An assembled energy-saving door and window installation sealing component
Through the combined design of sliding structure, sealing structure and limiting structure, the poor sealing and cleaning problems of prefabricated energy-saving doors and windows are solved, the insulation performance and aesthetics are improved, and the smooth movement and stable sealing of the window sash are achieved.
Patent Information
- Application Number
- CN202310568950.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-19
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2043-05-19
AI Technical Summary
In sliding installation, traditional prefabricated energy-saving doors and windows have problems such as poor sealing, waste chip accumulation and aging of bonding areas affecting sealing, which affects thermal insulation performance and aesthetics.
The combination design of sliding structure, sealing structure and limiting structure is adopted, including wedge blocks, guide rods, sealing rings, limiting frames and other components to ensure the smooth movement and stable sealing of the window sash, and enhance the sealing and aesthetics through vacuum bonding of the sealing ring and decorative panels.
It improves the sealing and insulation performance between the window sash and the window frame, facilitates cleaning, extends service life and improves aesthetics.
Smart Images

Figure CN116398015B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of door and window installation sealing components, and specifically relates to an assembled energy-saving door and window installation sealing component. Background Art
[0002] Energy-saving doors and windows mainly save energy by improving the heat insulation performance of materials and enhancing the airtight performance of doors and windows. If the airtightness is not good, when the air conditioner is turned on indoors, the cold air and warm air of the air conditioner will leak through the gaps. During the manufacturing process of energy-saving doors and windows, an assembled design is adopted, which is convenient for later installation.
[0003] However, in order to improve the space utilization efficiency, traditional assembled energy-saving doors and windows adopt a sliding installation method, enabling the window sash to slide between the aluminum alloy window frame. There are gaps between the window frame and the window sash, which affects the sealing performance. At the same time, waste chips are easily accumulated in the grooves of the aluminum alloy window frame, making it inconvenient to clean. In order to improve the heat insulation performance, two layers of glass are provided on the window sash, and the heat insulation effect is improved by evacuating the air. The glass and the window sash are connected by an adhesive method. After long-term use, the adhesive joint will age, affecting the airtightness. Summary of the Invention
[0004] In view of the problems in the prior art, the present invention provides an assembled energy-saving door and window installation sealing component.
[0005] The technical solution adopted by the present invention to solve its technical problems is: an assembled energy-saving door and window installation sealing component, including a window frame structure. The window frame structure includes a window frame, and a sliding structure for guiding the inner window structure is provided on the window frame. A sealing structure for sealing is provided inside the inner window structure, and a limiting structure for limiting is provided on the inner window structure.
[0006] The sliding structure includes four wedge-shaped blocks. Four wedge-shaped blocks are provided on the window frame, and the four wedge-shaped blocks are arranged in pairs on both sides of the window frame. Two second guide rods are fixed on each wedge-shaped block, and the corresponding two second guide rods are slidably arranged at both ends of the first guide rod. A sleeve is fixed on the inner window structure, and the first guide rod is slidably arranged on the sleeve.
[0007] Specifically, the second guide rod penetrates through the second spring, and one end of the second spring abuts against the first guide rod.
[0008] Specifically, the other ends of the four second springs at the front side abut against the window frame, and the other ends of the four second springs at the rear side abut against the two wedge-shaped blocks at the front side.
[0009] Specifically, the window frame structure further includes a filling groove. A filling groove is provided outside the window frame, and a groove is provided on the back surface of the window frame.
[0010] Specifically, the inner window structure includes two window sashes, the sleeve is fixed to the window sash, a sealing strip is provided in front of the window sash, and a handle is fixed on the front window sash.
[0011] Specifically, the side corners of the window sash are beveled, a wear-resistant coating is provided at the corner of the window sash, the wear-resistant coating can abut against the wedge block, and the slopes of the two front wedge blocks are smaller than those of the two rear wedge blocks.
[0012] Specifically, the sealing structure includes a sealing ring. A sealing ring is provided inside the window sash. The cross-section of the sealing ring is W-shaped, and two pieces of glass are clamped in the sealing ring.
