Arc-shaped light partition wall

Through the combined structure of anchors and connectors, flexible installation of arc-shaped lightweight partition walls is achieved, solving the problem of reducing installation convenience caused by keel bending treatment in the prior art, and improving construction efficiency.

CN223135410UActive Publication Date: 2025-07-22SICHUAN CHENGFEI CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422428655.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-07-22
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing curved lightweight partition walls require the installation of curved structures for auxiliary installation of internal templates, which reduces the installation convenience and requires pre-bending of the keel.

Method used

The combined structure of anchors and connectors is adopted, including fixing seat plates, connecting sliders, sleeves, sleeve columns and springs. By adjusting the position of the connecting sliders and sleeves, flexible adjustment of the wall arc is achieved, avoiding pre-bending of the keel.

Benefits of technology

It improves the installation convenience of partition walls, reduces processing steps, and simplifies construction processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an arc-shaped light partition wall, and relates to the field of partition walls. The device comprises an anchoring piece and a connecting piece, the anchoring piece comprises a fixing seat plate, a connecting sliding strip is vertically arranged on the top face of the fixing seat plate, a connecting sliding frame is vertically fixed to the other side of the connecting sliding strip, a sleeve is vertically fixed to the bottom end face of the connecting sliding strip, clamping grooves are evenly and horizontally formed in the bottom face of the sleeve, and a sleeve column is vertically assembled above the fixing seat plate; a plurality of clamping columns are horizontally fixed to the bottom of the outer circumferential face of the sleeve column, the clamping columns are connected with clamping grooves in the bottom end of the sleeve in a clamped mode, and springs are vertically fixed to the top face of the sleeve column. According to an existing arc-shaped light partition wall, arc-shaped installation of the partition wall can be completed only by arranging a keel of an arc-shaped structure for auxiliary installation of an inner formwork, the keel is not provided with an arc-shaped adjustable structure, so that the keel needs to be bent in advance, machining steps are increased, and the installation convenience of the partition wall is reduced.
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Description

Technical Field

[0001] This application relates to the technical field of partition walls, and in particular to an arc-shaped lightweight partition wall. Background Art

[0002] When interior decorators are carrying out interior decoration, according to the design requirements of the arc shape of the partition wall, lightweight arc-shaped partition walls are mostly used to separate the interior space. During the construction process of the lightweight arc-shaped partition wall by decorators, aerated concrete small blocks, fly ash hollow blocks, etc. are mostly used, which easily leads to a relatively thick wall, a large floor area, and a reduction in the construction efficiency of decorators.

[0003] The existing publication number CN214461491U, with the name of an arc-shaped lightweight partition wall, includes a hollow PVC inner formwork and a concrete wall surface. Reinforcing bars are poured at the top and bottom on the left side of the inner cavity of the concrete wall surface. One end of the reinforcing bar away from the concrete wall surface is welded with a fixed angle steel. Cement mortar is poured outside the reinforcing bar and the fixed angle steel. An alkali-resistant fiberglass mesh cloth is laid outside the cement mortar. Cement mortar is poured outside the alkali-resistant fiberglass mesh cloth. A steel wire mesh is laid inside the cement mortar. The outside of the cement mortar away from the steel wire mesh is poured with the outside of the hollow PVC inner formwork. Through the cooperation of the reinforcing bar, the fixed angle steel, the cement mortar, the alkali-resistant fiberglass mesh cloth, the cement mortar and the steel wire mesh, the construction period and cost of installing the lightweight arc-shaped partition wall by decorators can be saved, the installation process of the lightweight arc-shaped partition wall is simplified and the cost is reduced. The lightweight arc-shaped partition wall has a small thickness, saves structural space, increases the indoor usable area, and at the same time avoids the problem that the block wall is easy to crack after plastering, which is convenient for decorators to carry out flow construction and ensures the flatness of the lightweight arc-shaped partition wall.

