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Structural Integrity of Functionally Graded Composite Structure using Mindlin-Type Finite Elements.

机译:使用Mindlin型有限元的功能梯度复合结构的结构完整性。

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摘要

In this paper, two new Mindlin-type plate bending elements have been derived for the modelling of functionally graded plate subjected to various loading conditions such as tensile loading, in-plane bending and out-of-plane bending. The properties of the first Mindlin-type element (i.e. Average Mindlin element) are computed by using an average fibre distribution technique which averages the macro-mechanical properties over each element. The properties of the second Mindlin-type element (i.e. Smooth Mindlin element) are computed by using a smooth fibre distribution technique, which directly uses the macro-mechanical properties at Gaussian quadrature points of each element. There were two types of non-linearity considered in the modelling of the plate, which include finite strain and material degradation. The composite plate considered in this paper is functionally graded in the longitudinal direction only, but the FE code developed is capable of analysing composite plates with functional gradation in transverse and radial direction as well. This study was able to show that the structural integrity enhancement and strength maximisation of composite structures are achievable through functional gradation of material properties over the structure.
机译:在本文中,为功能梯度板在各种载荷条件(例如拉伸载荷,平面内弯曲和平面外弯曲)下的建模提供了两个新的Mindlin型板弯曲单元。第一个Mindlin型元素(即平均Mindlin元素)的属性是通过使用平均纤维分布技术计算的,该技术平均每个元素的宏观机械性能。第二个Mindlin型元素(即Smooth Mindlin元素)的属性是通过使用平滑纤维分布技术计算的,该技术直接使用每个元素的高斯正交点处的宏观力学属性。在板的建模中考虑了两种类型的非线性,包括有限应变和材料降解。本文中考虑的复合板仅在纵向上进行功能分级,但是开发的FE代码也能够分析在横向和径向上具有功能梯度的复合板。这项研究能够表明,通过结构上材料特性的功能分级,可以实现复合结构的结构完整性增强和强度最大化。

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