[0013] Specifically, a pressing plate is slidably provided on the window sash. The pressing plate abuts against the sealing ring, and the pressing plate is fixed to the window sash by screws.
[0014] Specifically, the sealing structure further includes a decorative panel, and a decorative panel is fixed to the back of the window sash.
[0015] Specifically, the limiting structure includes a mounting frame. A mounting frame is fixed on one of the front window sashes. A clamping block is slidably provided on the mounting frame. The clamping block is engaged with a hole in the rear window sash. A first spring abuts between the clamping block and the mounting frame. A ball is provided on the clamping block. A driving groove is provided on the right side of the clamping block. A button is slidably provided on the mounting frame, and the button abuts against the driving groove.
[0016] The beneficial effects of the present invention are:
[0017] (1) For the assembled energy-saving door and window installation and sealing assembly of the present invention, a sealing structure for sealing is provided inside the inner window structure. The setting of the sealing structure makes the sealing performance of the inner window structure better and improves the heat insulation performance. That is, two pieces of glass are clamped in the sealing ring, and then the sealing ring and the glass are bonded with glue. The space between the two pieces of glass is evacuated to maintain a vacuum between the two pieces of glass, thereby improving the heat insulation effect. Then, the pressing plate is fixed on the window sash by screws. The pressing plate cooperates with the window sash to squeeze the sealing ring to prevent the glue between the sealing ring and the glass from coming off and affecting the sealing performance, and the service life is improved. Then, a decorative panel is installed on the back of the window sash, thereby improving the overall aesthetics.
[0018] (2) An installation and sealing component for an assembled energy-saving door and window according to the present invention. A sliding structure for guiding the inner window structure is provided on the window frame. The sliding structure makes the movement of the inner window structure more convenient, improves the sealing performance between the inner window structure and the window frame, and at the same time makes it more convenient to clean the waste chips on the window frame. That is, four wedge blocks are correspondingly installed on the window frame, and the slopes of the two front wedge blocks are smaller than those of the two rear wedge blocks. Two sleeves are installed on the upper and lower parts of the window sash, and the first guide rod passes through the sleeve and is connected to the second guide rod. When closing the window sash, the front window sash is pushed to the left and the rear window sash is pushed to the right. The sleeve slides with the first guide rod, so that the movement of the window sash is smoother. At the same time, it avoids the accumulation of dust and waste chips in the groove of the window frame, which is convenient for cleaning the window frame. When the wear-resistant coating on the window sash contacts the wedge block, while the sleeve slides with the first guide rod, the first guide rod slides with the second guide rod, compressing the second spring, making the two window sashes contact each other, and making the sealing strip on the window sash contact the window frame, thereby improving the sealing performance between the window sash and the window frame.
[0019] (3) An installation and sealing component for an assembled energy-saving door and window according to the present invention. A limiting structure for limiting is provided on the inner window structure. The limiting structure makes the inner window structure more stable after movement. That is, when the two window sashes contact each other, at this time, the latch is exactly corresponding to the hole on the rear window sash. The first spring extends to drive the latch to slide with the installation frame, so that the latch is engaged with the hole, making the two window sashes unable to move. When it is necessary to slide the window sash, press the button. The button slides in the driving groove, driving the latch to disengage from the hole, compressing the first spring. When the window sash slides, the ball contacts the glass, which will not affect the movement of the glass and the window sash, making the operation more flexible. At the same time, when installing the window frame, the setting of the filling groove increases the filling amount of the sealant, improving the sealing performance between the window frame and the wall. Description of the Drawings
[0020] The present invention will be further described below with reference to the drawings and embodiments.
[0021] Figure 1 It is a schematic diagram of the overall structure of a preferred embodiment of an installation and sealing component for an assembled energy-saving door and window provided by the present invention;
[0022] Figure 2 It is Figure 1 The enlarged schematic diagram of the structure of part A shown in;
[0023] Figure 3 It is Figure 1 The enlarged schematic diagram of the structure of part B shown in;
[0024] Figure 4 It is a schematic diagram of the connection structure between the window frame and the sliding structure of the present invention;
[0025] Figure 5For Figure 4 The enlarged schematic view of the C part structure shown in the figure;
[0026] Figure 6 The cross-sectional view of the limit structure of the present invention.
