Cabinet door frame and cabinet door structure

By setting conical strips and inlay grooves on the cabinet door frame, the problems of exposed edge folds and low coating finishing efficiency are solved, achieving a better wall-cabinet integration effect and coating adhesion, thus improving the decoration quality.

CN223594003UActive Publication Date: 2025-11-25GUANGDONG CHAOTIE HOME FURNISHING CO LTD
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Patent Information

Application Number
CN202422930318.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-11-25
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

When making concealed cabinet doors, the existing cabinet door structure has a relatively wide folded edge, which affects the integrated effect of the wall and cabinet, and the coating finishing efficiency and quality are low.

Method used

Design a cabinet door frame that uses a convex tapered strip to form a scraping bevel, and sets an inlay groove, an anti-loosening toothed surface, a beveled buckle strip, and an inlay strip on the frame body. Combined with a hollow frame structure, it improves the coating adhesion and the ease of finishing operation.

Benefits of technology

It improves the integrated effect of walls and cabinets, enhances coating adhesion, improves coating finishing efficiency and quality, simplifies the construction process, and enhances the quality of home decoration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of door leaves, in particular to a cabinet door frame and a cabinet door structure, the cabinet door frame comprises a frame body, a convex cone strip is arranged on the frame body, and the side wall of the convex cone strip forms a scraped inclined plane. The cabinet door structure comprises the cabinet door frame, a cabinet door plate and an inner supporting plate. The cabinet door frame not only can enable a wall and a cabinet to have a better integral effect, but also can improve the closing-in efficiency and closing-in quality when relevant coatings are scraped in batches, can greatly improve the decoration quality of a house when an invisible cabinet door is manufactured, and has the advantages of being simple in structure, high in reliability, convenient to construct, high in applicability and the like. According to the cabinet door structure, the wall and the cabinet can be better integrated, the closing-up efficiency and the closing-up quality of the decorative coating can be improved, the decoration quality of a house can be greatly improved when an invisible cabinet door is manufactured, and the cabinet door structure has the advantages of being high in reliability, convenient to construct, high in applicability and the like.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of door leaf, especially a cabinet door frame and cabinet door structure. BACKGROUND

[0002] The patent document with the patent authorization announcement number CN219795087U discloses a technical scheme named "a wardrobe door leaf structure", which comprises the following technical features: door leaf main frame, panel, door leaf frame section bar, installation cavity, limiting edge, corner code slot, limiting folded edge, limiting strip, supporting foot, matching slot, corner code, aluminum honeycomb board, hinge installation slot, silica calcium board. In the technical scheme, the putty is hung on the surface of the panel, then the latex paint is brushed, the end serrated matching slot of the limiting folded edge is used to combine the putty and the door leaf frame section bar, so that the cabinet door achieves the effect of wall-cabinet integration. Although this can achieve a certain wall-cabinet integration effect, the limiting folded edge is formed by bending the end of the limiting edge, and the matching slot is located at the end of the limiting folded edge, so a relatively wide limiting folded edge will still be exposed on the side edge of the wardrobe door leaf, which seriously affects the wall-cabinet integration effect. Especially when making a hidden cabinet door, it will greatly affect the decoration quality of the house.

[0003] At the same time, the outer wall of the limiting folded edge is a plane, so it is not convenient to perform the closing operation of the putty, latex paint or other coating when the putty, latex paint or other coating is batched and scraped, thereby easily leading to low closing efficiency and closing quality of the putty, latex paint or other coating.

[0004] Therefore, it is necessary to design a cabinet door frame and cabinet door structure which can solve the above technical problems. INVENTION CONTENTS

[0005] The utility model aims at solving the above problems and deficiencies, and provides a cabinet door frame and cabinet door structure, which can not only facilitate the wall-cabinet integration effect, but also facilitate the improvement of closing efficiency and closing quality when batch scraping the related coating, can greatly improve the decoration quality of the house when making a hidden cabinet door, has the advantages of simple structure, high reliability, convenient construction, strong applicability and the like, and can also facilitate the wall-cabinet integration effect and the improvement of closing efficiency and closing quality of the decorative coating, can greatly improve the decoration quality of the house when making a hidden cabinet door, and has the advantages of high reliability, convenient construction, strong applicability and the like.

