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600t级运输用贝雷式钢便桥设计 被引量:6
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作者 徐关尧 扶达鸿 沈愈峰 《钢结构》 北大核心 2015年第4期22-24,共3页
600t级运输车辆需通过贝雷式钢便桥。钢便桥采用贝雷式321型桁架单元,总长度228m,共19跨每跨12m,上承式结构。介绍了架桥点选取和便桥的结构布置及设计注意事项,提出了钢便桥使用维护措施。实际应用表明,钢便桥安全可靠,保障了大件运输... 600t级运输车辆需通过贝雷式钢便桥。钢便桥采用贝雷式321型桁架单元,总长度228m,共19跨每跨12m,上承式结构。介绍了架桥点选取和便桥的结构布置及设计注意事项,提出了钢便桥使用维护措施。实际应用表明,钢便桥安全可靠,保障了大件运输车辆的通行。 展开更多
关键词 贝雷片 钢便桥 大件运输 架桥点 设计荷载
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Research on the stiffening girder erection sequence of three-tower suspension bridge
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作者 Zheng Runqing Luo Xiheng 《Engineering Sciences》 EI 2012年第3期16-20,共5页
Compared to the conventional two-tower suspension bridge, the three-tower suspension bridge has obviously different characteristics in structural performance because of the extra middle tower and main span. The constr... Compared to the conventional two-tower suspension bridge, the three-tower suspension bridge has obviously different characteristics in structural performance because of the extra middle tower and main span. The construction sequence for the stiffening girder is significantly different between the three-tower suspension bridge and the two-tower suspension bridge. The tangential angle of the main cable is one of the controlling factors of the stiffening girder erection stage for a suspension bridge. According to 5 feasible cases for the stiffening girder erection scheme in Taizhou Bridge, the research about the tangential angle in each case mentioned above was made, and some factors that should be taken into account for the erection scheme of stiffening girder were pointed out. 展开更多
关键词 tangential angle of cable three-tower suspension bridge stiffening girder sequence of erection
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Research on stress concentration at tubular joints in concrete filled steel tubular truss arch bridge 被引量:1
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作者 LI Rui YE Liao-yuan CHEN Ying 《Journal of Civil Engineering and Architecture》 2009年第3期11-15,共5页
In this paper stresses at joints forming by hollow steel tube and concrete filled steel tube (CFST) are calculated, analyzed and compared. It is founded that the stress concentration at joints of CFST is a quite dif... In this paper stresses at joints forming by hollow steel tube and concrete filled steel tube (CFST) are calculated, analyzed and compared. It is founded that the stress concentration at joints of CFST is a quite different from that of hollow steel tube. A conclusion can be made that analysis of fatigue at the joints of CFST truss arch bridge can not apply the results developed from analyzing at joints of hollow steel tube in marine structure. 展开更多
关键词 concrete filled steel tube (CFST) JOINT stress concentration
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