Narrow-frame heat-insulation and heat-preservation aluminum-clad wood door and window
By using the combination of the sash mechanism and the window glass mechanism in the aluminum-clad wooden doors and windows, the sealing mechanism and sealing strips are used to improve the sealing property between the glass and the wooden fan frame, the problem of insufficient sealing property in the prior art is solved, and the thermal insulation performance and stability are significantly improved.
Patent Information
- Application Number
- CN202420751491.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-12
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-04-12
AI Technical Summary
The sealing of existing aluminum-clad wooden doors and windows between the glass and wooden frames cannot be guaranteed, resulting in a degradation of thermal insulation performance.
The installation method of combining the window sash mechanism and the window sash mechanism is adopted to improve the sealing property between the glass and the wooden sash frame by using the sealing mechanism, and further enhance the sealing effect through the first sealing strip and the second sealing strip.
The insulation performance of doors and windows is improved, and the stability between the glass and wooden fan frame is enhanced by the setting of grooves and bumps.
Smart Images

Figure CN223034803U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of doors and windows, and particularly relates to a narrow-frame heat-insulating and heat-preserving aluminum-clad wood door and window. Background Art
[0002] An aluminum-clad wood door and window is a frame body formed by mechanically combining a heat-insulating broken-bridge aluminum alloy profile and solid wood on the premise of retaining the characteristics and functions of a pure solid wood door and window. The two materials are connected by a high-molecular nylon piece, fully considering the different shrinkage coefficients of wood and metal. Application No. 202320208965.4 discloses a narrow-frame heat-insulating and heat-preserving aluminum-clad wood door and window, which includes a wooden window frame, a movable window and a large duckbill rubber strip. The movable window is arranged inside the wooden window frame. The movable window includes a wooden window sash, a first piece of glass and an aluminum sash profile, and also includes a window screen. The inner side surface of the wooden window frame is flush with the inner side surface of the wooden window sash. The first piece of glass is arranged in a first glass installation groove formed by the wooden window sash and the aluminum sash profile and is hermetically connected to the wooden window sash and the aluminum sash profile. A window screen installation groove for installing the window screen is formed between the outer side surface of the aluminum sash profile and the upper end surface of the first aluminum frame profile. A plurality of cavities are provided on both the aluminum sash profile and the first aluminum frame profile. The above-mentioned door and window is added with a window screen, but the sealing performance between the glass and the wooden sash frame cannot be guaranteed.
[0003] When the door and window is in use, it needs to be exposed to sunlight and rain for a long time. The seal between the door and window glass and the wooden sash frame is generally fixed by a rubber strip. The rubber strip belongs to plastic and is prone to aging after long-term use. The wooden sash frame needs to rotate with the wooden frame frequently, which is likely to cause the glass on the wooden sash frame to shake and other phenomena. The glass is easily squeezed with the rubber strip, which is more likely to cause the sealing performance of the glass on the wooden sash frame to be unstable, reducing the heat-insulating and heat-preserving performance of the aluminum-clad wood door and window. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a narrow-frame heat-insulating and heat-preserving aluminum-clad wood door and window to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the utility model provides the following technical solution: A narrow-frame heat-insulating and heat-preserving aluminum-clad wood door and window, including: a window frame mechanism, and a fixed glass is fixedly inserted and connected to the bottom of the window frame mechanism;
[0006] A window sash mechanism is arranged at the top of the window frame mechanism, and the window sash mechanism includes:
[0007] A wooden sash frame and an aluminum sash frame, the aluminum sash frame is arranged on the back of the wooden sash frame, and a plurality of positioning mechanisms are arranged on the aluminum sash frame and the window frame mechanism in rectangular arrays of different sizes;
[0008] A first sealing strip and a second sealing strip, the first sealing strip and the second sealing strip are respectively arranged on the front and back of the window glass mechanism;
[0009] A sealing mechanism, the sealing mechanism is arranged in a rectangular frame on the outer wall of the window glass assembly, and the sealing mechanism is installed on the inner wall of the wooden sash frame;
[0010] The inner wall of the window sash mechanism is provided with a window glass mechanism, and the window glass mechanism includes:
[0011] Multiple layers of sealed glass, and the multiple layers of sealed glass are equidistantly distributed on the inner wall of the rubber gasket frame;
[0012] Multiple desiccants, and the desiccants are fixedly arranged at the inner wall corners of two adjacent sealed glasses;
[0013] Multiple grooves, the grooves are opened on the outer wall of the sealed glass, and the convex blocks are movably clamped in the inner cavity of the grooves.
