Construction method of non-composite crack-resistant sandwich wall panel

Through the combined use of stability and adjustment mechanisms, the problem of impact on the construction progress in non-combined wall panel construction is solved, efficient wall panel installation and inspection is achieved, and the risk of wall cracking is reduced.

CN115538656BActive Publication Date: 2025-07-22GUANGDONG BOJUN CONSTR ENG CO LTD
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Patent Information

Application Number
CN202211061507.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-01
Publication Date
2025-07-22
Estimated Expiration
2042-09-01

AI Technical Summary

Technical Problem

In the prior art, flatness and verticality testing are required after installation of non-combination wall panels, which affects the construction progress and makes it difficult to improve construction efficiency.

Method used

The stabilization mechanism and the adjustment mechanism are adopted. The non-combined anti-crack sandwich wall panels are cooperated with the adjustment mechanism to achieve pre-fixation and adjustment of the wall panels, and the detection and positioning mechanism is combined for rapid detection and adjustment, reducing the possibility of wall cracking.

Benefits of technology

It improves construction efficiency, simplifies the installation and inspection process of wall panels, and reduces the possibility of wall cracking.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to the field of building construction, and in particular to a construction method for a non-composite crack-resistant sandwich wall panel, which includes the following steps: cleaning the surfaces of the wall and the floor; connecting the installation structure of the non-composite crack-resistant sandwich wall panel to the interior of the house; connecting the non-composite crack-resistant sandwich wall panels between the installation structures of the non-composite crack-resistant sandwich wall panels; detecting the flatness and verticality between multiple non-composite crack-resistant sandwich wall panels through the non-composite crack-resistant sandwich wall panels; adjusting the positions of different non-composite crack-resistant sandwich wall panels; and fixing the non-composite crack-resistant sandwich wall panels to each other. This application has the effect of improving construction efficiency.
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Description

Technical Field

[0001] This application relates to the field of building construction, and particularly to a construction method for a non-composite anti-cracking sandwich wall panel. Background Art

[0002] In order to improve construction efficiency, non-composite wall panels are the most common choice during house construction. When installing wall panels, first, adjacent wall panels are set up, then fixed with concrete, and finally, the flatness and perpendicularity of the wall surface are detected, and the unqualified walls are corrected. For the related technology mentioned above, the inventor found that when correcting unqualified walls, since operations such as leveling the wall surface are required, it seriously affects the project progress. Summary of the Invention

[0003] In order to improve construction efficiency, this application provides a construction method for a non-composite anti-cracking sandwich wall panel.

[0004] The construction method for a non-composite anti-cracking sandwich wall panel provided by this application adopts the following technical solutions:

[0005] A construction method for a non-composite anti-cracking sandwich wall panel, the installation structure of the non-composite anti-cracking sandwich wall panel includes a stabilizing mechanism connected to the roof and an adjusting mechanism connected to the ground. The bottom of the non-composite anti-cracking sandwich wall panel is rotatably connected to the adjusting mechanism, and the top of the non-composite anti-cracking sandwich wall panel is limited between the stabilizing mechanisms.

[0006] By adopting the above technical solutions, during installation, the stabilizing mechanism is fixedly connected to the roof, the adjusting mechanism is fixedly connected to the ground, and the non-composite anti-cracking sandwich wall panel is rotatably connected to the adjusting mechanism. When adjacent non-composite anti-cracking sandwich wall panels are not in the same plane, the non-composite anti-cracking sandwich wall panel is adjusted to the same plane through the adjusting mechanism, and the non-composite anti-cracking sandwich wall panel is limited between the stabilizing mechanisms. The stabilizing mechanism plays a role in pre-fixing and pre-limiting the non-composite anti-cracking sandwich wall panel, facilitating the user to adjust the position of the non-composite anti-cracking sandwich wall panel, improving the convenience of construction work, and improving work efficiency.

[0007] Optionally, the adjusting mechanism includes a mounting base fixedly connected to the ground and a rotating shaft fixedly connected to the mounting base. The rotating shaft is inserted into the bottom of the non-composite anti-cracking sandwich wall panel and is rotatably connected to the non-composite anti-cracking sandwich wall panel.

