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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 >Comparison of cohesive zone and continuum damage approach in predicting the static failure of adhesively bonded single lap joints
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Comparison of cohesive zone and continuum damage approach in predicting the static failure of adhesively bonded single lap joints

机译:粘结区和连续损伤方法在粘接单搭接接头静态失效预测中的比较

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摘要

The paper presents a comparison of the cohesive zone model (CZM) and the continuum damage mechanics approach in predicting the static failure of a single lap joint (SLJ). The effect of mesh size and viscosity were studied to give more understanding on the failure load and computational time. Both the load-displacement response and the backface strain technique were utilised to compare the validity of predictions. Peel and shear stress and damage distributions along with the damage progression are compared to understand the behaviour of the models in predicting the static failure response. In general, both approaches show good accuracy in predicting the failure load; however, the cohesive zone approach requires shorter computation time than the continuum damage approach. The continuum damage approach shows some mesh-dependency particularly for elements with high aspect ratios, whereas the cohesive zone approach is not. The continuum damage approach is less sensitive than the cohesive zone approach to the artificial damping required to achieve convergence. Another interesting finding is using the same ultimate stress level of damage in the continuum damage approach at the peak load is much lower than that in the cohesive approach; but the failure process in this approach is faster.
机译:本文比较了内聚区模型(CZM)和连续损伤力学方法在预测单搭接(SLJ)静态失效方面的应用。研究了网格尺寸和粘度的影响,以更好地了解失效载荷和计算时间。利用载荷-位移响应和背面应变技术来比较预测的有效性。比较剥离和剪切应力和损伤分布以及损伤进展,以了解模型在预测静态破坏响应时的行为。总的来说,这两种方法在预测失效载荷方面都表现出良好的准确性;然而,与连续损伤方法相比,内聚区方法需要更短的计算时间。连续损伤方法显示出一定的网格依赖性,特别是对于具有高纵横比的单元,而内聚区方法则不然。连续损伤方法对实现收敛所需的人工阻尼的敏感性低于内聚区方法。另一个有趣的发现是,在峰值载荷下,连续损伤方法中的损伤极限应力水平远低于内聚方法;但这种方法的故障过程更快。

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