[0006] The technical scheme of the utility model is implemented as follows:

[0007] A cabinet door frame, characterized in that it comprises a frame body, a convex taper strip is arranged on the side edge of the front wall of the frame body, and the convex taper strip close to the side wall of the middle part of the frame body constitutes a batch scraping inclined surface.

[0008] Preferably, the convex cone strip is flush with the side wall of the frame body away from the middle part of the frame body.

[0009] Preferably, the front wall of the frame body is a tooth-shaped surface.

[0010] Preferably, a mounting groove is formed on the front wall of the frame body along the edge line of the squeegee bevel; at least one groove wall of the mounting groove is an anti-disengagement tooth surface.

[0011] Preferably, the frame body is a hollow frame; a slanted buckle convex strip is arranged on the outer side edge of the rear wall of the frame body, and a mounting convex strip is arranged on the rear wall of the frame body.

[0012] Preferably, an avoiding groove is formed on the rear wall of the frame body.

[0013] Preferably, a receiving notch is formed on the side edge of the front wall of the frame body away from the convex cone strip.

[0014] A cabinet door structure, characterized in comprising the cabinet door frame, further comprising a cabinet door plate and an inner supporting plate, the cabinet door frame is arranged on the side edge of the front wall of the cabinet door plate, and the inner supporting plate is arranged on the front wall of the cabinet door plate.

[0015] Preferably, the cabinet door plate comprises a front clamping plate, a rear clamping plate, a honeycomb plate and a frame strip, the honeycomb plate and the frame strip are clamped between the front clamping plate and the rear clamping plate, the inner supporting plate is arranged on the front wall of the front clamping plate, and the cabinet door frame is arranged on the front wall of the frame strip.

[0016] Preferably, the inner supporting plate is a gypsum board.

[0017] The cabinet door frame can greatly improve the decoration quality of a house when making a hidden cabinet door.

[0018] In terms of cabinet door structure, by adopting the aforementioned cabinet door frame, only a very narrow portion of the cabinet door's side is exposed after the relevant coating is applied. This facilitates a better integrated effect between the wall and the cabinet. Furthermore, the cabinet door frame allows for convenient finishing during the coating application process, thus improving finishing efficiency and quality. The inclusion of an inner support plate not only provides a reliable surface for paint application but also reduces paint usage, thereby improving construction efficiency and quality. This cabinet door structure significantly enhances the overall quality of home decoration when creating concealed cabinet doors. This cabinet door structure boasts advantages such as high reliability, convenient construction, and strong applicability. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the cabinet door frame structure in this utility model.

[0020] Figure 2 This is a schematic diagram of the cabinet door structure in this utility model.

[0021] Figure 3 This is a schematic diagram of the frame strip in this utility model.

[0022] Figure 4 This is a partial structural diagram of the cabinet door in this utility model. Detailed Implementation Example

[0023] like Figure 1 As shown, the cabinet door frame of this utility model includes a frame body 1. A convex tapered strip 11 is provided on the side of the front wall of the frame body 1. The convex tapered strip 11 forms a scraping bevel 111 on the side wall near the middle of the frame body 1.

[0024] On the cabinet door frame, a tapered strip 11 is provided on the side of the front wall of the frame body 1, and the tapered strip 11 forms a plastering bevel 111 near the middle of the side wall of the frame body 1. The use of the tapered strip 11 ensures that only a very narrow portion of the side of the cabinet door is exposed after the relevant coating is applied, which facilitates a better integrated effect between the wall and the cabinet. Furthermore, the tapered strip 11, forming a plastering bevel 111 near the middle of the side wall of the frame body 1, facilitates finishing operations during the application of the relevant coating, thereby improving finishing efficiency and quality. This cabinet door frame can greatly enhance the decoration quality of a house when creating concealed cabinet doors. At the same time, the overall structure of this cabinet door frame is relatively simple, therefore, it has advantages such as simple structure, high reliability, convenient construction, and strong applicability.

