Heat-preservation and energy-saving type aluminum-clad wood window heat-preservation structure
By adopting a multi-layer insulation design of polymer insulation foam layer, air insulation layer and reflective layer in aluminum-clad wooden windows, combined with high-quality sealing components, the problems of heat loss and water seepage in traditional windows are solved, and significant insulation performance and durability are achieved.
Patent Information
- Application Number
- CN202422549370.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Traditional windows are prone to heat loss, energy consumption and water seepage problems under extreme climatic conditions, especially the thermal insulation and energy-saving effect of aluminum-clad wooden windows needs to be improved.
Designed with multi-layer insulation materials, including polymer insulation foam layer, air insulation layer and reflective layer, combined with high-quality sealing components, aluminum-clad wood profiles and anticorrosion coatings are used to enhance airtightness and water sealing.
It significantly improves the insulation performance of windows, reduces heat loss, improves airtightness and water sealing, extends service life, and meets the needs of aesthetics and practicality.
Smart Images

Figure CN223305607U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of building doors and windows, and in particular relates to a heat-insulating and energy-saving aluminum-clad wood window heat-insulating structure. Background Art
[0002] Traditional window structures lack insulation, airtightness, and watertightness, particularly in extreme climates, leading to heat loss, increased energy consumption, and water seepage. Aluminum-clad wood windows are gaining popularity in the market, combining the strength of aluminum alloy with the natural beauty of wood. However, further improving their insulation and energy efficiency remains a pressing challenge. Therefore, developing an aluminum-clad wood window insulation structure with a simple structure, effective insulation, and easy installation is crucial. Utility Model Content
[0003] The purpose of the utility model is to provide a heat-insulating and energy-saving aluminum-clad wood window insulation structure to solve the problems of traditional windows easily causing heat loss, increased energy consumption and water seepage.
[0004] To achieve the above-mentioned purpose, the technical solution adopted by the present invention is as follows: an insulating and energy-saving aluminum-clad wood window insulation structure, comprising a window frame, a window sash, an insulation layer, a sealing assembly and glass, wherein the window sash is arranged in the window frame, and the glass is arranged in the window sash, the insulation layer is arranged in the gap between the window frame and the window sash, the sealing assembly is arranged at the contact edge of the window frame and the window sash, and the insulation layer includes a polymer insulation foam layer, an air insulation layer and a reflective layer arranged in sequence from the inside to the outside.
[0005] Furthermore, the window frame and window sash are both made of aluminum-clad wood profiles, which include a wood base and an aluminum alloy shell wrapped around the wood base. The surface of the aluminum alloy shell of the window frame and window sash is provided with an anti-corrosion coating.
[0006] Furthermore, the polymer thermal insulation foam layer is made of polyurethane foam or polystyrene foam, the air insulation layer is composed of a plurality of tiny air chambers, and the reflective layer is made of metal film or aluminum foil.
[0007] Furthermore, the air chambers of the air insulation layer are formed by microporous foaming technology.
[0008] Furthermore, the sealing assembly includes a sealing groove and a sealing strip, wherein the sealing strip is installed in the sealing groove and is made of EPDM rubber or silicone rubber.
[0009] Compared with the prior art, the beneficial effects of the present invention are:
[0010] 1. The utility model can keep warm efficiently. Through the design of multi-layer insulation materials including polymer insulation foam layer, air insulation layer and reflective layer, especially the addition of air insulation layer and reflective layer, the thermal insulation performance of the window is significantly improved, the loss of indoor heat is reduced, the transfer of heat can be effectively prevented, and it has excellent thermal insulation effect.
[0011] 2. This utility model has strong air tightness and water tightness, optimized sealing component design, and uses high-quality rubber material as sealing strips to effectively prevent outside air and moisture from entering the room. It can effectively improve the air tightness and water tightness of doors and windows, and keep the indoor environment comfortable.
[0012] 3. This new model has strong durability. The aluminum-clad wood profile is combined with anti-corrosion coating and weather-resistant sealing strips. It has excellent durability and corrosion resistance, which extends the service life of the window.
[0013] 4. The utility model has a simple structure, is beautiful and practical, and is easy to install. It retains the natural beauty of wood while improving the functionality of windows, meeting the dual needs of modern architecture for beauty and practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a structural diagram of the utility model;
[0015] Figure 2 It is a structural diagram of the window frame;
[0016] Figure 3 It is a structural diagram of a window sash;
[0017] Figure 4 It is a cross-sectional view of the insulation layer.
