Stone cellular board with edge sealing structure
By designing the structure of the edge sealing frame, rod and limit block on the honeycomb board, the complex edge sealing problem of honeycomb board is solved, simple and reliable edge sealing installation is achieved, and the integrity and aesthetics of the honeycomb board are improved. It is suitable for the standardized production and prefabricated installation of stone honeycomb boards.
Patent Information
- Application Number
- CN202422316080.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-23
AI Technical Summary
The edge sealing process of existing honeycomb boards is complicated and the edge sealing operation is inconvenient.
The structural design of the honeycomb board body, the sealing frame, the clamping rod and the limiting block is adopted. The clamping of the clamping rod in the groove and the spring function is used to achieve reliable installation of the sealing frame, and the adjacent sealing frame is connected through the limiting block to simplify the edge sealing operation.
It realizes the simple and reliable installation of the edge seal frame on the honeycomb board body, improves the integrity and aesthetics of the edge seal structure, reduces maintenance and repair costs, and is suitable for the standardized production and prefabricated installation of stone honeycomb boards.
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Figure CN223214863U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building materials, in particular to a stone honeycomb panel with an edge-sealed structure. Background Art
[0002] Stone honeycomb panels with edge-sealed structures can be used for wall decoration, giving the space a noble and elegant appearance. The texture of the stone is combined with the lightweight characteristics of the honeycomb panels, which not only retains the texture and beauty of the stone, but also reduces the overall weight and is easy to install and maintain.
[0003] Chinese utility model patent CN215970447U discloses a honeycomb panel material, comprising a honeycomb panel with through holes, an upper covering layer covering the upper surface of the honeycomb panel, and a lower covering layer covering the lower surface of the honeycomb panel. The honeycomb panel material also includes a PVC edge banding strip and a PUR adhesive layer for joining the PVC edge banding strip to a body. The PVC edge banding strip includes a main edge banding portion covering the side surface of the body, an upper edge banding portion covering the edge of the upper surface of the upper covering layer, and a lower edge banding portion covering the edge of the lower surface of the lower covering layer. The side surface of the body, the outer edge of the upper surface of the upper covering layer, and the outer edge of the lower surface of the lower covering layer are all coated with a PUR adhesive layer.
[0004] The edge sealing process of the honeycomb panel is complicated and the edge sealing operation is inconvenient. Therefore, it is necessary to provide a stone honeycomb panel with an edge sealing structure, which can solve the problems of the honeycomb panel edge sealing process being complicated and the edge sealing operation being inconvenient in the prior art. Summary of the Invention
[0005] The purpose of the utility model is to provide a stone honeycomb panel with an edge-sealing structure, which can solve the problems of complex edge-sealing process and inconvenient edge-sealing operation of honeycomb panels in the prior art.
[0006] The utility model is achieved in this way:
[0007] A stone honeycomb panel with an edge-sealing structure comprises a honeycomb panel body, a sealing frame, a clamping rod and a limiting block; a groove is formed at each side edge of the honeycomb panel body, and the groove passes through the side end face of the honeycomb panel body and the two adjacent side end faces; one end of a pair of clamping rods is movably clamped in each sealing frame, and a clamping boss is formed at the other end of the pair of clamping rods, so that the other ends of the pair of clamping rods are movably clamped in the groove through the clamping boss, so that the sealing frame is matched and installed on the side end face of the honeycomb panel body; a sealing frame is covered and installed on each side end face of the honeycomb panel body, and the sealing frames on each adjacent side end face of the honeycomb panel body are connected by a limiting block, so that a plurality of sealing frames are circumferentially arranged on the side end face of the honeycomb panel body to form an edge-sealing structure.
[0008] A through hole is formed in the middle of the sealing frame, and a connecting plate is provided at one end of a pair of clamping rods. The pair of connecting plates can be slidably embedded in the through hole.
[0009] The length of the connecting plate is consistent with the length of the through hole. A second spring is vertically connected between one end of a pair of clamping rods. Several second springs are arranged at intervals along the length direction of the through hole, so that a pair of connecting plates can be elastically set in the through hole through several second springs.