[0025] like Figure 1As shown, the convex cone strip 11 is flush with the side wall of the frame body 1 away from the middle part of the frame body 1. This not only makes the convex cone strip 11 less exposed, but also makes the side of the cabinet door frame more coordinated, so that a better wall-cabinet integrated effect can be achieved. Thus, the quality of the house decoration can be further improved when making the invisible cabinet door.

[0026] In the actual manufacturing process, the exposed part of the convex cone strip 11 can be less than 0.5mm, which can effectively avoid the influence of the convex cone strip 11 on the wall-cabinet integrated effect and the quality of the house decoration.

[0027] As shown in the drawings, Figure 1 The front wall of the frame body 1 is a tooth-shaped surface 12. This can enhance the adhesion of the related coating, thereby facilitating the formation of a more stable and reliable coating on the cabinet door, and further improving the production quality of such cabinet doors.

[0028] As shown in the drawings, Figure 1 The tooth-shaped surface 12 is one or more of a wave tooth-shaped surface, a sawtooth-shaped surface, or a trapezoidal tooth-shaped surface, which can meet the needs of actual manufacturing and use.

[0029] As shown in the drawings, Figure 1 An embedding groove 13 is provided on the front wall of the frame body 1 along the edge line of the batch scraping inclined surface 111; at least one groove wall of the embedding groove 13 is a anti-falling tooth surface 131. The embedding groove 13 can accommodate paint, which can make the end of the coating have sufficient amount and adhesion strength, thereby greatly reducing the probability of cracking and falling off of the end of the coating, and further improving the construction quality. When hanging the mesh on the outer wall of the cabinet door to apply the paint, the embedding groove 13 can embed the end of the mesh, which can improve the accuracy and stability of the mesh arrangement, and thus improve the quality of the mesh construction. The provision of the anti-falling tooth surface 131 not only enhances the adhesion of the paint, but also enhances the positioning effect of the mesh when embedding the mesh, thereby further improving the construction quality.

[0030] As shown in the drawings, Figure 1 The teeth on the anti-falling tooth surface 131 are barbed teeth. This can further enhance the anti-falling performance of the anti-falling tooth surface 131, thereby helping to further improve the reliability and applicability of the cabinet door frame.

[0031] As shown in the drawings, Figure 1 The embedding groove 13 is arranged obliquely, and one groove wall of the embedding groove 13 is flush with the batch scraping inclined surface 111, and the anti-falling tooth surface 131 extends to one end of the batch scraping inclined surface 111 near the embedding groove 13. This can make the application and adhesion of the coating more convenient and stable, thereby helping to further improve the reliability and applicability of the cabinet door frame.

[0032] As shown in the drawings, Figure 1As shown, the frame body 1 is a hollow frame; the outer side of the rear wall of the frame body 1 is provided with an inclined buckle protrusion 14, and the rear wall of the frame body 1 is provided with an embedded protrusion 15. The use of a hollow frame not only ensures that the frame body 1 has high structural strength, but also allows the frame body 1 to accommodate the screw cap end when the frame body 1 is fixed by a screw, thereby avoiding the exposure of the screw for fixing the frame body 1, and thus improving the quality of the cabinet door. The inclined buckle protrusion 14 can accurately and stably assemble the frame body 1 with other components of the cabinet door, thereby making the side wall of the cabinet door more coordinated and stable. The embedded protrusion 15 can work together with the inclined buckle protrusion 14 to position the frame body 1 and other components of the cabinet door, thereby making the frame body 1 and other components of the cabinet door more stably and reliably assembled together, which helps to further improve the reliability and applicability of the cabinet door frame.

[0033] As shown in Figure 1 The rear wall of the frame body 1 is provided with a recess 16. The recess 16 can accommodate the screw cap end, which can hide the screw for fixing other components of the cabinet door using the frame body 1, thereby improving the quality of the cabinet door.