[0004] In view of the above related technologies, the inventor found that the existing arc-shaped lightweight partition wall needs to set up a keel with an arc-shaped structure to assist in installing the inner formwork in order to complete the arc installation of the partition wall. The keel does not have an arc-adjustable structure, which requires pre-bending treatment of the keel in advance, increasing the processing steps and reducing the installation convenience of the partition wall. Summary of the Utility Model

[0005] In order to overcome the situation that the existing keel does not have an arc-adjustable structure, which requires pre-bending treatment of the keel in advance, increasing the processing steps and reducing the installation convenience of the partition wall, this application provides an arc-shaped lightweight partition wall.

[0006] The arc-shaped lightweight partition wall provided by this application adopts the following technical solutions:

[0007] An arc-shaped lightweight partition wall, comprising an anchor and a connector. The anchor includes a fixed base plate. On the top surface of the fixed base plate, a connecting slide bar is vertically arranged. On the other side of the connecting slide bar, a connecting slide frame is vertically fixed. On the bottom end surface of the connecting slide bar, a sleeve is vertically fixed. On the bottom surface of the sleeve, card slots are evenly and horizontally opened. Above the fixed base plate, a sleeve column is vertically assembled. The sleeve is vertically sleeved on the sleeve column. At the bottom of the outer circumferential surface of the sleeve column, multiple clamping columns are horizontally fixed. The clamping columns are clamped with the card slots at the bottom end of the sleeve. On the top surface of the sleeve column, a spring is vertically fixed. The top end of the spring is rotatably connected to the inner bottom surface of the sleeve. The connector includes a connecting frame box. On both sides of the connecting frame box, an assembling slide bar and an assembling slide frame are vertically arranged respectively. The assembling slide bar and the assembling slide frame are vertically and slidably assembled and connected with the connecting slide bar and the connecting slide frame respectively.

[0008] By adopting the above technical solution, during use, according to the arc requirement of the lightweight wall required by the building, first fix the fixed base plate on the bottom surface, then insert the screw hole insertion frame into the sleeve frame. When converting the arc of the installed wall, lift the connecting slide bar upward, so that the sleeve at the bottom of the connecting slide bar vertically moves upward on the sleeve column, pulling the spring to deform, rotating the connecting slide bar to deflect, changing the arc of the installed wall, and then release the connecting slide bar. Under the action of the spring deformation force, pull the sleeve to vertically slide down on the sleeve column, so that the card slot at the bottom end of the sleeve is clamped on the clamping column, completing the anchoring connection direction of the anchor. Then fix multiple anchors completely, and after confirming the installation direction, vertically and slidably assemble and connect the assembling slide bar and the assembling slide frame on both sides of the connecting frame box in the connector with the connecting slide bar and the connecting slide frame respectively, completing the assembly of the wall. Thus, the anchor can adjust the arc structure of the wall, without the need to pre-bend the keel in advance, reducing the processing steps and improving the installation convenience of the partition wall.

[0009] Optionally, a sleeve frame is vertically fixed on the top surface of the fixed base plate, and a locking screw is horizontally and threadedly penetrated and assembled on the sleeve frame.

[0010] By adopting the above technical solution, the sleeve frame is used to vertically assemble and connect the connecting slide bar on the fixed base plate. The split setting is locked and fixed by the locking screw, which is convenient for later transportation and reduces the processing difficulty at the same time.

[0011] Optionally, a screw hole insertion frame is vertically fixed on the bottom surface of the sleeve column, and the screw hole insertion frame is vertically slidably inserted into the sleeve frame, and the screw hole insertion frame and the sleeve frame are assembled and connected by a locking screw.

[0012] By adopting the above technical solution, the screw hole insertion frame at the bottom end of the sleeve column is vertically slidably inserted into the sleeve frame, completing the vertical installation of the connecting slide bar on the fixed base plate. Then the screw hole insertion frame and the sleeve frame are assembled and connected by a locking screw, vertically ensuring the stability of the installation of the screw hole insertion frame and the sleeve frame, and ensuring the stability of the installation of the connecting slide bar on the fixed base plate.

