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Experimental study on shear, tensile, and compression behaviors of composite insulated concrete sandwich wall

机译:复合绝缘混凝土三明治墙剪切,拉伸和压缩行为的实验研究

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摘要

A new type of composite insulated concrete sandwich wall (ICS-wall), which is composed of a triangle truss steel wire network, an insulating layer, and internal and external concrete layers, is proposed. To study the mechanical properties of this new ICS-wall, tensile, compression, and shearing tests were performed on 22 specimens and tensile strength and corrosion resistance tests on 6 triangle truss joints. The variables in these tests mainly include the insulating plate material, the thickness of the insulating plate, the vertical distance of the triangle truss framework, the triangle truss layout, and the connecting mode between the triangle truss and wall and the material of the triangle truss. Moreover, the failure mode, mechanical properties, and bearing capacity of the wall under tensile, shearing, and compression conditions were analyzed. Research results demonstrate that the concrete and insulating layer of the ICS-wall are pulling out, which is the main failure mode under tensile conditions. The ICS-wall, which uses a graphite polystyrene plate as the insulating layer, shows better tensile properties than the wall with an ordinary polystyrene plate. The tensile strength and bearing capacity of the wall can be improved effectively by strengthening the triangle truss connection and shortening the vertical distances of the triangle truss. The compression capacity of the wall is mainly determined by the compression capacity of concrete, and the bonding strength between the wall and the insulating plate is the main influencing factor of the shearing capacity of the wall. According to the tensile strength and corrosion resistance tests of Austenitic stainless steel, the bearing capacity of the triangle truss does not decrease after corrosion, indicating good corrosion resistance.
机译:提出了一种新型的复合绝缘混凝土夹层壁(ICS墙),由三角形桁架钢丝网,绝缘层和内部混凝土层组成。为了研究这种新的ICS壁,拉伸,压缩和剪切试验的机械性能,在22种试样和拉伸强度和6个三角形桁架接头上进行耐腐蚀性测试。这些测试中的变量主要包括绝缘板材料,绝缘板的厚度,三角形桁架框架的垂直距离,三角形桁架布局以及三角形桁架和墙壁之间的连接模式以及三角形桁架的材料。此外,分析了拉伸,剪切和压缩条件下壁的故障模式,机械性能和承载力。研究结果表明,ICS壁的混凝土和绝缘层挤出,这是拉伸条件下的主要故障模式。使用石墨聚苯乙烯板作为绝缘层的ICS壁显示出比具有普通聚苯乙烯板的壁的更好的拉伸性能。通过强化三角形桁架连接并缩短三角形桁架的垂直距离,可以有效地提高壁的拉伸强度和承载力。壁的压缩容量主要由混凝土的压缩容量决定,壁和绝缘板之间的粘合强度是壁的剪切容量的主要影响因子。根据奥氏体不锈钢的拉伸强度和耐腐蚀性试验,腐蚀后三角形桁架的承载力不会降低,表明耐腐蚀性良好。

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