An interior wall rock wool insulation board

By setting the V-shaped design and limiting mechanism of the first and second clips on the interior wall rock wool insulation board, the problems of misalignment and gaps in the insulation board during installation are solved, achieving a tighter and more efficient connection.

CN114319621BActive Publication Date: 2026-05-29庞晓

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
庞晓
Filing Date
2021-12-23
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing interior wall rock wool insulation boards are prone to misalignment and gaps during installation, resulting in low installation efficiency and poor convenience.

Method used

The design employs two locking strips, with a V-shaped cross-section, and is equipped with a limiting mechanism, including connecting posts, sealing paper, conical heads, and locking components, to ensure the rapid splicing and fixing of the insulation board.

Benefits of technology

It improves the tightness of the insulation board connection and installation efficiency, prevents misalignment, and enhances the installation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of insulation board, specifically to an inner wall rock wool insulation board, comprising an insulation board body, a clamping strip one, a clamping strip two and a connecting plate, the rear end outer surface of the insulation board body is fixedly connected with the clamping strip one and the clamping strip two near the positions of both sides, and the clamping strip one and the clamping strip two are distributed in an up-down staggered manner, the clamping strip one and the clamping strip two of different groups of insulation board bodies are mutually consistent, and the outer surface of one end of the clamping strip one and the clamping strip two is fixedly connected with a limiting mechanism. The clamping strip one and the clamping strip two can quickly splice two groups of insulation board bodies, the V-shaped cross section of the clamping strip one and the clamping strip two can prevent the insulation board body from being staggered front and back and up and down during splicing, thereby improving the tightness of the connection of the insulation board body, and the limiting mechanism can further fix the clamping strip one and the clamping strip two of two groups of insulation board bodies and the connecting plate, thereby improving the installation effect and installation efficiency of the insulation board body.
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Description

Technical Field

[0001] This invention relates to the field of insulation board technology, specifically to an interior wall rock wool insulation board. Background Technology

[0002] Rock wool insulation boards are made primarily from basalt and other natural minerals. After melting, the basalt melt is spun into discontinuous fibers of 4–7 μm using an internationally advanced four-roller centrifugal spinning process. A certain amount of binder, dust-proofing oil, and water-repellent agent are then added to the rock wool fibers. After sedimentation, curing, and cutting processes, a series of products with different densities are manufactured according to different applications. Rock wool insulation boards are suitable for thermal insulation and sound insulation of industrial equipment, buildings, and ships.

[0003] The existing patent (publication number: CN111502050A) discloses an interior wall rock wool insulation board, which includes a rock wool insulation board with glass fiber layers bonded to both sides. At least one limiting post is vertically inserted through the rock wool insulation board. One end of the limiting post is provided with a baffle plate that abuts against the surface of one of the glass fiber layers. The other end of the limiting post is threaded with a nut that abuts against the surface of the other glass fiber layer.

[0004] The existing insulation boards require several sets of insulation boards to be spliced ​​together during installation. However, most existing insulation boards have a simple structure and are square. Therefore, during the splicing process, adjacent insulation boards are prone to misalignment or even large gaps, which reduces the installation effect, reduces the installation efficiency, prolongs the construction period, and thus reduces the convenience of insulation board installation.

[0005] Therefore, a rock wool insulation board for interior walls is proposed. Summary of the Invention

[0006] The purpose of this invention is to provide an interior wall rock wool insulation board. By setting clip one and clip two, two sets of insulation board bodies can be quickly spliced ​​together. Furthermore, the V-shaped cross-section of clip one and clip two can prevent the insulation board bodies from misaligning front to back or top to bottom during splicing, thereby improving the tightness of the connection between the insulation board bodies. At the same time, the limiting mechanism can fix clip one and clip two of the two sets of insulation board bodies to the connecting plate, improving the installation effect and efficiency of the insulation board bodies, thus solving the problems mentioned in the background art.

[0007] To achieve the above objectives, the present invention provides the following technical solution: an interior wall rock wool insulation board, comprising an insulation board body, a first clamping strip, a second clamping strip, and a connecting plate. The first clamping strip and the second clamping strip are fixedly connected to the outer surface of the rear end of the insulation board body near both sides, and the first clamping strip and the second clamping strip are staggered vertically. The first clamping strip and the second clamping strip between different groups of the insulation board body fit together, and a limiting mechanism is fixedly connected to one end of the outer surface of the first clamping strip and the second clamping strip. The cross-section of the first clamping strip and the second clamping strip is V-shaped, and the connecting plate is fixedly connected between several groups of the first clamping strip and the second clamping strip. The connecting plate is fixedly connected to the insulation board body.

