Gawronska Elzbieta, Dyja Robert
Faculty of Mechanical Engineering and Computer Science, Czestochowa University of Technology, Dabrowskiego 69, 42-201 Czestochowa, Poland.
Materials (Basel). 2021 Jan 16;14(2):427. doi: 10.3390/ma14020427.
The paper focuses on thermal and mechanical analysis of Periodic Surface Structure (PSS). PSS is a continuous surface with a specific topology that is mathematically formulated by geometric factors. Cubic P-surface ("primitive"), D-surface ("diamond"), and G-surface ("gyroid") structures were simulated under load and heat transport using a numerical approach. We conducted our study by solving the stress and heat equations using the Finite Element Method (FEM). We achieved results using our software module, which generates PSS and simulates stress and temperature distribution. The stress model defined by dependence between stress and strain, gained from an experiment, and correlation of strain and displacement, gained from geometric conditions, was used in numerical experiments. The influence of geometric factors on the thermal and mechanical behavior of PSS was qualitatively determined. We showed decreasing effective stress values with an increased number of cells in the cubic domain for concerned PSS. It is important, because the increase in the number of cells does not increase the structure's volume.
本文聚焦于周期性表面结构(PSS)的热分析和力学分析。PSS是一种具有特定拓扑结构的连续表面,可通过几何因素进行数学公式化表达。使用数值方法对立方P表面(“原始”)、D表面(“菱形”)和G表面(“螺旋面”)结构在载荷和热传输条件下进行了模拟。我们通过使用有限元方法(FEM)求解应力和热方程来开展研究。我们利用自己开发的软件模块获得了结果,该模块可生成PSS并模拟应力和温度分布。数值实验中使用了由实验得出的应力与应变之间的依赖关系以及由几何条件得出的应变与位移之间的相关性所定义的应力模型。定性地确定了几何因素对PSS热行为和力学行为的影响。我们发现,对于相关的PSS,立方域中单元数量增加时有效应力值会降低。这一点很重要,因为单元数量的增加并不会增加结构的体积。