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首页> 外文期刊>International Journal of Fatigue >Bearing damage evolution of a pinned joint in CFRP laminates under repeated tensile loading
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Bearing damage evolution of a pinned joint in CFRP laminates under repeated tensile loading

机译:反复拉伸载荷下CFRP层压板中销钉接头的轴承损坏演变

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摘要

A mechanical pinned joint in the CFRP laminates such as [0/±45/90]_(3S). [90/±45/0]_(3S), [0/±45/90]_(2S) and [90/ ±45/0]_(2S) is loaded statically and cyclically to finally obtain the critical condition for fatigue. It is derived that in the static loading, the critical damage that yields shear matrix crack is kink and the critical condition to the final failure is the appearance of kink in every inner 0° layer and that in the fatigue loading within the moderate load, the critical damage that yields shear matrix crack is almost always kink-like damage along the collapse front and at high load it is rather kink. Next, the non-elastic elongation of a joint at the maximum load subtracted by the one at 10th cycle is focused on and its capability is figured out for various stacking sequences. The critical value U_(NE、F) for the elongation rate change to the final fatigue failure is around 50-65 μm in the present material. The critical condition to the final fatigue failure and corresponding to U_(ME、F) is roughly the appearance of mostly kink-like damage in every inner 0° layer.
机译:CFRP层压板中的机械固定接头,例如[0 /±45/90] _(3S)。静态和周期性地加载[90 /±45/0] _(3S),[0 /±45/90] _(2S)和[90 /±45/0] _(2S),最终获得用于疲劳。可以得出,在静载荷下,产生剪切矩阵裂纹的临界损伤是扭结,而最终破坏的关键条件是在每个内部0°层出现扭结,而在中等载荷下的疲劳载荷则是产生剪切基体裂纹的临界损伤几乎总是沿着坍塌前部呈扭结状,而在高载荷下则相当扭结。接下来,将重点放在关节在第10个周期减去一个最大载荷时的非弹性伸长,并针对各种堆叠顺序确定其能力。在本材料中,伸长率变化至最终疲劳破坏的临界值U_(NE,F)为50-65μm左右。最终疲劳破坏并与U_(ME,F)相对应的临界条件是在每个内部0°层大致出现扭结状损坏。

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