[0013] Optionally, an anchor rod is vertically provided on the bottom surface of the fixed seat plate, and a stud is vertically fixed on the top surface of the anchor rod.

[0014] By adopting the above technical solution, an anchor rod is vertically provided on the bottom surface of the fixed seat plate, and the anchor rod is inserted into the ground, ensuring the stability of the vertical anchoring of the fixed seat plate.

[0015] Optionally, a threaded groove is provided on the bottom surface of the fixed seat plate, and the threaded groove of the fixed seat plate is threadedly assembled and connected with the stud on the anchor rod.

[0016] By adopting the above technical solution, the threaded groove provided on the bottom surface of the fixed seat plate, and the stud on the top surface of the anchor rod is threadedly assembled in the threaded groove of the fixed seat plate, completing the stability of the assembly and fixation of the fixed seat plate and the anchor rod.

[0017] Optionally, two swivel seats are symmetrically and horizontally provided on the symmetric vertical end faces on both sides of the connecting frame box, and the two swivel seats are fixed on the side end faces of the connecting frame box.

[0018] By adopting the above technical solution, two swivel seats are horizontally fixed on both sides of the connecting frame box for hinge-assembling the assembling slide bar and the assembling slide frame.

[0019] Optionally, rotating rods are vertically fixed on the adjacent vertical end faces of the assembling slide bar and the assembling slide frame and the connecting frame box, and the rotating rods are rotatably connected to the swivel seats.

[0020] By adopting the above technical solution, when hinge-assembling the assembling slide bar and the assembling slide frame, the rotating rods are rotatably connected to the swivel seats, ensuring the deflection of the assembling slide bar and the assembling slide frame and switching the arc structure of the wall.

[0021] Optionally, through holes are vertically penetrated through both sides of the fixed seat plate, and fixing nails are vertically penetrated and installed in the through holes of the fixed seat plate.

[0022] By adopting the above technical solution, the fixed seat plate is inserted into the ground through the fixing nails penetrating the through holes, ensuring the stability of the fixation of the fixed seat plate.

[0023] In summary, the present application includes at least one of the following beneficial technical effects: During use, according to the arc requirements of the lightweight wall required by the building, first fix the fixed seat plate on the bottom surface, then insert the screw hole insertion frame into the sleeve frame. Then, when converting the arc of the installed wall, lift the connecting sliding bar upward, so that the sleeve at the bottom of the connecting sliding bar vertically moves upward on the sleeve column, pulling the spring to deform, rotating the connecting sliding bar to deflect, and after changing the arc of the installed wall, then release the connecting sliding bar. Under the action of the spring deformation force, pull the sleeve to slide vertically downward on the sleeve column, so that the card slot at the bottom end of the sleeve is clamped on the clamping column, completing the anchoring connection direction of the anchoring piece. Then, fix all the anchoring pieces completely, and after confirming the installation direction, vertically slide and assemble the assembling sliding bars and assembling sliding frames on both sides of the connecting frame box in the connecting piece with the connecting sliding bar and the connecting sliding frame respectively, completing the assembly of the wall. Thus, the anchoring piece can adjust the arc structure of the wall, eliminating the need for pre-bending treatment of the keel in advance, reducing the processing steps, and improving the convenience of partition wall installation. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a schematic diagram of the overall structure of an embodiment of the present application.

[0025] Figure 2 is a schematic diagram of the overall structure of an embodiment of the present application in a disassembled state;

[0026] Figure 3 is a schematic diagram of the anchoring piece of an embodiment of the present application in a disassembled state;

[0027] Figure 4 is a schematic diagram of the fixed seat plate of an embodiment of the present application in a disassembled state;

[0028] Figure 5 is a schematic diagram of the connecting piece of an embodiment of the present application in a disassembled state.

