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A study of cyclic fatigue, damage initiation, damage propagation, and fracture of welded titanium alloy plate

机译:焊接钛合金板的循环疲劳,损伤萌生,损伤扩展和断裂的研究

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摘要

In this paper, the influence of test specimen orientation and microstructure on cyclic stress-amplitude controlled fatigue response, damage initiation, damage propagation and fracture behavior of samples taken from a welded plate of titanium alloy is presented and discussed. Test specimens from the chosen alloy were prepared from an as-welded plate of the material with the stress axis both parallel (longitudinal) and perpendicular (transverse) to the deformed (rolling) direction of the plate. The test specimens were cyclically deformed at different values of maximum stress at a constant load ratio of 0.1, and the resultant cycles-to-failure was recorded. The fracture surfaces of the deformed and failed test specimens were examined in a scanning electron microscope to establish the macroscopic fracture mode, the intrinsic features on the fatigue fracture surface and the role of applied stress-microstructural feature interactions in establishing the microscopic mechanisms governing failure.
机译:本文介绍并讨论了试样取向和微观结构对循环应力-振幅控制的疲劳响应,损伤的产生,损伤的传播和断裂行为的影响,这些样品取自钛合金的焊接板。由所选择的合金制成的试样是从该材料的焊接板上制备的,其应力轴与板的变形(滚动)方向平行(纵向)和垂直(横向)。在恒定的载荷比为0.1的情况下,使试样在最大应力的不同值下发生循环变形,并记录由此产生的破坏循环。在扫描电子显微镜下检查变形和失效试样的断裂表面,以建立宏观断裂模式,疲劳断裂表面的固有特征以及所施加的应力-微观结构相互作用在建立控制失效的微观机制中的作用。

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