Lower bottom elevation adjusting frame for interior wall Eterra board installation

By using the bottom elevation adjustment frame to lift the Eternit board, the problem of needing a lot of manpower and posing safety hazards for the installation elevation of Eternit boards on interior walls is solved, and a simple and safe construction process is achieved.

CN223984221UActive Publication Date: 2026-03-10BEIJING SHOUGANG CONSTR GROUP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

In the current technology, the installation of Eternit panels on interior walls requires a large amount of manpower for elevation alignment and poses safety hazards.

Method used

The bottom elevation adjustment frame is used. By placing the front end of the support plate against the bottom of the Eternit plate, the operating handle is turned downwards to lift the connecting plate upwards, thereby lifting the support plate and Eternit plate upwards until the installation elevation is reached and then fixed.

Benefits of technology

It reduces labor costs, improves construction safety, and is simple and quick to operate, thus reducing construction costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223984221U_ABST
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Abstract

A lower bottom elevation adjusting frame for inner wall Eterra plate installation comprises a base (1), a supporting plate (2), a nut (3), a tightening latch (4), a handle (5), a connecting plate (6), a rolling shaft (7), a sliding roller (8) and vertical rods (9) which are used in a combined mode, the lower ends of the two vertical rods (9) are perpendicularly welded to the top face of one end of the base (1), and the distance between the two vertical rods (9) is 500 mm. The rolling shaft (7) and the sliding roller (8) form a rolling system, and the sliding roller (8) rotates with the rolling shaft (7) as the center. The top ends of the two vertical rods (9) are perpendicularly welded to the two ends of the rolling shaft (7) respectively. One end of the supporting plate (2) is welded with one end of the connecting plate (6), and the included angle between the supporting plate (2) and the connecting plate (6) is 150 degrees; the other end of the connecting plate (6) is vertically welded with the surface of the sliding roller (8); the nut (3) is welded on one end of the connecting plate (6); the tightening latch (4) is screwed into the nut (3) and penetrates through the connecting plate (6); and the handle (5) is welded at the top end of the tightening latch (4).
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Description

Technical Field

[0001] This utility model belongs to the field of building decoration and construction technology, and in particular provides a bottom elevation adjustment bracket for installing Eternit board on interior walls. Background Technology

[0002] When installing Eternit panels for interior wall decoration, the standard method for aligning the installation height is to lift them manually. This method has two drawbacks: first, it requires a lot of manpower, resulting in high labor costs; second, manual lifting is prone to instability, which can cause personal injury and poses a significant safety hazard. Utility Model Content

[0003] The purpose of this utility model is to provide a bottom elevation adjustment frame, which solves the problem of consuming a lot of manpower and also reduces construction safety hazards.

[0004] This invention involves placing the adjusting frame on one side of the building's interior wall, then placing the front end of the support plate against the bottom of the Eternit plate. Next, the operating handle is turned downwards to tighten the bolt, causing the lower end of the bolt to push against the base, lifting the connecting plate upwards. This, in turn, lifts the support plate upwards, raising the Eternit plate until it reaches the desired installation height. The Eternit plate is then installed and secured. During the lifting process, the front of the Eternit plate needs to be manually pushed to prevent tipping.

[0005] This utility model includes a base 1, a support plate 2, a nut 3, a bolt 4, a handle 5, a connecting plate 6, a roller 7, a sliding roller 8, and uprights 9, which are used in combination. The lower ends of the two uprights 9 are respectively welded perpendicularly to the top surface of one end of the base 1, with a distance of 500mm between the two uprights 9; the roller 7 and the sliding roller 8 form a rolling system, with the sliding roller 8 rotating around the roller 7 as the center; the top ends of the two uprights 9 are respectively welded perpendicularly to both ends of the roller 7; one end of the support plate 2 is welded to one end of the connecting plate 6, with an angle of 150° between the support plate 2 and the connecting plate 6; the other end of the connecting plate 6 is welded perpendicularly to the surface of the sliding roller 8; the nut 3 is welded to one end of the connecting plate 6; the bolt 4 is screwed into the nut 3 and passes through the connecting plate 6; the handle 5 is welded to the top of the bolt 4 (see...). Figure 1 , Figure 2 ).

[0006] The base 1 is made of 40mm thick steel plate and has the following dimensions (length). Width) 1000 1000mm; Pallet 2 is made of 20mm thick steel plate, with dimensions of (length) Width) 500 200mm; Nut 3 diameter 30mm; Bolt rod 4 diameter 30mm, length 1000mm; Handle 5 made of 20mm diameter round steel, length 400mm; Connecting plate 6 made of 20mm thick steel plate, dimensions (length) Width) 800 300mm; Roller 7 has a diameter of 50mm and a length of 500mm; Sliding roller 8 has an outer diameter of 120mm and an inner diameter of 50mm; Upright rod 9 is made of round steel with a diameter of 30mm and a length of 500mm.

[0007] In use, place the adjusting bracket on one side of the building's interior wall 10, then place the front end of the support plate 2 against the bottom of the Eternit plate 11. Next, operate the handle 5 to turn the bolt 4 downwards. The lower end of the bolt 4 will push against the base 1, causing the connecting plate 6 to rise, thereby lifting the support plate 2 and the Eternit plate 11 until it reaches the installation height. Then, install and secure the Eternit plate 11. During the lifting process, manually push the front of the Eternit plate 11 to prevent it from tipping over. Figure 3 , Figure 4 , Figure 5 ).

