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Viscoelastic fracture of biological composites

机译:生物复合材料的粘弹性断裂

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Soft constituent materials endow biological composites, such as bone, dentin and nacre, with viscoelastic properties that may play an important role in their remarkable fracture resistance. In this paper we calculate the scaling properties of the quasi-static energy release rate and the viscoelastic contribution to the fracture energy of various biological composites, using both perturbative and non-perturbative approaches. We consider coarse-grained descriptions of three types of anisotropic structures: (i) liquid-crystal-like composites, (ii) stratified composites, (iii) staggered composites, for different crack orientations. In addition, we briefly discuss the implications of anisotropy for fracture criteria. Our analysis highlights the dominant lengthscales and scaling properties of viscoelastic fracture of biological composites. It may be useful for evaluating crack velocity toughening effects and structure-dissipation relations in these materials.
机译:柔软的构成材料赋予生物复合材料(如骨,牙本质和珍珠质)以粘弹性,这可能在其出色的抗断裂性中发挥重要作用。在本文中,我们使用扰动和非扰动方法来计算准静态能量释放速率的标度特性以及粘弹性对各种生物复合材料断裂能的贡献。我们考虑三种不同类型的各向异性结构的粗粒度描述:(i)液晶状复合材料,(ii)分层复合材料,(iii)交错复合材料,用于不同的裂纹取向。此外,我们简要讨论了各向异性对断裂准则的影响。我们的分析突出了生物复合材料粘弹性断裂的主要长度尺度和尺度性质。对于评估这些材料中的裂纹速度增韧效果和结构-耗散关系可能很有用。

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