1) tether controlled system
受控缆索系统
2) cable system
缆索系统
1.
However, recent years the problem of bridge cable system endurance starts presenting, especially the cable-stayed bridge s frequent changing of cable because of corrosion inactivation in short period influences the bridge normal application life span severely.
然而,近年来,桥梁缆索系统的耐久性问题开始显现,特别是斜拉桥在短时间内由于腐蚀失效而换索的情况屡见不鲜,严重影响了桥梁的正常使用寿命,同时也造成了巨大的经济损失和人员伤亡,给社会造成了沉重的负担。
3) cable-controlled system
缆控系统
4) cable crane system
缆索吊系统
6) cable lifting system
缆索吊装系统
1.
This paper summarizes the construction experiences of lifting of steel pipe arch for Xiangjiang bridge in Xiangtan, it presents in details the cable lifting system without support for large span bridge.
本文通过湘潭市湘江大桥钢管拱吊装的施工实践,详细介绍了大跨径桥梁无支架缆索吊装系统的施工技术。
2.
The superstructure of Jintao Bridge over the Meishan Reservoir in Jinzhai County,Anhui Province was erected by the cable lifting system without supports.
安徽省金寨县梅山水库金桃大桥采用无支架缆索吊装方案进行上部结构安装,缆索吊装系统采用连续4索跨结构,索跨组合为42。
补充资料:超导磁体为主要部件的受控核聚变托卡马克装置
超导磁体为主要部件的受控核聚变托卡马克装置
超导磁体为主要部件的受控核聚变托卡马克装置
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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