[0027] In the figure: 1, window frame structure; 101, filling groove; 102, window frame; 103, groove; 2, inner window structure; 201, glass; 202, window sash; 203, handle; 204, sealing strip; 205, wear-resistant coating; 3, limit structure; 301, mounting frame; 302, button; 303, driving groove; 304, first spring; 305, clamping block; 306, ball; 4, sliding structure; 401, sleeve; 402, first guide rod; 403, second guide rod; 404, second spring; 405, wedge block; 5, sealing structure; 501, sealing ring; 502, decorative plate; 503, screw; 504, pressing plate. Specific embodiments
[0028] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.
[0029] As Figures 1-6 shown, an assembled energy-saving door and window installation sealing component of the present invention includes a window frame structure 1, the window frame structure 1 includes a window frame 102, a sliding structure 4 for guiding the inner window structure 2 is provided on the window frame 102, a sealing structure 5 for sealing is provided inside the inner window structure 2, and a limit structure 3 for limiting is provided on the inner window structure 2;
[0030] The sliding structure 4 includes four wedge blocks 405, four wedge blocks 405 are provided on the window frame 102, the four wedge blocks 405 are arranged in pairs on both sides of the window frame 102, two second guide rods 403 are fixed on each wedge block 405, the corresponding two second guide rods 403 are slidably arranged at both ends of the first guide rod 402, a sleeve 401 is fixed on the inner window structure 2, the first guide rod 402 is slidably arranged on the sleeve 401, the second guide rod 403 penetrates through the second spring 404, one end of the second spring 404 abuts against the first guide rod 402, the other ends of the four second springs 404 at the front side abut against the window frame 102, the other ends of the four second springs 404 at the rear side abut against the two wedge blocks 405 at the front side, and the slopes of the two wedge blocks 405 at the front side are smaller than the slopes of the two wedge blocks 405 at the rear side;
[0031] Then, the four wedge blocks 405 are correspondingly installed on the window frame 102, such that the slopes of the two front-side wedge blocks 405 are less than those of the two rear-side wedge blocks 405. Two sleeves 401 are installed above and below the window sash 202, such that the first guide rod 402 passes through the sleeve 401 and is connected to the second guide rod 403.
[0032] Specifically, the window frame structure 1 further includes a filling groove 101. The filling groove 101 is provided outside the window frame 102, and a groove 103 is provided on the back surface of the window frame 102. When installing the window frame 102, the provision of the filling groove 101 increases the filling amount of the sealant and improves the sealing performance between the window frame 102 and the wall.
[0033] Specifically, the inner window structure 2 includes two window sashes 202. The sleeve 401 is fixed to the window sash 202. A sealing strip 204 is provided in front of the window sash 202. A handle 203 is fixed on the front-side window sash 202. The side corners of the window sash 202 are beveled. A wear-resistant coating 205 is provided at the corner of the window sash 202, and the wear-resistant coating 205 can abut against the wedge block 405.
[0034] When closing the window sash 202, the front-side window sash 202 is pushed leftward, and the rear-side window sash 202 is pushed rightward. The sleeve 401 slides relative to the first guide rod 402, thereby making the movement of the window sash 202 smoother. At the same time, it avoids the accumulation of dust and debris in the groove 103 of the window frame 102, facilitating the cleaning of the window frame 102. When the wear-resistant coating 205 on the window sash 202 abuts against the wedge block 405, while the sleeve 401 slides relative to the first guide rod 402, the first guide rod 402 also slides relative to the second guide rod 403, compressing the second spring 404, causing the two window sashes 202 to abut against each other, and making the sealing strip 204 on the window sash 202 abut against the window frame 102, thereby improving the sealing performance between the window sash 202 and the window frame 102.
[0035] Specifically, the sealing structure 5 includes a sealing ring 501. The sealing ring 501 is provided inside the window sash 202. The cross-section of the sealing ring 501 is in a W shape. Two pieces of glass 201 are snap-fitted in the sealing ring 501. A pressing plate 504 is slidably provided on the window sash 202, and the pressing plate 504 abuts against the sealing ring 501. The pressing plate 504 is fixed to the window sash 202 by screws 503. The sealing structure 5 further includes a decorative plate 502, and the decorative plate 502 is fixed to the back surface of the window sash 202.
