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Cyclic deformation behaviour and saturation bundle structure in Ti-5 at.% Al single crystals deforming by single prism slip

机译:Ti-5 at。%Al单晶由于单棱镜滑移变形的循环变形行为和饱和束结构

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Cyclic deformation behaviour and dislocation structure of Ti-5 at.% Al single crystals oriented for (1100) single prism slip have been studied. Ti-5 at.% Al tested under total strain control (△ε_t/2) displays an initial slight cyclic hardening followed by a striking softening period, and then a saturation stage is reached in the range 0.2-1.0%, except at a very low strain amplitude (0.2%) at which the initial hardening is replaced by an immediate cyclic softening. The saturation stages occupy most of the lifetime. The cyclic stress-strain curve (CSSC) contains a clear stress plateau region within the tested plastic shear strain amplitudes (0.039-1.68%). The plateau shear stress was about 85 MPa. (1100) single prism slip was observed on the surface of the fatigued specimen using an optical microscope, and became denser as the cyclic strain amplitude or cyclic number increased. The typical dislocation structure in the primary slip plane is the saturation bundle structure (SBS), which consists mainly of dense screw dislocations parallel to the [1120] direction and dislocation bundles nearly perpendicular to the [1120] direction, that is closely parallel to the [0001] direction. Some dislocation slabs were observed in the (0001) foils. The dislocation structure in Ti-5 at.% Al single crystals evolves from the elongated screw dislocation lines along [1120] during the stage of the first cyclic hardening to the parallel screw dislocation lines together with the dislocation bundles nearly along [0001] in the stage of cyclic softening, and a well-developed SBS is finally formed in the stage of saturation. The relationship between the cyclic plateau behaviour and the saturated bundle structure of Ti-5 at.% Al single crystals is discussed.
机译:研究了取向为(1100)单棱镜滑移的Ti-5 at。%Al单晶的循环变形行为和位错结构。在总应变控制下测试的Ti-5 at。%Al(△ε_t/ 2)表现出初期的轻微循环硬化,然后有明显的软化期,然后达到0.2-1.0%的饱和期,除了非常高的低应变幅度(0.2%),初始硬化被立即循环软化所取代。饱和阶段占据了生命的大部分时间。循环应力-应变曲线(CSSC)在测试的塑性剪切应变幅度(0.039-1.68%)内包含一个清晰的应力平稳区。平台剪切应力为约85MPa。 (1100)使用光学显微镜在疲劳试样的表面上观察到单棱镜滑移,并且随着循环应变幅度或循环数的增加,单棱镜滑移变得更致密。主滑动面中的典型位错结构是饱和束结构(SBS),其主要由与[1120]方向平行的致密螺丝位错和与[1120]方向几乎垂直的紧密位错束组成,即[0001]方向。在(0001)箔中观察到一些位错平板。 Ti-5 at。%Al单晶中的位错结构从第一次循环硬化阶段沿[1120]的细长螺杆位错线演变成平行的螺杆位错线,以及几乎沿着[0001]的位错束。在循环软化阶段,最终在饱和阶段形成了成熟的SBS。讨论了Ti-5 at。%Al单晶的循环平稳行为与饱和束结构之间的关系。

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