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首页> 外文期刊>International journal of non-linear mechanics >A multinetwork inelastic model for the hysteretic response during cyclic loading of pig and rat skin
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A multinetwork inelastic model for the hysteretic response during cyclic loading of pig and rat skin

机译:猪和大鼠皮肤循环载荷期间滞回滞回的多重工作绝体模型

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摘要

In this paper, we develop a 2-dimensional membrane model for the inelastic response of nominally leathery materials applicable to many tissues, particularly skin. These materials, while nominally elastic, show substantial and complex hysteretic response under cyclic loading (usually referred to as the Mullins-type softening). Furthermore, they exhibit both rate dependent behavior and permanent residual strain upon unloading. The proposed model is based on the notion of a multinetwork model composed of a background material and possibly many families of fibers with a superposed response. The rate dependent inelasticity and permanent strain are modeled through fiber slippage. We show the efficacy of the model by comparing with experiments in rat and pig skin under various cyclic loading conditions. The parameters of the modal are reasonably easy to measure directly from experiments. The key ingredients of the fiber part of the response are (1) a simple two-slope elastic response that accounts for the rapid stiffening response of the fibers, with smooth transition between the slack and stiff response representing the fiber recruitment (2) a non affine deformation of the fibers to account for the fiber slippage and recovery (3) a rapidly hardening response to account for the memory of the skin regarding its previous maximum stretched state. The entire framework is written in rate form and is easily implemented with an elementary integration scheme. The model is capable of simulating not only the overall behavior of the skin but internal minor hysteresis as well.
机译:在本文中,我们开发了一个二维膜模型,用于标称革物料适用于许多组织,特别是皮肤的标称革质材料的非弹性响应。这些材料,虽然名义上弹性,在循环载荷下显示出实质性和复杂的滞后响应(通常称为Mullins型软化)。此外,它们在卸载时表现出速率依赖性行为和永久性应变。所提出的模型基于由背景材料组成的多重工作模型的概念,并且可能具有叠加的响应的许多纤维家族。速率依赖性无弹性和永久性应变通过纤维滑动来建模。我们通过与各种循环负载条件下的大鼠和猪皮的实验比较来展示模型的功效。模态的参数与实验直接易于测量。响应的纤维部分的关键成分是(1)一个简单的双斜率弹性响应,其占纤维的快速加强响应,在纤维招募(2)表示纤维募集(2)非纤维的变形以解释纤维滑动和恢复(3)快速硬化的响应,以考虑皮肤的记忆,这是其先前的最大拉伸状态。整个框架是以速率形式编写的,并且通过基本的集成方案轻松实现。该模型不仅能够模拟皮肤的整体行为,而且是内部次要滞后。

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