首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Constitutive Modeling of the Stress-Stretch Behavior of Two-Dimensional Triangulated Macromolecular Networks Containing Folded Domains
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Constitutive Modeling of the Stress-Stretch Behavior of Two-Dimensional Triangulated Macromolecular Networks Containing Folded Domains

机译:包含折叠域的二维三角网状高分子网络应力-拉伸行为的本构模型

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摘要

The mechanical behavior of the red blood cell membrane is governed by the lipid bilayer which resists changes in surface area and the underlying spectrin network which resists changes in shape. The constituent spectrin chains of the network consist of a series of domains along the chain, which exhibit noncovalent interactions. Upon sufficient extension of a chain, each folded domain undergoes mechanically-induced unfolding after reaching a chain force between 10 and 35 pN. Individual spectrin chains within the network experience their first unfolding event at different levels of macroscopic strain depending on the macroscopic loading conditions and the orientation of each constituent chain with respect to the macroscopic loading. A microstructurally-informed continuum level constitutive model is developed which tracks individual chain deformation behavior as well as the overall macroscopic network stress-strain behavior. Using the introduced continuum approach and statistical mechanics based models of the chain force-extension behavior together with a transition state model of domain unfolding; a constitutive model for the membrane stress-stretch behavior is constructed. Uniaxial tension and simple shear behaviors of the membrane are simulated incorporating the unfolding of the individual chains. A Taylor averaging approach is used as a first approximation to account for the irregularities in the spectrin network which result in a near plateau-like force behavior with increasing stretch.
机译:红细胞膜的机械行为由抵抗表面积变化的脂质双层和抵抗形状变化的下层血影蛋白网络决定。网络的构成血影蛋白链由沿着链的一系列域组成,这些域表现出非共价相互作用。链条充分延伸后,每个折叠域在达到10到35 pN的链力后都会经历机械诱导的解折叠。网络中的各个血影蛋白链会在不同的宏观应变水平下经历其首次展开事件,这取决于宏观加载条件和每个组成链相对于宏观加载的方向。建立了微结构信息连续体水平本构模型,该模型跟踪单个链的变形行为以及整个宏观网络的应力应变行为。使用引入的连续方法和基于统计力学的链力-延伸行为模型以及域展开的过渡状态模型;建立了膜应力-拉伸行为的本构模型。结合单个链的展开,模拟了膜的单轴张力和简单剪切行为。泰勒平均法被用作第一近似值,以解决血影蛋白网络中的不规则性,该不规则性导致近乎平台状的力行为,并伴随拉伸的增加。

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