Building decoration pipeline separation assembly type heat preservation and sound insulation board mounting structure
Patent Information
- Application Number
- CN202522300029.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-30
AI Technical Summary
[0004]本实用新型所要解决的技术问题是现有技术采用龙骨找平,效率低且成本高,安装和布管不便
[0015] The beneficial effects of this utility model are as follows: This structure replaces the original leveling keel with a leveling component, enabling the insulation board to be installed flat on the foundation wall. Furthermore, because the leveling component is individually and independently designed, it is lightweight and can be installed and fixed by one person, reducing installation intensity. The adjustable height of the leveling component ensures the flatness of the insulation board installation, making leveling and installation more convenient. Additionally, the gap between the insulation board and the foundation wall can be directly used for pipe laying, and the pipelines can actually be arranged along the gaps between the leveling components, improving installation efficiency.
Smart Images

Figure CN224755319U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a prefabricated heat insulation and sound insulation panel installation structure for separate building decoration pipelines, belonging to the field of building decoration technology. Background Technology
[0002] Traditional wall decoration involves directly applying putty to the base wall, sanding the putty layer to make it smooth, and then spraying paint, wallpaper, or wall coverings on top of the putty layer to decorate the walls and ceiling. This wet-work decoration method, due to the excessive use of glue, can cause indoor formaldehyde levels to exceed the standard, often requiring a long period of vacancy before moving in. Formaldehyde produced during decoration is highly harmful to human health and difficult to eliminate. At the same time, the rising prices of building materials such as cement and river sand in recent years have continuously increased the cost of wet-work, making the traditional construction industry increasingly inadequate for the needs of the entire industry's development. To change this situation, prefabricated decoration has emerged. Prefabricated decoration uses a dry construction method, reducing the amount of cement mortar used, and even eliminating the need for cement mortar altogether, thus reducing construction time and environmental pollution.
[0003] Current prefabricated decoration methods use keel and decorative panels for construction. This installation method is fast and can greatly shorten the decoration time. The decorative panels are all prefabricated in the factory, so they are less likely to cause indoor air pollution. However, the installation of decorative panels directly fixes the leveling keel to the wall with screws. Leveling can only be achieved by the keel. Since the leveling keel is long, it is not convenient to operate. Installation needs to be completed in one go, and multiple workers need to work at the same time, which will result in high labor intensity for workers during the whole house renovation. At the same time, after the leveling keel is laid out, the subsequent pipe laying and wiring will interfere with the leveling keel, requiring the leveling keel to be cut and drilled again, affecting its structural strength and also compromising the flatness of the leveling keel, making the installation process more complicated. Utility Model Content
[0004] The technical problem to be solved by this utility model is that the existing technology uses keel leveling, which is inefficient and costly, and is inconvenient for installation and pipe laying.
[0005] The technical solution adopted by this utility model to solve its technical problem is: a prefabricated heat insulation and sound insulation board installation structure for separate building decoration pipelines, including leveling components, conduits, insulation boards and mounting keels. The leveling components are arranged linearly at intervals on the base wall, and the height of the leveling components is adjustable. Grooves are opened on both ends of the insulation board in the length direction. The ends of the mounting keels in the width direction pass through the grooves. The insulation boards are laid on the leveling components in sequence, and the insulation boards, mounting keels and leveling components are connected and fixed to the base wall by screws. The conduits pass through the gap between the insulation boards and the base wall.
[0006] The structure also includes a fastener, which is a ring-shaped structure with a countersunk hole in the middle that is compatible with the screw. The screw passes through the fastener and connects to the insulation board.
[0007] The aforementioned structure also includes a skirting board, and an installation keel is installed in the groove at the bottom of the insulation board. The skirting board, insulation board, and installation keel are connected to the base wall with screws.
[0008] The leveling component in the above structure includes a base, a fixing block, and a rotating cover. The upper end of the base is provided with a groove, the fixing block is placed in the groove, and the rotating cover is fastened to the base and threadedly connected to the base. The base is connected to the foundation wall by screws.
[0009] Furthermore, the outer edge of the rotating cover in the above structure is provided with strip-shaped anti-slip textures at intervals.
[0010] Furthermore, the fixing block described in the above structure is made of a material with strong nail-holding force.
[0011] The mounting keel described above is either bow-shaped or square.
[0012] In the above structure, sound insulation cotton is filled between the base wall and the insulation board.
[0013] In the above structure, a decorative panel is provided on the outside of the insulation board.