[0010] The through hole is rotatably connected to a rotating plate via a rotating shaft, so that the rotating plate matches the cover to close the through hole, and a switch slot is formed on the side of the rotating plate away from the rotating shaft.
[0011] Both ends of the rotating shaft of the rotating plate are sleeved with torsion springs, one end of the torsion spring is fixedly connected to the rotating plate, and the other end of the torsion spring is fixedly connected to the sealing frame.
[0012] The ends of the sealing frames are formed with limiting grooves, and the limiting grooves at the ends of two adjacent sealing frames are butted when they are connected; a clamping block is movably provided in the limiting groove, and a clamping groove is formed in the middle of the limiting block, and the clamping block can be movably clamped in the clamping groove, so that the two adjacent sealing frames are connected through the limiting block and the limiting groove.
[0013] The top and bottom of the limit groove are respectively embedded with the first spring through the extension groove, and one end of the two clamping blocks can be elastically embedded in the extension groove through the first spring, so that the other ends of the two clamping blocks can extend into the limit groove and be movably inserted into the clamping slots at the top and bottom of the limit block.
[0014] The other end of the locking block is formed with a first arc surface, and the top and bottom of one end of the limit block are respectively formed with second arc surfaces, the arc directions of the first arc surface and the second arc surface are opposite and the first arc surface is in sliding contact with the second arc surface; the other end of the limit block is flush with the outer wall of the sealing frame.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] 1. The utility model is provided with a honeycomb panel body, a sealing frame and a clamping rod. The sealing frame is installed on the side end surface of the honeycomb panel body by clamping the clamping rod in the groove, and under the action of the second spring, the clamping bosses of a pair of clamping rods are ensured to be tightly clamped in the extended part of the groove, thereby ensuring the installation reliability of the sealing frame on the honeycomb panel body. The plug-in operation of the sealing frame is simple and convenient, and it is convenient to form a sealing edge structure in the circumferential direction of the side end surface of the honeycomb panel body, meeting the edge sealing requirements of the honeycomb panel body, and further protecting the material edge of the honeycomb panel body from damage, thereby extending the service life of the honeycomb panel body, reducing the later maintenance and repair costs, and being conducive to the standardized production and assembled installation of stone honeycomb panels.
[0017] 2. Since the present invention is provided with a limit block, when two adjacent sealing frames are butted together, the limit grooves at their ends are butted together to form an integral groove body. The limit block can be inserted into the groove body to connect the two adjacent sealing frames together. The clamping connection between the clamping block and the clamping groove ensures that the limit block reliably connects the two adjacent sealing frames, which not only ensures the integrity and aesthetics of the entire edge sealing structure, but also makes installation simple and convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the edge sealing of the stone honeycomb panel with an edge sealing structure of the utility model;
[0019] Figure 2 This is a structural diagram of a stone honeycomb panel with an edge-sealed structure according to the present invention;
[0020] Figure 3 This is a schematic diagram of the installation of the clamping rod and the rotating plate on the sealing frame of the stone honeycomb panel with edge sealing structure of the utility model;
[0021] Figure 4 The utility model is a schematic diagram of the connection between the limiting block and the sealing frame in the stone honeycomb panel with the edge sealing structure.
[0022] In the figure, 1, honeycomb panel body; 2, groove; 3, sealing frame; 4, through hole; 5, rotating plate; 6, torsion spring; 7, connecting plate; 8, clamping rod; 9, limiting groove; 10, first spring; 11, clamping block; 12, limiting block; 13, clamping slot; 14, second spring. DETAILED DESCRIPTION
[0023] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0024] Please see the attached Figure 1 To the attached Figure 4 , a stone honeycomb panel with an edge sealing structure, comprising a honeycomb panel body 1, a sealing frame 3, a clamping rod 8 and a limit block 12; a groove 2 is formed at each side edge of the honeycomb panel body 1, and the groove 2 passes through the side end face of the honeycomb panel body 1 and the two side end faces adjacent thereto; one end of a pair of clamping rods 8 is movably clamped in each sealing frame 3, and a clamping boss is formed at the other end of the pair of clamping rods 8, so that the other end of the pair of clamping rods 8 is movably clamped in the groove 2 through the clamping boss, so that the sealing frame 3 is matched and installed on the side end face of the honeycomb panel body 1; a sealing frame 3 is covered and installed on each side end face of the honeycomb panel body 1, and the sealing frames 3 on each adjacent two side end faces of the honeycomb panel body 1 are connected by a limit block 12, so that several sealing frames 3 are circumferentially arranged on the side end face of the honeycomb panel body 1 to form an edge sealing structure.
