Aluminum pipe suspended ceiling structure
By dividing the aluminum tube into three sections and connecting them with connecting tubes and plates, the problems of deformation and bumping of the aluminum tube during transportation were solved, ensuring the smooth installation of the suspended ceiling.
Patent Information
- Application Number
- CN202422527003.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-10-18
AI Technical Summary
Long aluminum tubes are prone to deformation and bumping during transportation.
The aluminum tube is divided into three sections, which are connected by connecting tubes and connecting plates to form ceiling components, and are evenly spaced along the length of the structural beam.
It solves the problems of deformation and collision of aluminum tubes during transportation and ensures the smooth installation of the ceiling.
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Figure CN223410358U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of building materials, and in particular to an aluminum tube ceiling structure. Background Art
[0002] A suspended ceiling, also known as a ceiling or roof, is a decorative feature that covers the top of a home. It serves a decorative purpose, conceals wiring and plumbing, enhances the interior aesthetic, and provides sound and heat insulation.
[0003] Ceiling materials are primarily light steel frame gypsum board, mineral wool board, PVC board, and aluminum board. Light steel frame gypsum board, with a light steel frame as the skeleton and a gypsum board surface covering, is lightweight, high-strength, easy to process, and convenient to install. Mineral wool board, made primarily from mineral fiber, offers excellent sound and heat insulation properties and is often used in spaces requiring good acoustics. PVC board is a lightweight, waterproof, and moisture-proof plastic sheet suitable for kitchen and bathroom ceilings. Aluminum board is a ceiling panel made from aluminum alloy with a specially treated surface for corrosion and wear resistance. It is commonly used in offices, kitchens, bathrooms, and other spaces.
[0004] When using aluminum tubes to set up concave and convex ceilings, longer aluminum tubes are prone to deformation and bumping during transportation. Utility Model Content
[0005] The present application provides an aluminum tube ceiling structure to solve the problem that when aluminum tubes are used to set up a concave and convex ceiling, the longer aluminum tubes are easily deformed and bumped during transportation.
[0006] The present application provides an aluminum tube ceiling structure, comprising: ceiling components, the ceiling components being arranged equidistantly along the length direction of the structural beam;
[0007] The ceiling assembly includes a first aluminum tube, a second aluminum tube and a third aluminum tube;
[0008] One end of the third aluminum tube is connected to the first aluminum tube via a connecting tube, and the other end of the third aluminum tube is connected to the second aluminum tube via the connecting tube;
[0009] One end of the first aluminum tube away from the third aluminum tube is connected to the structural beam through a connecting piece; one end of the second aluminum tube away from the third aluminum tube is connected to the structural beam through the connecting piece.
[0010] Optionally, the first aluminum tube, the second aluminum tube and the third aluminum tube are hollow cylinders, and the first aluminum tube, the second aluminum tube and the third aluminum tube are all provided with hanger slots, and the hanger slots are all in the same plane.
[0011] Optionally, the diameters of the first aluminum tube, the second aluminum tube and the third aluminum tube are 50 mm, the wall thicknesses of the first aluminum tube, the second aluminum tube and the third aluminum tube are 1.5 mm; and the diameter of the connecting tube is 47 mm.
[0012] Optionally, the connecting tube is a V-shaped structure, one end of the connecting tube is inserted into the third aluminum tube, and the other end of the connecting tube is inserted into the first aluminum tube or the second aluminum tube.
[0013] Optionally, when the first aluminum tube abuts the third aluminum tube or the angle between the first aluminum tube and the third aluminum tube is a first angle, when the second aluminum tube abuts the third aluminum tube, the angle between the second aluminum tube and the third aluminum tube is a second angle, the bending angle of the connecting tube is a third angle, and the first angle, the second angle and the third angle are equal.
[0014] Optionally, it also includes several self-tapping nuts. When the connecting tube is inserted into both ends of the third aluminum tube, the self-tapping nuts pass through the third aluminum tube and the connecting tube in sequence; when the connecting tube is inserted into the second aluminum tube, the self-tapping nuts pass through the second aluminum tube and the connecting tube in sequence; when the connecting tube is inserted into the first aluminum tube, the self-tapping nuts pass through the first aluminum tube and the connecting tube in sequence.
[0015] Optionally, a fixed bracket includes a first bracket and a second bracket, the first bracket and the second bracket are hinged, the end of the first bracket away from the second bracket is fixedly connected to the structural beam, the end of the second bracket away from the first bracket is inserted into the hanger slot and connected to the first aluminum tube, or the end of the second bracket away from the first bracket is inserted into the hanger slot and connected to the second aluminum tube.
