首页> 外文期刊>The Journal of Adhesion >A Prediction Method of the Behavior of Adhesively Bonded Structures under Cyclic Shear Loading Based on a Characterization of the Viscous Aspects of the Adhesive in an Assembly
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A Prediction Method of the Behavior of Adhesively Bonded Structures under Cyclic Shear Loading Based on a Characterization of the Viscous Aspects of the Adhesive in an Assembly

机译:基于装配中胶粘剂粘性特征的循环剪切载荷下胶粘结构行为的预测方法

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摘要

The capabilities of structural bonding are more and more used. Estimating the abilities of an adhesive to endure repetitive loadings and to keep stable its mechanical properties along service life is an essential point to analyze in order to conduct fatigue assessments. The aim of this study is to develop a predictive tool for describing the fatigue behavior of an adhesive in an assembly under cyclic loadings. The approach developed analyzes the influence of viscosity on the mechanical behavior of an adhesive in an assembly based on monotonic and creep test results. Thanks to the evaluation of viscous phenomena, it is possible to predict the cyclic response of the adhesive. The experimental approach uses a unique bonded joint designed to limit the stress concentrations and with a maximum stress state in the center of the adhesive. In this paper, following the strategy developed under monotonic loading, experimental results under cyclic loading are presented for different types of loading using several load ratios and amplitudes. These results underline that the evolution of viscous deformations depends on the loading type. Under shear loading and for a ductile structural adhesive, the experimental results are well described using a viscoelastic-viscoplastic constitutive model with nonlinear viscous parameters. This model makes it possible to analyze the influence of different parameters on the mechanical response of bonded joints under cyclic shear loadings.
机译:结构键合的功能越来越多地被使用。评估粘合剂承受重复载荷的能力以及在使用寿命内保持其机械性能稳定的能力,是进行疲劳评估需要进行分析的重要方面。这项研究的目的是开发一种预测工具,用于描述循环载荷下组件中粘合剂的疲劳行为。开发的方法基于单调和蠕变测试结果分析了粘度对组件中粘合剂机械性能的影响。由于对粘性现象的评估,可以预测粘合剂的循环响应。实验方法使用独特的粘合接头,该接头设计为限制应力集中并在粘合剂中心具有最大应力状态。在本文中,遵循单调加载下开发的策略,使用几种加载比率和幅度,针对不同类型的加载,给出了循环加载下的实验结果。这些结果表明,粘性变形的演变取决于载荷类型。在剪切载荷下和对于韧性结构粘合剂,使用具有非线性粘性参数的粘弹-粘塑性本构模型很好地描述了实验结果。该模型使得分析循环剪切载荷下不同参数对粘结接头力学响应的影响成为可能。

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