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Steel box girder and machining method
The invention provides a steel box girder and a machining method, and relates to the technical field of bridge engineering.The steel box girder comprises a girder body, a hoisting mechanism is arranged on the outer wall of the top end of the girder body, an alignment mechanism is arranged on the outer wall of the bottom end of the girder body, a buffering mechanism is arranged on the inner wall of the left side of the girder body, and the buffering mechanism comprises a moving plate; the outer wall of the movable plate is fixedly connected with a partition plate, and the outer wall of the movable plate is elastically connected with a sliding plate through a buffer spring. Through cooperation of structures such as a buffer spring and a hand wheel, after an alignment block is inserted into an alignment groove in the left side of the other beam body, the buffer effect can be improved through contraction of the buffer spring and a telescopic spring and movement of a first damping ring and a second damping ring along with a connecting rod, and when the two beam bodies are connected, energy generated during collision is absorbed and dispersed; and the direct influence of impact force on the beam body is reduced, so that bad conditions such as abrasion and deformation are reduced, and the safety and reliability of connection are improved.
本发明提供了一种钢箱梁及加工方法,涉及桥梁工程技术领域,包括梁体,所述梁体的顶端外壁设置有吊装机构,所述梁体的底端外壁设置有对正机构,所述梁体的左侧内壁设置有缓冲机构,所述缓冲机构包括移动板,所述移动板的外壁固定连接有隔板,所述移动板的外壁通过缓冲弹簧弹性连接有滑动板。本发明通过设置缓冲弹簧和手轮等结构的配合,在对正块插入另一组梁体左侧对正槽中后,通过缓冲弹簧与伸缩弹簧收缩,第一阻尼环与第二阻尼环随连接杆移动,可提高缓冲效果,当两组梁体之间连接时,吸收和分散碰撞时产生的能量,减轻冲击力对梁体的直接影响,进而减少磨损、变形等不良情况的发生,提高连接的安全性和可靠性。
Steel box girder and machining method
The invention provides a steel box girder and a machining method, and relates to the technical field of bridge engineering.The steel box girder comprises a girder body, a hoisting mechanism is arranged on the outer wall of the top end of the girder body, an alignment mechanism is arranged on the outer wall of the bottom end of the girder body, a buffering mechanism is arranged on the inner wall of the left side of the girder body, and the buffering mechanism comprises a moving plate; the outer wall of the movable plate is fixedly connected with a partition plate, and the outer wall of the movable plate is elastically connected with a sliding plate through a buffer spring. Through cooperation of structures such as a buffer spring and a hand wheel, after an alignment block is inserted into an alignment groove in the left side of the other beam body, the buffer effect can be improved through contraction of the buffer spring and a telescopic spring and movement of a first damping ring and a second damping ring along with a connecting rod, and when the two beam bodies are connected, energy generated during collision is absorbed and dispersed; and the direct influence of impact force on the beam body is reduced, so that bad conditions such as abrasion and deformation are reduced, and the safety and reliability of connection are improved.
本发明提供了一种钢箱梁及加工方法,涉及桥梁工程技术领域,包括梁体,所述梁体的顶端外壁设置有吊装机构,所述梁体的底端外壁设置有对正机构,所述梁体的左侧内壁设置有缓冲机构,所述缓冲机构包括移动板,所述移动板的外壁固定连接有隔板,所述移动板的外壁通过缓冲弹簧弹性连接有滑动板。本发明通过设置缓冲弹簧和手轮等结构的配合,在对正块插入另一组梁体左侧对正槽中后,通过缓冲弹簧与伸缩弹簧收缩,第一阻尼环与第二阻尼环随连接杆移动,可提高缓冲效果,当两组梁体之间连接时,吸收和分散碰撞时产生的能量,减轻冲击力对梁体的直接影响,进而减少磨损、变形等不良情况的发生,提高连接的安全性和可靠性。
Steel box girder and machining method
一种钢箱梁及加工方法
LAN JIACAI (Autor:in) / LI SHIHUA (Autor:in) / KE ZUNSHUANG (Autor:in) / MING CHEN (Autor:in) / JIA YAN (Autor:in) / ZHANG ZHIHONG (Autor:in) / XU YANG (Autor:in) / KIM MIN (Autor:in) / WEN JIANHONG (Autor:in) / TAN YAO (Autor:in)
07.01.2025
Patent
Elektronische Ressource
Chinesisch
IPC:
E01D
BRIDGES
,
Brücken
/
B05D
PROCESSES FOR APPLYING LIQUIDS OR OTHER FLUENT MATERIALS TO SURFACES, IN GENERAL
,
Verfahren zum Aufbringen von Flüssigkeiten oder von anderen fließfähigen Stoffen auf Oberflächen allgemein
/
B23K
Löten
,
SOLDERING OR UNSOLDERING
/
G01N
Untersuchen oder Analysieren von Stoffen durch Bestimmen ihrer chemischen oder physikalischen Eigenschaften
,
INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
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