[0008] By setting clip one and clip two, two sets of insulation board bodies can be quickly spliced ​​together. The V-shaped cross-section of clip one and clip two can prevent the insulation board bodies from being misaligned front-to-back or vertically during splicing, thereby improving the tightness of the connection between the insulation board bodies. At the same time, the limiting mechanism can be used to fix clip one and clip two of the two sets of insulation board bodies to the connecting plate, improving the installation effect and efficiency of the insulation board bodies.

[0009] During installation, the installers lay the two sets of insulation boards flat on the workbench and insert the first clamp of one set of insulation boards into the second clamp of the other set of insulation boards until the outer surface of one end of the clamp is against the outer surface of the connecting board. Since the cross-sections of the first and second clamps are V-shaped, it can prevent the insulation boards from being misaligned front to back or up to down during splicing, thereby improving the tightness of the connection between the insulation boards.

[0010] Preferably, the limiting mechanism includes a connecting post, sealing paper, and a conical head. The connecting post is fixedly connected to the outer surface of one side of the corresponding card strip one and card strip two, and a conical head is fixedly connected to one end of the connecting post. The connecting plate has a cavity for storing adhesive inside, and a connecting hole is opened on the outer surface of the connecting plate at the position corresponding to the conical head. The sealing paper is embedded and fixedly connected inside the connecting hole, and a locking component is provided on the outer surface of the connecting post.

[0011] As the first clip moves along the surface of the second clip towards the connecting plate, the connecting post pushes the conical head toward the connecting hole and punctures the sealing paper to enter the cavity. Since the cross-section of the connecting post is smaller than the cross-section of the connecting hole, the adhesive inside the cavity flows through the connecting hole to the space between the first and second clips.

[0012] Preferably, the limiting mechanism is inclined at 60 degrees toward the connecting hole, and the connecting hole is inclined at 60 degrees away from the cavity. The cross-section of the connecting column is smaller than the cross-section of the connecting hole. The upper outer surfaces of the first and second clips are both fixedly connected with a perforated plate, and the perforated plate is inclined at 15 degrees away from the connecting plate.

[0013] By tilting the perforated plate at a 15-degree angle away from the connecting plate, the adhesive flows evenly along the tilt direction of the perforated plate, bonding and fixing the first and second clips together, improving the stability of the connection, reducing the chance of the two sets of insulation boards moving left and right during installation, and improving the tightness of the connection between the insulation boards.

[0014] Preferably, the engaging assembly includes a T-shaped rod, a locking plate, and a spring. Two sets of locking plates are hinged at the connection between the outer surface of the connecting column and the conical head, and a T-shaped rod is hinged to the outer surface of the locking plate near the connecting column. The connecting column of the connecting column and the locking plate has a movable groove. An installation hole is provided between the two sets of corresponding movable grooves, and a spring is provided inside the installation hole. One end of each of the two sets of T-shaped rods passes through the interior of the connection hole and is fixedly connected to both ends of the spring. The locking plate and the movable groove fit together. In the compressed state, the locking plate is completely located inside the movable groove. The distance between the farthest ends of the two sets of locking plates in the open state is greater than the diameter of the cross-section of the connection hole.

[0015] During the insertion of the connecting column and the conical head into the connecting hole, the clamping plate is pressed against the T-shaped rod by the inner surface of the connecting hole, until the clamping plate is completely inside the movable groove. When the clamping plate is fully inside the cavity, the T-shaped rod pushes the clamping plate away from the mounting hole under the action of the spring, so that the clamping plate is in an open state. The distance of the farthest end of the clamping plate in the open state is greater than the diameter of the cross-section of the connecting hole, so that the clamping plate limits and locks the position of the connecting column, thereby preventing the first and second clamping strips from moving away from the connecting plate, improving the tightness of the insulation board body during installation, and further improving the installation effect of the insulation board.

