首页|双态组织β凝固型γ-TiAl合金的定量表征

双态组织β凝固型γ-TiAl合金的定量表征

Quantitative characterization of β-solidifying γ-TiAl alloy with duplex structure

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显微组织调控对于金属材料的精确塑性成形极为必要,尤其是双态组织γ-TiAl合金.基于体视学原理,双态组织γ-TiAl合金高温塑性变形后的显微组织分为β0晶粒、残余α2/γ片层团、α2晶粒和γ晶粒4类结构单元.结果表明:随着变形程度的增大,γ-TiAl合金高温塑性变形后β0晶粒的体积分数略微增大,残余α2/γ片层团和α2晶粒的体积分数逐渐减小,而γ晶粒的体积分数逐渐从64.39%增大至78.47%.基于定量结果,深入研究α→γ相变,证实高温塑性变形促进α→γ相变.第一种α→γ相变类似于台阶控制生长机制,残余α2/γ片层团通过该种机制逐渐转变为γ晶粒;第二种α→γ相变为α/γ相界面迁移机制.
For precise plastic deformation, microstructure control is essential especially for β-solidifying γ-TiAl alloy with duplex structure. Based on stereology, the microstructure of isothermally compressed γ-TiAl alloy was divided into β0 grains, remnant α2/γ lamellar colonies, α2 and γ grains. The results show that the volume fraction of β0 grains slightly increases in the isothermally compressed γ-TiAl alloy with the increase of height reduction. Meanwhile, the volume fractions of remnant α2/γ lamellar colonies and α2 grains decrease. However, the volume fraction of γ grains increases from 64.39% to 78.47%. According to the quantitative results, the α→γ phase transformation was investigated in-depth, and it is found that isothermal compression accelerates the α→γ phase transformation. The first α→γ phase transformation is similar to ledge-controlled transformation, through which remnant α2/γ lamellar colonies finally convert into γ grains in isothermal compression. The second is achieved by α/γ phase interface immigration.

TiAl alloystereologydigital image analysismicrostructurephase transformation

胥润润、李淼泉

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西北工业大学 材料学院,西安 710072

TiAl合金 体视学 数字图像分析 显微组织 相变

519754783102019MS0403

2021

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCDCSCDSCI
影响因子:1.183
ISSN:1003-6326
年,卷(期):2021.31(7)
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