC18 Alloy
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Northwest Institute for Non-ferrous Metal Research,Xi’an

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    摘要:

    针对TC18钛合金锻坯中的细晶亮带缺陷,本文采用OM、SEM和EBSD等多种表征方法对其宏微观组织形貌、成分和取向特征等进行了系统分析,并结合Gleeble热压缩研究了细晶亮带缺陷的形成机理。研究表明:TC18钛合金锻坯心部的亮带缺陷对应晶粒尺寸在100mm左右的单个β立方晶粒;锻造过程中由于变形升温导致锻坯心部和边部区域的温度、变形量等存在显著差异,是造成组织不均匀性的重要原因;大尺寸β立方晶粒是由于沿正交方向反复压缩变形,导致锻坯心部<100>织构不断强化,相近取向的<100>晶粒合并形成的;通过退火处理和对角拔长、倒八方等工艺,可以有效减小和避免细晶亮带缺陷。

    Abstract:

    A systematical analysis of the macro/microstructure, composition, and crystal orientation of the bright band were conducted using OM, SEM and EBSD methods, as well as Gleeble tests, to study the formation mechanism of bright band in forged TC18 alloy. The results show that: the bright bands in the center of TC18 alloy forgings correspond to β cube-grains in size of around 100mm; During the forging process, an inhomogeneous distribution of temperature and equivalent strain in the forging stocks is caused by adiabatic heating, which is an important reason for the microstructural heterogeneity; The large β cube-grains are formed due to the repeated compression along the orthogonal direction, which results in continuous strengthening of the <100> texture in the center of the forging stocks, and the merging of <100> grains with similar orientations; Through annealing treatment and compression along diagonal direction, it is possible to effectively reduce and avoid bright band defects in TC18 alloy.

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刘向宏,王涛,任晓龙,付杰,朱彬,程亮,王凯旋. TC18钛合金锻造过程细晶亮带缺陷的形成机理研究[J].稀有金属材料与工程,,().[Xianghong Liu, Tao Wang, Xiaolong Ren, Jie Fu, Bin Zhu, Liang Cheng, Kaixuan Wang. Study on the Formation Mechanism of Bright Band during Forging of TC18 Alloy[J]. Rare Metal Materials and Engineering,,().]
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  • 收稿日期:2024-12-11
  • 最后修改日期:2025-02-23
  • 录用日期:2025-03-03
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