[0016] Compared with the prior art, the beneficial effects of the present invention are:

[0017] By setting clip one and clip two, two sets of insulation board bodies can be quickly spliced ​​together. The V-shaped cross-section of clip one and clip two can prevent the insulation board bodies from being misaligned front-to-back or vertically during splicing, thereby improving the tightness of the connection between the insulation board bodies. At the same time, the limiting mechanism can be used to fix clip one and clip two of the two sets of insulation board bodies to the connecting plate, improving the installation effect and efficiency of the insulation board bodies. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of the present invention;

[0019] Figure 2 This is a combined view of card strip one and card strip two of the present invention;

[0020] Figure 3 For the present invention Figure 2 A magnified view of A;

[0021] Figure 4 For the present invention Figure 2 A cross-sectional view of BB;

[0022] Figure 5 For the present invention Figure 4 A magnified view of C.

[0023] In the diagram: 1. Insulation board body; 2. Clip 1; 3. Clip 2; 4. Connecting plate; 5. Limiting mechanism; 51. Connecting column; 52. Sealing paper; 53. Conical head; 54. Cavity; 55. Connecting hole; 6. Engaging assembly; 61. T-shaped rod; 62. Clip plate; 63. Spring; 64. Movable groove; 65. Mounting hole; 7. Perforated plate. Detailed Implementation

[0024] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0025] Please see Figures 1 to 5 The present invention provides a technical solution:

[0026] An interior wall rock wool insulation board, such as Figure 1 and Figure 2 As shown, the device includes an insulation board body 1, a first clamping strip 2, a second clamping strip 3, and a connecting plate 4. The first clamping strip 2 and the second clamping strip 3 are fixedly connected to the outer surface of the rear end of the insulation board body 1 near both sides, and the first clamping strip 2 and the second clamping strip 3 are staggered vertically. The first clamping strip 2 and the second clamping strip 3 between different groups of the insulation board body 1 fit together, and a limit mechanism 5 is fixedly connected to one end of the outer surface of the first clamping strip 2 and the second clamping strip 3. The cross-section of the first clamping strip 2 and the second clamping strip 3 is V-shaped, and the connecting plate 4 is fixedly connected between several groups of the first clamping strip 2 and the second clamping strip 3. The connecting plate 4 is fixedly connected to the insulation board body 1.

[0027] By setting clip 1 2 and clip 2 3, two sets of insulation board bodies 1 can be quickly spliced ​​together. The V-shaped cross-section of clip 1 2 and clip 2 3 can prevent the insulation board bodies 1 from being misaligned in front and behind or up and down during splicing, thereby improving the tightness of the connection of the insulation board bodies 1. At the same time, the limiting mechanism 5 can be used to fix the clip 1 2 and clip 2 3 of the two sets of insulation board bodies 1 to the connecting plate 4, thereby improving the installation effect and installation efficiency of the insulation board bodies 1.

[0028] During installation, the installer lays the two sets of insulation board bodies 1 flat on the workbench and inserts the first 2 of one set of insulation board bodies 1 between the second 3 of the other set of insulation board bodies 1 until the outer surface of one end of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the first 2 of the second 2 of the first ...

[0029] As one embodiment of the present invention, such as Figure 4 and Figure 5 As shown, the limiting mechanism 5 includes a connecting post 51, a sealing paper 52, and a conical head 53. The connecting post 51 is fixedly connected to one side of the outer surface of the corresponding card strip 1 2 and card strip 2 3, and one end of the connecting post 51 is fixedly connected to the conical head 53. The connecting plate 4 has a cavity 54 for storing adhesive inside, and a connecting hole 55 is opened on the outer surface of the connecting plate 4 at the position corresponding to the conical head 53. The sealing paper 52 is embedded and fixedly connected inside the connecting hole 55, and a locking component 6 is provided on the outer surface of the connecting post 51.

[0030] As the first strip 2 moves along the surface of the second strip 3 toward the connecting plate 4, the connecting post 51 pushes the conical head 53 toward the connecting hole 55 and punctures the sealing paper 52 to enter the interior of the cavity 54. Since the cross-section of the connecting post 51 is smaller than the cross-section of the connecting hole 55, the adhesive inside the cavity 54 flows through the connecting hole 55 to the space between the first strip 2 and the second strip 3.

[0031] As one embodiment of the present invention, such as Figure 4 and Figure 5 As shown, the limiting mechanism 5 is inclined at 60 degrees toward the connecting hole 55, and the connecting hole 55 is inclined at 60 degrees away from the cavity 54. The cross-section of the connecting column 51 is smaller than the cross-section of the connecting hole 55. The upper outer surfaces of the first and second clips 2 and the second clip 3 are both fixedly connected with a perforated plate 7, and the perforated plate 7 is inclined at 15 degrees away from the connecting plate 4.

