期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
下承式钢箱梁系杆桥施工关键技术研究
1
作者 侯俊太 石会民 李素巧 《交通世界》 2023年第33期140-142,共3页
为进一步发挥下承式钢箱梁系杆拱桥的特点,以某桥梁工程实例为依托,对下承式钢箱梁系杆桥施工关键技术展开论述。研究表明,在下承式钢箱梁系杆桥施工过程中,可将重点放在钢箱拱、吊杆和系杆等方面,了解并掌握相关的施工技术及实施要点,... 为进一步发挥下承式钢箱梁系杆拱桥的特点,以某桥梁工程实例为依托,对下承式钢箱梁系杆桥施工关键技术展开论述。研究表明,在下承式钢箱梁系杆桥施工过程中,可将重点放在钢箱拱、吊杆和系杆等方面,了解并掌握相关的施工技术及实施要点,以确保施工质量达标,此举对提高桥梁结构的稳定性和耐久性具有重要意义。 展开更多
关键词 下承式 钢箱梁 系杆桥 施工技术
下载PDF
某旧危桥动静试验检测实例 被引量:3
2
作者 杨国龙 《广东土木与建筑》 2007年第8期53-55,共3页
某下承式钢筋混凝土系杆拱桥, 由于建造年代久远, 长期的使用导致桥体积累了较多损伤和病害, 为了保证该桥正常安全运行, 需要对其工作性能和承载能力进行检测鉴定, 文中介绍试验的实施情况。
关键词 混凝土混凝土系杆桥 静载试验 动测
下载PDF
Experimental investigation on seismic performance of rigid frame tied-arch bridge with split-piers 被引量:3
3
作者 丁文胜 吕志涛 +2 位作者 刘钊 臧华 李国亮 《Journal of Southeast University(English Edition)》 EI CAS 2006年第4期534-538,共5页
A novel seismic design method, namely split-pier seismic design, is proposed. A vertical gap and connect elements are set in split-piers. The lateral stiffness of piers is reduced by cracking of the connect elements u... A novel seismic design method, namely split-pier seismic design, is proposed. A vertical gap and connect elements are set in split-piers. The lateral stiffness of piers is reduced by cracking of the connect elements under severe earthquake, and the seismic response of bridges is reduced by avoiding the site predominant periods. A model of tied-arch rigid frame bridge with split-piers was designed. Seismic performance was investigated by pseudo-static experimentation on the scale model, The failure process of split-piers, the hysteresis characteristic and the effect of split-piers on the superstructure are presented. Results show that the split-pier has better seismic performance than common ductile piers do. 展开更多
关键词 seismic design split-pier PIER rigid frame tied-arch bridge seismic performance
下载PDF
Improved methods for decreasing stresses of concrete slab of large-span through tied-arch composite bridge 被引量:2
4
作者 周德 叶梅新 罗如登 《Journal of Central South University》 SCIE EI CAS 2010年第3期648-652,共5页
Mechanical behavior of concrete slab of large-span through tied-arch composite bridge was investigated by finite element analysis (FEA). Improved methods to decrease concrete stresses were discussed based on compariso... Mechanical behavior of concrete slab of large-span through tied-arch composite bridge was investigated by finite element analysis (FEA). Improved methods to decrease concrete stresses were discussed based on comparisons of different deck schemes, construction sequences and measures, and ratios of reinforcement. The results show that the mechanical behavior of concrete slab gets worse with the increase of composite regions between steel beams and concrete slab. The deck scheme with the minimum composite region is recommended on condition that both strength and stiffness of the bridge meet design demands under service loads. Adopting in-situ-place construction method, concrete is suggested to be cast after removing the full-supported frameworks under the bridge. Thus, the axial tensile force of concrete slab caused by the first stage dead load is eliminated. Preloading the bridge before concrete casting and removing the load after the concrete reaching its design strength, the stresses of concrete slab caused by the second stage dead load and live load are further reduced or even eliminated. At last, with a high ratio of reinforcement more than 3%, the concrete stresses decrease obviously. 展开更多
关键词 composite bridge concrete slab tension through tied-arch large span finite element method
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部