[0008] By adopting the above technical solutions, the position adjustment of the non-composite anti-cracking sandwich wall panel is realized, and the construction efficiency is improved.

[0009] Optionally, the adjustment mechanism further includes a compensation block fixedly connected to the mounting base. Each adjustment mechanism has two rotating shafts, which are respectively located on both sides of the compensation block. The compensation block is located between two adjacent non-combined anti-cracking sandwich wall panels.

[0010] By adopting the above technical solution, the compensation block can serve as an attachment point for cement or concrete, facilitating the more stable formation of concrete or cement when fixing two non-combined anti-cracking sandwich wall panels.

[0011] Optionally, the number of the adjustment mechanisms is multiple, and the multiple adjustment mechanisms are linearly arranged. The stabilizing mechanism includes a limiting strip fixedly connected to the roof. The limiting strip is located directly above the multiple adjustment mechanisms. A limiting groove is formed on the surface of the limiting strip facing the ground, and the top of the non-combined anti-cracking sandwich wall panel is located inside the limiting groove.

[0012] By adopting the above technical solution, the non-combined anti-cracking sandwich wall panel is limited.

[0013] Optionally, the stabilizing mechanism further includes a limiting cylinder fixedly connected to the limiting strip and a butting strip fixedly connected to the output end of the limiting cylinder. The length direction of the butting strip is parallel to the length direction of the limiting strip. The output end of the limiting cylinder is located inside the limiting groove, and the butting strip abuts against the non-combined anti-cracking sandwich wall panel.

[0014] By adopting the above technical solution, pre-fixing of the non-combined anti-cracking sandwich wall panel is achieved, facilitating the user to fix the non-combined anti-cracking sandwich wall panel.

[0015] Optionally, the number of the limiting cylinders is multiple, and the multiple limiting cylinders are evenly arranged along the length direction of the butting strip.

[0016] By adopting the above technical solution, the movement of the butting strip is more uniform, improving the stability of the pre-fixing of the non-combined anti-cracking sandwich wall panel.

[0017] Optionally, it further includes a detection and positioning mechanism for detecting the verticality of the non-combined anti-cracking sandwich wall panel. The detection and positioning mechanism is connected to the butting strip, and one end of the detection and positioning mechanism moves in the vertical direction.

[0018] By adopting the above technical solution, when the detection and positioning mechanism moves, it detects the wall surface. There is no need for the user to use a leveling ruler for detection, improving the detection efficiency. And the user can correct the position of the non-combined anti-cracking sandwich wall panel according to the detection result, facilitating the user's work.

[0019] Optionally, the detection and positioning mechanism includes a winding and unwinding roller rotatably connected to the abutting strip, a crack prevention cloth wound around the winding and unwinding roller, and a detection rod fixedly connected to the crack prevention cloth. The length direction of the winding and unwinding roller is parallel to the length direction of the abutting strip. The detection rod is located at one end of the crack prevention cloth close to the ground. A plurality of detection meters are arranged on the surface of the detection rod, and the probes of the detection meters abut against the surface of the non-composite crack prevention sandwich wall panel.

[0020] By adopting the above technical solution, the detection of the wall surface is realized.

[0021] Optionally, the non-composite crack prevention sandwich wall panel is provided with a crack prevention layer.

[0022] By adopting the above technical solution, the possibility of wall cracking is reduced.

[0023] In summary, the present application includes the following beneficial technical effects of at least the construction method of the non-composite crack prevention sandwich wall panel:

[0024] 1. The present application realizes the position adjustment of the wall panel by setting the stabilizing mechanism and the adjusting mechanism, improving the construction efficiency;

[0025] 2. The present application detects the wall surface by setting the detection and positioning mechanism, facilitating the user to conduct the detection;

[0026] 3. The present application reduces the possibility of wall panel cracking by setting the crack prevention cloth and the crack prevention layer. Description of the Drawings

[0027] Figure 1 It is a schematic diagram of the installation structure of the non-composite crack prevention sandwich wall panel;

[0028] Figure 2 It is a schematic diagram of the structure of the adjusting mechanism;

[0029] Figure 3 It is a schematic diagram of the structure aiming to emphasize the connection relationship between the stabilizing mechanism and the detection and positioning mechanism;

[0030] Figure 4 It is a schematic diagram of the structure of the non-composite crack prevention sandwich wall panel.

