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Cyclic deformation behaviour and dislocation structure of Ti-5 at.% Al single crystals oriented for double prism slip

机译:Ti-5 at。%Al单晶取向双棱镜滑移的循环变形行为与位错结构

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Cyclic deformation behaviour of Ti-5 at. % Al single crystals oriented for [2 (1) over bar(1) over bar0] was investigated in the total (i.e. elastic + plastic) axial strain amplitude from 0.195% to 0.798% at room temperature in air. The crystals displayed an initial cyclic hardening followed by a striking softening period, and then a saturation stage was reached at different cyclic strain amplitudes, except at the lowest of 0.195% at which the initial hardening stage was absent. The cyclic stress-strain curve in Ti-5 at.% Al single crystal with double prism slip contains a clear plateau with a saturation shear stress of 86-89 MPa over the complete range of applied strain amplitudes. (10 (1) over bar0) and (1 (1) over bar 00) double-prism-slip systems can be distinguished from the traces on the (0001) surface by trace analysis with an optical microscope. Slip marking is planar and becomes denser as the cyclic strain amplitude increases. Two groups of planar dislocation lines lying along the (10 (1) over bar0) and (1 (1) over bar 00) prism plane traces were determined from the (0001) reflection by transmission electron microscopy. The typical dislocation configuration is planar dislocation bands parallel to the [0001] direction in a foil with a (10 (1) over bar0) normal: however, long straight dislocations are formed in a (1 (1) over bar 00) foil. Both the width and the spacing of the slip bands decrease with increase in the cyclic strain amplitude in the (10 (1) over bar0) primary slip plane. Finally, the relationship between cyclic plateau behaviour and the saturation dislocation structure of Ti-5 at % Al single crystals is discussed. [References: 31]
机译:Ti-5 at的循环变形行为。在室温下在空气中,总的(即弹性+塑料)轴向应变幅度从0.195%到0.798%,研究了%的[2(1)over bar(1)over bar0]取向的Al单晶。晶体表现出初始的循环硬化,随后是惊人的软化期,然后在不同的循环应变幅度下达到饱和阶段,除了最低的0.195%处不存在初始硬化阶段。在具有双棱柱滑动的Ti-5 at。%Al单晶中,循环应力-应变曲线包含一个清晰的平台,在所施加的应变幅度的整个范围内,其饱和剪切应力为86-89 MPa。双棱镜滑移系统(在bar0上为10(1),在bar 00上为(1(1)))可以通过光学显微镜的痕迹分析与(0001)表面上的痕迹区分开。滑动标记是平面的,并且随着循环应变幅度的增加而变得更密。通过透射电子显微镜从(0001)反射确定了沿(0)上的(10(1)和0)(1)(1)上的两组平面位错线。典型的位错构型是在(0 bar(10 bar)上方)法线的箔中平行于[0001]方向的平面位错带:但是,在(00 bar(00 bar))箔中形成长直位错。滑动带的宽度和间距都随(10(1)over bar0)主滑动平面中循环应变幅度的增加而减小。最后,讨论了循环平稳行为与Ti-5 at Al%单晶的饱和位错结构的关系。 [参考:31]

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