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Fatigue failure criteria for structural film adhesive bonded joints with considerations of multiaxiality, mean stress and temperature

机译:结构薄膜粘合接头的疲劳失效标准考虑多轴性,平均压力和温度

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Fatigue failure criteria for structural film adhesive joints considering multiaxiality, mean stress and temperature effects were investigated. Multiaxiality was addressed by testing butt, scarf and thick adherend shear test joints. Mean stress effect was evaluated under stress ratios of -1.0 and 0.1, and the temperature assessed at -55°C, RT and +100°C. Fatigue results were assessed using three fatigue criteria: (1) maximum principal stress, (2) linear Drucker-Prager stress or (3) Findley's critical plane. All criteria worked well on fitting the mul-tiaxial fatigue behaviour of joints with criteria (2) and (3) performing slightly better. However, criterion (1) is parameter-free, which avoids data fitting. Mean stress effect was successfully described based on a Haigh transformation. Temperature effect was characterised using the criterion (1), which was capable of combining fatigue data at different temperatures. An increase of temperature led to fatigue strength reduction, meaning that a knock-down factor approach could be used.
机译:考虑多轴性的结构薄膜粘合剂粘合性疲劳失效标准,研究了平均应力和温度效应。通过测试对接,围巾和厚的粘附剪切测试接头来解决多轴性。在-1.0和0.1的应力比下评价平均应力效应,并在-55℃,室温和+ 100℃下评估温度。使用三种疲劳标准评估疲劳结果:(1)最大主应力,(2)线性滴漏 - 漫游应力或(3)Findley的临界平面。所有标准都符合拟合标准(2)和(3)稍微表现略微表现的关节的多态疲劳行为。但是,标准(1)是无参数的,这避免了数据配件。基于HAIGH转换成功描述了平均应力效应。使用该标准(1)表征温度效应,其能够将疲劳数据组合在不同温度下。温度的增加导致疲劳强度降低,这意味着可以使用拆下因子方法。

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