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Experimental Investigation and Theoretical Analysis of Polystyrene Panels with Load Bearing Thin-Walled Cold-Formed Elements

机译:负载轴承薄壁冷成形元件的聚苯乙烯板的实验研究与理论分析

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The paper presents preliminary results of theoretical and experimental analysis of the resistance of construction panels at compressive loading. Panels, made on the base of polystyrene foam in combination with thin-walled cold-formed elements, should be used as a load-bearing wall panels for simple and small structures. Investigated panels, with dimensions 1.0×2.5×0.15 m, are formed by six thin-walled elements of U-profile with a thickness of 0.8 mm, which are stabilized by glued polystyrene board EPS 100 S, 150 mm thick. Sufficient number of strain gauges and inductive sensors were used for the experimental measurement of strains and deflections. Strain gauges and inductive sensors were both-sided suitably located on each tested panel. Spatial calculation model was created within software SCIA and ANSYS. Geometrically nonlinear analysis was used for the numerical solution. Based on the numerical and experimental results, the efficiency of polystyrene boards on the stability of used thin-walled steel elements was determined.
机译:本文介绍了施工板在压缩负载下的抗性理论和实验分析的初步结果。在聚苯乙烯泡沫底座上与薄壁的冷成形元件组合制成的面板,应用作简单和小结构的承载壁板。调查的面板,尺寸1.0×2.5×0.15μm,由厚度为0.8mm的U形型六个薄壁元件形成,其通过胶合的聚苯乙烯板EPS 100s,150mm厚稳定。足够数量的应变仪和感应传感器用于菌株和偏转的实验测量。应变仪表和电感传感器都适用于每个测试面板。在软件SCIA和ANSYS中创建了空间计算模型。几何非线性分析用于数值溶液。基于数值和实验结果,测定了聚苯乙烯板对使用薄壁钢元件稳定性的效率。

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