Stress and shear of steel reinforced floors with prefabricated units and steel beams

IF 0.1 Q4 MULTIDISCIPLINARY SCIENCES
D. V. Konin
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引用次数: 0

Abstract

Steel-reinforced concrete floors with prefabricated reinforced concrete slabs are industrial quickly erectable structures. The use of such structures makes it possible to reduce construction time, save metal, obtain efficient structures without beam projecting up to 20 m for loads produced by buildings and car parks. Codes and foreign norms do not include prefabricated reinforced concrete floor slabs in the operation of combined structures, as designers try to avoid complex connections (welding, bolts) during construction. Of obvious interest is the inclusion of precast slabs in the operation of combined steel and reinforced concrete beam as well as grouted joints between steel and slabs in the absence of additional anchors and connections.Experimental results of structural models and 6×10 m floors with precast slabs are considered to identify the concrete shear. The effective shear deformation up to 0.5 mm is detected even without additional anchors. Simplest anchors significantly increase the joint operation of cast concrete and steel profile. The operation mechanism is determined for steel-concrete and steelconcrete-anchor contact zones, and respective diagrams are plotted for numerical calculations.Floor testing shows that the use of the simplest joining, cast reinforced concrete combining steel and precast elements involves precast slabs at a distance from the beam axis of at least two thicknesses of the floor for two different ways of the beam support.Numerical modelling, including the contact zone operation, shows good agreement with the experimental data. It is recommended to clarify the width of compressed concrete flange in normative documents for the structural analysis.
带预制构件和钢梁的钢筋楼板的应力和剪切
预制钢筋混凝土楼板的钢筋混凝土楼盖是一种工业快速安装结构。使用这种结构可以减少施工时间,节省金属,获得有效的结构,而无需梁凸出高达20米的建筑物和停车场产生的负载。规范和国外规范在组合结构的运行中不包括预制钢筋混凝土楼板,因为设计人员在施工过程中尽量避免复杂的连接(焊接、螺栓)。值得注意的是,在钢和钢筋混凝土组合梁的施工过程中包括预制板,以及在没有额外锚杆和连接的情况下,钢和板之间的灌浆缝。考虑了结构模型和6×10 m预制楼板的试验结果来识别混凝土剪力。即使没有额外的锚,也可以检测到0.5 mm的有效剪切变形。最简单的锚杆显著增加了现浇混凝土与钢型材的接合操作。确定了钢-混凝土接触区和钢-混凝土-锚固接触区的作用机理,并绘制了相应的图进行数值计算。楼板测试表明,使用最简单的连接,钢筋混凝土结合钢和预制构件,包括预制板在距离梁轴至少两种厚度的楼板的两种不同的方式的梁的支持。数值模拟结果与实验结果吻合较好。建议在规范文件中明确压缩混凝土法兰的宽度,以便进行结构分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Tomsk State University Journal
Tomsk State University Journal MULTIDISCIPLINARY SCIENCES-
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