Thermo-physical simulation of deformation behavior and microstructure evolution for linear friction welding of near-? titanium alloy

Transactions of Nonferrous Metals Society of China(2023)

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摘要
In order to better understand the interface bonding behavior of linear friction welding (LFW) of a near-beta titanium alloy, the thermo-physical simulation for deformation behavior and microstructure evolution of a near-beta TB2 titanium alloy was carried out by using hot compression tests with specially designed hat-shaped specimens under different compression displacements, temperatures and strain rates which were decoupled in the simulation process. The results show that the peak shear stress in bonding zone (BZ) during hot compression increases with decreasing deformation temperature and increasing strain rate, and the width of BZ decreases with increasing deformation temperature and strain rate. The margin of BZ has largely deformed grains, and the center of BZ has fine equaxied recrystallized grains. The mechanism of the joint is continuous dynamic recrystallization (CDRX) and the degree of CDRX in BZ increases with increasing compression displacement, deformation temperature and strain rate. In addition, {112}[111] texture forms in the margin of BZ, and {110}[001] texture forms in the center of BZ.
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关键词
线性摩擦焊,TB2近β钛合金,热物理模拟,变形行为,组织演变,织构演变,linear friction welding,TB2 near-β titanium alloy,thermo-physical simulation,deformation behavior,microstructure evolution,microtexture evolution
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