[0034] As shown in Figure 1 The embedded protrusion 15 is arranged on the inner side of the rear wall of the frame body 1, and the recess 16 is located between the inclined buckle protrusion 14 and the embedded protrusion 15. This can make the frame body 1 have a more stable and reliable structure, which not only makes the frame body 1 more stable during installation and positioning, but also better coordinates the screw storage position. The side wall of the frame body 1 away from the inclined buckle protrusion 14 is provided with a storage groove 10, and the storage groove 10 can accommodate adhesive. This can provide sufficient adhesive between the frame body 1 and the corresponding components when other components of the cabinet door need to be positioned and bonded with the frame body 1, thereby improving the reliability of the cabinet door.

[0035] As shown in Figure 1 A groove portion 20 is formed between the inclined buckle protrusion 14 and the recess 16 on the rear wall of the frame body 1. The formation of the groove portion 20 not only reduces the use of raw materials on the frame body 1, but also allows the installation of the inclined buckle protrusion 14 to have a certain elastic deformation capacity, thereby facilitating the installation of the inclined buckle protrusion 14 in an elastic buckling manner, and further facilitating the stable and accurate installation of the inclined buckle protrusion 14 to avoid deep gaps, which can improve the production quality of the cabinet door.

[0036] As shown in Figure 1As shown in the drawings, the side wall of the frame body 1 is provided with a receiving notch 17 on the side away from the convex taper strip 11. The receiving notch 17 can be used to accommodate paint, which can provide sufficient paint at the transition between the other components of the cabinet door and the side wall of the frame body 1, which not only improves the stability and reliability of paint adhesion, but also greatly reduces the probability of paint cracking, thereby further improving the applicability of the cabinet door frame.

[0037] As shown in the drawings, Figure 1 The mouth wall of the receiving notch 17 is a tooth-shaped mouth wall 171, which can enhance the stability and reliability of the coating or mesh positioning, thereby further improving the reliability and applicability of the cabinet door frame.

[0038] As shown in the drawings, Figure 1 The frame body 1 is a hollow profile structure, and the convex taper strip 11, the batch scraping inclined surface 111, the tooth-shaped surface 12, the embedded groove 13, the anti-disengagement tooth surface 131, the inclined buckle convex strip 14, the embedded convex strip 15, the avoidance groove 16, the storage groove 10, the receiving notch 17, the groove portion 20 and the tooth-shaped mouth wall 171 are integrally formed with the frame body 1. This not only improves the efficiency of batch manufacturing, but also makes the cabinet door frame have high stability and reliability. Embodiment

[0039] As shown in the drawings, Figure 2 A cabinet door structure includes the cabinet door frame 2 of the first embodiment, and further includes a cabinet door plate 3 and an inner support plate 4. The cabinet door frame 2 is arranged on the side of the front wall of the cabinet door plate 3, and the inner support plate 4 is arranged on the front wall of the cabinet door plate 3.

[0040] In the cabinet door structure, by using the above-mentioned cabinet door frame 2, after the batch scraping of the related coating, only a very narrow part of the side of the cabinet door is exposed, which can facilitate the better integration of the wall and the cabinet; and the cabinet door frame 2 can facilitate the closing operation when the related coating is batch scraped, thereby improving the closing efficiency and closing quality. The inner support plate 4 not only provides a reliable batch scraping surface for the batch scraping of paint, but also facilitates the reduction of the amount of paint used, which can improve the construction efficiency and construction quality. The cabinet door structure can greatly improve the decoration quality of the house when making a hidden cabinet door. The cabinet door structure can have the advantages of high reliability, convenient construction, and strong applicability.

