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A full orthotropic micropolar peridynamic formulation for linearly elastic solids

机译:用于线性弹性固体的完全正交的微波动性逆向性配方

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摘要

An original full orthotropic model for in-plane linear elasticity is proposed in the micropolar peridynamic analysis framework. The analytical formulation is derived from the definition of a specific microelastic energy function for micropolar nonlocal lattices which allows to obtain, for the first time, an orthotropic bond-based model characterized by four independent elastic moduli. An important feature of the model is that the bond properties, i.e. the elastic constants, are continuous functions of the bond orientation in the principal material axes. The introduction of the bond shear stiffness and the definition of a bond shear deformation measure which accounts for particle's rotation, on one hand eliminates the restriction of two independent constants that affects other bond-based orthotropic peridynamic formulations, and on the other makes the model suitable in predicting the mechanical behavior of a wide variety of Cauchy orthotropic materials undergoing homogeneous and non-homogeneous deformations. The accuracy of the proposed model in linear elasticity has been verified through simulating uniaxial extension test of a composite lamina with a central circular hole and natural frequency analyses considering different orientations of the principal material reference system.
机译:在Micropolar逆动脉分析框架中提出了一种用于面内线性弹性的原始正交性模型。分析制剂衍生自用于微波利隆非团格的特定微弹电功能的定义,其允许首次获得的基于正交结合的模型,其特征在于四个独立的弹性模量。该模型的一个重要特征是粘合性,即弹性常数是主材料轴中的键取向的连续功能。引入粘合剪切刚度和粘合剪切变形措施的定义,其占粒子旋转的措施,一方面消除了影响其他影响其他基于键的正性表现形式的两个独立常数的限制,另一个使模型成为适当的模型在预测均匀和非均相变形的各种Cauchy正交材料的机械性能方面。通过模拟具有中央圆孔的单轴延伸试验和考虑主要材料参考系统的不同取向的复合薄片的单轴延伸试验,通过模拟复合薄片的单轴扩展试验来验证了线性弹性的准确性。

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