Fabricated pipeline support rooting structure
The pipe support design, which combines magnesium wing composite panels with cold-formed thin-walled steel frames, solves the problem of low construction efficiency in traditional construction and achieves lightweight, heat-insulating, fireproof, waterproof, impact-resistant, and sound-insulating effects, meeting the rapid installation needs of prefabricated buildings.
Patent Information
- Application Number
- CN202520428895.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-03-12
AI Technical Summary
Traditional building water supply and drainage pipes are inefficient and costly to construct, making it difficult to meet the rapid installation requirements of prefabricated buildings.
The pipe support is modularly designed and fixed by combining magnesium wing composite panels with cold-formed thin-walled steel frames and connecting them with finished C-shaped steel, Z-shaped and L-shaped bending parts. Polypropylene granular aggregate is used to reduce the weight of the panels and enable rapid installation and integrated connection.
It achieves lightweight, heat-insulating, fireproof, waterproof, impact-resistant, and sound-insulating pipe supports, reducing construction costs, improving installation efficiency, and meeting the high-efficiency installation requirements of prefabricated buildings.
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Figure CN223579135U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the field of building construction, in particular to a kind of fabricated pipe support rooting structure. BACKGROUND
[0002] With the development of building industrialization, fabricated building becomes a trend through the mode of factory prefabrication, on-site assembly. The water supply and drainage pipe of traditional building needs to be cut and welded on site, and fabricated building requires more efficient and reliable fixing and installation technology to meet the prefabricated production and rapid installation needs. CONTENT OF THE UTILITY MODEL
[0003] The utility model aims at providing a kind of fabricated pipe support rooting structure, integrated to solve many problems such as wall pipe support design, installation, etc.
[0004] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:
[0005] A kind of fabricated pipe support rooting structure, including magnesium wing composite board and pipe support fixed on magnesium wing composite board, characterized by: magnesium wing composite board includes thin-walled steel skeleton and aggregate filled in thin-walled steel skeleton, the pipe support is fixed with the thin-walled steel skeleton, the pipe support includes finished product C-shaped steel, and Z-shaped bending piece and L-shaped bending piece for connecting finished product C-shaped steel and thin-walled steel skeleton, pipe is fixed on finished product C-shaped steel by U-shaped clamp clamp, the Z-shaped bending piece is fixed at both ends of finished product C-shaped steel, and the Z-shaped bending piece is fixed in the middle of finished product C-shaped steel.
[0006] Further preferably, the thin-walled steel skeleton includes middle skeleton and edge skeleton, the edge skeleton includes left side end plate with tenon, right side end plate with mortise hole and angle strip provided at right angle position on both sides of upper and lower end faces of composite board, the tenon is matched with the shape of mortise hole, for splicing adjacent magnesium wing composite boards.
[0007] Further preferably, the middle skeleton includes counter-dog profile provided between opposite board surfaces and support piece supported inside the counter-dog profile, the counter-dog profile is made of two C-shaped thin-walled steel notches opposite to each other, and the support piece is a U-shaped member, the two side plates of the U-shaped member are fixed with the C-shaped thin-walled steel web through self-tapping screws, and a plurality of counter-dog profiles are arranged in cross-shaped grid shape to form internal support of inner board material.
[0008] Further, finished product C-shaped steel is arranged horizontally and / or vertically, and horizontal and vertical finished product C-shaped steel is combined into a right angle to fix pipe elbow.
[0009] Further, the finished product C-shaped steel is uniformly and spacedly provided with perforations, which are circular or elliptical.
[0010] Further, the aggregate contains polypropylene particles.
[0011] In addition, the finished C-shaped steel notch is outward to the plate, one side horizontal plate of the Z-shaped bending piece is fixed with the finished C-shaped steel web through a flat head self-tapping screw, and one side vertical plate of the L-shaped bending piece is fixed with the side edge of the finished C-shaped steel through a flat head self-tapping screw.
[0012] More preferably, the finished C-shaped steel web bottom surface is arranged at a certain interval from the magnesium wing composite plate surface for installing a decorative panel.
