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Computational simulation of the relaxation of local stresses due to foreign object damage under cyclic loading

机译:循环载荷作用下异物损伤引起的局部应力松弛的计算模拟

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摘要

In this study, the phenomenon of residual stress relaxation from foreign object damage (FOD) is numerically simulated using a hybrid explicit-implicit finite-element method. The effects of cycle fatigue loadings on stress relaxation were studied. FOD is first simulated by firing a 3 mm cube impacting onto a plate made of titanium alloy Ti-6Al-4V at 200 m/s. The FOD impact produces two distinct stress concentrations: one is compressive directly beneath the impact site; the other is tensile around the outer edge of the impact. The plate was then assumed to be subjected to a cyclic fatigue loading. The stress relaxation was investigated under a range of stress ratios and maximum applied stresses. Two different material models were considered for the simulations, namely an elastic-perfectly plastic model and a non-linear kinematic hardening model.
机译:在这项研究中,使用混合显式-隐式有限元方法对来自异物损坏(FOD)的残余应力松弛现象进行了数值模拟。研究了循环疲劳载荷对应力松弛的影响。首先通过以200 m / s的速度将3 mm立方体撞击到由钛合金Ti-6Al-4V制成的板上烧制来模拟FOD。 FOD冲击产生两种不同的应力集中:一种是在冲击部位正下方压缩。另一个是冲击外缘周围的张力。然后假定该板承受循环疲劳载荷。在一定的应力比和最大施加应力下研究了应力松弛。模拟中考虑了两种不同的材料模型,即弹性完美塑性模型和非线性运动硬化模型。

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