[0016] Optionally, one end of the connecting plate is connected to the structural beam, and the other end of the connecting plate is connected to the first aluminum tube, or one end of the connecting plate is connected to the structural beam, and the other end of the connecting plate is connected to the second aluminum tube; the width of the connecting plate is greater than the width of the first aluminum tube.
[0017] As can be seen from the above technical solutions, the present application provides an aluminum tube ceiling structure, comprising: a ceiling assembly, the ceiling assembly being equidistantly arranged along the length direction of the structural beam; the ceiling assembly comprising a first aluminum tube, a second aluminum tube, and a third aluminum tube; one end of the third aluminum tube being connected to the first aluminum tube via a connecting tube, and the other end of the third aluminum tube being connected to the second aluminum tube via the connecting tube; the end of the first aluminum tube away from the third aluminum tube being connected to the structural beam via a connecting piece; and the end of the second aluminum tube away from the third aluminum tube being connected to the structural beam via the connecting piece. By dividing the aluminum tube into three sections, the length of the aluminum tube is reduced, and the aluminum tubes are connected together via connecting tubes during installation, the problem of the long aluminum tubes being easily deformed and bumped during transportation when using aluminum tubes to set up a concave and convex ceiling is solved. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solution of the present application, the following is a brief introduction to the drawings required for use in the embodiments. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0019] Figure 1 A schematic diagram of the aluminum tube ceiling structure provided in an embodiment of the present application;
[0020] Figure 2 A schematic diagram of the structure of a ceiling assembly provided in an embodiment of the present application;
[0021] Figure 3 A schematic diagram of the first aluminum tube structure provided in an embodiment of the present application;
[0022] Figure 4 This is a schematic diagram of the connecting pipe structure provided in an embodiment of the present application.
[0023] Reference numerals:
[0024] Among them, 1-first aluminum tube; 2-second aluminum tube; 3-third aluminum tube; 4-connecting tube; 5-connecting plate; 6-hanging piece slot; 7-self-tapping nut; 81-first bracket; 82-second bracket. DETAILED DESCRIPTION
[0025] The following embodiments are described in detail, with examples illustrated in the accompanying drawings. When the following description refers to the drawings, identical numbers in different figures represent identical or similar elements unless otherwise indicated. The embodiments described in the following embodiments are not intended to represent all possible implementations consistent with the present application. They are merely examples of systems and methods consistent with certain aspects of the present application, as detailed in the claims.
[0026] A suspended ceiling, also known as a ceiling or roof, is a decorative feature that covers the top of a home. It serves a decorative purpose, conceals wiring and plumbing, enhances the interior aesthetic, and provides sound and heat insulation.
[0027] Ceiling materials are primarily light steel frame gypsum board, mineral wool board, PVC board, and aluminum board. Light steel frame gypsum board, with a light steel frame as the skeleton and a gypsum board surface covering, is lightweight, high-strength, easy to process, and convenient to install. Mineral wool board, made primarily from mineral fiber, offers excellent sound and heat insulation properties and is often used in spaces requiring good acoustics. PVC board is a lightweight, waterproof, and moisture-proof plastic sheet suitable for kitchen and bathroom ceilings. Aluminum board is a ceiling panel made from aluminum alloy with a specially treated surface for corrosion and wear resistance. It is commonly used in offices, kitchens, bathrooms, and other spaces.
[0028] In some embodiments, a ceiling structure is provided, wherein the aluminum tube has a diameter of 50 mm, a spacing of 50 mm, a total length of 2956 mm, and a wall thickness of 1.5 mm. Each aluminum tube is a single piece, and therefore, the aluminum tube is relatively long, which can easily cause deformation and bumping during transportation. Therefore, in order to solve the problem of long aluminum tubes being easily deformed and bumped during transportation when using aluminum tubes to set up a concave-convex ceiling, see Figure 1 , an embodiment of the present application provides an aluminum tube ceiling structure, comprising:
[0029] The ceiling components are arranged at equal distances along the length direction of the structural beam.
[0030] The ceiling assembly includes a first aluminum tube 1 , a second aluminum tube 2 and a third aluminum tube 3 .
[0031] One end of the third aluminum tube 3 is connected to the first aluminum tube 1 through a connecting tube 4 , and the other end of the third aluminum tube 3 is connected to the second aluminum tube 2 through the connecting tube 4 .
