Mildew-proof heat-preservation wood-plastic door
By introducing a vertical isothermal structure and multi-layer insulation design into wood-plastic doors, the problem of poor heat insulation performance of wood-plastic doors has been solved, achieving better heat insulation performance and mildew resistance.
Patent Information
- Application Number
- CN202422874232.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-25
AI Technical Summary
Existing wood-plastic composite doors have weak heat insulation properties, especially when hot and cold air rapidly converge, resulting in insufficient overall heat insulation.
The design employs a vertical isothermal structure, which enhances the thermal insulation performance of wood-plastic doors by installing adhesive strip fixers and isobaric adhesive strips between solid wood strips, distributing insulation boards and insulation cotton in a multi-layered structure, and combining a T-shaped structure of MDF and oak boards.
It significantly improves the heat insulation capacity of wood-plastic doors, reduces temperature exchange, prevents mold growth, and expands the range of applications.
Smart Images

Figure CN223523628U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wood -plastic door technical field, concretely is a mildewproof heat preservation wood -plastic door. BACKGROUND
[0002] Wood -plastic door is with high polymer resin mixture that wood superfine powder particle is adopted, through the molding technology of making, has the excellent property of wood and plastic, the product of production reached the effect of true imitation wood, because the raw material and production process do not use glue to bond, will not produce formaldehyde, benzene, ammonia, trichloroethylene and other harmful substances, is the green environmental protection new type material of traditional wood replacement.
[0003] Among them, the internal structure of wood -plastic door has cavity and the overall structure is relatively single, thus the heat preservation effect of wood -plastic door depends on the wood quality of wood -plastic door, when the temperature of the two sides of wood -plastic door exists difference, the cold and hot air of the two sides of wood -plastic door is easy to converge, and the temperature of the two sides indirectly and quickly contacts through wood -plastic door as heat exchange medium, so that the overall heat preservation capacity of wood -plastic door is weak, thus the present application designs a mildewproof heat preservation wood -plastic door to solve this prior art defect. SUMMARY
[0004] In view of the defects of the prior art, the utility model provides a mildewproof heat preservation wood -plastic door, has the advantage that vertical isothermal structure improves the overall heat preservation and heat insulation effect of wood -plastic door.
[0005] To achieve the above object, the utility model provides the following technical scheme: a mildewproof heat preservation wood -plastic door, including faceplate, oak board and solid wood strip, the faceplate and the oak board are spaced apart and keep the gap, the solid wood strip adopts multiple sections and is attached between the faceplate and the oak board;
[0006] Among them, the adjacent solid wood strip is provided with isothermal structure, the isothermal structure includes the adhesive strip holder that abuts on the side of the solid wood strip and the equal-pressure adhesive strip that is inserted into the holder, and the holder is distributed on both sides of the equal-pressure adhesive strip.
[0007] Adopt above-mentioned technical scheme, through the multilayer heat insulation capacity of wood -plastic door is strengthened, thereby reduce the heat exchange efficiency of the two sides of wood -plastic door, improve the heat preservation capacity of wood -plastic door.
[0008] As a preferred technical scheme of the utility model, the faceplate includes the density board covered with coating, the width of the density board is greater than the width of the oak board, and the two ends of the faceplate and the oak board are attached to form a T-shaped structure.
[0009] Adopt above-mentioned technical scheme, can improve the airtightness of wood -plastic door when closing, thereby improving its heat preservation capacity.
[0010] As a preferred technical scheme of the utility model, the fixer and the equal-pressure adhesive tape are vertically and continuously distributed between the solid wood strips.
[0011] The above technical scheme ensures that the several equal-pressure adhesive tapes vertically correspond to form a barrier band to reduce temperature exchange.
[0012] As a preferred technical scheme of the utility model, the inner side of the fixer is provided with an arc-shaped embedding groove, both ends of the equal-pressure adhesive tape are provided with a shape corresponding to the embedding groove, and the end of the equal-pressure adhesive tape is embedded in the embedding groove on the fixer.
[0013] The above technical scheme can improve the installation flexibility of the equal-pressure adhesive tape.
[0014] As a preferred technical scheme of the utility model, the opposite side of the panel and the oak plate is symmetrically provided with an MDF plate and a thermal insulation plate.
[0015] The above technical scheme can increase the overall balance of the door and improve the overall thermal insulation capacity of the wood-plastic door.
[0016] As a preferred technical scheme of the utility model, the side of the oak plate is embedded with a door leaf edge extending between the oak plate and the panel,
[0017] One end of the door leaf edge embedded between the oak plate and the panel is provided with a hollow cavity, and the hollow cavity is placed or filled with a desiccant.
