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Circular steel pipeline structure of single-line low-vacuum pipeline high-speed maglev traffic bridge
The invention discloses a single-line type low-vacuum pipeline high-speed maglev traffic bridge circular steel pipeline structure which comprises a circular pipeline assembly and a plurality of saddles supported at the bottom of the outer side of the circular pipeline assembly, and the circular pipeline assembly comprises a low-vacuum maglev transition pipeline and a running line pipeline. The two ends of the low-vacuum magnetic levitation transition pipeline are each provided with an isolation cabin door, the running line pipeline comprises a first-section pipeline, a plurality of standard-section pipelines and a tail-section pipeline, a blind cover is arranged at the tail of the tail-section pipeline, and a plurality of observation windows are arranged on the low-vacuum magnetic levitation transition pipeline. And the first-section pipeline, the standard-section pipeline and the tail-section pipeline are all formed by welding round steel pipes. According to the invention, the structural design is reasonable, the mechanical reliability is high, the vacuum pipeline system is divided through unitization, standardized sectional processing can be carried out, the specification number of components is reduced, the manufacturing, processing, mounting and maintenance process of workpieces is simplified, and the size specification can be adjusted in units to adapt to different operation lines according to different magnetic suspension operation line requirements.
本发明公开了一种单线式低真空管道高速磁浮交通桥梁圆形钢制管道结构,包括圆形管道组件和支撑在圆形管道组件外侧底部的多个鞍座,圆形管道组件包括低真空磁浮过渡管道和运行线管道,低真空磁浮过渡管道的两端分别设置有一个隔离舱门,运行线管道包括首节管道、多个标准节管道和尾节管道,尾节管道的尾部设置有盲盖,低真空磁浮过渡管道上设置有多个观察窗,首节管道、标准节管道和尾节管道均由圆形钢管焊接而成。本发明结构设计合理,机械可靠性强,通过单元化对真空管道系统进行划分,可进行标准化分节加工,减少构件的规格数量,简化工件的制造加工安装与维护工艺,能根据不同的磁浮运行线要求,分单元调整尺寸规格适应不同的运行线路。
Circular steel pipeline structure of single-line low-vacuum pipeline high-speed maglev traffic bridge
The invention discloses a single-line type low-vacuum pipeline high-speed maglev traffic bridge circular steel pipeline structure which comprises a circular pipeline assembly and a plurality of saddles supported at the bottom of the outer side of the circular pipeline assembly, and the circular pipeline assembly comprises a low-vacuum maglev transition pipeline and a running line pipeline. The two ends of the low-vacuum magnetic levitation transition pipeline are each provided with an isolation cabin door, the running line pipeline comprises a first-section pipeline, a plurality of standard-section pipelines and a tail-section pipeline, a blind cover is arranged at the tail of the tail-section pipeline, and a plurality of observation windows are arranged on the low-vacuum magnetic levitation transition pipeline. And the first-section pipeline, the standard-section pipeline and the tail-section pipeline are all formed by welding round steel pipes. According to the invention, the structural design is reasonable, the mechanical reliability is high, the vacuum pipeline system is divided through unitization, standardized sectional processing can be carried out, the specification number of components is reduced, the manufacturing, processing, mounting and maintenance process of workpieces is simplified, and the size specification can be adjusted in units to adapt to different operation lines according to different magnetic suspension operation line requirements.
本发明公开了一种单线式低真空管道高速磁浮交通桥梁圆形钢制管道结构,包括圆形管道组件和支撑在圆形管道组件外侧底部的多个鞍座,圆形管道组件包括低真空磁浮过渡管道和运行线管道,低真空磁浮过渡管道的两端分别设置有一个隔离舱门,运行线管道包括首节管道、多个标准节管道和尾节管道,尾节管道的尾部设置有盲盖,低真空磁浮过渡管道上设置有多个观察窗,首节管道、标准节管道和尾节管道均由圆形钢管焊接而成。本发明结构设计合理,机械可靠性强,通过单元化对真空管道系统进行划分,可进行标准化分节加工,减少构件的规格数量,简化工件的制造加工安装与维护工艺,能根据不同的磁浮运行线要求,分单元调整尺寸规格适应不同的运行线路。
Circular steel pipeline structure of single-line low-vacuum pipeline high-speed maglev traffic bridge
单线式低真空管道高速磁浮交通桥梁圆形钢制管道结构
FANG YAN (Autor:in) / LI LIANGCHUAN (Autor:in) / ZHOU WEI (Autor:in) / XU WENMING (Autor:in) / FAN XIANWEI (Autor:in) / MA CHAO (Autor:in) / WEI MINGXING (Autor:in) / LU PAN (Autor:in) / WU HAIJUN (Autor:in) / JING HUASHAN (Autor:in)
26.01.2024
Patent
Elektronische Ressource
Chinesisch
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