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Modelling adhesive joints with cohesive zone models: effect of the cohesive law shape of the adhesive layer

机译:使用内聚区模型对胶粘接头进行建模:胶粘层的内聚定律形状的影响

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摘要

Adhesively-bonded joints are extensively used in several fields of engineering. Cohesive Zone Models (CZM) have been used for the strength prediction of adhesive joints, as an add-in to Finite Element (FE) analyses that allows simulation of damage growth, by consideration of energetic principles. A useful feature of CZM is that different shapes can be developed for the cohesive laws, depending on the nature of the material or interface to be simulated, allowing an accurate strength prediction. This work studies the influence of the CZM shape (triangular, exponential or trapezoidal) used to model a thin adhesive layer in single-lap adhesive joints, for an estimation of its influence on the strength prediction under different material conditions. By performing this study, guidelines are provided on the possibility to use a CZM shape that may not be the most suited for a particular adhesive, but that may be more straightforward to use/implement and have less convergence problems (e.g. triangular shaped CZM), thus attaining the solution faster. The overall results showed that joints bonded with ductile adhesives are highly influenced by the CZM shape, and that the trapezoidal shape fits best the experimental data. Moreover, the smaller is the overlap length (LO), the greater is the influence of the CZM shape. On the other hand, the influence of the CZM shape can be neglected when using brittle adhesives, without compromising too much the accuracy of the strength predictions.
机译:胶接接头广泛应用于工程领域。粘合区模型(CZM)已用于粘合接头的强度预测,作为有限元分析(FE)的附加功能,可以通过考虑能量原理来模拟损伤的增长。 CZM的一个有用功能是,根据要模拟的材料或界面的性质,可以针对内聚规律开发不同的形状,从而可以进行准确的强度预测。这项工作研究了CZM形状(三角形,指数形或梯形)的影响,该形状用于模拟单搭接接头中的薄胶粘剂层,以评估其对不同材料条件下强度预测的影响。通过进行这项研究,提供了有关使用CZM形状的指南,该形状可能不最适合特定的粘合剂,但使用/实施起来可能更直接,并且收敛问题更少(例如三角形CZM),从而更快地获得解决方案。总体结果表明,用韧性粘合剂粘结的接头受CZM形状的影响很大,并且梯形形状最适合实验数据。而且,重叠长度(LO)越小,CZM形状的影响越大。另一方面,在使用脆性胶粘剂时,可以忽略CZM形状的影响,而不会影响强度预测的准确性。

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