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Abnormal deformation behavior in Polysynthetically-twinned TiAl crystals with A and N orientations-an AFM study

机译:具有A和N定向的多晶体 - 孪生Tial晶体中的异常变形行为 - AFM研究

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Polysynthetically-twinned TiAl crystals were deformed by compression with loading axis parallel and perpendicular to the lamellar interfaces. The deformation structures on the free surfaces were scanned using a dimension AFM with scan directions parallel and perpendicular to the lamellar interfaces. Abnormal deformation behaviors were observed to occur in both orientations. When the compression axis is parallel to the lamellar interfaces, the gamma and alpha lamellae deform primarily by shear in planes inclined with the lamellar interface, while the shear vectors lie in the interface. However, in-plane shear, shear in slip planes parallel to the lamellar interfaces, also occurs along the lamellar interfaces. When the loading axis is perpendicular to the lamellar interface, in-plane shear was found to be dominant at the beginning stage of plastic deformation and contributes more to the macroscopic strain. These behaviors are controversial to the Schmid's Law since the applied resolved shear stress for these deformation systems is zero. The abnormal phenomenon was explained by the large coherency stresses along the lamellar interfaces.
机译:通过通过平行和垂直于层状接口的装载轴压缩通过压缩而变形多晶体 - 孪晶的Tial晶体。使用尺寸AFM扫描自由表面上的变形结构,尺寸AFM平行扫描方向并垂直于层状界面。观察到两种方向发生异常变形行为。当压缩轴与层状界面平行时,伽马和α薄片主要通过与层状接口倾斜的平面中的剪切来变形,而剪切矢量位于界面中。然而,在平行于层状界面的滑架中剪切平面的平面剪切,也沿着层状界面发生。当装载轴垂直于层状界面时,发现面内剪切在塑性变形的开始阶段处于主导,并且有助于宏观菌株。由于这些变形系统的施加的分辨剪切应力为零,因此这些行为是争议的。通过沿着层状界面的大的相干胁迫解释了异常现象。

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