[0013] Compared with the prior art, the utility model has the following characteristics and beneficial effects:
[0014] The magnesium wing composite plate is combined by magnesium-based material and cold-formed thin-walled steel, has excellent characteristics such as light weight, heat preservation, fireproof, waterproof, impact resistance and sound insulation. Polystyrene and magnesium oxide are used as filling aggregate of the magnesium wing composite plate, which greatly reduces the self weight of the plate, and the pipe rooting support is fixed on the thin-walled steel framework of the plate, the plate can be produced modularly, the rapid installation of the wall and the pipe is realized, the integration of the water supply and drainage pipe connection is realized, the problems of low construction efficiency and high cost in the traditional construction are solved, and the development direction of the future building industrialization is represented. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a structure schematic view of the magnesium wing composite plate related to the application;
[0016] Figure 2 It is a structure schematic view of the thin-walled steel framework related to the application;
[0017] Figure 3 It is a connection diagram of the pipe and the pipe support related to the application;
[0018] Figure 4 It is a connection and fixing diagram of the finished C-shaped steel and the thin-walled steel framework. DETAILED DESCRIPTION
[0019] In order to make the technical means, innovative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below.
[0020] The embodiments described herein are specific concrete embodiments of the utility model, used to explain the concept of the utility model, and are explanatory and exemplary, and should not be interpreted as limiting the embodiments and the scope of the utility model. In addition to the embodiments described herein, those skilled in the art can also use other obvious technical solutions based on the disclosure of the claims and the description of the application, and these technical solutions include any obvious replacement and modification of the embodiments described herein.
[0021] A prefabricated pipe support anchoring structure, such as Figures 1-4 As shown, the device includes a magnesium-coated composite plate 1 and a pipe support 2 fixed on the magnesium-coated composite plate 1. The magnesium-coated composite plate 1 includes a thin-walled steel frame 11 and aggregate 12 filled in the thin-walled steel frame 11. The pipe support 2 includes a finished C-shaped steel 23 and Z-shaped bending parts 21 and L-shaped bending parts 22 for connecting the finished C-shaped steel 23 with the thin-walled steel frame 11. The pipe 3 is fixed to the finished C-shaped steel 23 by U-shaped clamps 4. The Z-shaped bending parts 21 are fixed at both ends of the finished C-shaped steel 23 and at the middle of the finished C-shaped steel 23.
[0022] like Figure 2 As shown, the thin-walled steel frame 11 includes a central frame and a side frame. The side frame includes a left end plate 111 with tenons, a right end plate 112 with mortises, and corner strips 113 located at right angles on the upper and lower end faces of the composite plate. The tenons and mortises are matched in shape and used for splicing adjacent magnesium wing composite plates 1.
[0023] The central frame includes interlocking profiles 114 located between opposite panels and support members 115 supported inside the interlocking profiles 114. The interlocking profiles 114 are made of two C-shaped thin-walled steel slots facing each other. The support members 115 are U-shaped components. The side plates of the U-shaped components are fixed to the webs of the C-shaped thin-walled steel by self-tapping screws. Several interlocking profiles 114 are arranged in a cross-shaped grid to form the internal support of the inner panel.
[0024] The number of finished C-shaped steel 23 is set as needed, and the direction is horizontal and / or vertical. The horizontal and two vertical finished C-shaped steel 23 are combined to form a right angle to fix the pipe elbow. The finished C-shaped steel 23 is provided with perforations at even intervals. The perforations are circular or elliptical. The aggregate 12 contains polypropylene particles and magnesium oxide.
[0025] The groove of the finished C-shaped steel 23 faces outward from the plate. The horizontal plate on one side of the Z-shaped bending part 21 is fixed to the web of the finished C-shaped steel 23 with flat-head self-tapping screws. The vertical plate on one side of the L-shaped bending part 22 is fixed to the side of the finished C-shaped steel 23 with flat-head self-tapping screws. The bottom surface of the web of the finished C-shaped steel 23 is set at a certain distance from the surface of the magnesium wing composite plate 1 for installing decorative panels.