[0031] Description of the reference numerals: 1, non-composite crack prevention sandwich wall panel; 11, crack prevention layer; 2, stabilizing mechanism; 21, limiting strip; 211, limiting groove; 22, limiting cylinder; 23, abutting strip; 3, adjusting mechanism; 31, mounting seat; 32, rotating shaft; 33, compensating block; 4, detection and positioning mechanism; 41, winding and unwinding roller; 42, crack prevention cloth; 43, detection rod; 431, detection meter. Detailed Description of the Embodiment

[0032] The following will further describe the present application in detail Figures 1-4 with reference to the accompanying drawings.

[0033] An embodiment of the present application discloses a construction method for a non-composite anti-cracking sandwich wall panel.

[0034] S1. Clean the surfaces of the wall and the ground to prevent excessive dirt on the wall and the ground from affecting the fixing stability of the non-composite anti-cracking sandwich wall panel 1.

[0035] S2. Connect the installation structure of the non-composite anti-cracking sandwich wall panel to the interior of the house. The installation structure of the non-composite anti-cracking sandwich wall panel includes a stabilizing mechanism 2 connected to the roof, an adjusting mechanism 3 connected to the ground, and a detection and positioning mechanism 4 connected to the stabilizing mechanism 2. During installation, fixedly connect the stabilizing mechanism 2 to the roof and fixedly connect the adjusting mechanism 3 to the ground.

[0036] S3. Connect the non-composite anti-cracking sandwich wall panel 1 between the installation structures of the non-composite anti-cracking sandwich wall panel. Rotationally connect the non-composite anti-cracking sandwich wall panel 1 to the adjusting mechanism 3. When adjacent non-composite anti-cracking sandwich wall panels 1 are not in the same plane, adjust the non-composite anti-cracking sandwich wall panel 1 to the same plane through the adjusting mechanism 3, and limit the non-composite anti-cracking sandwich wall panel 1 between the stabilizing mechanisms 2. The stabilizing mechanism 2 plays a role in pre-fixing and pre-positioning the non-composite anti-cracking sandwich wall panel 1, facilitating the user to adjust the position of the non-composite anti-cracking sandwich wall panel 1 and improving the convenience of the construction work.

[0037] S4. Detect the flatness and perpendicularity between multiple non-composite anti-cracking sandwich wall panels 1 through the non-composite anti-cracking sandwich wall panel 1. After the user pre-fixes the non-composite anti-cracking sandwich wall panel 1, detect the perpendicularity and flatness between multiple non-composite anti-cracking sandwich wall panels 1 through the detection and positioning mechanism 4, and adjust the unqualified non-composite anti-cracking sandwich wall panels 1.

[0038] S6. Fix the non-composite anti-cracking sandwich wall panels 1 with adjusted positions using cement or concrete.

[0039] Referring to Figures 1-3 , the stabilizing mechanism 2 includes a limiting strip 21 fixedly connected to the roof, a limiting air cylinder 22 fixedly connected to the limiting strip 21, and an abutting strip 23 fixedly connected to the output end of the limiting air cylinder 22. A limiting groove 211 is formed on the surface of the limiting strip 21 facing the ground. The length direction of the abutting strip 23 is parallel to the length direction of the limiting strip 21. The top of the non-composite anti-cracking sandwich wall panel 1 is located inside the limiting groove 211, and there is a gap between the side wall of the limiting groove 211 and the surface of the non-composite anti-cracking sandwich wall panel 1 to provide space for adjusting the non-composite anti-cracking sandwich wall panel 1.

[0040] Further, the output end of the limit cylinder 22 is located inside the limit groove 211. The number of limit cylinders 22 is multiple, and the multiple limit cylinders 22 are evenly arranged along the length direction of the abutting strip 23. When the limit cylinder 22 is started, the abutting strip 23 abuts against the non-composite anti-cracking sandwich wall panel 1. After the position of the non-composite anti-cracking sandwich wall panel 1 is adjusted by the adjustment mechanism 3, the non-composite anti-cracking sandwich wall panel 1 is pre-fixed by the abutting strip 23, reducing the possibility of the position of the non-composite anti-cracking sandwich wall panel 1 shifting.