[0014] Furthermore, the above structure also includes a connecting strip, which is I-shaped and perpendicular to the mounting keel. Adjacent decorative panels are fixed together by the connecting strip, and the connecting strip is fixed to the mounting keel.
[0015] The beneficial effects of this utility model are as follows: This structure replaces the original leveling keel with a leveling component, enabling the insulation board to be installed flat on the foundation wall. Furthermore, because the leveling component is individually and independently designed, it is lightweight and can be installed and fixed by one person, reducing installation intensity. The adjustable height of the leveling component ensures the flatness of the insulation board installation, making leveling and installation more convenient. Additionally, the gap between the insulation board and the foundation wall can be directly used for pipe laying, and the pipelines can actually be arranged along the gaps between the leveling components, improving installation efficiency. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the cross-sectional structure of the installation structure of this utility model.
[0017] Figure 2 This utility model Figure 1 Enlarged schematic diagram of the structure at point I.
[0018] Figure 3 This is a schematic diagram of the leveling component of this utility model.
[0019] Figure 4 This utility model Figure 3 Schematic diagram of the cross-sectional structure of AA.
[0020] Figure 5 This is a schematic diagram of the structure of the rotating cover of this utility model after it has been rotated.
[0021] Figure 6 This is a structural diagram of the rotating cover of this utility model after anti-slip texture has been provided.
[0022] Figure 7 This is a schematic diagram of the structure of the insulation board after installation.
[0023] Figure 8 This is a schematic diagram of the structure of the decorative panel part after installation.
[0024] Figure 9 This is a schematic diagram of the cross-sectional structure of the insulation board of this utility model.
[0025] Figure 10 This is a schematic diagram of the structure of this utility model after being filled with sound-insulating cotton.
[0026] Figure 11 This utility model Figure 2 Another structural diagram.
[0027] Figure 12 This utility model Figure 2 The third structural diagram.
[0028] The markings in the diagram are as follows: 1 is the base wall, 2 is the insulation board, 21 is the groove, 3 is the leveling component, 31 is the rotating cover, 32 is the base, 33 is the fixing block, 34 is the anti-slip texture, 4 is the skirting board, 5 is the fixing component, 6 is the installation keel, 7 is the connecting strip, 8 is the decorative panel, 9 is the screw, 10 is the conduit, and 11 is the sound insulation cotton. Detailed Implementation
[0029] The present invention will be further described below with reference to the accompanying drawings.
[0030] like Figures 1 to 12As shown, the prefabricated thermal insulation and soundproofing panel installation structure for separate building decoration pipelines includes leveling components 3, conduits 10, insulation boards 2, and mounting joists 6. The leveling components 3 are arranged linearly at intervals on the base wall 1, and their height is adjustable. Grooves 21 are formed on both ends of the insulation board 2 along its length. The end of the mounting joist 6 along its width passes through the grooves 21. The insulation board 2 is laid sequentially on the leveling components 3, and the insulation board 2, mounting joists 6, and leveling components 3 are connected and fixed to the base wall 1 by screws 9. The conduits 10 pass through the gap between the insulation board 2 and the base wall 1. Those skilled in the art should understand that this structure pre-installs the leveling components 3 on the base wall 1, arranging them linearly at intervals so that the upper and lower sets of linearly arranged leveling components 3 are located at the upper and lower ends of the insulation board 2. Since the height of the leveling components 3 is adjustable, it facilitates the leveling and fixing of the insulation board 2. The insulation board 2 is a finished board. In order to facilitate the connection and fixation of adjacent insulation boards 2, it is preferable to have grooves 21 on both ends of the insulation board 2 along its length. The ends of the mounting keel 6 along its width pass through the grooves 21. This structure allows adjacent insulation boards 2 to be connected by the mounting keel 6. In fact, the insulation boards 2 are laid on the leveling component 3 in sequence, and the insulation boards 2, mounting keel 6 and leveling component 3 are connected and fixed to the base wall 1 by screws 9. Since the leveling component 3 is actually fixed to the base wall 1 by screws 9 first, it is only necessary to connect the insulation boards 2, mounting keel 6 and leveling component 3 with screws 9 again and fix them to the base wall 1. Specifically, the screws 9 first pass through the outer wall of the insulation board 2, the mounting keel 6, the inner wall of the insulation board 2 and the leveling component 3 and then pass into the base wall 1 to achieve fixation. The conduit 10 is inserted into the gap between the insulation board 2 and the foundation wall 1. The conduit 10 can be a conduit for wiring or a water pipe, etc. In practice, the conduit 10 can be inserted along the gap between the leveling parts 3, avoiding the need for the leveling keel to be cut again, thus ensuring the structural strength.