[0018] The names and reference numerals of the components in the above drawings are as follows:
[0019] 1. Window frame; 2. Window sash; 3. Insulation layer; 4. Sealing assembly; 5. Glass; 11. Wood substrate; 12. Aluminum alloy shell; 13. Anti-corrosion coating; 31. Polymer insulation foam layer; 32. Air insulation layer; 33. Reflective layer; 41. Sealing groove; 42. Sealing strip; 321. Air chamber. DETAILED DESCRIPTION
[0020] The technical solutions of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0021] Specific implementation: Figures 1-4 As shown, this embodiment discloses an insulation structure of a heat-insulating and energy-saving aluminum-clad wood window, including a window frame 1, a window sash 2, an insulation layer 3, a sealing component 4 and glass 5. The window sash 2 is arranged in the window frame 1, and the glass 5 is arranged in the window sash 2. The insulation layer 3 is arranged in the gap between the window frame 1 and the window sash 2. The sealing component 4 is arranged at the contact edge of the window frame 1 and the window sash 2 to improve air tightness and water tightness. The insulation layer 3 includes a polymer insulation foam layer 31, an air insulation layer 32 and a reflective layer 33 arranged in sequence from the inside to the outside.
[0022] Furthermore, the window frame 1 and the window sash 2 are both made of aluminum-clad wood profiles, which include a wood base 11 and an aluminum alloy shell 12 wrapped around the outside of the wood base. The surface of the aluminum alloy shell 12 of the window frame 1 and the window sash 2 is provided with an anti-corrosion coating 13 to improve corrosion resistance.
[0023] Furthermore, the polymer thermal insulation foam layer 31 is made of polyurethane foam or polystyrene foam, and its density and thickness are adjusted according to the insulation requirements. The air insulation layer 32 is composed of multiple tiny air chambers 321. The reflective layer 33 is made of metal film or aluminum foil. The reflective layer 33 and the air insulation layer 32 are bonded with an adhesive to ensure the stability of the reflective layer 33.
[0024] Furthermore, the air chambers 321 of the air insulation layer 32 are formed by microporous foaming technology, and the size and shape of each air chamber 321 are uniform to reduce heat convection.
[0025] Furthermore, the sealing assembly 4 includes a sealing groove 41 and a sealing strip 42 . The sealing strip 42 is installed in the sealing groove 41 . The sealing strip 42 is made of EPDM rubber or silicone rubber and has good elasticity and weather resistance.
[0026] Material selection and preparation:
[0027] Material selection and preparation for window frame 1 and window sash 2:
[0028] Wood substrate 11: Select high-quality wood such as oak or pine as the substrate. These woods are not only beautiful but also have good stability and durability.
[0029] Aluminum alloy shell 12: Aluminum alloy is used to wrap the wood substrate to form an aluminum-clad wood profile. The thickness and strength of the aluminum alloy shell are reasonably designed according to the size and load-bearing requirements of the window to ensure the stability and safety of the window.
[0030] Anti-corrosion coating 13: Apply an anti-corrosion coating, such as powder coating or fluorocarbon paint, to the surface of the aluminum alloy shell to improve corrosion resistance and extend the service life of the window.
[0031] Material selection and preparation of insulation layer 3:
[0032] Polymer insulation foam layer 31: Polyurethane foam or polystyrene foam is used. These materials have excellent thermal insulation properties and low thermal conductivity. The density and thickness of the foam are adjusted according to the insulation requirements to achieve the best insulation effect.
[0033] Air insulation layer 32: A plurality of tiny air chambers 321 are formed by microporous foaming technology to ensure that the size and shape of each air chamber are uniform, so as to reduce heat convection and improve thermal insulation performance.
[0034] Reflective layer 33: Made of metal film or aluminum foil, it is bonded to the air insulation layer with an adhesive to ensure stability. The reflective layer effectively reflects solar radiation and indoor heat, further improving the insulation effect.
[0035] Material selection and preparation of sealing component 4:
[0036] Sealing groove 41 : designed at the contact edge of the window frame 1 and the window sash 2 , and its shape and size must match the sealing strip 42 .
[0037] Sealing strip 42: Made of EPDM rubber or silicone rubber, these materials have good elasticity, weather resistance and aging resistance, can maintain the sealing effect for a long time, and prevent heat from being lost through gaps and rainwater from penetrating into the room.