[0036] Clamp two pieces of glass 201 in the sealing ring 501, then bond the sealing ring 501 and the glass 201 with glue, evacuate the space between the two pieces of glass 201, and maintain the vacuum between the two pieces of glass 201 to improve the heat insulation effect. Then fix the pressing plate 504 on the window sash 202 with screws 503. The pressing plate 504 cooperates with the window sash 202 to squeeze the sealing ring 501, preventing the glue between the sealing ring 501 and the glass 201 from coming off and affecting the sealing performance, thus increasing the service life. Then install the decorative plate 502 on the back of the window sash 202 to improve the overall aesthetics.
[0037] Specifically, the limiting structure 3 includes a mounting frame 301. A mounting frame 301 is fixed on one of the front window sashes 202. A clamping block 305 is slidably arranged on the mounting frame 301. The clamping block 305 is engaged with a hole in the rear window sash 202. A first spring 304 is abutted between the clamping block 305 and the mounting frame 301. A ball 306 is arranged on the clamping block 305. A driving groove 303 is arranged on the right side of the clamping block 305. A button 302 is slidably arranged on the mounting frame 301. The button 302 abuts against the driving groove 303.
[0038] When the two window sashes 202 are in contact with each other, at this time the clamping block 305 is exactly aligned with the hole in the rear window sash 202. The first spring 304 extends to drive the clamping block 305 to slide relative to the mounting frame 301, so that the clamping block 305 is engaged with the hole, making it impossible for the two window sashes 202 to move. When it is necessary to slide the window sash 202, press the button 302. The button 302 slides in the driving groove 303, driving the clamping block 305 to disengage from the hole, compressing the first spring 304. When the window sash 202 slides, the ball 306 contacts the glass 201, which will not affect the movement of the glass 201 and the window sash 202, making the operation more flexible.
[0039] When the present invention is in use, first clamp two pieces of glass 201 in the sealing ring 501, then bond the sealing ring 501 and the glass 201 with glue, evacuate the space between the two pieces of glass 201, and maintain the vacuum between the two pieces of glass 201 to improve the heat insulation effect. Then fix the pressing plate 504 on the window sash 202 with screws 503. The pressing plate 504 cooperates with the window sash 202 to squeeze the sealing ring 501, preventing the glue between the sealing ring 501 and the glass 201 from coming off and affecting the sealing performance, thus increasing the service life. Then install the decorative plate 502 on the back of the window sash 202 to improve the overall aesthetics.
[0040] Then, the four wedge blocks 405 are correspondingly installed on the window frame 102, such that the slopes of the two front wedge blocks 405 are less than those of the two rear wedge blocks 405. Two sleeves 401 are installed above and below the window sash 202, such that the first guide rod 402 passes through the sleeve 401 and is connected to the second guide rod 403. When closing the window sash 202, the front window sash 202 is pushed to the left, and the rear window sash 202 is pushed to the right. The sleeve 401 slides relative to the first guide rod 402, thereby making the movement of the window sash 202 smoother. At the same time, it avoids the accumulation of dust and debris in the groove 103 of the window frame 102, facilitating the cleaning of the window frame 102. When the wear-resistant coating 205 on the window sash 202 abuts against the wedge block 405, while the sleeve 401 slides relative to the first guide rod 402, the first guide rod 402 slides relative to the second guide rod 403, compressing the second spring 404, causing the two window sashes 202 to abut against each other, and causing the sealing strip 204 on the window sash 202 to abut against the window frame 102, thereby improving the sealing performance between the window sash 202 and the window frame 102;
[0041] When the two window sashes 202 abut against each other, at this time, the latch 305 just corresponds to the hole on the rear window sash 202. The first spring 304 extends to drive the latch 305 to slide relative to the mounting frame 301, causing the latch 305 to engage with the hole, preventing the two window sashes 202 from moving. When it is necessary to slide the window sash 202, press the button 302. The button 302 slides in the driving groove 303, driving the latch 305 to disengage from the hole, compressing the first spring 304. When the window sash 202 slides, the ball 306 contacts the glass 201, which will not affect the movement of the glass 201 and the window sash 202, making the operation more flexible. At the same time, when installing the window frame 102, the provision of the filling groove 101 increases the filling amount of the sealant, improving the sealing performance between the window frame 102 and the wall.