[0031] Preferably, the above structure also includes a fixing member 5, which is an annular structure with a countersunk hole in the center adapted to the screw 9. The screw 9 passes through the fixing member 5 and connects to the insulation board 2. Those skilled in the art should understand that, due to the poor strength of the insulation board 2, in order to ensure the fastening effect of the screw 9, this structure actually sleeves the fixing member 5 on the screw 9. Since the fixing member 5 is an annular structure, it can actually increase the area of the fastening surface between the screw 9 and the insulation board 2, ensuring the force at the fastening point. Preferably, several reinforcing ribs are provided at intervals around the circumference of the fixing member 5 on the side near the insulation board 2.
[0032] Preferably, the above structure also includes a skirting board 4. A mounting joist 6 is provided in the groove 21 at the lower end of the bottom insulation board 2, and the skirting board 4, insulation board 2, and mounting joist 6 are connected to the base wall 1 by screws 9. Those skilled in the art should understand that, in order to achieve the concealment of the lower insulation board 2 and mounting joist 6, this structure also includes a skirting board 4. Specifically, a mounting joist 6 is provided in the groove 21 at the lower end of the bottom insulation board 2. The mounting joist 6 increases the installation strength of the insulation board 2, and then the skirting board 4, insulation board 2, and mounting joist 6 are connected to the base wall 1 by screws 9.
[0033] Preferably, the leveling component 3 in the above structure includes a base 32, a fixing block 33, and a rotating cover 31. The base 32 has an mounting groove at its upper end, the fixing block 33 is placed in the mounting groove, and the rotating cover 31 is fastened to the base 32 and threadedly connected to it. The base 32 is connected to the foundation wall 1 by screws 9. Those skilled in the art should understand that this structure has a specific configuration for the leveling component 3, mainly including a base 32, a fixing block 33, and a rotating cover 31. Specifically, an mounting groove is provided at the upper end of the base 32, preferably a circular structure. The fixing block 33 is placed in the mounting groove, so it is also a circular structure. In actual installation, the fixing block 33 is placed in the mounting groove on the base 32, and the fixing block 33 and the base 32 are directly fixed to the wall 7 by screws 9. The rotating cover 31 is threadedly connected to the base 32. The rotating cover 31 is screwed in. Since the rotating cover 31 is in direct contact with the insulation board 2, rotating the rotating cover 31 can control the height of the entire leveling component 3, that is, the height of the insulation board 2. Finally, the insulation board 2 is fixed to the rotating cover 31 with screws 9. The screws 9 should be inserted into the fixing block 33. The setting of the fixing block 33 can ensure that the connection of the screws 9 is stable, so that the entire structure is stable. Therefore, it is preferable to make the fixing block 33 with a material with good nail-holding strength.
[0034] Preferably, the outer edge sidewall of the rotating cover 31 in the above structure is provided with strip-shaped anti-slip textures 34 at intervals. Those skilled in the art should understand that, in order to facilitate slippage when turning the rotating cover 31, the device preferably has strip-shaped anti-slip textures 34 at intervals on the outer edge sidewall of the rotating cover 31.
[0035] Preferably, the fixing block 33 in the above structure is made of a material with strong nail-holding force. Those skilled in the art should understand that since the fixing of the insulation board 2 and the mounting keel 6 is mainly concentrated on the rotating cover 31 and the fixing block 33, and the rotating cover 31 is thin, the screws 9 used to fix the insulation board 2 directly pass through the fixing block 33. To ensure the connection of the screws 9 is stable, it is preferable that the fixing block 33 is made of a material with strong nail-holding force, such as OSB, fiberboard, or wood chips.
[0036] Preferably, the mounting keel 6 in the above structure is an arc-shaped or square structure. Those skilled in the art should understand that, in order to ensure the connection strength between the upper and lower ends of the insulation board 2, the mounting keel 6 is preferably an arc-shaped or square structure, which, together with the inner wall of the groove 21, increases the structural strength of the upper and lower ends of the insulation board 2. The square structure can be a square tube or a rectangular solid; square timber is further preferred for the mounting keel 6. The actual installation can be completed directly with a nail gun, making the operation more convenient.