[0029] Description of the reference numerals: 1, anchoring piece; 11, fixed seat plate; 111, fixing nail; 112, sleeve frame; 113, screw hole insertion frame; 114, sleeve column; 1141, clamping column; 115, spring; 116, locking screw; 117, screw groove; 118, anchoring rod; 119, stud; 12, connecting sliding bar; 13, connecting sliding frame; 14, sleeve; 141, card slot; 2, connecting piece; 21, connecting frame box; 22, assembling sliding bar; 23, assembling sliding frame; 24, rotating rod; 25, rotating seat. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] The following further describes the present application in detail with reference to the accompanying drawings.

[0031] An embodiment of the present application discloses an arc-shaped lightweight partition wall. Refer to Figure 1 , Figure 2 , Figure 3 and Figure 4, A curved lightweight partition wall, comprising an anchor 1 and a connecting piece 2. The anchor 1 includes a fixed base plate 11. A connecting slide bar 12 is vertically arranged on the top surface of the fixed base plate 11. On the other side of the connecting slide bar 12, a connecting slide frame 13 is vertically fixed. And on the bottom end surface of the connecting slide bar 12, a sleeve 14 is vertically fixed. And on the bottom surface of the sleeve 14, card slots 141 are evenly and horizontally opened. Above the fixed base plate 11, a sleeve column 114 is vertically assembled. And the sleeve 14 is vertically sleeved on the sleeve column 114. At the bottom of the outer circumferential surface of the sleeve column 114, multiple clamping columns 1141 are horizontally fixed. And the clamping columns 1141 are clamped with the card slots 141 at the bottom end of the sleeve 14. On the top surface of the sleeve column 114, a spring 115 is vertically fixed. And the top end of the spring 115 is rotatably connected to the inner bottom surface of the sleeve 14. The connecting piece 2 includes a connecting frame box 21. On both sides of the connecting frame box 21, an assembling slide bar 22 and an assembling slide frame 23 are respectively vertically arranged. And the assembling slide bar 22 and the assembling slide frame 23 are respectively vertically slidably assembled and connected with the connecting slide bar 12 and the connecting slide frame 13.

[0032] By adopting the above technical solution, during use, according to the arc requirement of the lightweight wall required by the building, first fix the fixed base plate 11 on the bottom surface, then insert the screw hole insertion frame 113 into the sleeve frame 112. Then when converting the arc of the installed wall, lift the connecting slide bar 12 upward, so that the sleeve 14 at the bottom of the connecting slide bar 12 vertically moves upward on the sleeve column 114, pulling the spring 115 to deform. Rotate the connecting slide bar 12 to deflect and change the arc of the installed wall. Then release the connecting slide bar 12. Under the action of the deformation force of the spring 115, pull the sleeve 14 to vertically slide down on the sleeve column 114, so that the card slots 141 at the bottom end of the sleeve 14 are clamped on the clamping columns 1141, completing the anchoring connection direction of the anchor 1. Then fix multiple anchors 1 completely. And after confirming the installation direction, vertically slidably assemble and connect the assembling slide bar 22 and the assembling slide frame 23 on both sides of the connecting frame box 21 in the connecting piece 2 with the connecting slide bar 12 and the connecting slide frame 13 respectively, completing the assembly of the wall. Thus, the anchor 1 can adjust the arc structure of the wall, without the need to pre-bend the keel in advance, reducing the processing steps and improving the installation convenience of the partition wall.

[0033] Refer to Figure 3 and Figure 4, a sleeve frame 112 is vertically fixed on the top surface of the fixed seat plate 11, and a locking screw rod 116 is horizontally and threadedly penetrated and assembled on the sleeve frame 112. The sleeve frame 112 is provided for vertically assembling and connecting the sliding bar 12 on the fixed seat plate 11. The split setting is locked and fixed by the locking screw rod 116, which facilitates later transportation and reduces the processing difficulty. A screw hole insertion frame 113 is vertically fixed on the bottom surface of the sleeve column 114, and the screw hole insertion frame 113 is vertically slidably inserted into the sleeve frame 112, and the screw hole insertion frame 113 and the sleeve frame 112 are assembled and connected by the locking screw rod 116. The screw hole insertion frame 113 at the bottom end of the sleeve column 114 is vertically slidably inserted into the sleeve frame 112 to complete the vertical installation of the connecting sliding bar 12 on the fixed seat plate 11. Then, the screw hole insertion frame 113 and the sleeve frame 112 are assembled and connected by the locking screw rod 116, which vertically ensures the stability of the installation of the screw hole insertion frame 113 and the sleeve frame 112, and ensures the stability of the installation of the connecting sliding bar 12 on the fixed seat plate 11.