[0038] Window assembly:
[0039] Window frame 1 assembly:
[0040] According to the design requirements, cut the aluminum-clad wood profiles into appropriate sizes and assemble the components into window frames using connectors such as screws and angle brackets. Ensure the flatness and stability of the window frame to meet installation requirements.
[0041] Window Sash 2 Assembly:
[0042] Similarly, cut and assemble the aluminum-clad wood profiles into window sashes. Inlay glass 5 inside the window sash. The glass can be single-layer or multi-layer insulating glass to improve thermal insulation and sound insulation. Ensure that the glass and window sash are firmly fixed to the window sash and there is no shaking.
[0043] Insulation layer 3 installation:
[0044] The polymer insulation foam layer 31, the air insulation layer 32 and the reflective layer 33 are sequentially installed in the gap between the window frame 1 and the window sash 2. Ensure that each layer fits tightly without gaps to improve the insulation performance.
[0045] Installation of sealing assembly 4:
[0046] Install the sealing strip 42 in the sealing groove 41 of the window frame 1 and the window sash 2. Make sure that the sealing strip fits tightly against the contact surface of the window frame and the window sash to form a good sealing effect to prevent heat loss and rainwater infiltration.
[0047] Window commissioning and installation:
[0048] debug:
[0049] After the window is assembled, it is debugged. Check whether the window sash 2 opens and closes smoothly, whether the sealing strip 42 is tightly fitted, whether the insulation layer 3 is intact, etc. Ensure that the performance of the window meets the design requirements and meets the needs of use.
[0050] Install:
[0051] Install the debugged window in the building opening. Use expansion screws, angle brackets, and other fasteners to secure the window to the building wall. Ensure the window's stability and safety to prevent potential safety hazards caused by improper installation.
[0052] Maintenance and care:
[0053] Regularly check whether the window's sealing strips 42, insulation layer 3, and aluminum alloy shell 12 are intact. If damaged or aged, replace or repair them in time to ensure the window's thermal insulation and sealing properties.
[0054] When cleaning windows, use a soft cloth and neutral detergent, and avoid using hard objects or corrosive detergents to scratch the surface. Keep your windows clean and beautiful.
[0055] Regularly check whether the opening and closing parts of the windows are flexible. If there is any jamming, lubricate and adjust them in time to ensure the normal use of the windows.
[0056] The thermal insulation structure of the utility model not only has excellent thermal insulation performance, air tightness and water tightness, but also is beautiful and practical, and is suitable for a variety of building environments. At the same time, the production and installation process of the window is simple and convenient, and is easy to promote and apply.
[0057] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
[0058] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. A heat-insulating and energy-saving aluminum-clad wood window insulation structure, characterized by: The invention comprises a window frame (1), a window sash (2), a heat-insulating layer (3), a sealing component (4) and glass (5); the window sash (2) is arranged in the window frame (1), the glass (5) is arranged in the window sash (2), the heat-insulating layer (3) is arranged in the gap between the window frame (1) and the window sash (2), the sealing component (4) is arranged at the contact edge of the window frame (1) and the window sash (2), and the heat-insulating layer (3) comprises a polymer heat-insulating foam layer (31), an air heat-insulating layer (32) and a reflective layer (33) arranged in sequence from the inside to the outside.
2. The heat-insulating and energy-saving aluminum-clad wood window insulation structure according to claim 1, characterized in that: The window frame (1) and the window sash (2) are both made of aluminum-clad wood profiles, which include a wood base (11) and an aluminum alloy shell (12) wrapped around the outside of the wood base. The surface of the aluminum alloy shell (12) of the window frame (1) and the window sash (2) is provided with an anti-corrosion coating (13).
3. The heat-insulating and energy-saving aluminum-clad wood window insulation structure according to claim 2 is characterized by: The polymer thermal insulation foam layer (31) is made of polyurethane foam or polystyrene foam, the air thermal insulation layer (32) is composed of a plurality of tiny air chambers (321), and the reflective layer (33) is made of a metal film or aluminum foil.
4. The heat-insulating and energy-saving aluminum-clad wood window insulation structure according to claim 3 is characterized by: The air chamber (321) of the air heat insulation layer (32) is formed by microporous foaming technology.
5. The heat-insulating and energy-saving aluminum-clad wood window insulation structure according to claim 4 is characterized by: The sealing assembly (4) comprises a sealing groove (41) and a sealing strip (42). The sealing strip (42) is installed in the sealing groove (41). The sealing strip (42) is made of EPDM rubber or silicone rubber.