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A New Finite Fracture Mechanics Approach for Assessing the Strength of Bonded Lap Joints

机译:一种评估搭接接头强度的新的有限断裂力学方法

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For the widespread use of adhesive joints an exact and reliable prediction of the strength is mandatory. In this work, a new approach to assess the strength of single lap joints is presented. The approach is based on the hybrid criterion as postulated by Leguillon in the framework of finite fracture mechanics. It strictly combines a consideration of an energy release balance and a fulfillment of a strength criterion. The present work is based on a simple model of the joint behavior and assumptions about crack initiation. From the stress distribution of the classical shear lag theory an incremental energy release rate is derived and is used to formulate the optimization problem of the failure load. The resulting predictions of critical failure loads are compared to experimental results of single lap joints. It is shown that the new approach is able to physically describe crack formation and the corresponding critical load within the framework and limitations of the underlying assumptions and simplifications. The work closes with a discussion of the limitations and an outlook on possible improvements of the underlying models and assumptions.
机译:对于胶粘接头的广泛使用,必须对强度进行准确可靠的预测。在这项工作中,提出了一种评估单膝关节强度的新方法。该方法基于Leguillon在有限断裂力学框架内提出的混合准则。它严格考虑了能量释放平衡和满足强度标准。目前的工作是基于一个简单的接头行为模型和关于裂纹萌生的假设。从经典剪力滞理论的应力分布中,导出了增量的能量释放速率,并将其用于阐述失效载荷的优化问题。将临界破坏载荷的最终预测结果与单搭接接头的实验结果进行比较。结果表明,该新方法能够在框架内物理描述裂缝的形成以及相应的临界载荷,并限制基本假设和简化。最后,讨论了局限性以及对潜在模型和假设的可能改进的展望。

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