[0018] The above technical scheme can reduce the moisture and mildew phenomenon of the side of the door leaf of the wood-plastic door.
[0019] As a preferred technical scheme of the utility model, the side of the door leaf edge is arrayed with exchange holes for the inner and outer cavities of the door leaf edge.
[0020] The above technical scheme can facilitate the replacement of the desiccant in the door leaf edge.
[0021] Compared with the prior art, the technical scheme of the utility model has the following beneficial effects:
[0022] The mold-proof and heat-preservation wood-plastic door has the heat-insulating plate distributed in the multi-layer structure of the wood-plastic door, and the heat-preservation cotton is arranged between the double heat-insulating plates, so that the temperature exchange capacity of the two sides of the wood-plastic door is weakened, the phenomenon that the temperature of one side of the wood-plastic door is lost quickly is improved, the wood-plastic door has the function of heat preservation, the equal-pressure adhesive strips are vertically arranged between the continuously distributed solid wood strips to form a vertical equal-temperature structure, the heat-insulating capacity of the wood-plastic door in front and back is improved, the temperature exchange of the wood-plastic door in left and right sides is hindered, the heat-insulating capacity of the wood-plastic door is effectively improved, the door leaf edge is arranged on the side of the wood-plastic door to reduce the mold phenomenon of the solid wood structure on the side, and the use range of the wood-plastic door is effectively increased. BRIEF DESCRIPTION OF DRAWINGS
[0023] Fig. 1 It is a whole structure perspective view of the utility model;
[0024] Fig. 2 It is a horizontal cross section perspective view of the utility model;
[0025] Fig. 3 It is a structure perspective view of the solid wood strip connecting equal-pressure adhesive strip of the utility model.
[0026] In the drawing: 1, panel; 101, density board; 2, oak board; 3, MDF board; 4, heat-insulating plate; 5, solid wood strip; 6, door leaf edge; 7, hollow cavity; 8, exchange hole; 9, fixer; 901, embedded groove; 10, equal-pressure adhesive strip; 11, heat-preservation cotton. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0028] Please refer to Figs. 1 to 3 The mold-proof and heat-preservation wood-plastic door in the embodiment comprises a panel 1, an oak board 2 and a solid wood strip 5, wherein the panel 1 and the oak board 2 are spaced apart to leave a gap, and the solid wood strip 5 is adopted to be attached to the panel 1 and the oak board 2 in multiple sections.
[0029] In detail, the panel 1 comprises a density board 101 covered with a coating, and the width of the density board 101 is greater than the width of the oak board 2, so that the two ends of the panel 1 are attached to the oak board 2 to form a T-shaped structure.
[0030] The wood-plastic door designed in this way can improve the closed sealing effect between the door leaf and the door frame, thereby improving the overall heat preservation effect of the wood-plastic door.
[0031] The density board 101 is used to protect the paint from cracking, and the coating can be selected to use baking paint, which is wear-resistant and odorless.
[0032] Further, an isothermal structure is arranged between the adjacent wooden strips 5 to reduce the heat exchange on both sides of the wood-plastic door, wherein the isothermal structure comprises a rubber strip fixer 9 abutting on the side of the wooden strip 5 and an isobaric rubber strip 10 inserted into the fixer 9, and the fixer 9 is distributed on both sides of the isobaric rubber strip 10.
[0033] Since the isobaric rubber strip 10 has a certain elasticity, under the extrusion of the isobaric rubber strip 10, the fixer 9 on both sides of the isobaric rubber strip 10 can be pushed to abut between the adjacent wooden strips 5.
[0034] In this embodiment, the fixer 9 and the isobaric rubber strip 10 are continuously and vertically distributed between the wooden strips 5, so as to ensure that the several isobaric rubber strips 10 vertically correspond to each other.
[0035] In this way, the continuously distributed isobaric rubber strip 10 can block the heat conduction between the oak plate 2 and the panel 1 on both sides, thereby reducing the heat exchange on both sides of the wood-plastic door and improving the heat preservation effect of the wood-plastic door.
[0036] It is to be supplemented that the inner side of the fixer 9 is provided with an arc-shaped embedding groove 901, both ends of the isobaric rubber strip 10 are arranged in a shape corresponding to the embedding groove 901, and the end of the isobaric rubber strip 10 is embedded into the embedding groove 901 on the fixer 9.
[0037] In the specific connection, after the two fixers 9 are installed at the both ends of the isobaric rubber strip 10, the isobaric rubber strip 10 connected with the fixer 9 can be directly pressed into the gap between the two wooden strips 5 for filling.
