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Design of experiments and energy dissipation analysis for a contact mechanics 3D model of frictional bolted lap joints

机译:摩擦螺栓搭接接头接触力学3D模型的实验设计和能量耗散分析

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摘要

Bolted lap joints allow structural assemblies to be made. The answer to requirements, both static and dynamic, depends on the joint behaviour. Bolted joints are a primary source of energy dissipation in dynamic built-up and space structures among others. This paper presents an analysis of a bolted lap joint, subjected to a relative displacement after applying a pre-stress on the bolt in order to characterise the joint behaviour. For this purpose a 3D modelling is made by means of finite elements, using design techniques of experiments (DOE) to fit constitutive contact parameters. The theoretical results relative to elasto-plastic hysteresis cycles of the joint are experimentally validated. Finally, the preload effect and the magnitude of the displacement on the non-linear joint behaviour are analysed to determine equivalent stiffness and dissipated energy in the hysterical loops of the joint.
机译:螺栓搭接允许进行结构组装。静态和动态需求的答案取决于联合行为。螺栓连接是动态建筑物和空间结构等中能量消耗的主要来源。本文介绍了螺栓搭接接头的分析,该螺栓搭接接头在对螺栓施加预应力后会发生相对位移,以表征接头的性能。为此,使用有限的元素,使用实验设计技术(DOE)来拟合本构接触参数,从而进行3D建模。有关接头的弹塑性滞后循环的理论结果已通过实验验证。最后,分析了预加载效应和位移对非线性关节行为的影响,以确定关节的滞后回线中的等效刚度和耗散能量。

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