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Effects of Loading Speed and Shear Prestrain on Adhesive Fatigue Strength In Single-Lap Joint

机译:装载速度和剪切抗皱对单圈关节粘合疲劳强度的影响

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The adhesive fatigue strength was investigated by performing repeated tensile lap shear experiments of an aluminum single-lap joint bonded with highly ductile acrylic adhesive. In load-controlled fatigue tests, progressive transverse shear deformation of the adhesive layer took place, and it led to the final fracture of the joint. The fatigue strength becomes higher with increasing loading speed, especially at low-cycle fatigue region. From experiments on shear-prestrained specimens, it was found that the prestrain does not affect so much the fatigue life. In order to discuss the behavior of progressive shear strain accumulation (viscoplastic ratcheting) of adhesive under cyclic loading, the numerical simulation of ratcheting was conducted using a constitutive model of elasto-viscoplasticity for the adhesive.
机译:通过用高度延展性丙烯酸粘合剂进行铝单圈接头的重复拉伸剪切实验,研究了粘合疲劳强度。在负载控制的疲劳试验中,发生了粘合剂层的渐进横向剪切变形,并导致了接头的最终断裂。随着负载速度的增加,疲劳强度变得更高,尤其是在低循环疲劳区域。从剪切标本的实验中,发现普拉特不会影响疲劳寿命。为了讨论循环加载下粘合剂的渐进式剪切应变累积(粘液棘轮)的行为,使用粘合剂的弹性粘胶塑料的组成模型进行棘轮的数值模拟。

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