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A novel nonlinear viscoelastic solid model

机译:新型非线性粘弹性固体模型

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摘要

The standard linear solid (SLS) model has been widely used to describe linear viscoelastic materials. Although the SLS can be extended to describe more complex phenomena through the inclusion of additional components, a compact model of nonlinear viscoelasticity remains elusive. Here, using the framework of the three component SLS model, the stressstrain relationships of the individual components have been generalised. This work describes the derivation of the new generalised model, termed nonlinear viscoelastic solid model, or NVS, that can potentially describe nonlinear viscoelastic phenomena in a compact differential form and reduces to the familiar SLS model if linear components are selected. As a proof of concept, exponential functions of strain and strain rate were selected for the three components and major viscoelastic phenomena such as stress relaxation, creep and sawtooth strain loading were simulated. Finally, to demonstrate its efficacy in describing biological tissue, the NVS model was used to simulate the cyclic loading of mammalian stomach and cardiac muscle tissues.
机译:标准线性实体(SLS)模型已被广泛用于描述线性粘弹性材料。尽管可以通过添加其他组件将SLS扩展为描述更复杂的现象,但仍然无法实现非线性粘弹性的紧凑模型。在此,使用三组分SLS模型的框架,可以概括各个组分的应力应变关系。这项工作描述了称为非线性粘弹性实体模型或NVS的新通用模型的派生,该模型可以潜在地以紧凑差分形式描述非线性粘弹性现象,如果选择了线性分量,则可以简化为熟悉的SLS模型。作为概念的证明,为这三个分量选择了应变和应变率的指数函数,并模拟了主要的粘弹性现象,例如应力松弛,蠕变和锯齿形应变载荷。最后,为了证明其在描述生物组织中的功效,使用NVS模型来模拟哺乳动物胃和心肌组织的循环负荷。

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