[0032] By tilting the perforated plate 7 at a 15-degree angle away from the connecting plate 4, the adhesive flows evenly along the tilt direction of the perforated plate 7 to bond and fix the first clip 2 and the second clip 3, thereby improving the stability of their connection, reducing the probability of the two sets of insulation board bodies 1 moving left and right during installation, and improving the tightness of the connection of the insulation board bodies 1.

[0033] As one embodiment of the present invention, such as Figure 5As shown, the engaging assembly 6 includes a T-shaped rod 61, a locking plate 62, and a spring 63. Two sets of locking plates 62 are hinged at the connection between the outer surface of the connecting post 51 and the conical head 53. The T-shaped rod 61 is hinged to the outer surface of the locking plate 62 on the side close to the connecting post 51. The connecting post 51 of the connecting post 51 and the locking plate 62 has a movable groove 64. An installation hole 65 is provided between the two sets of corresponding movable grooves 64. A spring 63 is installed inside the installation hole 65. One end of each set of T-shaped rods 61 passes through the interior of the connecting hole 55 and is fixedly connected to both ends of the spring 63. The locking plate 62 and the movable groove 64 fit together. In the compressed state, the locking plate 62 is completely located inside the movable groove 64. The distance between the farthest ends of the two sets of locking plates 62 in the open state is greater than the diameter of the cross-section of the connecting hole 55.

[0034] During the process of inserting the connecting post 51 and the conical head 53 into the connecting hole 55, the clamping plate 62 is pressed by the inner surface of the connecting hole 55 towards the mounting hole 65, pressing the T-shaped rod 61 until the clamping plate 62 is completely inside the movable groove 64. When the clamping plate 62 is completely inside the cavity 54, the T-shaped rod 61 pushes the clamping plate 62 away from the mounting hole 65 under the action of the spring 63, so that the clamping plate 62 is in an open state. And by taking advantage of the fact that the distance of the farthest end of the clamping plate 62 in the open state is greater than the diameter of the cross-section of the connecting hole 55, the clamping plate 62 limits and engages the position of the connecting post 51, thereby preventing the clamping strip 1 2 and clamping strip 2 3 from moving away from the connecting plate 4, improving the tightness of the insulation board body 1 during installation, and further improving the installation effect of the insulation board. During this process, there are two sets of clamping plates 62, and the cross-sectional area of ​​the connecting post 51 is smaller than the cross-sectional area of ​​the connecting hole 55. Therefore, a large amount of adhesive flows out through the large gap between the clamping plate 62, the connecting post 51 and the connecting hole 55.

[0035] Working principle: During installation, the installer lays two sets of insulation board bodies 1 flat on the workbench and inserts the first 2 of one set of insulation board bodies 1 between the second 3 of the other set of insulation board bodies 1 until the outer surface of one end of the first 2 of the first 2 abuts against the outer surface of the connecting plate 4. Since the cross-sections of the first 2 and the second 3 of the second 2 are V-shaped, it can prevent the insulation board bodies 1 from being misaligned front-to-back or vertically during splicing, thereby improving the tightness of the connection of the insulation board bodies 1. As the first 2 of the first 2 moves along the surface of the second 3 towards the connecting plate 4, the connecting post 51 pushes the conical head 53 toward the connecting hole 55 and punctures the sealing paper 52 into the interior of the cavity 54. Since the cross-section of the connecting post 51 is smaller than that of the connecting hole 55, the adhesive inside the cavity 54 flows through the connecting hole 55 to the space between the first clip 2 and the second clip 3. Simultaneously, the perforated plate 7 is tilted at a 15-degree angle away from the connecting plate 4, allowing the adhesive to flow evenly along the tilt direction of the perforated plate 7, thus bonding and fixing the first clip 2 and the second clip 3, improving the stability of the connection, reducing the probability of the two sets of insulation board bodies 1 moving left and right during installation, and improving the tightness of the connection between the insulation board bodies 1. Furthermore, during the insertion of the connecting post 51 and the conical head 53 into the connecting hole 55, the clamping plate 62 is pressed against the inner surface of the connecting hole 55 towards the mounting hole 65. The T-shaped rod 61 is pressed until the clamping plate 62 is completely inside the movable groove 64. When the clamping plate 62 is fully inside the cavity 54, the T-shaped rod 61 pushes the clamping plate 62 away from the mounting hole 65 under the action of the spring 63, so that the clamping plate 62 is in an open state. The distance at the farthest end of the clamping plate 62 in its open state is greater than the diameter of the cross-section of the connecting hole 55, thus limiting and engaging the position of the connecting post 51. This prevents the first clamping strip 2 and the second clamping strip 3 from moving away from the connecting plate 4, improving the tightness of the insulation board body 1 during installation and further improving the installation effect of the insulation board. In this process, there are two sets of clamping plates 62, and the connecting post... The cross-sectional area of ​​51 is smaller than that of the connecting hole 55. Therefore, a large amount of adhesive flows out through the large gap between the clamping plate 62, the connecting post 51, and the connecting hole 55. This device can quickly splice two sets of insulation board bodies 1 by setting clamping strip 1 2 and clamping strip 2 3. The V-shaped cross-section of clamping strip 1 2 and clamping strip 2 3 can prevent the insulation board bodies 1 from being misaligned in front and behind or up and down during splicing, thereby improving the tightness of the connection of the insulation board bodies 1. At the same time, the limiting mechanism 5 can fix the clamping strip 1 2 and clamping strip 2 3 of the two sets of insulation board bodies 1 to the connecting plate 4, thereby improving the installation effect and installation efficiency of the insulation board bodies 1.