[0041] Referring to Figures 1-3 , the number of adjustment mechanisms 3 is multiple, and the multiple adjustment mechanisms 3 are linearly arranged. The multiple adjustment mechanisms are located directly below the limit strip 21 to fix the multiple non-composite anti-cracking sandwich wall panels 1. The adjustment mechanism 3 includes a mounting seat 31 fixedly connected to the ground, a rotating shaft 32 fixedly connected to the mounting seat 31, and a compensating block 33 fixedly connected to the mounting seat 31. The mounting seat 31 is fixedly connected to the ground, and the adjustment mechanism 3 is fixed through the mounting seat 31. The number of rotating shafts 32 is two, and the two rotating shafts 32 are respectively located at both ends of the upper surface of the mounting seat 31. The compensating block 33 is located between the two rotating shafts 32. A rotating groove is provided on the bottom surface of the non-composite anti-cracking sandwich wall panel 1, and the rotating shaft 32 is inserted into the rotating groove of the non-composite anti-cracking sandwich wall panel 1, and the rotating shaft 32 is rotatably connected to the rotating groove. The two rotating shafts 32 are respectively rotatably connected to the two non-composite anti-cracking sandwich wall panels 1 to realize the adjustment of the positions of two adjacent non-composite anti-cracking sandwich wall panels 1. The compensating block 33 is located between two adjacent non-composite anti-cracking sandwich wall panels 1, and there is a gap between the compensating block 33 and the non-composite anti-cracking sandwich wall panel 1 to provide space for the rotation of the non-composite anti-cracking sandwich wall panel 1. When the two non-composite anti-cracking sandwich wall panels 1 are fixed after adjustment, the compensating block 33 can be used as an attachment point for cement or concrete, facilitating the more stable formation of concrete or cement when fixing the two non-composite anti-cracking sandwich wall panels 1.

[0042] Referring to Figures 1-3The detection and positioning mechanism 4 includes a retractable roller 41 rotatably connected to the abutment strip 23, an anti-cracking cloth 42 wound around the retractable roller 41, and a detection rod 43 fixedly connected to the anti-cracking cloth 42. A rotation groove is provided on the surface of the abutment strip 23 facing the ground. The length direction of the retractable roller 41 is parallel to the length direction of the abutment strip 23. Both ends of the retractable roller 41 are rotatably connected to the two ends of the rotation groove, thereby realizing the rotation of the retractable roller 41, and the rotation groove provides a limit for the movement of the retractable roller 41, so that the movement of the retractable roller 41 is more stable, and the rotation groove also protects the retractable roller 41. The detection rod 43 is located at one end of the anti-cracking cloth 42 close to the ground. A plurality of detection gauges 431 are provided on the surface of the detection rod 43. The detection gauges 431 are evenly arranged along the length direction of the detection rod 43. The probes of the detection gauges 431 abut against the surface of the non-combined anti-cracking sandwich wallboard 1. The detection gauge 431 can be a dial gauge or a micrometer. In the embodiment of the present application, the detection gauge 431 adopts a dial gauge. When the detection rod 43 moves downward along the wall, when the pressure between the probe of the detection gauge 431 and the wall changes, the indication of the detection gauge 431 will change, showing the flatness and verticality of the wall. The user adjusts the position of the non-combined anti-cracking sandwich wall panel 1 according to the indication of the detection gauge 431. The head of the detection gauge 431 is located on the side surface of the detection rod 43 away from the non-combined anti-cracking sandwich wall panel 1, which is convenient for the user to observe the gauge.

[0043] Furthermore, after the detection and positioning step of the anti-cracking cloth 42 is completed, the user can apply concrete or cement on the surface of the anti-cracking cloth 42 to improve the wall cloth of the non-combined anti-cracking sandwich wall panel 1 and reduce the possibility of surface cracking of the non-combined anti-cracking sandwich wall panel 1.

[0044] Furthermore, both sides of the non-combined anti-cracking sandwich wall panel 1 are provided with detection and positioning mechanisms 4, so that the user can detect both sides of the wall, thereby improving the accuracy of the detection and improving the verticality and flatness of the wall.

