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Commonly-used Steel Rods for Cost-effective Seismic Retrofit of Steel-girder Bridges: Energy Dissipation and Fatigue Properties

机译:成本有效的钢梁桥抗震改造常用钢棒:耗能与疲劳特性

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This study was aimed at developing an economical seismic retrofit solution for steel-girder highway bridges in low occurrence seismic zones such as in the Central and Eastern United States. To this endeavor, low-carbon tapered steel rods provided by a local vendor were tested for their ductile behavior, material strength, energy dissipation capacity, and fatigue strength under harmonic and earthquake loads. A full-scale damper made of five tapered rods was then designed for the seismic retrofit of a three-span continuous steel-girder bridge in southeast Missouri; its performance was validated with laboratory tests. The energy dissipated by tapered rods in one cycle was shown nearly independent of loading frequency and specimen size; the corresponding damping ratio rapidly increased at small displacements and approached a value of 0.35~0.40 in the range of over 1.8". Even at a displacement of 2.4", the steel rods survived over 100 cycles of loading with little degradation of their damping property. The five-rod damper fractured in a progressive manner as expected.
机译:这项研究的目的是为美国中部和东部等低地震区的钢梁公路桥梁开发经济的地震改型解决方案。为此,测试了当地供应商提供的低碳锥形钢棒的延性,材料强度,能量耗散能力以及在谐波和地震载荷下的疲劳强度。然后,设计了由五个锥形杆制成的全尺寸减震器,以对密苏里州东南部的三跨连续钢梁桥进行抗震改造。其性能已通过实验室测试验证。锥形棒耗散的能量在一周期内显示出几乎与加载频率和样本大小无关;在较小的位移下,相应的阻尼比迅速增加,在超过1.8“的范围内达到接近0.35〜0.40的值。即使在2.4”的位移下,钢棒也能承受100个载荷循环,阻尼性能几乎没有下降。五杆减震器按预期方式逐渐断裂。

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