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Energy-based viscoelastic model: a physical approach for material anelastic behavior by the bond graph approach

机译:基于能量的粘弹性模型:通过键合图方法进行材料非弹性行为的物理方法

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摘要

Understanding the true nature of viscoelastic behaviors in multi-physical systems has always been a challenging issue in system dynamic investigations, as each existing physical subdomain of the system may follow a different attenuation pattern during the dynamic process. In this study, to generate a viscoelastic model suitable for multi-physical domain dynamic investigations, a physical combined viscoelastic model is proposed. To this aim, by means of the bond graph approach, an energy-based conventional viscoelastic model is first generated, and its embedded dispersive mechanisms are interpreted physically. By including the interpreted dissipative mechanisms into the relative subdomains of an elastic domain, an energy-based combined viscoelastic model is then proposed. The obtained simulation results indicate that the proposed viscoelastic model is able to capture a variety of viscoelastic behaviors in the system with respect to the true physical nature of the system.
机译:在系统动态研究中,了解多物理系统中粘弹性行为的真实性质一直是一个具有挑战性的问题,因为系统的每个现有物理子域在动态过程中可能遵循不同的衰减模式。在这项研究中,为生成适用于多物理领域动态研究的粘弹性模型,提出了一种物理组合的粘弹性模型。为此,首先通过键图方法生成基于能量的常规粘弹性模型,并对其物理嵌入机理进行解释。通过将解释的耗散机制包括在弹性域的相对子域中,然后提出了基于能量的组合粘弹性模型。获得的仿真结果表明,相对于系统的真实物理性质,所提出的粘弹性模型能够捕获系统中的各种粘弹性行为。

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