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Structural performance of composite panels made of profiled steel skins and foam rubberised concrete under axial compressive loads

机译:轴向压缩载荷下型钢板和泡沫橡胶混凝土制成的复合板的结构性能

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This research investigates the feasibility of using rubber particles with lightweight foam concrete as an infill material in double-skinned profiled composite walls through experimental, finite element modelling (FEM), and analytical modelling. Two concrete mixes were used in the course of this study, namely, lightweight foam concrete (LFC) and lightweight foam rubberised concrete (LFRC) with rubber content of 8.5% by total volume of concrete. The two mixes had similar density of about 1584 kg/m(3). Five profiled steel-concrete composite walls with 100 mm width, 550 mm length, and 600 mm height were tested under axial compressive loads. A digital image correlation (DIC) technique was used to measure and analyse strains and deformations of the profiled steel sheets and the results were compared with the results obtained from the strain gauges. FEM was conducted using ABAQUS software. An analytical model to predict the wall section capacity by considering concrete compressive strength and steel sheet buckling performance was developed. Finally, a parametric study based on FEM and the proposed analytical model was conducted to investigate the structural effect of different concrete strengths and/or steel sheet thicknesses. Although, LFRC had 20.1% lower strength than LFC, the experimental results showed that the average axial capacity of LFRC walls was reduced by only 16.8% with relatively less damage. The analytical and finite element modelling results agree well with experimental results.
机译:本研究通过实验,有限元建模(FEM)和分析建模,研究了使用轻质泡沫混凝土用橡胶颗粒用轻质泡沫混凝土的可行性作为双皮分布复合墙体中的填充材料。在本研究过程中使用了两种混凝土混合物,即轻量级泡沫混凝土(LFC)和轻质泡沫橡胶混凝土(LFRC),橡胶含量为8.5%的混凝土。两种混合物具有约1584kg / m(3)的相似密度。在轴向压缩载荷下测试五个具有100mm宽度,550毫米的混凝土复合壁,550毫米长,高度为600 mm高度。数字图像相关(DIC)技术用于测量和分析成型钢板的菌株和变形,并将结果与​​从应变仪获得的结果进行比较。使用ABAQUS软件进行FEM。通过考虑混凝土抗压强度和钢板屈曲性能来预测壁段容量的分析模型。最后,进行了基于FEM和所提出的分析模型的参数研究,研究了不同混凝土强度和/或钢板厚度的结构效果。尽管LFRC的强度低于LFC,但实验结果表明,LFRC壁的平均轴向容量仅减少了16.8%,损坏较差。分析和有限元建模结果与实验结果很好。

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