[0041] As shown in the drawings, Figure 2As shown, the cabinet door plate 3 comprises a front clamping plate 31, a rear clamping plate 32, a honeycomb plate 33, and a frame strip 34, the honeycomb plate 33 and the frame strip 34 are clamped between the front clamping plate 31 and the rear clamping plate 32, the inner supporting plate 4 is arranged on the front wall of the front clamping plate 31, and the cabinet door frame 2 is arranged on the front wall of the frame strip 34. In this way, the cabinet door plate 3 can have a very stable, reliable and high-strength structure; the front clamping plate 31 can provide an accurate and reliable mounting position for the inner supporting plate 4, thereby facilitating the improvement of the accuracy of the installation and positioning of the inner supporting plate 4; the frame strip 34 can provide a very stable and reliable mounting position for the cabinet door frame 2, thereby facilitating the improvement of the stability and reliability of the installation and positioning of the cabinet door frame 2; this helps to further improve the reliability and applicability of the cabinet door structure.

[0042] The front clamping plate 31, the honeycomb plate 33 and the frame strip 34 are respectively brushed with adhesive, and the rear clamping plate 32, the honeycomb plate 33 and the frame strip 34 are also respectively brushed with adhesive, and are fixedly connected by using a cold press to press tightly. Such a cabinet door plate 3 can have very high structural strength and durability, thereby facilitating the extension of the service life of the cabinet door structure.

[0043] As shown in Figure 2 With Figure 3 As shown, the front and rear sides of the frame strip 34 are respectively provided with positioning notches 301 for positioning the end portions of the front clamping plate 31 and the rear clamping plate 32, and the mouth walls of the positioning notches 301 are provided with wave surfaces 302. In this way, the assembly of the frame strip 34 and the front clamping plate 31 and the rear clamping plate 32 is more accurate and stable, thereby facilitating the improvement of the convenience and quality of the assembly of the cabinet door plate 3.

[0044] The cabinet door frame 2 is fixed on the frame strip 34 by means of a plurality of screws (not shown in the figure); specifically, a clearance hole (not shown in the figure) is formed in the front wall of the cabinet door frame 2 and penetrates into the hollow cavity 21, the screws are arranged in the hollow cavity 21 through the clearance hole, the threaded ends of the screws are threaded on the frame strip 34 after being threaded out of the cabinet door frame 2, the threaded ends of the screws penetrate through the avoidance slot 16, and the screw cap ends of the screws are completely located in the clearance hole or on the inner side of the clearance hole. This not only stably and reliably assembles the cabinet door frame 2 and the frame strip 34 together, but also avoids the exposure of the screws, and the clearance hole can be hidden by paint, thereby ensuring that the cabinet door has very high quality.

[0045] As shown in Figure 2 With Figure 3As shown, the outer side of the front wall of the frame strip 34 is provided with an oblique clamping groove 303 for embedding the oblique clamping protrusion 14, and the front wall of the frame strip 34 is provided with a positioning groove 304 matching the embedded protrusion 15. The oblique clamping protrusion 14 is clamped in the oblique clamping groove 303, and the embedded protrusion 15 is embedded in the positioning groove 304. In this way, the cabinet door frame 2 and the frame strip 34 can be accurately and stably assembled together, thereby helping to improve the reliability of the cabinet door structure.

[0046] The inner supporting plate 4 is a gypsum board. This not only enables the inner supporting plate 4 to have a light and non-deformable structure, but also facilitates processing and installation, and can play a heat insulation and fireproof effect, and thus can provide a very good adhesion surface for the batch scraping of the paint layer, thereby facilitating the improvement of the stability and reliability of the paint layer arrangement, and further helping to further improve the reliability and applicability of the cabinet door structure.

[0047] As shown in Figure 2 With Figure 3 As shown, the front wall of the frame strip 34 is provided with a groove 341. When a lock (not shown in the figure) needs to be installed on the cabinet door structure, the lock is embedded on the side wall of the frame strip 34, and a screw (not shown in the figure) is passed through the front wall of the frame strip 34 from back to fix the lock, and the nut end of the screw is partially disposed in the groove 341, and the avoiding groove 16 covers the nut end of the screw. This not only enables the lock to be stably installed, but also achieves the purpose of hiding the screw, thereby facilitating the improvement of the quality of the cabinet door.