[0038] In order to better maintain the temperature on one side of the wood-plastic door, the continuously distributed isobaric rubber strips 10 are padded with heat preservation cotton 11, and the heat preservation cotton 11 is also distributed with several between the adjacent wooden strips 5, for improving the overall heat preservation effect of the wood-plastic door.
[0039] In this embodiment, the opposite sides of the panel 1 and the oak plate 2 are symmetrically provided with the MDF board 3 and the thermal insulation plate 4, wherein the MDF board 3 is used to increase the balance of the door and improve the stability of the door pocket structure, and the thermal insulation plate 4 is used to further improve the overall thermal insulation capacity of the wood-plastic door and improve the heat preservation performance of the wood-plastic door.
[0040] In this embodiment, the side of the oak plate 2 is embedded with a door leaf edge 6 extending between the oak plate 2 and the panel 1, the door leaf edge 6 is selected to be a cold-rolled plate, and the end of the door leaf edge 6 embedded between the oak plate 2 and the panel 1 is provided with a hollow cavity 7.
[0041] Further, the optional placement or filling of the desiccant in the hollow cavity 7 can reduce the moisture and mildew phenomenon of the wood-plastic door leaf side.
[0042] Further, the side surface of the door leaf edge 6 is arrayed with exchange holes 8 for the communication between the inner and outer cavities of the door leaf edge 6. Through the design of the exchange holes 8, the desiccant in the door leaf edge 6 can be conveniently replaced.
[0043] The working principle of the above embodiment is that when the wood-plastic door is closed, the door leaf and the door frame are closed to each other, the panel 1 of the wood-plastic door is attached to the door frame surface through the extension portions on both sides, so as to ensure the sealing property of the closed wood-plastic door. Then, the wood-plastic door is blocked by the solid wood strips 5, the oak plates 2 and the panel 1 inside the door, and the built-in heat insulation cotton 11 and the temperature insulation plate 4, so that the overall temperature insulation effect of the wood-plastic door is good, the temperature on one side of the wood-plastic door is not easily lost, and the continuous arrangement of the equal temperature structure equal pressure adhesive strips 10 vertically distributed between the solid wood strips 5 also significantly reduces the temperature exchange capacity of the left and right sides of the wood-plastic door, thereby ensuring the overall heat preservation capacity of the wood-plastic door.
Claims
1. A mildew-proof thermal insulation wood-plastic door, comprising a face plate (1), an oak plate (2) and a solid wood strip (5), the face plate (1) and the oak plate (2) are spaced apart to leave a gap, characterized in that: The solid wood strips (5) are arranged between the panel (1) and the oak plate (2) in multiple sections and at intervals. The isothermal structure is arranged between the adjacent solid wood strips (5), and comprises a glue strip fixator (9) abutting on the side surface of the solid wood strip (5) and an isobaric glue strip (10) inserted into the fixator (9), and the fixator (9) is distributed on both sides of the isobaric glue strip (10).
2. The mildew-proof thermal insulation wood-plastic door according to claim 1, characterized in that: The panel (1) comprises a density plate (101) covered with a coating, and the width of the density plate (101) is greater than the width of the oak plate (2), and the two ends of the panel (1) and the oak plate (2) are attached to form a T-shaped structure.
3. The mildew-proof and heat-preservation wood-plastic door according to claim 1, characterized in that: The fixator (9) and the isobaric glue strip (10) are continuously and vertically distributed between the solid wood strips (5).
4. The mildew-proof thermal insulation wood-plastic door according to claim 3, characterized in that: An arc-shaped embedding groove (901) is formed on the inner side surface of the fixator (9), both ends of the isobaric glue strip (10) are arranged in a shape corresponding to the embedding groove (901), and the end portion of the isobaric glue strip (10) is embedded into the embedding groove (901) on the fixator (9).
5. The mildew-proof and heat-preservation wood-plastic door according to claim 1, characterized in that: MDF plates (3) and thermal insulation plates (4) are symmetrically arranged on the opposite side surfaces of the panel (1) and the oak plate (2).
6. The mildew-proof and heat-preservation wood-plastic door according to claim 1, characterized in that: A door leaf edge band (6) extending between the oak plate (2) and the panel (1) is embedded on the side surface of the oak plate (2), One end of the door leaf edge band (6) embedded between the oak plate (2) and the panel (1) is provided with a hollow cavity (7), and a desiccant is placed or filled in the hollow cavity (7).
7. The mildew-proof thermal insulation wood-plastic door according to claim 6, characterized in that: Exchange holes (8) for communicating the inner and outer cavities of the door leaf edge band (6) are arrayed on the side surface of the door leaf edge band (6).