A sliding aluminum veneer ceiling structure and its use method

Through the sliding aluminum veneer ceiling structure and the use of pulleys and chutes to design, the problem of inconvenient maintenance of aluminum veneer ceilings is solved, and the flexibility of the maintenance position and the aesthetics of the decoration are improved.

CN113389313BActive Publication Date: 2025-08-29CHINA CONSTR SIXTH ENG DIV DECORATION CO LTD
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Patent Information

Application Number
CN202110572469.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-25
Publication Date
2025-08-29
Estimated Expiration
2041-05-25

AI Technical Summary

Technical Problem

During maintenance of existing aluminum veneer ceilings, multiple maintenance ports need to be left at designated locations, which affects the decoration effect and is inconvenient for maintenance. The maintenance location remains fixed and inconvenient for subsequent maintenance and equipment maintenance.

Method used

The sliding aluminum veneer ceiling structure is adopted. Through the design of pulleys and chutes, the aluminum veneer can move freely in the chute, providing flexibility in the maintenance position, and fixing the position through the limit top wire.

Benefits of technology

It realizes flexible exposure of the maintenance location, simplifies the opening and installation process of the maintenance port, improves the aesthetics of the decoration and construction flexibility, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a sliding aluminum veneer ceiling structure and a method for using the same. The sliding aluminum veneer ceiling structure includes a main keel and an aluminum veneer, and also includes a pulley and a chute. The upper portion of the pulley is connected to the upper portion of the aluminum veneer; the chute includes a vertical edge and a horizontal lower edge connected to the lower end of the vertical edge. A lower folding edge is provided on the lower edge at one end away from the vertical edge. The vertical edge, the lower edge, and the lower folding edge form a groove for installing the pulley. A horizontal upper plate is provided at the upper end of the vertical edge. An upper folding edge is provided on the upper plate at one end away from the vertical edge. The vertical edge, the upper plate, and the upper folding edge surround the top of the main keel. A method for installing a ceiling using the sliding aluminum veneer ceiling structure is provided. A plurality of aluminum veneers connected to the pulley are installed on the chute. After the plurality of aluminum veneers connected to the pulley are installed, one or more overlapping aluminum veneers not connected to the pulley are installed. The overlapping aluminum veneers are overlapped on the chute.
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Description

Technical Field

[0001] The invention belongs to the field of indoor suspended ceilings, and particularly relates to a sliding aluminum single plate suspended ceiling structure and a use method thereof. Background Art

[0002] Aluminum veneer ceilings are now widely used in real life and can be seen everywhere. Installation techniques are also very mature. The main installation methods for aluminum veneer ceilings in the construction industry are: hanging installation, hook-on installation, and mechanical connection. After installation, all three methods fix the aluminum veneer to the ceiling. Due to the need for specialized maintenance such as air conditioning, electromechanical, fire protection, and water supply and drainage, multiple access ports are required at designated locations, affecting the overall decorative effect. Furthermore, the fixed location of the access ports makes it inconvenient to conduct extensive inspections when problems arise, which in turn makes subsequent repairs and equipment maintenance difficult.

[0003] In view of this, the present invention is proposed. Summary of the Invention

[0004] In view of the above problems, the purpose of the present invention is to provide a sliding aluminum single plate ceiling structure and a method of using the same, which increases the decorative aesthetics, provides convenience for future equipment maintenance, and greatly reduces the difficulty of maintenance.

[0005] In order to achieve the above-mentioned purpose, the present invention provides a sliding aluminum veneer ceiling structure, including a main keel and an aluminum veneer, and also including a pulley and a slide groove, the upper part of the pulley is connected to the upper part of the aluminum veneer; the slide groove includes a vertical edge and a horizontal lower edge connected to the lower end of the vertical edge, and a lower folding edge is provided on the end of the lower edge away from the vertical edge. The vertical edge, the lower edge and the lower folding edge form a groove for installing the pulley, and a horizontal upper plate is provided at the upper end of the vertical edge. The upper lap plate is provided with an upper folding edge at the end away from the vertical edge. The vertical edge, the upper plate and the upper folding edge surround the top end of the main keel.

[0006] Preferably, the upper butt plate is connected to the top end of the main keel by bolts.

[0007] Preferably, a top screw hole is provided on the lower edge of the slide groove.

[0008] Preferably, a limiting screw is provided in the screw hole to limit the movement of the pulley.

[0009] Furthermore, the pulley includes a frame and a wheel, and the frame is provided with an axis around which the wheel can rotate.

[0010] Preferably, the frame is connected to the upper portion of the aluminum veneer by bolts.