[0034] Refer to Figure 3 and Figure 4 , an anchoring rod 118 is vertically arranged on the bottom surface of the fixed seat plate 11, and a stud 119 is vertically fixed on the top surface of the anchoring rod 118. An anchoring rod 118 is vertically arranged on the bottom surface of the fixed seat plate 11, and the anchoring rod 118 is inserted into the ground to ensure the stability of the vertical anchoring of the fixed seat plate 11. A screw groove 117 is opened on the bottom surface of the fixed seat plate 11, and the screw groove 117 of the fixed seat plate 11 is threadedly assembled with the stud 119 on the anchoring rod 118., the screw groove 117 arranged on the bottom surface of the fixed seat plate 11 uses the stud 119 on the top surface of the anchoring rod 118 to be threadedly assembled in the screw groove 117 of the fixed seat plate 11 to complete the stability of the assembly and fixation of the fixed seat plate 11 and the anchoring rod 118.

[0035] Refer to Figure 5 , two rotating seats 25 are symmetrically and horizontally arranged on the symmetric vertical end faces on both sides of the connecting frame box 21, and the two rotating seats 25 are fixed on the side end faces of the connecting frame box 21. Two rotating seats 25 are horizontally fixed on both sides of the connecting frame box 21 for hingedly assembling the assembling sliding bar 22 and the assembling sliding frame 23. Rotating rods 24 are vertically fixed on the adjacent vertical end faces of the assembling sliding bar 22 and the assembling sliding frame 23 and the connecting frame box 21, and the rotating rods 24 are rotatably connected to the rotating seats 25. When the assembling sliding bar 22 and the assembling sliding frame 23 are hingedly assembled, the rotation connection of the rotating rod 24 on the rotating seat 25 is used to ensure the deflection of the assembling sliding bar 22 and the assembling sliding frame 23 and switch the arc structure of the wall.

[0036] Refer to Figure 4 , through holes are vertically penetrated on both sides of the fixed seat plate 11, and fixing nails 111 are vertically penetrated and installed in the through holes of the fixed seat plate 11. The fixed seat plate 11 is inserted into the ground through the fixing nails 111 penetrating the through holes, which ensures the stability of the fixation of the fixed seat plate 11.

[0037] The implementation principle of an arc-shaped lightweight partition wall in the embodiment of the present application is as follows: during use, according to the arc of the lightweight wall required by the building, the fixed seat plate 11 is fixed on the bottom surface, and then the screw hole insertion frame 113 is inserted into the sleeve frame 112, and the screw hole insertion frame 113 at the bottom end of the sleeve column 114 is vertically slid and inserted into the sleeve frame 112 to complete the vertical installation of the connecting slide bar 12 on the fixed seat plate 11, and then the screw hole insertion frame 113 and the sleeve frame 112 are assembled and connected by the locking screw 116, and the vertical stability of the screw hole insertion frame 113 and the sleeve frame 112 is ensured. Then, when the arc of the wall is converted, the connecting slide bar 12 is pulled upward to make the bottom sleeve 14 of the connecting slide bar 12 move vertically upward on the sleeve column 114, and the spring 115 is pulled to deform, and the connecting slide bar 1 2 deflects, changes the curvature of the installation wall, and then releases the connecting slide bar 12. Under the deformation force of the spring 115, the sleeve 14 is pulled to slide vertically on the sleeve column 114, so that the card slot 141 at the bottom of the sleeve 14 is clamped on the card column 1141, completing the anchor connection direction of the anchor 1, and then the multiple anchors 1 are completely fixed. After confirming the installation direction, the assembling slide bars 22 and the assembling slide frame 23 on both sides of the connecting frame box 21 in the connecting member 2 are respectively vertically slidably assembled and connected with the connecting slide bar 12 and the connecting slide frame 13. When the assembling slide bar 22 and the assembling slide frame 23 are hingedly assembled, the rotating rod 24 is used to rotate and connect on the rotating seat 25, which ensures the deflection of the assembling slide bar 22 and the assembling slide frame 23, switches the arc structure of the wall, and completes the assembly of the wall.

