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Cyclic tests of unbonded steel plate brace encased in steel-concrete composite panel

机译:钢-混凝土复合板中无粘结钢板支撑的循环试验

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摘要

Cyclic loading tests for the panel buckling-restrained brace (panel BRB) comprising an unbonded steel plate brace encased in a novel type profiled steel sheet-concrete composite panel were carried out to mainly investigate the effects of construction details of profiled steel sheets and perforated steel channels on the hysteretic behavior of the panel BRBs. Two loading stages, including increasing and constant amplitudes of horizontal displacement in the first and the second stages respectively, were used for six panel BRB specimens. Tests reveal that the perforated channels can prevent the composite panels from failure by punching shear. When stiffening ribs of profiled sheets were installed parallel to the axis of the brace, the composite panels remained intact in general after two loading stages. When the stiffening ribs of profiled sheets were installed in the horizontal or vertical direction, the specimens in which welds were used for the grooves of profiled sheets near the brace can also prevent panels from failure in the two loading stages, and bending failure of panels occurred in the first loading stage for the specimens without welds for the grooves of profiled sheets. The specimens, in which failure of panels was avoided, achieved great ductility and energy dissipation capacity before tensile fracture of steel braces occurred. Due to strain hardening and frictional action, the ultimate axial compressive strength of each specimen significantly exceeds its yield strength.
机译:对包含在新型异型钢板混凝土组合面板中的无粘结钢板支撑的面板屈曲约束支撑(面板BRB)进行了循环荷载试验,主要研究了异型钢板和多孔钢板的施工细节的影响。面板BRB的磁滞行为的通道。六个面板BRB标本使用两个加载阶段,分别包括第一阶段和第二阶段中水平位移的增加幅度和恒定幅度。测试表明,穿孔的通道可以防止复合板因冲切而破裂。当异型板材的加强肋条平行于撑杆的轴线安装时,复合板通常在两个加载阶段后仍保持完整。当在水平或垂直方向上安装异型材的加强筋时,在支架附近的异型材的凹槽中使用焊缝的试样还可以防止面板在两个加载阶段中发生破坏,并且面板发生弯曲破坏在第一个加载阶段,对于不带异型板凹槽的焊缝的试样。避免面板破裂的试样在发生钢支撑的拉伸断裂之前,具有良好的延展性和能量耗散能力。由于应变硬化和摩擦作用,每个试样的极限轴向抗压强度大大超过其屈服强度。

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