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Multicyclic modelling of softening in biological tissue

机译:生物组织软化的多周期建模

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In this paper, we derive a model to describe the important inelastic features associated with the cyclic softening, often referred to as stress softening, of soft biological tissue. The model developed here includes the notion of multiple stress-strain cycles with increasing values of the maximum strain. The model draws upon the similarities between the cyclic softening associated with carbon-filled rubber vulcanizates and soft biological tissue. We give non-linear transversely isotropic models for the elastic response, stress relaxation, residual strain and creep of residual strain. These ideas are then combined with a transversely isotropic version of the Arruda-Boyce eight-chain model to develop a constitutive relation that is capable of accurately representing the multicyclic softening of soft biological tissue. To establish the validity of the model, we have compared it with experimental data from three cyclic uniaxial test samples, one taken from the Manduca sexta (tobacco hornworm) caterpillar and the other two samples taken from the human aorta, one in the longitudinal and the other in the circumferential direction. The model was found to fit these experimental data extremely well.
机译:在本文中,我们推导了一个模型来描述与软生物组织的周期性软化(通常称为应力软化)相关的重要非弹性特征。此处开发的模型包括随着最大应变值的增加而出现的多个应力应变循环的概念。该模型利用了与碳填充橡胶硫化胶相关的循环软化与生物软组织之间的相似性。我们给出了弹性响应,应力松弛,残余应变和残余应变蠕变的非线性横向各向同性模型。然后将这些思想与Arruda-Boyce八链模型的横向各向同性版本相结合,以开发本构关系,该关系能够准确表示软生物组织的多环软化。为了确定模型的有效性,我们将其与来自三个循环单轴测试样品的实验数据进行了比较,一个样品取自毛杜鹃毛虫(Manduca sexta),另一个样品取自人主动脉,另外两个取自人的主动脉。圆周方向上的其他。发现该模型非常适合这些实验数据。

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