Effect of microstructure on the tensile properties and impact toughness of TC21G titanium alloy

材料科学 等轴晶 微观结构 层状结构 合金 退火(玻璃) 极限抗拉强度 针状的 韧性 冶金 钛合金 体积分数 复合材料 晶界 粒度
作者
Xinyu Zhang,Weiju Jia,Xiaonan Mao
出处
期刊:Materials Characterization [Elsevier BV]
卷期号:185: 111752-111752 被引量:17
标识
DOI:10.1016/j.matchar.2022.111752
摘要

Based on TC21 alloy, the modified TC21G alloy with excellent comprehensive mechanical properties was designed. The influences of the double annealing process on microstructure and mechanical properties of TC21G alloy were investigated. The quantitative relationship between microstructure parameters, strength and impact toughness was established. Microstructural evolution with different double annealing conditions was characterized using SEM, TEM and EBSD. Results show that with reducing the cooling rate of first annealing, the size and content of the equiaxed and lamellar α phase both increased, and the width of the secondary α phase was increased, whereas the content of the fine acicular secondary α phase was decreased. Meanwhile, the fraction of high angle grain boundaries increased with reducing the cooling rate. The fine acicular secondary α phase was beneficial to improve the strength of TC21G alloy. Microstructural parameters of the equiaxed and lamellar α phase play a dominant role in improving ductility with reducing the cooling rate. Moreover, the crisscross lamellar and equiaxed α phase, the fraction of high angle grain boundaries are the main factors affecting impact toughness.
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