[0025] The sealing frame 3 is quickly installed on the side end face of the honeycomb panel body 1 by engaging the clamping rod 8 in the groove 2. The length of the groove 2 is consistent with the length of the side end of the honeycomb panel body 1. That is, the groove 2 passes through both side end faces of the honeycomb panel body 1 in the length direction and passes through one side end face of the honeycomb panel body 1 in the width direction, facilitating the clamping installation of the clamping rod 8.
[0026] Preferably, one end of the groove 2 located in the honeycomb panel body 1 can extend upward and downward, and the top of the upper clamping rod 8 forms a clamping boss, and the bottom of the lower clamping rod 8 forms a clamping boss, so that the protruding clamping boss can be matched with the extended part of the groove 2 for clamping, thereby ensuring the reliability of the connection between the sealing frame 3 and the honeycomb panel body 1, preventing the sealing frame 3 from falling off, and ensuring the edge sealing effect.
[0027] Conventional honeycomb panel bodies 1 are mostly rectangular or square in structure, with two adjacent frame seals 3 connected vertically. Limiting blocks 12 are inserted into the vertical intersection of the two adjacent frame seals 3 to ensure the connection between the two adjacent frame seals 3. This ensures that all frame seals 3 are connected as a whole, forming a circumferential edge seal structure at the edge of the honeycomb panel body 1. The insertion method of the limiting blocks 12 is simple and convenient. During the processing of the honeycomb panel body 1, the internal grooves 2 are integrally formed to ensure the integrity and aesthetics of the honeycomb panel body 1.
[0028] Please see the attached Figure 3 A through hole 4 is formed in the middle of the sealing frame 3 , and a pair of connecting rods 8 are each provided with a connecting plate 7 at one end, and the pair of connecting plates 7 can be slidably embedded in the through hole 4 .
[0029] Preferably, the pair of connecting plates 7 can be slidably fitted into the through-hole 4 by means of a T-shaped slider and a T-shaped slot, thereby integrally connecting the pair of connecting plates 7, the pair of clamping rods 8, and the sealing frame 3. The provision of the through-hole 4 facilitates the handheld operation of the pair of connecting plates 7, thereby facilitating the clamping of the pair of clamping rods 8 into the groove 2.
[0030] Please see the attached Figure 3 The length of the connecting plate 7 is consistent with the length of the through hole 4, and a second spring 14 is vertically connected between one end of a pair of clamping rods 8. Several second springs 14 are arranged at intervals along the length direction of the through hole 4, so that the pair of connecting plates 7 can be elastically set in the through hole 4 through the several second springs 14.
[0031] By applying pressure to the pair of connecting plates 7, the pair of connecting plates 7 are brought closer to each other, and the pair of clamping rods 8 are simultaneously brought closer, that is, the distance between the pair of clamping rods 8 is reduced, making it easier to insert them into the groove 2. At this time, the second spring 14 is compressed and stored. After the pair of clamping rods 8 are inserted into the groove 2, the pair of clamping rods 8 are released. The pair of clamping rods 8 can be reset under the elastic force of the second spring 14, so that the pair of clamping rods 8 move upward and downward respectively, ensuring that the clamping bosses of the pair of clamping rods 8 are clamped at the extended portion in the groove 2.