[0048] As shown in Figure 3 As shown, the frame strip 34 is a rectangular hollow profile strip, and the positioning notch 301, the wave surface 302, the oblique clamping groove 303, the positioning groove 304 and the groove 341 are integrally formed with the frame strip 34. This not only facilitates the efficiency of batch manufacturing, but also enables the cabinet door frame to have high stability and reliability.

[0049] In the actual manufacturing process, four frame strips 34 are used, and the four frame strips 34 form a rectangular frame around the honeycomb panel 33. The cabinet door frame 2 also uses four, and the four cabinet door frames 2 are respectively arranged on the front walls of the four frame strips 34. The inner supporting plate 4 can be fixed on the front clamping plate 31 and the cabinet door frame 2 by glue, or can be fixed on the frame strip 34 by a screw. As shown in Figure 4As shown, when the paint layer is applied, the putty layer 100 is first applied on the front wall of the inner backplate 4, and the end of the putty layer 100 is applied on the cabinet door frame 2; then the decorative coating layer 200 same as the wall decorative layer is applied on the putty layer 100, and the end of the decorative coating layer 200 is closed on the convex cone strip 11; the decorative coating layer 200 can adopt latex paint, artistic paint, cement or other paint; if necessary, it can also adopt hanging net construction. In this way, the wall and the cabinet have very good integrated effect, and the closing efficiency and closing quality of the decorative coating layer can be improved; in addition, when the invisible cabinet door is made, the decoration quality of the house can be greatly improved.

[0050] The above embodiment is a preferred embodiment of the present application, and any similar structure and equivalent changes made shall belong to the protection scope of the present application.

Claims

1. A cabinet door border, characterized by: The frame body (1) is provided with a convex taper strip (11) on the side of the front wall, which forms a batch scraping inclined surface (111) near the side wall of the middle part of the frame body (1).

2. The cabinet door rim of claim 1, wherein: The convex taper strip (11) away from the side wall of the middle part of the frame body (1) is flush with the side wall of the frame body (1).

3. The cabinet door rim of claim 1, wherein: The front wall of the frame body (1) is a tooth-shaped surface (12).

4. The cabinet door rim of claim 1, wherein: The front wall of the frame body (1) is provided with an embedded groove (13) along the edge line of the batch scraping inclined surface (111); at least one groove wall of the embedded groove (13) is a anti-disengagement tooth surface (131).

5. The cabinet door rim of claim 1, wherein: The frame body (1) is a hollow frame; the outer side of the back wall of the frame body (1) is provided with an inclined buckle convex strip (14), and the back wall of the frame body (1) is provided with an embedded convex strip (15).

6. The cabinet door rim of claim 1, wherein: The back wall of the frame body (1) is provided with a avoiding groove (16).

7. The cabinet door rim of claim 1, wherein: The front wall of the frame body (1) is provided with a receiving notch (17) away from the convex taper strip (11).

8. A cabinet door structure characterized by: The cabinet door frame (2) of any one of claims 1 to 7, further comprising a cabinet door plate (3) and an inner supporting plate (4), wherein the cabinet door frame (2) is arranged on the side of the front wall of the cabinet door plate (3), and the inner supporting plate (4) is arranged on the front wall of the cabinet door plate (3).

9. The cabinet door structure of claim 8, wherein: The cabinet door plate (3) comprises a front clamping plate (31), a back clamping plate (32), a honeycomb plate (33) and a frame strip (34), wherein the honeycomb plate (33) and the frame strip (34) are clamped between the front clamping plate (31) and the back clamping plate (32), the inner supporting plate (4) is arranged on the front wall of the front clamping plate (31), and the cabinet door frame (2) is arranged on the front wall of the frame strip (34).

10. The cabinet door structure of claim 8, wherein: The inner supporting plate (4) is a gypsum board.

Citation Information

Patent Citations

  • Wardrobe door leaf structure

    CN219795087U