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首页> 外文期刊>Engineering Fracture Mechanics >Fatigue damage modelling of adhesively bonded joints under variable amplitude loading using a cohesive zone model
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Fatigue damage modelling of adhesively bonded joints under variable amplitude loading using a cohesive zone model

机译:使用内聚区模型在可变振幅载荷下胶接接头的疲劳损伤建模

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摘要

In this paper, the fatigue response of adhesively bonded joints under variable amplitude (VA) cyclic loading was predicted using a numerical model. The adhesive layer was modelled using the cohesive zone model with a bi-linear traction-separation response. A damage model, incorporating fatigue load ratio effects, was utilised in conjunction with the cohesive zone model to simulate the detrimental influence of VA fatigue loading. This model was validated against published experimental results obtained from fatigue tests of adhesively bonded single lap joints subjected to various types of VA fatigue loading spectra. This model successfully predicted the damaging effect of VA fatigue loading on the adhesively bonded joints and was generally found to be a significant improvement on the other damage models considered.
机译:在本文中,使用数值模型预测了在可变振幅(VA)循环载荷下胶接接头的疲劳响应。使用具有双线性牵引-分离响应的内聚区模型对粘合剂层进行建模。结合疲劳载荷比效应的损伤模型与内聚区模型结合使用,以模拟VA疲劳载荷的有害影响。该模型已针对已发表的实验结果进行了验证,该结果是通过对承受各种VA疲劳载荷谱的单键搭接接头进行疲劳测试而获得的。该模型成功地预测了VA疲劳载荷对粘合接头的破坏作用,并且通常被认为是对其他考虑的损伤模型的重大改进。

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