[0032] Preferably, the second spring 14 can be a metal spring, and its elastic coefficient and arrangement spacing can be adaptively selected according to actual needs to ensure that the clamping bosses of the pair of clamping rods 8 can be firmly clamped in the extended part of the groove 2.
[0033] The length of the connecting plate 7 is consistent with the length of the through hole 4, which can limit the movement of the connecting plate 7 in the length direction, thereby ensuring that a pair of connecting plates 7 only move towards or away from each other, thereby ensuring the controllability of the movement trajectory of a pair of clamping rods 8.
[0034] Please see the attached Figure 3 The through hole 4 is rotatably connected to a rotating plate 5 via a rotating shaft, so that the rotating plate 5 matches the cover to close the through hole 4, and a switch slot (not shown in the figure) is formed on the side of the rotating plate 5 away from the rotating shaft.
[0035] The rotating plate 5 is opened and closed by rotating the shaft, and can be used to cover and close the through hole 4, thereby improving the aesthetics of the edge banding 3. The switch slot can be used as an embedded handle to facilitate the rotation, opening and closing control of the rotating plate 5.
[0036] Please see the attached Figure 3 Both ends of the rotating shaft of the rotating plate 5 are sleeved with torsion springs 6, one end of the torsion spring 6 is fixedly connected to the rotating plate 5, and the other end of the torsion spring 6 is fixedly connected to the sealing frame 3.
[0037] Preferably, shaft slots for mounting the shaft are formed at the top and bottom of the through-hole 4, with the ends of the shaft extending above and below the rotating plate 5. Two torsion springs 6 are sleeved onto the ends of the shaft, and the two torsion springs 6 are respectively located in the two shaft slots. When the rotating plate 5 is rotated outward to open, the two torsion springs 6 are stretched and stored with force. When the rotating plate 5 is released, the elastic force of the two torsion springs 6 can be used to rotate the rotating plate 5 back to its original position, thereby closing the through-hole 4.
[0038] Please see the attached Figure 4 The end of the sealing frame 3 is formed with a limiting groove 9, and the limiting grooves 9 at the ends of two adjacent sealing frames 3 are butted when they are connected; a card block 11 is movably provided in the limiting groove 9, and a card slot 13 is formed in the middle of the limiting block 12. The card block 11 can be movably engaged in the card slot 13, so that the two adjacent sealing frames 3 are connected through the limiting groove 9 through the limiting block 12.
[0039] Preferably, the limiting groove 9 passes through the end of the sealing frame 3, and the limiting groove 9 can be adaptively set according to the connection angle of the two adjacent sealing frames 3 (for example, vertical connection) to ensure that when the two adjacent sealing frames 3 are connected, the limiting grooves 9 at their ends can be docked into an integral groove body, and the groove body matches the limiting block 12, so that after the limiting block 12 is inserted into the groove body, the two adjacent sealing frames 3 can be connected together.
[0040] For example, in two adjacent sealing frames 3 connected vertically, the attached Figure 4 The limiting groove 9 shown is set along the board surface direction of one of the sealing frames 3, and the limiting groove 9 in the other sealing frame 3 should be set perpendicular to the board surface direction of the sealing frame 3, so that after the two adjacent sealing frames 3 are vertically connected, the limiting grooves 9 at their ends can be docked into an integral groove body for matching and plugging in the limiting block 12. Preferably, the length of the sealing frame 3 is the sum of the side end face of the honeycomb panel body 1 and the thickness of the sealing frame 3, that is: when one sealing frame 3 is installed, one end thereof is flush with one end of the side end face of the honeycomb panel body 1, and the other end thereof extends out of the other end of the side end face of the honeycomb panel body 1, and the extension length is the thickness of the sealing frame 3, so that when the other sealing frame 3 is installed vertically, the end of the other sealing frame 3 is abutted against the extended portion of one sealing frame 3, and the outer wall of the other sealing frame 3 is flush with the extended end face of one sealing frame 3, thereby ensuring the aesthetics of the edge sealing structure, as shown in the attached figure. Figure 1 shown.