[0032] One end of the first aluminum tube 1 away from the third aluminum tube 3 is connected to the structural beam through a connecting piece 5 ; one end of the second aluminum tube 2 away from the third aluminum tube 3 is connected to the structural beam through the connecting piece 5 .
[0033] Among them, such as Figure 2 As shown, Figure 2A schematic diagram of the structure of a ceiling assembly provided in an embodiment of the present application. The first aluminum tube 1 and the second aluminum tube 2 are arranged at an angle, and the third aluminum tube 3 is arranged horizontally. The first aluminum tube 1, the third aluminum tube 3 and the second aluminum tube 2 are connected in sequence to form the ceiling assembly. The ceiling assembly is then connected to the structural beam through the connecting piece 5 to fix the ceiling assembly to the fixed beam. Finally, the ceiling assembly is arranged equidistantly along the length direction of the structural beam to complete the installation of the aluminum tube ceiling. By dividing the longer aluminum tube into three sections of aluminum tubes, the aluminum tubes are transported to the installation site, and then the first aluminum tube 1, the second aluminum tube 2 and the third aluminum tube 3 are assembled together. The first aluminum tube 1, the second aluminum tube 2 and the third aluminum tube 3 are shorter in length to solve the problem that when using aluminum tubes to set a concave and convex ceiling, the longer aluminum tubes are easily deformed and bumped during transportation.
[0034] In some embodiments, as Figure 3 As shown, Figure 3 Schematic diagram of the first aluminum tube structure provided in an embodiment of the present application. The first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3 are hollow cylinders. The first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3 are all provided with hanger slots 6, and the hanger slots 6 are all in the same plane. The hanger slots 6 are arranged along the length of the aluminum tube, and the hanger slots 6 of the first aluminum tube 1, the hanger slots 6 of the second aluminum tube 2, and the hanger slots 6 of the third aluminum tube 3 are arranged in the same plane to facilitate the connection with the ceiling keel to better fix the ceiling assembly.
[0035] In some embodiments, the diameters of the first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3 are 50 mm, the wall thicknesses of the first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3 are 1.5 mm, and the diameters of the connecting tube 4 are 47 mm. By setting the diameter of the connecting tube 4 to 47 mm, the wall thicknesses of the first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3 to 1.5 mm, and the diameters of the first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3 to 50 mm, the inner diameters of the first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3 are calculated as follows: diameter - wall thickness × 2 = 47 mm. Since the connecting tube 4 has the same inner diameter as the first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3, the connecting tube 4 can be tightly inserted into the first aluminum tube 1, the second aluminum tube 2, and the third aluminum tube 3, forming a good connection relationship.
[0036] In some embodiments, as Figure 4 As shown, Figure 4Schematic diagram of the connecting tube structure provided in an embodiment of the present application. The connecting tube 4 is a V-shaped structure, one end of the connecting tube 4 is inserted into the third aluminum tube 3, and the other end of the connecting tube 4 is inserted into the first aluminum tube 1 or the second aluminum tube 2. In particular, since the first aluminum tube 1 and the second aluminum tube 2 are arranged at an angle, there is a certain angle between the first aluminum tube 1 and the third aluminum tube 3, and there is a certain angle between the second aluminum tube 2 and the third aluminum tube 3. Therefore, the connecting tube 4 is set to a V-shaped structure to adapt to the shape of the ceiling component, so that the first aluminum tube 1 and the third aluminum tube 3 can be connected together, and the second aluminum tube 2 and the third aluminum tube 3 can be connected together through the connecting tube 4.
[0037] In some embodiments, when the first aluminum tube 1 is in contact with the third aluminum tube 3 or the angle between the first aluminum tube 1 and the third aluminum tube 3 is a first angle, when the second aluminum tube 2 is in contact with the third aluminum tube 3, the angle between the second aluminum tube 2 and the third aluminum tube 3 is a second angle, and the bending angle of the connecting tube 4 is a third angle, and the first angle, the second angle and the third angle are equal.