[0045] Reference Figure 4 The non-combined anti-cracking sandwich wall panel 1 is provided with an anti-cracking layer 11. The anti-cracking layer 11 can be made of mesh cloth, quercetin cloth or non-woven fabric to reduce the possibility of wall cracking.

[0046] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A construction method of a non-composite crack-resistant sandwich wall panel, characterized in that: It includes the following steps; Clean the surfaces of the wall and the floor; Connect the installation structure of the non-composite crack-proof sandwich wallboard to the interior of the house; Connect the non-composite crack-proof sandwich wallboard (1) between the installation structures of the non-composite crack-proof sandwich wallboard (1); Detect the flatness and perpendicularity between multiple non-composite crack-proof sandwich wallboards (1) through the detection and positioning mechanism (4); Adjust the positions of different non-composite crack-proof sandwich wallboards (1); Fix the non-composite crack-proof sandwich wallboards (1) to each other; The installation structure of the non-composite crack-proof sandwich wallboard includes a stabilizing mechanism (2) connected to the roof and an adjusting mechanism (3) connected to the ground. The bottom of the non-composite crack-proof sandwich wallboard (1) is rotatably connected to the adjusting mechanism (3), and the top of the non-composite crack-proof sandwich wallboard (1) is limited between the stabilizing mechanisms (2); The number of the adjusting mechanisms (3) is multiple, and the multiple adjusting mechanisms (3) are arranged linearly. The stabilizing mechanism (2) includes a limiting strip (21) fixedly connected to the roof. The limiting strip (21) is located directly above the multiple adjusting mechanisms (3). A limiting groove (211) is formed on the surface of the limiting strip (21) facing the ground. The top of the non-composite crack-proof sandwich wallboard (1) is located inside the limiting groove (211); The stabilizing mechanism (2) further includes a limiting cylinder (22) fixedly connected to the limiting strip (21) and an abutting strip (23) fixedly connected to the output end of the limiting cylinder (22). The length direction of the abutting strip (23) is parallel to the length direction of the limiting strip (21). The output end of the limiting cylinder (22) is located inside the limiting groove (211), and the abutting strip (23) abuts against the non-composite crack-proof sandwich wallboard (1); The detection and positioning mechanism (4) is connected to the abutting strip (23), and one end of the detection and positioning mechanism (4) moves in the vertical direction; The detection and positioning mechanism (4) includes a winding and unwinding roller (41) rotatably connected to the abutting strip (23), a crack-proof cloth (42) wound around the winding and unwinding roller (41), and a detection rod (43) fixedly connected to the crack-proof cloth (42). The length direction of the winding and unwinding roller (41) is parallel to the length direction of the abutting strip (23). The detection rod (43) is located at one end of the crack-proof cloth (42) close to the ground. A plurality of detection gauges (431) are arranged on the surface of the detection rod (43), and the probes of the detection gauges (431) abut against the surface of the non-composite crack-proof sandwich wallboard (1).

2. The construction method of the non-combined crack-resistant sandwich wallboard according to claim 1, characterized in that: The adjusting mechanism (3) includes a mounting seat (31) fixedly connected to the ground and a rotating shaft (32) fixedly connected to the mounting seat (31). The rotating shaft (32) is inserted into the bottom of the non-composite crack-proof sandwich wallboard (1) and is rotatably connected to the non-composite crack-proof sandwich wallboard (1).

3. The construction method of the non-combined crack-resistant sandwich wall panel according to claim 2, characterized in that: The adjusting mechanism (3) further includes a compensating block (33) fixedly connected to the mounting seat (31). The number of rotating shafts (32) of each adjusting mechanism (3) is two. The two rotating shafts (32) are respectively located on both sides of the compensating block (33). The compensating block (33) is located between two adjacent non-composite crack-proof sandwich wallboards (1).

4. The construction method of the non-composite crack-resistant sandwich wall panel (1) according to claim 1, characterized in that: The number of the limit cylinders (22) is multiple, and the multiple limit cylinders (22) are uniformly arranged along the length direction of the abutting strip (23).

5. The construction method of the non-combined anti-cracking sandwich wall panel according to claim 1, characterized in that: The non-composite crack-proof sandwich wall panel (1) is provided with a crack-proof layer (11).

Citation Information

Patent Citations

  • Anti-cracking wall body and construction method for same

    CN102505842A