[0014] Preferably, the window frame mechanism includes:
[0015] A wooden frame and a first aluminum frame, and the wooden frame is fixedly arranged on the front of the first aluminum frame through a positioning mechanism;
[0016] A second aluminum frame, the second aluminum frame is clamped on the top of the first aluminum frame, and the second aluminum frame is fixed to the back of the wooden frame through a positioning mechanism;
[0017] Multiple connecting holes, and the multiple connecting holes are equidistantly opened in the middle and at the bottom of the second aluminum frame.
[0018] Preferably, the first sealing strip is hermetically clamped between the aluminum sash frame and the window glass mechanism, and the second sealing strip is hermetically clamped between the wooden sash frame and the window glass mechanism.
[0019] Preferably, the sealing mechanism includes:
[0020] A rubber gasket frame, and the rubber gasket frame is arranged in a rectangular array on the inner wall of the wooden sash frame;
[0021] Multiple convex blocks, and the multiple convex blocks are equidistantly arranged in multiple rectangular arrays on the inner wall of the rubber gasket frame;
[0022] Multiple fixing nails, and the multiple fixing nails are equidistantly inserted through both side edges of the rubber gasket frame, and the multiple fixing nails are respectively fixedly inserted and connected to the inner wall and the back of the wooden sash frame.
[0023] Preferably, the positioning mechanism includes:
[0024] Nylon parts, and the multiple nylon parts are respectively clamped in the inner cavities of the first aluminum frame, the second aluminum frame and the aluminum sash frame;
[0025] Positioning nails, the positioning nails are fixedly inserted and connected to the middle of the nylon parts, and the multiple positioning nails are respectively fixedly inserted and connected to the back of the wooden frame and the back of the wooden sash frame.
[0026] Preferably, an auxiliary strip is clamped at the top of the second aluminum frame, and a plurality of sealing strips are arranged between the wooden frame and the wooden sash frame.
[0027] The technical effects and advantages of the present utility model:
[0028] Through the cooperation of the window sash mechanism and the window glass mechanism, the present utility model utilizes the sealing mechanism to improve the sealing performance between the window glass mechanism and the wooden sash frame, and cooperates with the first sealing strip and the second sealing strip to improve the heat insulation and heat preservation performance of the doors and windows. Moreover, through the arrangement of the groove and the convex block, the stability between the window glass mechanism and the wooden sash frame is improved. Description of the drawings
[0029] Figure 1 It is a schematic diagram of the overall structure of the present utility model.
[0030] Figure 2 It is a schematic diagram of the side sectional structure at the wooden sash frame of the present utility model.
[0031] Figure 3 For the present utility model Figure 2 The enlarged partial structure schematic diagram at A in the figure.
[0032] In the figure: 1, window frame mechanism; 11, wooden frame; 12, first aluminum frame; 13, second aluminum frame; 14, connection hole; 2, fixed glass; 3, window sash mechanism; 31, wooden sash frame; 32, aluminum sash frame; 33, first sealing strip; 34, second sealing strip; 35, sealing mechanism; 351, rubber gasket frame; 352, convex block; 353, fixing nail; 4, window glass mechanism; 41, sealed glass; 42, desiccant; 43, groove; 5, positioning mechanism; 51, nylon part; 52, positioning nail; 6, auxiliary strip; 7, sealing strip. Detailed implementation manners
[0033] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0034] The present utility model provides as Figures 1-3A kind of narrow-frame heat-insulating and heat-preserving aluminum-clad wood door and window shown in the figure includes: a window frame mechanism 1, and the window frame mechanism 1 includes: a wooden frame 11, a first aluminum frame 12, a second aluminum frame 13 and a plurality of connecting holes 14. The wooden frame 11 is fixedly arranged on the front of the first aluminum frame 12 through a positioning mechanism 5. The second aluminum frame 13 is clamped on the top of the first aluminum frame 12. A plurality of connecting holes 14 are equidistantly arranged in the middle and bottom of the second aluminum frame 13. Through the connecting holes 14, it is convenient for accumulated water to drain from the inner cavity of the second aluminum frame 13. A fixed glass 2 is fixedly inserted and connected to the bottom of the window frame mechanism 1, and the fixed glass 2 is fixed between the inner walls of the first aluminum frame 12 through sealant;
