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An intelligent anti-tilt correction device and construction method for strip-based brick walls of cultural relic buildings

A construction and strip-based technology, applied in construction, building maintenance, protection devices, etc., can solve problems such as lack of intelligent rectification function, wall tilt, and walls with a large length cannot be used

Active Publication Date: 2021-08-20
中铁建科江门人才岛投资有限公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition to the earthquake resistance problem, some cultural relics buildings have wall tilting problems. The existing technical solutions neither have the function of intelligent tilt correction, nor can they be used for walls with a long length. technology ban program

Method used

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  • An intelligent anti-tilt correction device and construction method for strip-based brick walls of cultural relic buildings
  • An intelligent anti-tilt correction device and construction method for strip-based brick walls of cultural relic buildings
  • An intelligent anti-tilt correction device and construction method for strip-based brick walls of cultural relic buildings

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0037] In the specific implementation process, please refer to the figure 1 , figure 2 , image 3 , Figure 4 with Figure 11, the intelligent anti-tilt correction device for the strip-based brick wall of a cultural relic building, including land 1, foundation body 2, wall body 3, compressive stress sheet 4 and MCU module 5, the top of land 1 is poured with foundation body 2, and foundation body 2 is close to the top An installation groove 6 is provided, and the upper surface of the installation groove 6 is located on the upper surface of the wall body 3. A cover seam plate 7 is provided to facilitate cleaning or maintenance of the shock absorbing mechanism 11 on the inner wall of the installation groove 6, and the bottom of the inner wall of the installation groove 6 is fixed. The wall body 3 is connected, and the foundation beam 8 is fixedly connected to the top side of the foundation body 2. In this embodiment, a prefabricated reinforced concrete baffle is used as the f...

Embodiment 2

[0053] see Figure 11 The difference between this embodiment and Embodiment 1 is that the two sides of the wall body 3 are symmetrically equipped with a foundation beam 8, a strengthening mechanism 9, an anti-deformation mechanism 10 and a stretching mechanism 14. Selective installation is carried out according to the damaged condition, and double-sided support is carried out to correct and strengthen the wall body 3.

[0054] Working principle: By installing an intelligent anti-shock device on the side of the wall body 3 close to the room, the damage to the original building is small, and the external appearance of the cultural relic wall building is not affected. The foundation beam 8 strengthens the connection between the wall body 3 and the outer surface of the foundation body 2, increases the overall performance of the ancient building, can enhance the stability of the building, and reduces vibration; When an earthquake occurs, the surface of the wall body 3 is deformed ...

Embodiment 3

[0057] When the wall body 3 is an inclined wall with a length less than 3 meters, the device is installed on both sides of the wall body 3 and the bottom of the foundation body (2), and the external device is fixedly installed at a reasonable position on the wall body to provide positioning and anti-inversion The role of the hydraulic cylinder (103) of the inner device is driven, the anti-deformation mechanism and the stretching mechanism (14) run simultaneously, the connecting plate (104) and the strengthening mechanism (9) are lifted, the wall body 3 is lifted, and the stretching mechanism (14) is simultaneously The direction of rotation increases the contact surface between the outsourcing steel frame (91) and the wall body 3, and drives the wall body 3 to rotate and lift, so that the wall body 3 resets according to the operating direction of the stretching mechanism (14) and the strengthening mechanism (9). By running the anti-deformation mechanism, the invention can restor...

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Abstract

The invention relates to the technical field of blue-brick wall cultural relic building protection and intelligent robots, in particular to an intelligent anti-tilt correction device and a construction method for the strip-based brick wall of a cultural relic building. The present invention includes land, a foundation body, a wall body, a compressive stress sheet and an MCU module. The top of the land is poured with a foundation body. The foundation body is provided with an installation groove near the top, and the upper surface of the installation groove is located on the wall body. The surface is movable with a cover seam plate, the bottom of the inner wall of the installation groove is fixedly connected to the wall body, the top side of the foundation body is fixedly connected to the foundation beam, and the side of the foundation beam close to the wall body is fixedly connected to the wall body , the side of the wall body close to the foundation beam is equidistantly equipped with compressive stress sheets, and the plurality of compressive stress sheets are electrically connected to the MCU module. In the present invention, a single structure is set, and then evenly distributed on the inner wall and the foundation, so as to reduce the damage of the foundation when it encounters earthquake damage and enhance the overall stability of the ancient building.

Description

technical field [0001] The invention relates to the technical field of blue-brick wall cultural relic building protection and intelligent robots, in particular to an intelligent anti-tilt correction device and a construction method for the strip-based brick wall of a cultural relic building. Background technique [0002] The cultural relic buildings with blue brick walls and a large number of masonry structures in rural areas are most likely to be damaged and collapsed in earthquakes. The characteristics of blue brick walls are that the wall is the load-bearing member, and its rigidity is large, the natural vibration period is small, and the earthquake effect is very strong. However, the material of the masonry structure has low shear and tensile strength and poor ductility. Therefore, the ancient buildings with blue brick walls are often severely damaged in earthquakes. Historical data show that the structural damage and collapse rate reach 9 degrees. Reaching more than 80%...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E02D35/00E02D31/08E04G23/04
CPCE02D31/08E02D35/00E04G23/04
Inventor 李寿福宋永杰张以红陈宝军范晓明李德溢段琎磊
Owner 中铁建科江门人才岛投资有限公司
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