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Traction-based multi-scale nonlinear dynamic modeling of bolted joints: Formulation, application, and trends in micro-scale interface evolution

机译:螺栓连接的基于牵引力的多尺度非线性动力学建模:微观尺度界面演化的制定,应用和趋势

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摘要

A new framework for modeling the dynamics of bolted structures is proposed that considers the nonlinear interfacial modeling of bolted structures using multi-scale traction-based contact constitutive laws implemented through Zero-Thickness Elements (ZTE). Using rough contact theory, it is possible to establish fundamental constitutive relationships with parameters estimated from micro-scale surface scans. Such a model is employed in the framework for a three bolt lap-joint benchmark (the so-called "Brake-Reuß-Beam"). Since the characterization of the interface is conducted in a full-field manner on top of a finite element mesh, the framework is also demonstrated to be applicable for conducting full-field micro-scale interface evolution studies. Preliminary studies are conducted to establish correlations of local changes in relevant roughness parameters with predicted local tractions and dissipation fluxes.
机译:提出了一种新的螺栓结构动力学建模框架,该框架考虑了通过零厚度元素(ZTE)实现的基于多尺度牵引力的接触本构律对螺栓结构进行非线性界面建模。使用粗糙接触理论,可以用从微尺度表面扫描估计的参数建立基本的本构关系。在三螺栓搭接基准测试的框架(所谓的“Brake-Reuß-Beam”)中采用了这种模型。由于界面的表征是在有限元网格之上以全场方式进行的,因此该框架也被证明可用于进行全场微尺度界面演化研究。进行了初步研究以建立相关粗糙度参数的局部变化与预测的局部牵引力和耗散通量的相关性。

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