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蜂窝式可替换塑性铰框架试件抗震性能 被引量:1
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作者 李晓东 闫胤积 +1 位作者 弓耀云 吴长 《工程科学与技术》 EI CSCD 北大核心 2022年第5期111-118,共8页
为避免在地震作用下梁柱翼缘相交处的焊缝发生脆性破坏,本文设计了一种蜂窝式可替换塑性铰梁柱节点,并对基于此节点的4个不同蜂窝式耗能环尺寸的框架试件模型进行低周往复加载的ABAQUS有限元模拟和加载试验,分析各框架试件有限元模型和... 为避免在地震作用下梁柱翼缘相交处的焊缝发生脆性破坏,本文设计了一种蜂窝式可替换塑性铰梁柱节点,并对基于此节点的4个不同蜂窝式耗能环尺寸的框架试件模型进行低周往复加载的ABAQUS有限元模拟和加载试验,分析各框架试件有限元模型和试验试件的滞回曲线、骨架曲线、刚度退化曲线、延性性能等,研究蜂窝式耗能环的法向厚度和径向厚度对节点框架滞回性能的影响。结果表明:蜂窝式可替换塑性铰节点框架的滞回曲线较为饱满,具有良好的耗能能力;等间距地增加蜂窝式耗能环阵列的径向厚度,可以提高蜂窝式梁柱节点框架的耗能能力和屈服后的变形能力;蜂窝式耗能环阵列法向厚度从H型钢梁腹板厚度增加到3倍H型钢梁腹板厚度时,蜂窝式梁柱框架试件的耗能能力显著提高。蜂窝式梁柱框架试件试验中蜂窝式耗能单元的破坏位置与蜂窝式梁柱框架试件有限元模型中应力分布较大的位置几乎完全吻合,符合实际情况。相较于传统钢结构梁柱抗震节点,蜂窝式可替换塑性铰梁柱节点将梁柱焊缝处的脆性破坏转化为梁上特定位置的破坏,充分转移梁柱节点焊缝处的应力,蜂窝式可替换塑性铰节点保护了梁柱节点焊缝,能够有效实现塑性铰外移。蜂窝式可替换塑性铰节点有效减少梁柱节点焊缝开裂现象,降低钢结构在大震下发生焊缝开裂而倒塌的几率,易于模块化工厂加工,显著提高施工效率,便于消防管道、电缆等设施的转向和穿线。 展开更多
关键词 梁柱节点框架 塑性铰 蜂窝式耗能环 耗能能力
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Analysis on seismic performance of a new type of joint in steel structures 被引量:1
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作者 Li Xiaodong Ma Guangtian yan yinji 《Journal of Southeast University(English Edition)》 EI CAS 2021年第3期290-298,共9页
To examine the seismic performance of a newly fabricated weakened joint at the beam end position,four groups of energy-consuming steel plates with different weakening depths and thicknesses were subjected to horizonta... To examine the seismic performance of a newly fabricated weakened joint at the beam end position,four groups of energy-consuming steel plates with different weakening depths and thicknesses were subjected to horizontal cyclic reciprocating loading tests on beam ends.The tests were designed to evaluate the beams'hysteresis curve,skeleton curve,bearing capacity degradation curve,stiffness degradation curve,and ductility and the nodes'energy dissipation capacity.The test results show that a newly fabricated joint will not undergo brittle damage when the beam-column joint is welded at a displacement of 105 mm.Thus,the hysteresis curve will show an inverse S shape,and an obvious slip phenomenon will occur,which is mainly due to splicing.The diameter of the bolt connecting the slab to the beam flange is slightly smaller than the aperture.Due to the existence of slippage,the skeleton curve has no evident yield point.The joint ductility coefficient is less than 3.0,and the initial rotational stiffness of the joint is also small.The buckling of the splicing panel causes a rapid decrease in the joint bearing capacity.The main approaches,appropriately reducing the weakening depth and increasing the thickness of the splicing plate,can delay the occurrence of buckling and improve the ductility of the joint. 展开更多
关键词 steel structure energy-dissipating members weakened joint seismic performance cyclic loading tests
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