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Extension of the FEM Analysis Using the PDE-Toolbox of Matlab with Regard to Point Loads, Line Loads, and Freeform Surface Loads: Feature Surface Concept

机译:关于Point Load,Line Loads和Freeform表面负载的MATLAB的PDE-Toolbox扩展FEM分析:特征表面概念

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In this article, we present a novel method to extend the Finite-Element-Analysis concept of Matlab's Partial-Differential-Equation (PDE) Toolbox to perform the stress calculation for any point, line or freeform surface load using surface models. The current implementation of the PDE-Toolbox only allows the user to apply surface loads on the surfaces which are calculated by the PDE-Toolbox. Currently, there is no chance to specify a sub-region of a surface by the user. This is a remarkable drawback since the stress distribution of many objects like spheres, cylindric objects or freeform surfaces cannot be analyzed with respect to a point load, line load or any specified freeform surface load. We present and describe in detail how it is possible to calculate the feature surfaces as it is done by Matlab and how to modify the surface models to create feature surfaces of any freeform shape. With this new method the PDE-Toolbox is able to perform stress and displacement analysis for any point, line or freeform surface load.
机译:在本文中,我们提出了一种新的方法来扩展MATLAB的部分微分方式(PDE)工具箱的有限元分析概念,以使用表面模型对任何点,线路或自由形式表面负载执行应力计算。 PDE-Toolbox的当前实现仅允许用户在由PDE-Toolbox计算的表面上施加表面负载。目前,没有机会通过用户指定表面的子区域。这是一个显着的缺点,因为不能相对于点负载,线路载荷或任何指定的自由形表面负载来分析许多物体等圆形物体或自由表面的应力分布。我们详细介绍并详细描述了如何计算特征表面,因为它是由MATLAB完成的,以及如何修改表面模型以创建任何自由形状的特征表面。通过这种新方法,PDE-Toolbox能够为任何点,线路或自由形式载荷进行应力和位移分析。

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