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Numerical study of the local behaviour of adhesive bonds under dynamic loading

机译:动态载荷作用下胶粘剂局部行为的数值研究

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摘要

Nowadays, adhesively bonded structures are widely used in the transport sector for the development of lightweight vehicles. In order to guarantee passenger safety, it is thus necessary to understand the behaviour of such assemblies under dynamic and combined loadings. This paper presents a numerical study of the local behaviour of adhesively bonded assemblies under dynamic loading. In the first part, the ASTM D950-03 block impact test is studied. This device does not enable a homogeneous loading of the adhesive and causes stress concentrations. On the basis of existing quasi-static works, strategies are then implemented at a local scale. By combining a specific substrate geometry and by limiting the stiffness gradient between the substrates and the adhesive, results show that it is possible to obtain a qualitatively acceptable stress fields in the adhesive for mechanical characterization under dynamic loadings. The Arcan TCS device mentioned below uses such solutions to characterize the mechanical behaviour of bonded joints subjected to combined quasi-static loadings. In this study, the question of its extensibility to dynamic loadings by the use of an impactor guided into a drop tower is investigated. A dedicated finite element model is built under the plane stress assumption. The stress distributions in the adhesive are analysed through time and space for several loading conditions. The stress versus time signals are then compared with the results coming from modal analysis in order to highlight the vibration behaviour of the device, directly linked to the configuration.
机译:如今,粘合结构已广泛用于运输领域,以开发轻型车辆。为了保证乘客的安全,因此有必要了解这种组件在动态和组合载荷下的性能。本文提出了在动态载荷下胶粘组件的局部行为的数值研究。在第一部分中,研究了ASTM D950-03块冲击试验。该装置不能均匀地加载粘合剂并引起应力集中。在现有的准静态工作的基础上,然后在本地范围内实施策略。通过组合特定的基材几何形状并通过限制基材和胶粘剂之间的刚度梯度,结果表明可以在胶粘剂中获得定性可接受的应力场,以便在动态载荷下进行机械表征。下面提到的Arcan TCS设备使用这种解决方案来表征承受组合准静态载荷的粘结接头的机械性能。在这项研究中,研究了通过使用引入落塔的冲击器可扩展动态载荷的问题。在平面应力假设下建立了专用的有限元模型。针对几种负载条件,通过时间和空间分析了粘合剂中的应力分布。然后将应力随时间变化的信号与模态分析的结果进行比较,以突出显示与配置直接相关的设备的振动行为。

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