[0041] Please see the attached Figure 4 The top and bottom of the limit groove 9 are respectively embedded with the first spring 10 through the extension groove, and one end of the two card blocks 11 can be elastically embedded in the extension groove through the first spring 10, so that the other end of the two card blocks 11 can extend into the limit groove 9 and be movably inserted into the card slots 13 at the top and bottom of the limit block 12.
[0042] In the initial state, the other ends of the two clamping blocks 11 are located in the limiting groove 9 via the first spring 10. When the limiting block 12 is inserted, the two clamping blocks 11 are squeezed, causing the first spring 10 to be compressed into the extension groove and accumulate force, thereby enabling the limiting block 12 to be smoothly inserted. When the limiting block 12 is inserted until the clamping groove 13 is aligned with the extension groove, the elastic force of the first spring 10 causes the two clamping blocks 11 to pop out and engage with the clamping groove 13, thereby allowing the limiting block 12 to be matched and engaged in the limiting groove 9.
[0043] The card blocks 11 in the limiting grooves 9 of two adjacent sealing frames 3 are adaptively installed according to the setting direction of the limiting grooves 9, so that when the limiting grooves 9 of two adjacent sealing frames 3 are connected, the card blocks 11 are spliced together and can be extruded synchronously under the action of the limiting blocks 12, so that the limiting grooves 9 of two adjacent sealing frames 3 can be connected by a limiting block 12.
[0044] Please see the attached Figure 4 The other end of the blocking block 11 is formed with a first arc surface, and the top and bottom of one end of the limiting block 12 are respectively formed with second arc surfaces, the arc directions of the first arc surface and the second arc surface are opposite and the first arc surface and the second arc surface are in sliding contact; the other end of the limiting block 12 is flush with the outer wall of the sealing frame 3.
[0045] The first and second arc surfaces provide a sliding guide between the stopper 12 and the clamping block 11 during insertion, allowing for smooth insertion of the stopper 12 without obstruction. After the stopper 12 is inserted into the stopper groove 9, its other end is flush with the outer wall of the sealing frame 3, ensuring a smooth and aesthetically pleasing outer wall of the sealing frame 3.
[0046] Please see the attached Figure 1 To the attached Figure 4 , the edge banding assembly method of the utility model is:
[0047] The rotating plate 5 is held by the switch slot and rotated around the axis to open the rotating plate 5 and expose the through hole 4. At this time, the torsion spring 6 is stretched and force is stored.
[0048] The pair of connecting plates 7 in the through-hole 4 are pinched together, bringing the pair of clamping rods 8 closer together. At this point, the multiple second springs 14 are simultaneously compressed and force is accumulated. The other ends of the pair of clamping rods 8 are inserted into the groove 2 from the side end surface of the honeycomb panel body 1. The pair of connecting plates 7 are released. Under the elastic force of the multiple second springs 14, the pair of clamping rods 8 are pushed apart from each other, so that the pair of clamping rods 8 are locked in the groove 2 via the engaging bosses at the other ends, thereby covering the sealing frame 3 on the side end surface of the honeycomb panel body 1. Under the elastic force of the torsion spring 6, the rotating plate 5 rotates back to cover the through-hole 4.
[0049] Each sealing frame 3 is installed in sequence along the circumference of the honeycomb panel body 1. When the second sealing frame 3 is installed, the limiting groove 9 at the connecting end of the first sealing frame 3 and the second sealing frame 3 is docked, and the limiting block 12 is inserted into the limiting groove 9 at the connecting end of the first sealing frame 3 and the second sealing frame 3. The relative sliding of the second arc surface on the limiting block 12 and the first arc surface on the clamping block 11 guides the limiting block 12 so that it is clamped into the limiting groove 9.
[0050] When the limit block 12 is inserted, the pair of clamping blocks 11 squeeze the pair of first springs 10 under the push of the limit block 12. The pair of first springs 10 are compressed and stored and retract into the extension groove until the limit block 12 is inserted into the clamping slot 13 and aligned with the extension groove. Under the action of the first spring 10, the clamping block 11 pops out and is clamped in the clamping slot 13, thereby locking the limit block 12, and then realizing the connection of the two adjacent sealing frames 3 through the limit block 12.
