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首页> 外文期刊>International Journal of Theoretical and Applied Multiscale Mechanics >Micromorphic elasticity for an axisymetrically loaded cylindrical thick-walled structure under plane strain conditions
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Micromorphic elasticity for an axisymetrically loaded cylindrical thick-walled structure under plane strain conditions

机译:平面应变条件下的轴短轴圆围结构的微观弹性

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In this paper we derive a closed-form solution for the problem of a second gradient elastic circular thick-walled cylinder subjected to some axisymmetric loading conditions and deformed in plane strain. The second gradient elastic model used is the one of Gologanu, Leblond, Perrin and Devaux proposed some years ago and used in the context of the numerical implementation of a micromorphic model for ductile fracture in porous plastic metals. The ordinary Cauchy stress and 'hyperstress' tensors are computed as a function of the displacement field which is obtained via a suitable combination of the balance equations, compatibility, stress-strain/hyperstress-gradient of the strain relationships, and appropriate boundary conditions. The first gradient solution is recovered when the second gradient effects are negligible. This study demonstrates that the first gradient elastic solution may not be accurate, particularly in elastic materials exhibiting substantial microstructure dependence. Future works will use the newly derived solution to interpret the size effects experimentally observed, for instance, in pressurised sandstone hollow cylinders.
机译:在本文中,我们推导出封闭式解决方案,用于对其进行一些轴对称负载条件的第二梯度弹性圆形厚壁圆筒的问题,并在平面菌株中变形。使用的第二梯度弹性模型是几年前提议的Gologanu,Leblond,Perrin和Devaux之一,并且在多孔塑料金属中的韧性模型的数值实施的上下文中使用。普通的Cauchy Regress和'Hyperstress'张量被计算为位移场的函数,其通过平衡方程,兼容性,应力 - 应变/高度梯度的合适组合获得,以及应变关系的兼容性和适当的边界条件。当第二梯度效应可以忽略不计时,将第一梯度溶液恢复。该研究表明,第一梯度弹性溶液可能不准确,特别是在具有实质性微观结构依赖性的弹性材料中。未来的作品将使用新导出的解决方案来解释实验观察到的大小效果,例如,在加压砂岩中空圆柱体中。

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