[0026] The magnesium wing composite board is combined by magnesium-based material and cold-formed thin-walled steel, and has the advantages of light weight, heat preservation, fireproof, waterproof, impact resistance, sound insulation and the like. The magnesium wing composite board uses polystyrene and magnesium oxide as filling aggregate, greatly reduces the self weight of the board, and the bulk density of the board is also different according to different use areas, and the bulk density is usually about 300kg / m³, which is 60% of ALC wallboard and 12% of concrete. The bending failure load of the magnesium wing composite board is 12.3, which is much larger than the technical index, the ultimate bending bearing capacity of the 140mm thick board of 3m span is 6.7kN / m², the ultimate load after burning for 1.5 hours is 2.67kN / m², the raw material of the magnesium wing composite board does not contain harmful substances, has no radioactivity, zero formaldehyde, and passes the green product low-carbon certification. The sound insulation performance of the board is between 40-55dB, and the board is a building material with excellent sound insulation and noise reduction performance. The fireproof grade is A grade, and the fire resistance time is greater than 2.5h, and after 2-3h of high temperature burning, the board does not lose integrity and heat insulation. The heat transfer coefficient of the magnesium wing composite board is less than 1.0w / (m²·k), and the thermal conductivity is less than 0.086w / (m·k), and the board is a building material with excellent heat preservation and insulation performance. The magnesium wing composite board has the advantages of waterproof, corrosion resistance and moisture resistance, and provides guarantee for the durability of the board. After the weather resistance test (80 times of hot rain cycle and 5 times of hot and cold cycle), the sample does not appear cracks, powdering, hollowing, peeling and the like.
[0027] The above shows and describes the basic principles and main features of the present application and the advantages of the present application, and for those skilled in the art, it is obvious that the present application is not limited to the details of the above exemplary embodiments, and the present application can be realized in other specific forms without departing from the spirit or basic characteristics of the present application. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims involved.
[0028] In addition, it should be understood that although the present application is described in the form of embodiments, not every embodiment contains only one independent technical solution, and the description manner of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A fabricated pipe support rooting structure comprising a magnesium wing composite panel (1) and a pipe support (2) fixed to the magnesium wing composite panel (1), characterized in that: The magnesium wing composite board (1) comprises a thin-walled steel skeleton (11) and aggregate (12) filled in the thin-walled steel skeleton (11), the pipeline support (2) comprises a finished C-shaped steel (23), and a Z-shaped bending piece (21) and an L-shaped bending piece (22) for connecting the finished C-shaped steel (23) and the thin-walled steel skeleton (11), the pipeline (3) is fixed on the finished C-shaped steel (23) through a U-shaped clamp (4), the Z-shaped bending piece (21) is fixed at both ends of the finished C-shaped steel (23), and the Z-shaped bending piece (21) is fixed in the middle of the finished C-shaped steel (23).
2. A fabricated duct support rooting formation as claimed in claim 1, characterised in that: The thin-walled steel skeleton (11) comprises a middle skeleton and an edge skeleton, the edge skeleton comprises a left end plate (111) with a tenon, a right end plate (112) with a mortise, and an angle strip (113) arranged at the right angle position on both sides of the upper and lower end faces of the composite board, the tenon is matched with the mortise in shape, and is used for splicing adjacent magnesium wing composite boards (1).
3. A fabricated duct support rooting formation as claimed in claim 2, wherein: The middle skeleton comprises a butt buckle profile (114) arranged between opposite plates and a support piece (115) supported in the butt buckle profile (114), the butt buckle profile (114) is made of two C-shaped thin-walled steel notches opposite to each other, and the support piece (115) is a U-shaped member, the two side plates of the U-shaped member are fixed with the web of the C-shaped thin-walled steel through self-tapping screws, and a plurality of butt buckle profiles (114) are arranged in a cross-shaped grid shape to form internal support of the inner plate.
4. A fabricated duct support root structure as defined in Claim 1 wherein: The finished C-shaped steel (23) is arranged transversely and / or vertically, and the finished C-shaped steels (23) arranged transversely and vertically are combined into a right angle to fix a pipeline elbow.
5. A fabricated duct support root structure as defined in claim 1 wherein: The finished C-shaped steel (23) is uniformly and spacedly provided with perforations, and the perforations are circular or elliptical.
6. A fabricated duct support root structure as defined in claim 1 wherein: The aggregate (12) contains polypropylene particles.
7. A fabricated duct support root structure as defined in claim 1 wherein: The notch of the finished C-shaped steel (23) is outward of the plate, one side of the horizontal plate of the Z-shaped bending piece (21) is fixed with the web of the finished C-shaped steel (23) through a flat head self-tapping screw, and one side of the vertical plate of the L-shaped bending piece (22) is fixed with the side edge of the finished C-shaped steel (23) through a flat head self-tapping screw.
8. A modular pipe support root structure according to any one of claims 1 to 7, wherein: The bottom surface of the web of the finished C-shaped steel (23) is arranged at a certain distance from the surface of the magnesium wing composite board (1), and is used for mounting a decorative panel.