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首页> 外文期刊>Inverse Problems in Science & Engineering >Modelling mechanical interfaces experiencing micro-slip/slap
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Modelling mechanical interfaces experiencing micro-slip/slap

机译:机械接口经历微滑/拍击的建模

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摘要

Surface-to-surface contact interfaces significantly affect structural behaviour. Therefore, accurate modelling of the stiffness and damping characteristics of such interfaces is crucial for dynamic response analysis of assembled structures. Due to the development of nonlinear interactions, such as slip and slap mechanisms, modelling and analysis of the contact interfaces is a challenging task. The nonlinear effects of the slip and slap mechanisms need to be considered in interface models particularly when the amplitude of the structural response is high. This article considers finite element (FE) modelling of a compound structure containing a surface-to-surface contact interface, i.e. a bolted lap-joint. The joint, modelled using thin-layer element theory, experiences micro-slips/slaps under extreme loading conditions of the structure and to take into account these behaviours, the thin-layer element is assumed to behave in a nonlinear manner. In order to identify the nonlinear uncertainties in the joint interface, the real structure is subjected to vibrational testing, and its dynamical behaviour at different loading levels is extracted. The parameters of interfacial elements are tuned in such a way that the resultant FE model predicts the experimental results with a high accuracy.
机译:面对面的接触界面会严重影响结构行为。因此,对这种界面的刚度和阻尼特性进行精确建模对于组装结构的动态响应分析至关重要。由于非线性相互作用(例如滑动和拍击机制)的发展,接触界面的建模和分析是一项艰巨的任务。滑移和拍击机制的非线性效应需要在界面模型中加以考虑,尤其是在结构响应的振幅较高时。本文考虑了包含表面到表面接触界面(即螺栓搭接)的复合结构的有限元(FE)建模。使用薄层单元理论建模的接头在结构的极端载荷条件下会经历微滑/打滑,并考虑到这些行为,假定薄层单元的行为为非线性。为了识别关节界面中的非线性不确定性,对真实结构进行振动测试,并提取其在不同载荷水平下的动力学行为。调整界面元素的参数,以使所得的有限元模型可以高精度预测实验结果。

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