[0038] Among them, the end faces of the first aluminum tube 1, the second aluminum tube 2 and the third aluminum tube 3 are arranged at an angle. When the first aluminum tube 1 or the second aluminum tube 2 abuts one end of the third aluminum tube 3, a first angle is formed between the first aluminum tube 1 and the third aluminum tube 3. In order to facilitate the connection of the first aluminum tube 1 and the third aluminum tube 3 so that there is no gap between the first aluminum tube 1 and the third aluminum tube 3, the bending angle of the connecting tube 4 is set to be consistent with the first angle, so that there is no gap after the first aluminum tube 1 and the third aluminum tube 3 are connected. At the same time, when the second aluminum tube 2 and the third aluminum tube 3 abut, a second angle is formed between the second aluminum tube 2 and the third aluminum tube 3. The second angle is set to be consistent with the third angle. After the second aluminum tube 2 and the third aluminum tube 3 are connected through the connecting tube 4, there is no gap between the second aluminum tube 2 and the third aluminum tube 3.
[0039] When the first aluminum tube 1 and the third aluminum tube 3 are connected together through the connecting tube 4, and the second aluminum tube 2 and the third aluminum tube 3 are connected together through the connecting tube 4, in order to improve the connection relationship between the first aluminum tube 1, the second aluminum tube 2 and the third aluminum tube 3, in some embodiments, a plurality of self-tapping nuts 7 are further included. When the connecting tube 4 is inserted into both ends of the third aluminum tube 3, the self-tapping nuts 7 pass through the third aluminum tube 3 and the connecting tube 4 in sequence; when the connecting tube 4 is inserted into the second aluminum tube 2, the self-tapping nuts 7 pass through the second aluminum tube 2 and the connecting tube 4 in sequence; when the connecting tube 4 is inserted into the first aluminum tube 1, the self-tapping nuts 7 pass through the first aluminum tube 1 and the connecting tube 4 in sequence.
[0040] Specifically, taking the first aluminum tube 1 and the connecting tube 4 as an example, during installation, when the connecting tube 4 is inserted into the first aluminum tube 1, the self-tapping nut 7 is sequentially screwed into the first aluminum tube 1 and the connecting tube 4 at the overlapping portion of the connecting tube 4 and the first aluminum tube 1. When the connecting tube 4 needs to be removed, the self-tapping nut 7 can be rotated and removed, and the connecting tube 4 can be pulled out of the first aluminum tube 1. Similarly, after the second aluminum tube 2 and the connecting tube 4 are connected, and after the third aluminum tube 3 and the connecting tube 4 are connected, the self-tapping nut 7 can be used to increase the connection strength.
[0041] In some embodiments, a fixing frame includes a first bracket 81 and a second bracket 82, wherein the first bracket 81 and the second bracket 82 are hingedly connected, and the end of the first bracket 81 away from the second bracket 82 is fixedly connected to the structural beam, and the end of the second bracket 82 away from the first bracket 81 is inserted into the hanger slot 6 and connected to the first aluminum tube 1, or the end of the second bracket 82 away from the first bracket 81 is inserted into the hanger slot 6 and connected to the second aluminum tube 2. The first bracket 81 and the second bracket 82 are hingedly connected, and the connection position of the second bracket 82 with the first aluminum tube 1 or the connection position of the second bracket 82 with the second aluminum tube 2 can be changed by rotating the second bracket 82. In addition, the provision of a fixing frame can also improve the stability of the ceiling assembly.
[0042] In some embodiments, one end of the connecting piece 5 is connected to the structural beam, and the other end of the connecting piece 5 is connected to the first aluminum tube 1, or one end of the connecting piece 5 is connected to the structural beam, and the other end of the connecting piece 5 is connected to the second aluminum tube 2; the width of the connecting piece 5 is greater than the width of the first aluminum tube 1. By setting the width of the connecting piece 5 greater than the width of the first aluminum tube 1, it is convenient to cover one end of the first aluminum tube 1 with the connecting piece 5 to prevent external dust and debris from entering the first aluminum tube 1. At the same time, the connecting piece 5 can also cover the second aluminum tube 2, and one end of the second aluminum tube 2 is connected to the connecting piece 5.
[0043] As can be seen from the above technical solutions, the present application provides an aluminum tube ceiling structure, comprising: a ceiling assembly, the ceiling assembly being equidistantly arranged along the length direction of the structural beam; the ceiling assembly comprising a first aluminum tube 1, a second aluminum tube 2, and a third aluminum tube 3; one end of the third aluminum tube 3 being connected to the first aluminum tube 1 via a connecting tube 4, and the other end of the third aluminum tube 3 being connected to the second aluminum tube 2 via the connecting tube 4; the end of the first aluminum tube 1 away from the third aluminum tube 3 being connected to the structural beam via a connecting piece 5; and the end of the second aluminum tube 2 away from the third aluminum tube 3 being connected to the structural beam via the connecting piece 5. By dividing the aluminum tube into three sections, the length of the aluminum tube is reduced, and the aluminum tubes are connected via the connecting tube 4 during installation, the problem of long aluminum tubes being easily deformed and bumped during transportation when using aluminum tubes to set up a concave and convex ceiling is solved.