[0011] The present invention also provides a method for installing a ceiling using the above-mentioned sliding aluminum veneer ceiling structure, comprising the following steps:

[0012] (1) Install the main keel boom on the roof;

[0013] (2) installing the main keel on the main keel hanger;

[0014] (3) The chute is installed and connected to the main keel, and a plurality of aluminum veneers connected to the pulley are installed on the chute;

[0015] (4) After the installation of the plurality of aluminum veneers connected to the pulley is completed, a limiting screw is set in the screw hole of the slide groove to fix the position of the pulley;

[0016] (5) Install one or more overlapping aluminum veneers that are not connected to the pulley, and the overlapping aluminum veneers are overlapped on the slide groove.

[0017] The present invention provides a sliding aluminum veneer ceiling structure and a method of using the same, which have the following beneficial effects:

[0018] 1. Multiple sliding aluminum veneers can move freely in the chute, so that the maintenance position can be easily exposed. The sliding aluminum veneer can fully cover the maintenance area, beautifying the overall effect;

[0019] 2. The sliding aluminum veneer ceiling structure is used in combination with the conventional aluminum veneer ceiling. The installation position can be changed at will, and the construction is flexible;

[0020] 3. The construction is simple, the process flow is clear and easy to understand, and the operators are easy to master. It simplifies the opening, production and installation of the inspection port and saves a certain amount of cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a structural diagram of the sliding aluminum single plate ceiling structure in this specific embodiment.

[0022] Figure 2 Schematic diagram of the structure of the chute in this specific embodiment.

[0023] Figure 3 This is a schematic structural diagram of the connection between the main keel and the slide groove in this specific embodiment.

[0024] Figure 4 It is a front view of the pulley in this specific embodiment.

[0025] Figure 5 2 is a side view of the pulley in this specific embodiment.

[0026] Figure 6 This is a structural diagram of the connection between the aluminum single plate and the pulley in this specific embodiment.

[0027] In the figure: 1. Main keel; 2. Slide; 21. Vertical edge; 22. Upper lap plate; 23. Upper folding edge; 24. Lower edge; 25. Lower folding edge; 26. Top screw hole; 3. Pulley; 31. Frame; 32. Wheel; 33. Bolt reserved hole; 4. Aluminum veneer. DETAILED DESCRIPTION

[0028] In order to enable those skilled in the art to better understand the present invention, the present invention will be further described in detail below in conjunction with specific implementation methods.

[0029] like Figure 1 As shown, the sliding aluminum veneer ceiling structure disclosed in this patent connects and installs the main keel 1 and the aluminum veneer 4 through a slide groove 2. A pulley 3 is provided on the aluminum veneer 4. The aluminum veneer 4 is slid on the slide groove 2. The installation position can be changed at will, and the construction is flexible. The aluminum veneer 4 fully covers the maintenance area, beautifying the overall effect.

[0030] like Figure 2 As shown, the sliding aluminum single-plate ceiling structure uses a 60 series ceiling keel as the main keel 1. The top of the main keel 1 is clamped on the upper part of the slide 2. The slide 2 is a special-shaped slide, which is "Z"-shaped. The special-shaped slide includes a vertical upright edge 21 and a lower edge 24 perpendicularly connected to the lower end of the upright edge 21. The end of the lower edge 24 of the slide 2 away from the upright edge 21 is provided with a vertical upward lower folding edge 25. The lower folding edge 25, the lower edge 24 and the upright edge 21 of the slide 2 form a groove; the upper end of the upright edge 21 of the slide 2 is provided with an upper plate 22, the upper plate 22 is perpendicular to the upright edge 21, and the end of the upper plate 22 away from the upright edge 21 is provided with a vertical downward upper folding edge 23. The upper folding edge 23, upper slap plate 22, and vertical edge 21 of the upper portion of the chute 2 surround the top of the main purlin 1. The upper slap plate 22 of the chute 2 is provided with screw holes, as is the top edge of the main purlin 1. The upper slap plate 22 of the chute 2 and the top edge of the main purlin 1 are connected by bolts. The lower edge 24 of the chute 2 is provided with a top screw hole 26.

