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Nonlocal continuum damage modeling for functionally graded plates of third-order shear deformation theory

机译:三阶剪切变形理论功能梯度板的非局部连续损伤模型

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This article presents an effective computational approach that incorporates a quasi-brittle damage model into the isogeometric analysis of plates made of functionally graded materials. The plate kinematics is represented by a third-order shear deformation theory for higher accuracy. A coupling nonlocal equivalent strain field is introduced on the plate neutral surface to control the softening behavior. The utilization of the neutral surface in functionally graded plates enables the use of a single damage parameter over each plate cross-section. As a consequence, plate stiffness matrices can be calculated analytically, which simplifies the proposed damage model and its computer implementation. The discretization of the problem domain is based on basis functions generated from the non-uniform rational B-splines (NURBS) which are used for both geometric representation and field variable approximations, i.e., displacement and nonlocal equivalent strain. Owing to the high-order continuity of the NURBS basis functions, local features such as fracture damage zones can be resolved accurately. The performance of the proposed approach is demonstrated through several numerical examples under different loading configurations and compared with results from other approaches.
机译:本文介绍了一种有效的计算方法,其将准脆性损伤模型纳入由功能分级材料制成的板的异诊分析中。板式运动学由三阶剪切变形理论表示,以获得更高的准确性。在板中性表面上引入耦合非局部等效应变场以控制软化行为。功能梯度板中中性表面的利用使得能够在每个板横截面上使用单一损伤参数。结果,可以分析地计算板刚度矩阵,这简化了所提出的损坏模型及其计算机实现。问题域的离散化是基于从非均匀RationA和NURBS)产生的基础函数,该函数用于几何表示和场可变近似,即位移和非识别等效应变。由于NURBS基本函数的高阶连续性,可以准确地解决诸如骨折损坏区域的局部特征。通过不同的装载配置下的几个数值实例证明了所提出的方法的性能,并与来自其他方法的结果进行比较。

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