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Effects of load sequence and block loading on the fatigue response fiber-reinforced composites

机译:载荷顺序和块载荷对疲劳响应性纤维增强复合材料的影响

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摘要

The vast majority of fatigue loading experiments are constant-amplitude tests, although this type of fatigue loading is hardly present in real in-service fatigue loading conditions. However, due to the expensive and time-consuming nature of variable-amplitude experiments, their effect is often assessed by performing block loading experiments with various low-high and high-low sequences. In this article, the effects of load sequence and block loading on the fatigue damage development in fiber-reinforced polymer composites is investigated. First it is shown that the opinions in the open literature on the damaging effect of low-high and high-low load sequences are divided. Next the effect of block loading on the bending fatigue behavior of composites is experimentally tested and numerically simulated with a newly developed fatigue damage model. Finally, numerical simulations show that the transitions from low to high stress levels are the most damaging, and that the number of transitions and their relative importance in particular determine which block loading sequence (low-high or high-low) is the most devastating.
机译:绝大多数疲劳载荷实验都是恒定振幅测试,尽管这种类型的疲劳载荷在实际使用中几乎不存在。然而,由于可变振幅实验的昂贵和费时的性质,经常通过对各种低-高和高-低序列进行块加载实验来评估其效果。在本文中,研究了载荷顺序和嵌段载荷对纤维增强聚合物复合材料疲劳损伤发展的影响。首先,表明公开文献中关于低-高和高-低负荷序列的破坏效果的观点是分歧的。接下来,使用新开发的疲劳损伤模型对块载荷对复合材料弯曲疲劳行为的影响进行了实验测试和数值模拟。最后,数值模拟表明,从低应力水平到高应力水平的过渡破坏性最大,并且过渡的数量及其相对重要性尤其决定了哪个块加载顺序(低-高或高-低)是最具破坏性的。

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