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Tower top force transfer structure for concrete filled steel tube combined tower
The invention relates to the technical field of bridge engineering, in particular to a tower top force transmission structure for a concrete filled steel tube combined tower, which comprises a force transmission shell, the force transmission shell comprises a horizontal bearing plate and a vertical coaming, the horizontal bearing plate is used for being arranged at the tops of all tower columns, and the vertical coaming is arranged on one side, far away from the tower columns, of the horizontal bearing plate and is arranged along the circumferential direction of the horizontal bearing plate; the force transmission shell is used for defining a containing cavity, the containing cavity is used for being filled with concrete, and the force transmission shell and the concrete act synergistically to transmit loads. The first stiffening structure is arranged in the containing cavity and connected with the horizontal bearing plate and the vertical surrounding plate. The second stiffening structure is arranged on the lower side of the horizontal bearing plate and used for being connected with the tower column. The containing cavity is used for being filled with concrete, the first stiffening structure strengthens the collaboration of the concrete and the force transmission shell, the second stiffening structure disperses the load transmitted by the force transmission shell to the tower column, the force transmission shell can serve as a construction formwork of the concrete, the construction procedures are reduced, the construction difficulty is reduced, and the construction time is shortened.
本申请涉及一种用于钢管混凝土组合塔的塔顶传力结构,涉及桥梁工程技术领域,包括传力外壳,其包括水平承压板和竖向围板,水平承压板用于设置在所有塔柱顶部,竖向围板设置在水平承压板远离塔柱的一侧,并沿水平承压板周向设置,用于围成容纳腔,容纳腔内用于填充混凝土,并使传力外壳与混凝土协同作用,传递荷载;第一加劲结构,其设置在容纳腔内,并与水平承压板和竖向围板连接;第二加劲结构,其设置在水平承压板的下侧,并用于与塔柱连接。容纳腔内用于填充混凝土,第一加劲结构加强混凝土与传力外壳的协同性,第二加劲结构将传力外壳传递的荷载分散至塔柱,传力外壳可以作为混凝土的施工模板,减少了施工工序和施工难度,缩短了施工时间。
Tower top force transfer structure for concrete filled steel tube combined tower
The invention relates to the technical field of bridge engineering, in particular to a tower top force transmission structure for a concrete filled steel tube combined tower, which comprises a force transmission shell, the force transmission shell comprises a horizontal bearing plate and a vertical coaming, the horizontal bearing plate is used for being arranged at the tops of all tower columns, and the vertical coaming is arranged on one side, far away from the tower columns, of the horizontal bearing plate and is arranged along the circumferential direction of the horizontal bearing plate; the force transmission shell is used for defining a containing cavity, the containing cavity is used for being filled with concrete, and the force transmission shell and the concrete act synergistically to transmit loads. The first stiffening structure is arranged in the containing cavity and connected with the horizontal bearing plate and the vertical surrounding plate. The second stiffening structure is arranged on the lower side of the horizontal bearing plate and used for being connected with the tower column. The containing cavity is used for being filled with concrete, the first stiffening structure strengthens the collaboration of the concrete and the force transmission shell, the second stiffening structure disperses the load transmitted by the force transmission shell to the tower column, the force transmission shell can serve as a construction formwork of the concrete, the construction procedures are reduced, the construction difficulty is reduced, and the construction time is shortened.
本申请涉及一种用于钢管混凝土组合塔的塔顶传力结构,涉及桥梁工程技术领域,包括传力外壳,其包括水平承压板和竖向围板,水平承压板用于设置在所有塔柱顶部,竖向围板设置在水平承压板远离塔柱的一侧,并沿水平承压板周向设置,用于围成容纳腔,容纳腔内用于填充混凝土,并使传力外壳与混凝土协同作用,传递荷载;第一加劲结构,其设置在容纳腔内,并与水平承压板和竖向围板连接;第二加劲结构,其设置在水平承压板的下侧,并用于与塔柱连接。容纳腔内用于填充混凝土,第一加劲结构加强混凝土与传力外壳的协同性,第二加劲结构将传力外壳传递的荷载分散至塔柱,传力外壳可以作为混凝土的施工模板,减少了施工工序和施工难度,缩短了施工时间。
Tower top force transfer structure for concrete filled steel tube combined tower
一种用于钢管混凝土组合塔的塔顶传力结构
YANG GUANGWU (author) / LIU KEFENG (author) / SHAN QIUWEI (author) / CHEN DEZHU (author) / ZOU MINYONG (author) / LI LIN (author) / XIE XIN (author) / ZHENG YAPENG (author) / WANG WEI (author) / LIU QISHUN (author)
2024-05-07
Patent
Electronic Resource
Chinese
IPC:
E01D
BRIDGES
,
Brücken
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