[0038] 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. An arc-shaped lightweight partition wall, characterized in that, It includes an anchor (1) and a connecting piece (2). The anchor (1) includes a fixed base plate (11). On the top surface of the fixed base plate (11), a connecting slide bar (12) is vertically arranged. On the other side of the connecting slide bar (12), a connecting slide frame (13) is vertically fixed. And on the bottom end surface of the connecting slide bar (12), a sleeve (14) is vertically fixed. And on the bottom surface of the sleeve (14), card slots (141) are evenly and horizontally opened. Above the fixed base plate (11), a sleeve column (114) is vertically assembled. And the sleeve (14) is vertically sleeved on the sleeve column (114). On the outer circumferential surface of the bottom of the sleeve column (114), multiple clamping columns (1141) are horizontally fixed. And the clamping columns (1141) are clamped with the card slots (141) at the bottom end of the sleeve (14). On the top surface of the sleeve column (114), a spring (115) is vertically fixed. And the top end of the spring (115) is rotatably connected to the inner bottom surface of the sleeve (14). The connecting piece (2) includes a connecting frame box (21). On both sides of the connecting frame box (21), an assembling slide bar (22) and an assembling slide frame (23) are respectively vertically arranged. And the assembling slide bar (22) and the assembling slide frame (23) are respectively vertically and slidably assembled and connected with the connecting slide bar (12) and the connecting slide frame (13).

2. The curved lightweight partition wall according to claim 1, wherein: On the top surface of the fixed base plate (11), a sleeve frame (112) is vertically fixed. And on the sleeve frame (112), a locking screw rod (116) is horizontally and threadedly penetrated and assembled.

3. The curved lightweight partition wall according to claim 2, characterized in that: On the bottom surface of the sleeve column (114), a screw hole insertion frame (113) is vertically fixed. And the screw hole insertion frame (113) is vertically and slidably inserted into the sleeve frame (112). And the screw hole insertion frame (113) and the sleeve frame (112) are assembled and connected by the locking screw rod (116).

4. The curved lightweight partition wall according to claim 3, characterized in that: On the bottom surface of the fixed base plate (11), an anchor rod (118) is vertically arranged. And on the top surface of the anchor rod (118), a stud (119) is vertically fixed.

5. The curved lightweight partition wall according to claim 4, characterized in that: On the bottom surface of the fixed base plate (11), a screw groove (117) is opened. And the screw groove (117) on the fixed base plate (11) is threadedly assembled with the stud (119) on the anchor rod (118).

6. The curved lightweight partition wall according to claim 5, characterized in that: On the symmetric vertical end faces on both sides of the connecting frame box (21), two rotating seats (25) are symmetrically and horizontally arranged. And the two rotating seats (25) are fixed on the side end face of the connecting frame box (21).

7. The curved light partition wall according to claim 6, characterized in that: On the adjacent vertical end faces of the assembling slide bar (22) and the assembling slide frame (23) and the connecting frame box (21), a rotating rod (24) is vertically fixed. And the rotating rod (24) is rotatably connected to the rotating seat (25).

8. The curved lightweight partition wall according to claim 7, characterized in that: On both sides of the fixed base plate (11), through holes are vertically penetrated. And in the through holes of the fixed base plate (11), fixing nails (111) are vertically penetrated and installed.