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Experimental Optical Testing and Numerical Verification by CuFSM of Compression Columns with Modified Channel Sections

机译:用改进通道部分的压缩柱CUFSM的实验光学测试和数值验证

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摘要

Thin-walled channel columns with non-standard cross-section shapes loaded with gradually increasing compressive force applied at the geometric centre of gravity of the cross-section were the subject of the investigations presented in this paper. The aim of the research was to determine which of the columns has the most favourable geometrical characteristics in terms of the applied load. The main investigation was an experimental study carried out using two methods: strain gauging and the optical method. Based on strain gauging, the critical forces were determined using the strain averaging method and the linear regression tangent to compression plot method. In addition, modern optical tests were performed using the ARAMIS system. The buckling forces at which the first signs of buckling appear and the buckling modes of columns were determined. The results obtained from the experimental tests were used to validate the results of numerical tests carried out using the Finite Strip Method (CuFSM). Based on this method, the values of critical forces and the percentage contribution of individual buckling forms to the loss of stability of the compressed columns were determined.
机译:具有非标横截面形状的薄壁沟道柱,逐渐增加横截面几何重心施加的压缩力是本文提出的研究的主题。研究的目的是确定哪些柱在施加的载荷方面具有最有利的几何特征。主要研究是使用两种方法进行的实验研究:应变测量和光学方法。基于应变测量,使用应变平均法测定临界力和对压缩图法切的线性回归。此外,使用Aramis系统进行现代光学测试。确定屈曲的第一个迹象的屈曲力和柱子的屈曲模式。从实验试验中获得的结果用于验证使用有限带法(CUFSM)进行的数值测试的结果。基于该方法,测定了临界力的值和单个屈曲形式对压缩柱稳定性损失的百分比贡献。

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