Szeptyński Paweł, Jasińska Dorota, Mikulski Leszek
Division of Structural Mechanics and Material Mechanics, Faculty of Civil Engineering, Cracow University of Technology, ul. Warszawska 24, 31-155 Kraków, Poland.
Materials (Basel). 2024 Dec 21;17(24):6263. doi: 10.3390/ma17246263.
This study investigated the optimal shape of glue-laminated timber beams using an analytical model of a slender beam, taking into account the anisotropy of its strength properties as well as boundary conditions at the oblique bottom face of the beam. A control theory problem was formulated in order to optimize the shape of the modeled beam. Two optimization tasks were considered: minimizing material usage (Vmin) for a fixed load-carrying capacity (LCC) of the beam and maximizing load-bearing capacity (Qmax) for a given volume of the beam. The optimal solution was found using Pontryagin's maximum principle (PMP). Optimal shapes were determined using Dircol v. 2.1 software and then adjusted according to a 3D finite element analysis (FEA) performed in Abaqus. The final shapes obtained through this procedure were used in the CNC-based production of three types of nine beams: three reference rectangular beams, three Vmin beams, and three Qmax beams. All specimens were subjected to a four-point bending test. The experimental results were contrasted with theoretical assumptions. Optimization reduced material usage by ca. 12.9% while preserving approximately the same LCC. The maximization of LCC was found to be rather unsuccessful due to the significant dependence of the beams' response on the highly variable mechanical properties of GLT.
本研究使用细长梁的分析模型,考虑胶合木梁强度特性的各向异性以及梁斜底面的边界条件,对胶合木梁的最优形状进行了研究。为优化建模梁的形状,提出了一个控制理论问题。考虑了两项优化任务:在梁的承载能力(LCC)固定的情况下使材料用量最小化(Vmin),以及在梁的给定体积下使承载能力最大化(Qmax)。使用庞特里亚金极大值原理(PMP)找到了最优解。使用Dircol v. 2.1软件确定最优形状,然后根据在Abaqus中进行的三维有限元分析(FEA)进行调整。通过该程序获得的最终形状用于基于计算机数控(CNC)的三种类型九根梁的生产:三根参考矩形梁、三根Vmin梁和三根Qmax梁。所有试件均进行了四点弯曲试验。将实验结果与理论假设进行了对比。优化使材料用量减少了约12.9%,同时保持了大致相同的LCC。由于梁的响应强烈依赖于胶合木(GLT)高度可变的力学性能,发现最大化LCC相当不成功。