[0031] like Figure 1-3As shown, the pulley 3 includes a frame 31 and a wheel 32. The frame 31 is provided with an axle around which the wheel 32 can rotate. The frame 31 is made of stainless steel, and the wheel 32 can be made of polypropylene. The upper side of the frame 31 is provided with a bolt hole 33. The upper side of the aluminum veneer 4 is provided with screw holes. The upper side of the aluminum veneer 4 is fixedly connected to the upper side of the pulley 3 frame 31 by bolts to form a sliding aluminum veneer 4. The wheel 32 of the pulley 3 is aligned with the groove formed by the lower folding edge 25, the lower edge 24 and the vertical edge 21 of the lower part of the chute 2. The sliding aluminum veneer 4 is installed on the chute 2. Multiple sliding aluminum veneers 4 are installed in sequence. When inserting between multiple sliding aluminum veneers 4 or after the penultimate sliding aluminum veneer is installed, a limit screw is set in the screw hole 26 of the chute 2. The last aluminum veneer is an overlapping aluminum veneer that is not connected to the pulley 3. The overlapping aluminum veneer can be overlapped freely. When maintenance is needed, the overlapping aluminum veneer can be removed and the limit top screw can be loosened. Multiple sliding aluminum veneers can move freely in the slide groove 2, so that the maintenance position can be easily exposed, and the maintenance area can be fully covered to beautify the overall effect.

[0032] To install the sliding aluminum veneer ceiling structure, according to construction needs or at the location of the reserved inspection port, install the main keel 1 for the aluminum veneer ceiling according to traditional technology and level it, then hook the slide 2 directly on the main keel 1, fix the pulley 3 on the aluminum veneer with bolts to obtain a sliding aluminum veneer, align the sliding aluminum veneer and install it on the slide 2. Multiple sliding aluminum veneers are installed in sequence, interspersed among multiple sliding aluminum veneers or after the penultimate sliding aluminum veneer is installed, set a limit screw in the top screw hole 26 of the slide 2 until the last overlapping aluminum veneer is installed.

[0033] The sliding aluminum veneer ceiling structure is used in combination with the conventional aluminum veneer ceiling. The installation position can be changed at will, and the construction is flexible. The construction is simple, the process flow is clear and easy to understand, and it is easy for operators to master. It simplifies the opening, production and installation of the inspection port and saves a certain amount of cost.

[0034] This document uses specific examples to illustrate the inventive concept in detail. The above embodiments are only intended to help understand the core concept of the present invention. It should be noted that any obvious modifications, equivalent substitutions, or other improvements made by a person skilled in the art without departing from the inventive concept should be included within the scope of protection of the present invention.

Claims

1. A method for suspending a ceiling using a sliding aluminum veneer ceiling structure, characterized in that: The sliding aluminum veneer ceiling structure includes a main keel and aluminum veneer, as well as a pulley and a slide. The top of the main keel is clamped on the upper part of the slide, and the slide is a special-shaped slide. The upper part of the pulley is connected to the upper part of the aluminum single plate; The chute includes a vertical edge and a horizontal lower edge connected to the lower end of the vertical edge, a lower folding edge is provided on the end of the lower edge away from the vertical edge, the vertical edge, the lower edge and the lower folding edge form a groove for mounting the pulley, the upper end of the vertical edge is provided with a horizontal upper plate, the end of the upper plate away from the vertical edge is provided with an upper folding edge, the vertical edge, the upper plate and the upper folding edge surround the top end of the main keel; the upper plate is bolted to the top end of the main keel; The pulley comprises a frame and a wheel, wherein the frame is provided with an axis around which the wheel can rotate; a top screw hole is provided on the lower edge of the slide groove; a limit screw is provided in the top screw hole to limit the movement of the pulley; The frame is made of stainless steel, the wheels are made of polypropylene, the upper side of the frame is provided with bolt holes, the upper side of the aluminum veneer is provided with screw holes, the upper side of the aluminum veneer is fixedly connected to the upper side of the pulley frame by bolts to obtain a sliding aluminum veneer; The ceiling method comprises the following steps: (1) Install the main keel boom on the roof; (2) Installing the main keel on the main keel hanger; (3) The chute is installed and connected to the main keel, and a plurality of aluminum veneers connected to the pulley are installed on the chute; (4) After the installation of the plurality of aluminum veneers connected to the pulley is completed, a limiting screw is set in the screw hole of the slide groove to fix the position of the pulley; (5) Install one or more overlapping aluminum veneers that are not connected to the pulley, and the overlapping aluminum veneers are overlapped on the slide groove, wherein multiple sliding aluminum veneers are installed in sequence, and a limit screw is set in the top screw hole of the slide groove after the multiple sliding aluminum veneers are inserted or after the installation of the second to last sliding aluminum veneer is completed, until the last overlapping aluminum veneer is installed. When maintenance is required, the overlapping aluminum veneer is removed; Specifically, by loosening the limit screw, multiple sliding aluminum panels can move freely in the slide groove, so that the maintenance position can be easily exposed.

Citation Information

Patent Citations

  • Hook-type ceiling mounting system

    CN203742049U

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