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Assembled GIS storage cabin and assembling method
The invention discloses an assembled GIS storage cabin and an assembling method, which are used for the technical field of prefabricated cabins, and comprise a cabin body, and a supporting mechanism and a hoisting mechanism which are arranged in the cabin body; the supporting mechanism comprises at least two groups of supporting columns and at least two supporting beams; the tops of the supporting columns are fixedly connected with the top of the cabin body, and the bottoms of the supporting columns are fixedly connected with the bottom of the cabin body; the two supporting beams are arranged between the two sets of supporting columns, the two supporting beams are fixed to the side walls of the two sets of supporting columns respectively, and a hoisting mechanism is fixedly connected to the two supporting beams. When the hoisting mechanism moves transversely, the hoisting mechanism can generate transverse impact force, the transverse impact force is dispersed to the top and the bottom of the cabin body through multi-point connection of the supporting columns, the stress concentration situation possibly caused by single-point connection is avoided, and the bearing capacity of the supporting mechanism is improved.
本发明公开了一种组装式GIS存放舱及组装方法,用于预制舱技术领域,包括:舱体,以及设于舱体内的支撑机构和吊装机构;支撑机构包括至少两组支撑柱和至少两条支撑梁;支撑柱的顶部与舱体的顶部连接固定,支撑柱的底部与舱体的底部连接固定;两条支撑梁设于两组支撑柱之间,两条支撑梁分别固定于两组支撑柱的侧壁,两条支撑梁上连接固定有吊装机构。吊装机构横向移动时,吊装机构会产生横向冲击力,横向的冲击力通过支撑柱的多点连接被分散至舱体的顶部和底部,避免单点连接可能出现的应力集中情况,提高支撑机构的承载能力。
Assembled GIS storage cabin and assembling method
The invention discloses an assembled GIS storage cabin and an assembling method, which are used for the technical field of prefabricated cabins, and comprise a cabin body, and a supporting mechanism and a hoisting mechanism which are arranged in the cabin body; the supporting mechanism comprises at least two groups of supporting columns and at least two supporting beams; the tops of the supporting columns are fixedly connected with the top of the cabin body, and the bottoms of the supporting columns are fixedly connected with the bottom of the cabin body; the two supporting beams are arranged between the two sets of supporting columns, the two supporting beams are fixed to the side walls of the two sets of supporting columns respectively, and a hoisting mechanism is fixedly connected to the two supporting beams. When the hoisting mechanism moves transversely, the hoisting mechanism can generate transverse impact force, the transverse impact force is dispersed to the top and the bottom of the cabin body through multi-point connection of the supporting columns, the stress concentration situation possibly caused by single-point connection is avoided, and the bearing capacity of the supporting mechanism is improved.
本发明公开了一种组装式GIS存放舱及组装方法,用于预制舱技术领域,包括:舱体,以及设于舱体内的支撑机构和吊装机构;支撑机构包括至少两组支撑柱和至少两条支撑梁;支撑柱的顶部与舱体的顶部连接固定,支撑柱的底部与舱体的底部连接固定;两条支撑梁设于两组支撑柱之间,两条支撑梁分别固定于两组支撑柱的侧壁,两条支撑梁上连接固定有吊装机构。吊装机构横向移动时,吊装机构会产生横向冲击力,横向的冲击力通过支撑柱的多点连接被分散至舱体的顶部和底部,避免单点连接可能出现的应力集中情况,提高支撑机构的承载能力。
Assembled GIS storage cabin and assembling method
一种组装式GIS存放舱及组装方法
GU LIMING (Autor:in) / ZHANG QINGLI (Autor:in) / QI QIAN (Autor:in) / HUANG WEI (Autor:in) / CHEN AOBO (Autor:in) / DENG YEHENG (Autor:in) / ZHAO YANGYU (Autor:in) / FENG JIANHAO (Autor:in) / ZHENG SHAOHONG (Autor:in) / LIU CHUFENG (Autor:in)
06.12.2024
Patent
Elektronische Ressource
Chinesisch
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