首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >A fatigue life prediction method of adhesively bonded joints based on visco-elastic and visco-plastic behavior: application under cyclic shear loading
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A fatigue life prediction method of adhesively bonded joints based on visco-elastic and visco-plastic behavior: application under cyclic shear loading

机译:基于粘弹性和粘塑性行为的胶粘接头疲劳寿命预测方法:在循环剪切载荷下的应用

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摘要

To perform an evaluation of the abilities of a bonded structure to endure repetitive loadings, characterizations of structural adhesive joints mechanical behavior are key objectives. The aim of this study is to describe the phenomena occurring in the bonded joint until the appearance of a macroscopic crack. Using lap-shear type specimens, associated with stress concentrations, crack initiation generally appears early at the edge of the adhesive joint, which makes it difficult to identify the crack initiation phase. To characterize more properly the crack initiation phase, bonded joints designed to limit stress concentrations allowed the accurate characterization of the mechanical phenomena occurring in a polyurethane structural ductile adhesive. Then, based on the experimental response of the bonded assembly to creep recovery tests, a visco-elastic visco-plastic behavior law is defined for the adhesive joint mechanical behavior. In the following, details of such a model able to take into account the hydrostatic sensitivity with a non-associated formalism are given. The numerical work performed here relies on the identification of the material parameters of the behavior law using creep-recovery tests to model the cyclic behavior of bonded structures. Then, experimental results under fatigue loading are presented and compared to numerical simulations. Finally, using a strain-based criterion for the definition of crack initiations, predictions of fatigue lifetime are performed for specimens under shear loadings. The quality of the results obtained underlines that an accurate description of viscous mechanisms in the adhesive layer allows describing efficiently the mechanical behavior of bonded joints under cyclic loading.
机译:为了评估粘结结构的承受反复载荷的能力,表征结构粘合接头机械性能是关键目标。这项研究的目的是描述直到宏观裂纹出现之前在粘结接头中发生的现象。使用与应力集中相关的搭剪型试样,裂纹萌生通常出现在粘合接缝的边缘,因此很难识别裂纹萌生阶段。为了更恰当地表征裂纹萌生阶段,设计用于限制应力集中的粘结接头可以准确表征聚氨酯结构延性粘合剂中发生的机械现象。然后,基于粘合组件对蠕变恢复测试的实验响应,为粘着接头的力学行为定义了粘弹粘弹行为定律。在下文中,给出了这种模型的细节,该模型能够考虑具有非关联形式主义的流体静力学敏感性。此处执行的数值工作依赖于使用蠕变恢复测试对粘结结构的循环行为进行建模的行为规律的材料参数的识别。然后,给出了疲劳载荷下的实验结果,并将其与数值模拟进行了比较。最后,使用基于应变的准则定义裂纹萌生,对剪切载荷下的样品进行疲劳寿命预测。获得的结果的质量强调了对粘合剂层中粘性机理的准确描述可以有效地描述循环载荷下粘结接头的机械性能。

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