[0035] Furthermore, a window sash mechanism 3 is arranged at the top of the window frame mechanism 1, and a window glass mechanism 4 is arranged on the inner wall of the window sash mechanism 3. The window sash mechanism 3 includes: a wooden sash frame 31, an aluminum sash frame 32, a first sealing strip 33, a second sealing strip 34 and a sealing mechanism 35. The wooden sash frame 31 is rotatably inserted through one side of the inner wall of the wooden frame 11 through a plurality of hinges. The aluminum sash frame 32 is arranged on the back of the wooden sash frame 31. A plurality of positioning mechanisms 5 are arranged in rectangular arrays of different sizes on the aluminum sash frame 32 and the window frame mechanism 1. The second aluminum frame 13 is fixed to the back of the wooden frame 11 through the positioning mechanism 5, which is convenient for the second aluminum frame 13 to be arranged on the back of the door and window, improving the performance of resisting sunlight, etc.;
[0036] Specifically, the first sealing strip 33 and the second sealing strip 34 are respectively arranged on the front and back of the window glass mechanism 4. The first sealing strip 33 is hermetically clamped between the aluminum sash frame 32 and the window glass mechanism 4, and the second sealing strip 34 is hermetically clamped between the wooden sash frame 31 and the window glass mechanism 4;
[0037] Specifically, the sealing mechanism 35 is arranged in a rectangular frame on the outer wall of the window glass assembly 4, and the sealing mechanism 35 is installed on the inner wall of the wooden sash frame 31. The sealing mechanism 35 includes: a rubber pad frame 351, a plurality of convex blocks 352 and a plurality of fixing nails 353. The rubber pad frame 351 is arranged in a rectangular array on the inner wall of the wooden sash frame 31. The rubber pad frame 351 is made of high-temperature and wear-resistant rubber. The convex blocks 352 are in a rectangular convex structure. A plurality of convex blocks 352 are equidistantly arranged in a plurality of rectangular arrays on the inner wall of the rubber pad frame 351. A plurality of fixing nails 353 are equidistantly inserted through both side edges of the rubber pad frame 351. The plurality of fixing nails 353 are respectively fixedly inserted and connected to the inner wall and the back of the wooden sash frame 31, which is convenient for the fixing nails 353 to fix the position of the rubber pad frame 351, so that the rubber pad frame 351 can support the position of the window glass mechanism 4;
[0038] Further, the window glass mechanism 4 includes: a multi-layer sealed glass 41, a plurality of desiccants 42, and a plurality of grooves 43. The multi-layer sealed glass 41 is equidistantly distributed on the inner wall of the rubber gasket frame 351, and the outer wall of the sealed glass 41 fits against the inner wall of the rubber gasket frame 351, facilitating the sealing protection of the outer wall of the sealed glass 41. The desiccant 42 is in a rectangular strip structure and is fixedly arranged at the inner wall corners of two adjacent sealed glasses 41, facilitating the absorption of water vapor and the like between the adjacent sealed glasses 41 and preventing fogging between the glasses. The groove 43 is opened on the outer wall of the sealed glass 41, and the convex block 352 is movably clamped in the inner cavity of the groove 43, facilitating the stable position of the sealed glass 41;
[0039] Further, the positioning mechanism 5 includes: a nylon part 51 and a positioning nail 52. A plurality of nylon parts 51 are respectively clamped in the inner cavities of the first aluminum profile frame 12, the second aluminum profile frame 13, and the aluminum sash frame 32. The nylon part 51 is in a T-shaped structure, facilitating the nylon part 51 to be inserted into the inner cavities of the first aluminum profile frame 12, the second aluminum profile frame 13, and the aluminum sash frame 32. The positioning nail 52 is fixedly inserted through the middle of the nylon part 51, and a plurality of positioning nails 52 are respectively fixedly inserted through the back surfaces of the wooden profile frame 11 and the wooden sash frame 31. Through the positioning nails 52, it is convenient for the first aluminum profile frame 12, the second aluminum profile frame 13, and the aluminum sash frame 32 to be respectively stable on the back surfaces of the wooden profile frame 11 and the wooden sash frame 31;
[0040] Further, an auxiliary strip 6 is clamped on the top of the second aluminum profile frame 13, and one end of the auxiliary strip 6 fits against the outer wall of the aluminum sash frame 32, facilitating the improvement of the sealing performance between the window sash mechanism 3 and the window frame mechanism 1. A plurality of sealing strips 7 are arranged between the wooden profile frame 11 and the wooden sash frame 31. Through the sealing strips 7, it is convenient for the sealing between the wooden sash frame 31 and the wooden profile frame 11 and improves the heat insulation and heat preservation performance of the aluminum-clad wooden doors and windows.