[0036] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An interior wall rock wool insulation board, comprising an insulation board body (1), a first clip (2), a second clip (3), and a connecting plate (4), characterized in that: The outer surface of the rear end of the insulation board body (1) is fixedly connected with a first (2) and a second (3) near both sides, and the first (2) and the second (3) are staggered vertically. The first (2) and the second (3) of different sets of the insulation board body (1) fit together, and a limit mechanism (5) is fixedly connected to one end of the outer surface of the first (2) and the second (3). The cross-section of the first (2) and the second (3) is V-shaped, and a connecting plate (4) is fixedly connected between several sets of the first (2) and the second (3). The connecting plate (4) is fixedly connected to the insulation board body (1). The limiting mechanism (5) includes a connecting post (51), a sealing paper (52), and a conical head (53). The connecting post (51) is fixedly connected to the outer surface of one side of the corresponding card strip (2) and card strip (3), and a conical head (53) is fixedly connected to one end of the connecting post (51). The connecting plate (4) has a cavity (54) for storing adhesive inside, and a connecting hole (55) is opened on the outer surface of the connecting plate (4) at the position corresponding to the conical head (53). The sealing paper (52) is embedded and fixedly connected inside the connecting hole (55), and a locking component (6) is provided on the outer surface of the connecting post (51).

2. The interior wall rock wool insulation board according to claim 1, characterized in that: The limiting mechanism (5) is inclined at 60 degrees toward the connecting hole (55), and the connecting hole (55) is inclined at 60 degrees away from the cavity (54). The cross-section of the connecting column (51) is smaller than the cross-section of the connecting hole (55).

3. The interior wall rock wool insulation board according to claim 1, characterized in that: Both the upper outer surfaces of the card strip one (2) and the card strip two (3) are fixedly connected with a perforated plate (7), and the perforated plate (7) is inclined at 15 degrees away from the connecting plate (4).

4. The interior wall rock wool insulation board according to claim 1, characterized in that: The locking assembly (6) includes a T-shaped rod (61), a locking plate (62), and a spring (63). Two sets of locking plates (62) are hinged at the connection between the outer surface of the connecting post (51) and the conical head (53). A T-shaped rod (61) is hinged on the side of the outer surface of the locking plate (62) close to the connecting post (51). The connecting post (51) of the outer surface of the connecting post (51) and the locking plate (62) has a movable groove (64). A mounting hole (65) is opened between the two sets of corresponding movable grooves (64). A spring (63) is installed inside the mounting hole (65). One end of the two sets of T-shaped rods (61) passes through the inside of the connecting hole (55) and is fixedly connected to both ends of the spring (63).

5. The interior wall rock wool insulation board according to claim 4, characterized in that: The card plate (62) and the movable groove (64) fit together. Under the compression state, the card plate (62) is completely located inside the movable groove (64). The distance between the farthest ends of the two sets of card plates (62) in the open state is greater than the diameter of the cross-section of the connecting hole (55).