[0051] The above are only preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A stone honeycomb panel with an edge-sealed structure, characterized by: The invention comprises a honeycomb panel body (1), a sealing frame (3), a clamping rod (8) and a limiting block (12); a groove (2) is formed at each side edge of the honeycomb panel body (1), and the groove (2) passes through the side end face of the honeycomb panel body (1) and the two adjacent side end faces; one end of a pair of clamping rods (8) is movably clamped in each sealing frame (3), and a clamping boss is formed at the other end of the pair of clamping rods (8), so that the other end of the pair of clamping rods (8) is movably clamped in the groove (2) through the clamping boss, so that the sealing frame (3) is matched and installed on the side end face of the honeycomb panel body (1); a sealing frame (3) is covered and installed on each side end face of the honeycomb panel body (1), and the sealing frames (3) on each adjacent side end face of the honeycomb panel body (1) are connected by the limiting block (12), so that a plurality of sealing frames (3) are circumferentially arranged on the side end face of the honeycomb panel body (1) to form an edge sealing structure.
2. The stone honeycomb panel with edge sealing structure according to claim 1, characterized in that: A through hole (4) is formed in the middle of the sealing frame (3), and a pair of clamping rods (8) are each provided with a connecting plate (7) at one end, and the pair of connecting plates (7) can be slidably embedded in the through hole (4).
3. The stone honeycomb panel with edge sealing structure according to claim 2, characterized in that: The length of the connecting plate (7) is consistent with the length of the through hole (4), and a second spring (14) is vertically connected between one end of a pair of clamping rods (8). A plurality of second springs (14) are arranged at intervals along the length direction of the through hole (4), so that the pair of connecting plates (7) can be elastically arranged in the through hole (4) through the plurality of second springs (14).
4. The stone honeycomb panel with edge sealing structure according to claim 2 or 3, characterized in that: The through hole (4) is rotatably connected to a rotating plate (5) via a rotating shaft, so that the rotating plate (5) matches the cover to close the through hole (4), and a switch slot is formed on the side of the rotating plate (5) away from the rotating shaft.
5. The stone honeycomb panel with edge sealing structure according to claim 4, characterized in that: Both ends of the rotating shaft of the rotating plate (5) are sleeved with torsion springs (6), one end of the torsion spring (6) is fixedly connected to the rotating plate (5), and the other end of the torsion spring (6) is fixedly connected to the sealing frame (3).
6. The stone honeycomb panel with edge sealing structure according to claim 1, characterized in that: The end of the sealing frame (3) is formed with a limiting groove (9), and the limiting grooves (9) at the ends of two adjacent sealing frames (3) are butted when they are connected; a clamping block (11) is movably provided in the limiting groove (9), and a clamping groove (13) is formed in the middle of the limiting block (12), and the clamping block (11) can be movably clamped in the clamping groove (13), so that the two adjacent sealing frames (3) are connected through the limiting block (12) and the limiting groove (9).
7. The stone honeycomb panel with edge sealing structure according to claim 6, characterized in that: The top and bottom of the limit groove (9) are respectively embedded with a first spring (10) through an extension groove, and one end of the two clamping blocks (11) can be elastically embedded in the extension groove through the first spring (10), so that the other ends of the two clamping blocks (11) can extend into the limit groove (9) and be movably inserted into the clamping grooves (13) at the top and bottom of the limit block (12).
8. The stone honeycomb panel with edge sealing structure according to claim 7, characterized in that: The other end of the clamping block (11) is formed with a first arc surface, and the top and bottom of one end of the limiting block (12) are respectively formed with second arc surfaces, the arc directions of the first arc surface and the second arc surface are opposite, and the first arc surface and the second arc surface are in sliding contact; the other end of the limiting block (12) is flush with the outer wall of the sealing frame (3).
Citation Information
Patent Citations
Honeycomb plate
CN215970447U