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Formwork creeping method for novel 1.6 parabola-shaped four-column type hollow variable section high pier

A parabolic, column-slab type technology, which is applied to bridge parts, erection/assembly of bridges, bridges, etc., can solve various problems in installation, reinforcement or deviation correction, troublesome completion of bridge construction, difficult control of formwork linear structure, etc. , to achieve the effects of flexible assembly, shortened construction period, and novel ideas

Inactive Publication Date: 2013-09-18
CENT SOUTH UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] The more common parabolic cross-sections are 1.6-degree parabola and 1.8-degree parabola. During the construction of these piers, the linear structure of the formwork is difficult to control, the formwork gap is large, and various problems are prone to occur in installation, reinforcement or deviation correction. Both caused all sorts of troubles for the expected completion of the bridge construction.

Method used

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  • Formwork creeping method for novel 1.6 parabola-shaped four-column type hollow variable section high pier
  • Formwork creeping method for novel 1.6 parabola-shaped four-column type hollow variable section high pier
  • Formwork creeping method for novel 1.6 parabola-shaped four-column type hollow variable section high pier

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Embodiment Construction

[0020] In order to make the technical means, creative features, goals and effects achieved by the present invention easy to understand, the present invention will be further described below in conjunction with specific illustrations.

[0021] see Figure 1-3 The 1.6-degree parabola-shaped new column-slab-type hollow high pier, the pier body is composed of 4 variable-section columns, the top 30m of the column is in a straight line, and the lower part 75m is arranged according to the 1.6-degree parabola in the longitudinal and transverse bridge directions, and reinforced concrete is set between the columns. The plates are interconnected to form a rectangular thin-walled structure.

[0022] see Figure 4-7 According to the installation method of the bridge pier formwork, climb according to this installation method. The climbing process is: after the first concrete pouring, remove the formwork and support; clean up the sundries on the surface of the formwork; hoist the climbing f...

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Abstract

The invention provides a formwork creeping method for a novel 1.6 parabola-shaped four-column type hollow variable section high pier. The method comprises the following steps: burying an embedded part into concrete; mounting a guide rail on the embedded part; realizing the climbing of a formwork system by utilizing the interaction between the guide rail and a pylon. The process of formwork creeping is that mounting a lower frame body, mounting an upper frame body, pouring concrete, moving the upper frame body backwards, moving upwards and fixing the guide rail, moving upwards the hydraulic pressure of the frame bodies, moving forwards the upper frame body, and pouring concrete at the next section. According to the invention, the formwork creeping method is ingenious in conception, enables the erecting structure of a 1.6 parabola-shaped high pier formwork to be reasonable, is safe to use, flexible to assemble, and convenient to refit, saves construction cost, and greatly shortens construction period.

Description

technical field [0001] The invention relates to building construction, in particular to a climbing formwork construction technology for a novel column-slab type hollow high pier. Background technique [0002] During the construction of high bridge piers, the common cross-section forms of bridge piers are constant cross-section and quadratic parabolic cross-section. This type of pier formwork is easier to control the linear structure of the formwork in the process of raising the mold, the assembly and fixing process between the formwork is simple, and the gap between the formwork is easier to control. [0003] The more common parabolic cross-sections are 1.6-degree parabola and 1.8-degree parabola. During the construction of these piers, the linear structure of the formwork is difficult to control, the formwork gap is large, and various problems are prone to occur in installation, reinforcement or deviation correction. All brought various troubles to the expected completion ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E01D21/00E01D19/02
Inventor 杨小礼刘义立刘玮任高峰
Owner CENT SOUTH UNIV
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