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Performance of Concrete-Filled Light Gauge Steel Composite Columns: Pilot Study

机译:轻型混凝土填充混凝土组合柱的性能:先导研究

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A large-scale experimental program has recently been conducted on twelve concrete-filled light gauge steel composite columns, with the objective to quantify the axial load strength capacity. Currently, there is a lack of guidance for such structural elements. This system of construction (Mur-Tec Systems) is a novel forming system where structural beams and columns are placed in the cavities of prefabricated light gauge steel modular stud walls. The parameters investigated include column cross section size, length and cross section profile designated as A and B. The parameters investigated were representative of one-storey, full-scale construction. All columns were subjected to concentric axial loading in the horizontal position using two or three 1400-kN servo-hydraulic actuators. The test results illustrated that load capacity of the composite columns was proportional to the cross section. In addition, the measured compression shortening of the columns was proportional to the column length. In general, the columns with cross section profile B sustained higher load and greater compression shortening than those with profile A. All columns failed due to end bearing failure, including crushing of the concrete and local side wall buckling of the light gauge steel. The axial compression strength capacity of the concrete-filled light gauge steel columns was satisfactorily predicted based on end bearing resistance as the limiting state according to Canadian Standards Association Standard A23.3-04 Design of Concrete Structures including the contribution of the light gauge steel. The calculated to measured axial strength capacity was 0.93.
机译:最近已对十二个混凝土填充轻型钢复合柱进行了大规模的实验程序,目的是量化轴向载荷强度能力。当前,对于这些结构要素缺乏指导。这种建筑系统(Mur-Tec系统)是一种新颖的成型系统,其中结构梁和柱被放置在预制的轻型钢模块化螺柱墙体的空腔中。所研究的参数包括圆柱横截面尺寸,长度和横截面轮廓,分别指定为A和B。所研究的参数代表了一层全尺寸结构。使用两个或三个1400 kN伺服液压执行器,在水平位置对所有列进行同心轴向载荷。测试结果表明,复合柱的承载能力与横截面成正比。另外,测得的色谱柱压缩缩短与色谱柱长度成正比。通常,截面轮廓为B的柱子比截面轮廓为A的柱子承受更高的载荷和更大的压缩缩短。所有柱子均由于端部轴承失效而失效,包括混凝土压碎和轻型钢的局部侧壁屈曲。根据加拿大标准协会标准A23.3-04《混凝土结构设计》(包括轻型钢的贡献),以端部承载力为极限状态,令人满意地预测了轻型混凝土钢柱的轴向抗压强度。计算得到的轴向强度容量为0.93。

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