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Muscle performance in a soft-bodied terrestrial crawler: constitutive modelling of strain-rate dependency

机译:软体陆生爬行者的肌肉性能:应变率依赖性的本构模型

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摘要

Experimental data on the passive mechanical properties of the ventral interior lateral muscle of the tobacco hornworm caterpillar, Manduca sexta, are reported. The stress–deformation response of the Manduca muscle is shown to be nonlinear pseudo-elastic, capable of large deformations and subject to stress softening during initial loading cycles. The muscle passive mechanical properties also depend on multiple time-dependent processes. In particular, we show new experimental data from cyclic loading tests of an unstimulated muscle with constant maximum stretch and different, constant engineering strain rates. Then, on the basis of these data a constitutive model is derived to reproduce the main characteristics of this behaviour. In formulating the constitutive model, we consider the muscle as a complex macromolecular structure with fibrous components at numerous size scales. The model uses a phenomenological approach to account for different mechanisms by which passive force changes during applied deformation and how the muscle properties recover after unloading.
机译:报告了关于烟草天蛾幼虫腹侧内侧腹内侧肌被动力学性能的实验数据。 Manduca肌肉的应力-变形响应显示为非线性拟弹性,具有较大的变形能力,并且在初始加载周期中会发生应力软化。肌肉的被动机械性能还取决于多个时间相关的过程。特别地,我们显示了来自具有恒定最大拉伸力和不同恒定工程应变率的未受刺激的肌肉的循环载荷测试的新实验数据。然后,基于这些数据,导出本构模型以重现此行为的主要特征。在建立本构模型时,我们认为肌肉是复杂的大分子结构,具有许多大小尺度上的纤维成分。该模型使用现象学的方法来解释施加变形过程中被动力发生变化的不同机制,以及卸荷后肌肉特性如何恢复。

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