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Similarities between soft biological tissues and rubberlike materials

机译:软生物组织与橡胶状材料之间的相似性

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Several scientists have drawn attention to similarities between soft biological tissues and rubberlike materials. This dates back to Roy (1880) in the context of arterial wall mechanics and Karrer (1933) in respect of muscle mechanics. Both soft tissues and rubberlike materials consist of three-dimensional networks of macromolecules held together by covalent and van der Waals bonds. An underlying concept makes use of the idea of expressing the number of conformations that a chain molecule can assume as an 'entropic effect' (leading to entropic elasticity). As a result, the associated thermomechanical behavior of the macromolecules is significantly different from that of, e.g., metals for which an ordered collection of atoms is held together in a lattice structure by interatomic bonds (leading to energetic elasticity). This proceedings paper aims to highlight similarities in the structure, mechanical characteristics and constitutive modeling of soft biological tissues and rubberlike materials for which many advances in the past have gone hand in hand.
机译:几位科学家引起了软化生物组织和橡胶状材料之间的相似性。这可以回到罗伊(1880)在动脉墙力学和Karrer(1933)的肌肉力学的背景下。软组织和橡皮状材料均由共价和范德瓦尔斯键合在一起的大分子的三维网络。潜在的概念利用表达链子分子可以作为“熵效应”(导致熵弹性)的构象的概念。其结果是,所述大分子的相关联的热机械行为与,例如,为此,原子的有序集合中的由原子间键的晶格结构保持在一起的金属(导致高能弹性)显著不同。该诉讼文件旨在突出软化生物组织和橡胶状材料的结构,机械特性和本构型建模的相似之电,过去已经携手共进。

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