[0008] The advantages of this utility model are that it is easy to assemble, easy to operate, simple and practical, solves the problem of consuming a lot of manpower, reduces construction safety hazards, is convenient and quick, and reduces construction costs. Attached Figure Description

[0009] Figure 1 This is the front view of the adjustment frame.

[0010] Figure 2 This is a top view of the adjustment frame.

[0011] Figure 3 Use the front view (1) for the adjustment frame.

[0012] Figure 4 Use the front view (2) for the adjustment frame.

[0013] Figure 5 Use a top view for the adjustment frame.

[0014] In the diagram, 1 is the base, 2 is the support plate, 3 is the nut, 4 is the bolt, 5 is the handle, 6 is the connecting plate, 7 is the roller, 8 is the sliding roller, 9 is the upright, 10 is the inner wall, and 11 is the Eternit board. Detailed Implementation

[0015] Figures 1-5 This is one specific embodiment of the present invention. The present invention will be further described below with reference to the accompanying drawings.

[0016] This utility model includes a base 1, a support plate 2, a nut 3, a bolt 4, a handle 5, a connecting plate 6, a roller 7, a sliding roller 8, and uprights 9, which are used in combination. The lower ends of the two uprights 9 are respectively welded perpendicularly to the top surface of one end of the base 1, with a distance of 500mm between the two uprights 9. The roller 7 and the sliding roller 8 form a rolling system, with the sliding roller 8 rotating around the roller 7 as the center. The top ends of the two uprights 9 are respectively welded perpendicularly to both ends of the roller 7. One end of the support plate 2 is welded to one end of the connecting plate 6, with an angle of 150° between the support plate 2 and the connecting plate 6. The other end of the connecting plate 6 is welded perpendicularly to the surface of the sliding roller 8. The nut 3 is welded to one end of the connecting plate 6. The bolt 4 is screwed into the nut 3 and passes through the connecting plate 6. The handle 5 is welded to the top end of the bolt 4.

[0017] In use, place the adjusting bracket on one side of the building's interior wall 10, then place the front end of the support plate 2 against the bottom of the Eternit plate 11. Next, operate the handle 5 to turn the bolt 4 downwards. The lower end of the bolt 4 will push against the base 1, causing the connecting plate 6 to rise, thereby lifting the support plate 2 and the Eternit plate 11 upwards until the installation height of the Eternit plate 11 is reached. Then, install and secure the Eternit plate 11. During the lifting process, manually push the front of the Eternit plate 11 to prevent it from tipping over.

[0018] During building renovation and construction, a bottom elevation adjustment frame was used to accurately align the installation height of Eternit panels on interior walls, achieving good results. This adjustment frame is used in combination. The lower ends of two uprights are welded perpendicularly to the top surface of one end of the base, with a 500mm gap between the two uprights. A roller and a sliding roller form a rolling system, with the sliding roller rotating around the roller. The tops of the two uprights are welded perpendicularly to both ends of the roller. One end of the support plate is welded to one end of the connecting plate, with a 150° angle between the support plate and the connecting plate. The other end of the connecting plate is welded perpendicularly to the surface of the sliding roller. A nut is welded to one end of the connecting plate. A bolt is screwed into the nut and passes through the connecting plate. A handle is welded to the top of the bolt. In use, the adjustment frame is placed on one side of the building's interior wall. The front end of the support plate is then placed against the bottom position of the Eternit panel. The handle is then turned downwards by the bolt, causing the lower end of the bolt to push against the base, lifting the connecting plate upwards. This, in turn, lifts the support plate upwards, raising the Eternit panel upwards until the installation height is reached. The Eternit panel is then installed and secured. During the lifting process, the front of the Eternit plate needs to be pushed manually to prevent it from tipping over. This adjustment frame is simple to assemble, easy to operate, and practical, solving the problem of consuming a large amount of manual labor, while also reducing construction safety hazards, offering convenience and speed, and lowering construction costs.

Claims

1. A lower floor level adjusting bracket for an interior wall etabond mounting, characterized by It includes base (1), supporting plate (2), nut (3), bolt rod (4), handle (5), connecting plate (6), roller (7), slide roller (8), vertical rod (9), combined use, two vertical rod (9) lower end is respectively with base (1) one end top surface perpendicular welding, two vertical rod (9) interval 500mm;Roller (7) and slide roller (8) constitute rolling system, slide roller (8) with roller (7) as center rotation;Two vertical rod (9) top end is respectively with roller (7) both ends perpendicular welding;Supporting plate (2) one end is welded with connecting plate (6) one end, supporting plate (2) and connecting plate (6) angle 150°;Connecting plate (6) other end is perpendicular welded with slide roller (8) surface;Nut (3) is welded on connecting plate (6) one end top;Bolt rod (4) is screwed into nut (3) and passes through connecting plate (6);Handle (5) is welded in bolt rod (4) top end.

2. The interior wall etpboard mounting floor level adjustment bracket of claim 1, wherein, The base (1) is made of 40mm thick steel plate, the size is (length width) 1000 1000mm; the supporting plate (2) is made of 20mm thick steel plate, the size is (length width) 500 200mm; the nut (3) is 30mm in diameter; the bolt rod (4) is 30mm in diameter and 1000mm in length; the handle (5) is made of 20mm diameter round steel and is 400mm in length; the connecting plate (6) is made of 20mm thick steel plate and the size is (length width) 800 300mm; the roller (7) is 50mm in diameter and 500mm in length; the slide roller (8) is 120mm in outer diameter and 50mm in inner diameter; the vertical rod (9) is made of 30mm diameter round steel and is 500mm in length.