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Compatibility of deformation in Two-Phase Ti-Al alloys: Dependence on microstructure and orientation relationships

机译:两相Ti-Al合金变形的相容性:取决于微观结构和取向关系

摘要

A two-phase alloy of composition Ti-47.5Al-2.5Cr has been studied under two heat-treated conditions in order to obtain different microstructures. These consisted of lamellar and equiaxed distributions of y grains in which the α2 phase was distributed as long lamellae or smaller globules, respectively. The specific rotation relationships between γ/γ and γ/α2 grains have been measured, and these have been used to understand their effect on the compatibility of deformation across adjacent grains. For this, detailed analysis of active slip systems has been carried out by transmission electron microscopy (TEM) observations of deformed samples. A theoretical calculation of a geometric compatibility factor characterizing the best slip transfer across adjacent grains has been used in such a way that it has been possible to deduce the role played by the type of orientation relationship between grains in producing active deformation systems that allow the maximum compatibility of deformation.
机译:为了获得不同的显微组织,已经在两种热处理条件下研究了成分为Ti-47.5Al-2.5Cr的两相合金。它们由y晶粒的层状和等轴分布组成,其中α2相分别以长薄片或较小球状分布。测量了γ/γ和γ/α2晶粒之间的特定旋转关系,并已使用它们来了解它们对相邻晶粒间变形相容性的影响。为此,已通过变形样品的透射电子显微镜(TEM)观察对主动滑移系统进行了详细分析。已经使用了表征在相邻晶粒间最佳滑移传递的几何相容性因子的理论计算,从而可以推断出晶粒间取向关系类型在产生允许最大变形的主动变形系统中所起的作用。变形的相容性。

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