[0044] Similar parts between the embodiments provided in this application can be referenced to each other. The specific implementation methods provided above are only a few examples under the overall concept of this application and do not constitute a limitation on the scope of protection of this application. For those skilled in the art, any other implementation methods expanded based on the scheme of this application without expending creative work shall fall within the scope of protection of this application.
Claims
1. An aluminum tube ceiling structure, characterized in that: include: Ceiling components, the ceiling components are arranged equidistantly along the length direction of the structural beam; The ceiling assembly comprises a first aluminum tube (1), a second aluminum tube (2) and a third aluminum tube (3); One end of the third aluminum tube (3) is connected to the first aluminum tube (1) via a connecting tube (4), and the other end of the third aluminum tube (3) is connected to the second aluminum tube (2) via the connecting tube (4); One end of the first aluminum tube (1) away from the third aluminum tube (3) is connected to the structural beam via a connecting piece (5); and one end of the second aluminum tube (2) away from the third aluminum tube (3) is connected to the structural beam via the connecting piece (5).
2. The aluminum tube ceiling structure according to claim 1, characterized in that: The first aluminum tube (1), the second aluminum tube (2), and the third aluminum tube (3) are hollow cylinders; the first aluminum tube (1), the second aluminum tube (2), and the third aluminum tube (3) are all provided with hanger slots (6); and the hanger slots (6) are all in the same plane.
3. The aluminum tube ceiling structure according to claim 1, characterized in that: The diameters of the first aluminum tube (1), the second aluminum tube (2), and the third aluminum tube (3) are 50 mm, and the wall thicknesses of the first aluminum tube (1), the second aluminum tube (2), and the third aluminum tube (3) are 1.5 mm; the diameter of the connecting tube (4) is 47 mm.
4. The aluminum tube ceiling structure according to claim 1, characterized in that: The connecting tube (4) is a V-shaped structure, one end of the connecting tube (4) is inserted into the third aluminum tube (3), and the other end of the connecting tube (4) is inserted into the first aluminum tube (1) or the second aluminum tube (2).
5. The aluminum tube ceiling structure according to claim 1, characterized in that: When the first aluminum tube (1) and the third aluminum tube (3) are in contact or the angle between the first aluminum tube (1) and the third aluminum tube (3) is a first angle, when the second aluminum tube (2) and the third aluminum tube (3) are in contact, the angle between the second aluminum tube (2) and the third aluminum tube (3) is a second angle, and the bending angle of the connecting tube (4) is a third angle, and the first angle, the second angle, and the third angle are equal.
6. The aluminum tube ceiling structure according to claim 2, characterized in that: The invention also includes a plurality of self-tapping nuts (7). When the connecting tube (4) is inserted into both ends of the third aluminum tube (3), the self-tapping nuts (7) sequentially pass through the third aluminum tube (3) and the connecting tube (4); when the connecting tube (4) is inserted into the second aluminum tube (2), the self-tapping nuts (7) sequentially pass through the second aluminum tube (2) and the connecting tube (4); when the connecting tube (4) is inserted into the first aluminum tube (1), the self-tapping nuts (7) sequentially pass through the first aluminum tube (1) and the connecting tube (4).
7. The aluminum tube ceiling structure according to claim 2, characterized in that: A fixing frame, the fixing frame comprising a first bracket (81) and a second bracket (82), the first bracket (81) and the second bracket (82) being hinged, one end of the first bracket (81) away from the second bracket (82) being fixedly connected to a structural beam, and one end of the second bracket (82) away from the first bracket (81) being inserted into the hanging member slot (6) and connected to the first aluminum tube (1), or one end of the second bracket (82) away from the first bracket (81) being inserted into the hanging member slot (6) and connected to the second aluminum tube (2).
8. The aluminum tube ceiling structure according to claim 1, characterized in that: One end of the connecting piece (5) is connected to the structural beam, and the other end of the connecting piece (5) is connected to the first aluminum tube (1), or one end of the connecting piece (5) is connected to the structural beam, and the other end of the connecting piece (5) is connected to the second aluminum tube (2); the width of the connecting piece (5) is greater than the width of the first aluminum tube (1).