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Growth and instability in elastic tissues

机译:弹性组织的生长和不稳定

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The effect of growth in the stability of elastic materials is studied. From a stability perspective, growth and resorption have two main effects. First a change of mass modifies the geometry of the system and possibly the critical lengths involved in stability thresholds. Second, growth may depend on stress but also it may induce residual stresses in the material. These stresses change the effective loads and they may both stabilize or destabilize the material. To discuss the stability of growing elastic materials, the theory of finite elasticity is used as a general framework for the mechanical description of elastic properties and growth is taken into account through the multiplicative decomposition of the deformation gradient. The formalism of incremental deformation is adapted to include growth effects. As an application of the formalism, the stability of a growing neo-Hookean incompressible spherical shell under external pressure is analyzed. Numerical and analytical methods are combined to obtain explicit stability results and to identify the role of mechanical and geometric effects. The importance of residual stress is established by showing that under large anisotropic growth a spherical shell can become spontaneously unstable without any external loading.
机译:研究了生长对弹性材料稳定性的影响。从稳定性的角度来看,生长和吸收具有两个主要作用。首先,质量的改变会改变系统的几何形状,并可能改变稳定性阈值中涉及的临界长度。其次,生长可能取决于应力,但也可能在材料中引起残余应力。这些应力会改变有效载荷,并且可能使材料稳定或不稳定。为了讨论增长的弹性材料的稳定性,使用有限弹性理论作为力学描述力学特性的通用框架,并通过变形梯度的乘法分解来考虑增长。增量变形的形式主义适用于包括增长效应。作为形式主义的一种应用,分析了在外部压力下不断增长的新霍克不可压缩球形壳的稳定性。数值和分析方法相结合以获得明确的稳定性结果,并确定机械和几何效应的作用。残余应力的重要性通过表明在较大的各向异性增长下,球形壳在没有任何外部载荷的情况下会自发地变得不稳定而确立。

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