[0037] Preferably, sound-insulating cotton 11 is filled between the base wall 1 and the insulation board 2 in the above structure. Those skilled in the art should understand that, in order to improve the sound insulation effect of the wall, it is actually preferred to fill the space between the base wall 1 and the insulation board 2 with sound-insulating cotton 11.
[0038] Preferably, a decorative panel 8 is provided on the outer side of the insulation board 2 in the above structure. Those skilled in the art should understand that this structure preferably completes the wall decoration through the decorative panel 8, specifically, a decorative panel 8 is provided on the outer side of the insulation board 2.
[0039] Preferably, the above structure also includes a connecting strip 7, which is I-shaped and perpendicular to the mounting keel 6. Adjacent decorative panels 8 are fixed together by the connecting strip 7, and the connecting strip 7 is fixed to the mounting keel 6. Those skilled in the art should understand that this structure preferably uses the connecting strip 7 to fix the decorative panels 8. Specifically, the connecting strip 7 is preferably I-shaped and perpendicular to the mounting keel 6. In practice, the fixing of the connecting strip 7 to the mounting keel 6 can be accomplished using screws 9. The adjacent decorative panels 8 are fixed together by the connecting strip 7, specifically by inserting the ends of the adjacent decorative panels 8 into the openings on both sides of the connecting strip 7. Since the connecting strip 7 is fixed to the mounting keel 6, the decorative panels 8 are thus fixed.
Claims
1. A prefabricated thermal insulation and soundproofing panel installation structure for separate building decoration pipelines, characterized in that: The system includes a leveling component (3), a conduit (10), an insulation board (2), and a mounting keel (6). The leveling component (3) is arranged linearly at intervals on the foundation wall (1), and the height of the leveling component (3) is adjustable. The insulation board (2) has grooves (21) on both ends in the length direction. The end of the mounting keel (6) in the width direction passes through the grooves (21). The insulation board (2) is laid on the leveling component (3) in sequence. The insulation board (2), the mounting keel (6), and the leveling component (3) are connected and fixed to the foundation wall (1) by screws (9). The conduit (10) passes through the gap between the insulation board (2) and the foundation wall (1).
2. The prefabricated heat insulation and sound insulation panel installation structure for separate building decoration pipelines as described in claim 1, characterized in that: It also includes a fastener (5), which is a ring structure and has a countersunk hole in the middle that is compatible with the screw (9). The screw (9) passes through the fastener (5) and is connected to the insulation board (2).
3. The prefabricated heat insulation and sound insulation panel installation structure for separate building decoration pipelines according to claim 1, characterized in that: It also includes a skirting board (4), and an installation keel (6) is provided in the groove (21) at the bottom of the insulation board (2) on the lowest side, and the skirting board (4), insulation board (2) and installation keel (6) are connected to the base wall (1) by screws (9).
4. The prefabricated heat insulation and soundproofing panel installation structure for separate building decoration pipelines according to claim 1, characterized in that: The leveling component (3) includes a base (32), a fixing block (33) and a rotating cover (31). The upper end of the base (32) is provided with a groove, the fixing block (33) is placed in the groove, and the rotating cover (31) is fastened on the base (32) and threadedly connected to the base (32). The base (32) is connected to the foundation wall (1) by screws (9).
5. The prefabricated heat insulation and sound insulation panel installation structure for separate building decoration pipelines according to claim 4, characterized in that: The outer edge of the rotating cover (31) is provided with strip-shaped anti-slip patterns (34) at intervals.
6. The prefabricated heat insulation and sound insulation panel installation structure for separate building decoration pipelines according to claim 4, characterized in that: The fixing block (33) is made of a material with strong nail-holding force.
7. The prefabricated heat insulation and sound insulation panel installation structure for separate building decoration pipelines according to claim 1, characterized in that: The mounting keel (6) is an arch-shaped or square structure.
8. The prefabricated heat insulation and soundproofing panel installation structure for separate building decoration pipelines according to claim 1, characterized in that: The space between the base wall (1) and the insulation board (2) is filled with sound insulation cotton (11).
9. The prefabricated thermal insulation and soundproofing panel installation structure for separate building decoration pipelines according to claim 1, characterized in that: A decorative panel (8) is provided on the outside of the insulation board (2).
10. The prefabricated heat insulation and soundproofing panel installation structure for separate building decoration pipelines according to claim 9, characterized in that: It also includes a connecting strip (7), which is I-shaped and is set perpendicular to the mounting keel (6). Adjacent decorative panels (8) are fixed together by the connecting strip (7), and the connecting strip (7) is fixed on the mounting keel (6).