[0041] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A narrow frame heat-insulating aluminum-clad wood door and window, comprising: A window frame mechanism (1), wherein a fixed glass (2) is fixedly interlaced and connected to the bottom of the window frame mechanism (1); The invention is characterized in that: a window sash mechanism (3) is arranged on the top of the window frame mechanism (1), and the window sash mechanism (3) comprises: A wooden sash frame (31) and an aluminum sash frame (32), wherein the aluminum sash frame (32) is arranged on the back of the wooden sash frame (31), and a plurality of positioning mechanisms (5) are arranged in a rectangular array of different sizes on the aluminum sash frame (32) and the window frame mechanism (1); A first sealing strip (33) and a second sealing strip (34), wherein the first sealing strip (33) and the second sealing strip (34) are respectively arranged on the front side and the back side of the window glass mechanism (4); A sealing mechanism (35), the sealing mechanism (35) is in the form of a rectangular frame and is arranged on the outer wall of the window glass mechanism (4), and the sealing mechanism (35) is installed on the inner wall of the wooden sash frame (31); The inner wall of the window sash mechanism (3) is provided with a window glass mechanism (4), and the window glass mechanism (4) comprises: Multiple layers of sealing glass (41), the multiple layers of sealing glass (41) are evenly distributed on the inner wall of the rubber pad frame (351); A plurality of desiccants (42), wherein the desiccants (42) are fixedly arranged at the inner wall corners of two adjacent sealing glasses (41); A plurality of grooves (43) are provided, wherein the grooves (43) are formed on the outer wall of the sealing glass (41), and the protrusions (352) are movably engaged with the inner cavities of the grooves (43).
2. A narrow frame heat-insulating aluminum-clad wood door and window according to claim 1, characterized in that: The window frame mechanism (1) comprises: A wooden frame (11) and a first aluminum frame (12), wherein the wooden frame (11) is fixedly arranged on the front side of the first aluminum frame (12) via a positioning mechanism (5); A second aluminum frame (13), the second aluminum frame (13) is clamped on the top of the first aluminum frame (12), and the second aluminum frame (13) is fixed to the back of the wooden frame (11) through a positioning mechanism (5); A plurality of connection holes (14) are provided at equal intervals in the middle and bottom of the second aluminum frame (13).
3. A narrow frame heat-insulating aluminum-clad wood door and window according to claim 2, characterized in that: The first sealing strip (33) is sealed and clamped between the aluminum sash frame (32) and the window glass mechanism (4), and the second sealing strip (34) is sealed and clamped between the wooden sash frame (31) and the window glass mechanism (4).
4. A narrow frame heat-insulating aluminum-clad wood door and window according to claim 2, characterized in that: The sealing mechanism (35) comprises: A rubber pad frame (351), wherein the rubber pad frame (351) is arranged in a rectangular array on the inner wall of the wooden fan frame (31); A plurality of protrusions (352), wherein the plurality of protrusions (352) are arranged in a plurality of rectangular arrays at equal intervals on the inner wall of the rubber pad frame (351); A plurality of fixing nails (353) are inserted into the two sides of the rubber pad frame (351) at equal intervals, and the plurality of fixing nails (353) are respectively fixedly inserted into and connected with the inner wall and the back side of the wooden sash frame (31).
5. The narrow-frame heat-insulating aluminum-clad wood door and window according to claim 2, characterized in that: The positioning mechanism (5) comprises: Nylon parts (51), wherein a plurality of the nylon parts (51) are respectively clamped in the inner cavities of the first aluminum frame (12), the second aluminum frame (13) and the aluminum fan frame (32); A positioning nail (52) is fixedly inserted and connected with the middle part of the nylon part (51), and a plurality of the positioning nails (52) are respectively fixedly inserted and connected with the back side of the wooden frame (11) and the back side of the wooden fan frame (31).
6. The narrow-frame heat-insulating aluminum-clad wood door and window according to claim 2, characterized in that: An auxiliary strip (6) is clamped on the top of the second aluminum frame (13), and a plurality of sealing strips (7) are arranged between the wooden frame (11) and the wooden fan frame (31).
Citation Information
Patent Citations
Narrow-frame heat-insulation and heat-preservation aluminum-clad wood door and window
CN219528889U