[0042] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.
[0043] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An assembled energy-saving door and window installation sealing component, characterized in that, It includes a window frame structure (1), the window frame structure (1) includes a window frame (102), a sliding structure (4) for guiding the inner window structure (2) is provided on the window frame (102), a sealing structure (5) for sealing is provided inside the inner window structure (2), and a limiting structure (3) for limiting is provided on the inner window structure (2); The sliding structure (4) includes four wedge blocks (405), four wedge blocks (405) are provided on the window frame (102), the four wedge blocks (405) are arranged in pairs on both sides of the window frame (102), two second guide rods (403) are fixed on each wedge block (405), and the corresponding two second guide rods (403) are slidably arranged at both ends of the first guide rod (402), a sleeve (401) is fixed on the inner window structure (2), and the first guide rod (402) is slidably arranged on the sleeve (401); The inner window structure (2) includes two window sashes (202), the sleeve (401) is fixed on the window sash (202), a sealing strip (204) is provided in front of the window sash (202), and a handle (203) is fixed on the front window sash (202); The sealing structure (5) includes a sealing ring (501), the sealing ring (501) is provided inside the window sash (202), the cross section of the sealing ring (501) is W-shaped, and two pieces of glass (201) are clamped in the sealing ring (501); A pressing plate (504) is slidably arranged on the window sash (202), the pressing plate (504) abuts against the sealing ring (501), and the pressing plate (504) is fixed on the window sash (202) by screws (503); The sealing structure (5) further includes a decorative plate (502), and the decorative plate (502) is fixed on the back of the window sash (202); The limiting structure (3) includes a mounting frame (301), a mounting frame (301) is fixed on one of the front window sashes (202), a clamping block (305) is slidably arranged on the mounting frame (301), the clamping block (305) is clamped with a hole in the rear window sash (202), a first spring (304) abuts between the clamping block (305) and the mounting frame (301), a ball (306) is provided on the clamping block (305), a driving groove (303) is provided on the right side of the clamping block (305), and a button (302) is slidably arranged on the mounting frame (301), and the button (302) abuts against the driving groove (303); The second guide rod (403) penetrates through the second spring (404), and one end of the second spring (404) abuts against the first guide rod (402); The other ends of the four second springs (404) on the front side abut against the window frame (102), and the other ends of the four second springs (404) on the rear side abut against the two wedge-shaped blocks (405) on the front side. The slope of the two wedge-shaped blocks (405) on the front side is smaller than that of the two wedge-shaped blocks (405) on the rear side. The four wedge-shaped blocks (405) are correspondingly installed on the window frame (102) such that the slope of the two wedge-shaped blocks (405) on the front side is smaller than that of the two wedge-shaped blocks (405) on the rear side. Two sleeves (401) are installed above and below the window sash (202) such that the first guide rod (402) passes through the sleeve (401) and is connected to the second guide rod (403).
2. The assembled energy-saving door and window installation sealing component according to claim 1, wherein: The window frame structure (1) further includes a filling groove (101). The filling groove (101) is provided outside the window frame (102), and a groove (103) is provided on the back surface of the window frame (102).
3. The installation and sealing assembly of a prefabricated energy-saving door and window according to claim 1, characterized in that: The side corners of the window sash (202) are beveled. A wear-resistant coating (205) is provided at the corner of the window sash (202). The wear-resistant coating (205) can abut against the wedge-shaped block (405). When closing the window sash (202), the front window sash (202) is pushed to the left, and the rear window sash (202) is pushed to the right. The sleeve (401) slides relative to the first guide rod (402), thereby making the movement of the window sash (202) smoother. At the same time, it avoids the accumulation of dust and debris in the groove (103) of the window frame (102), facilitating the cleaning of the window frame (102). When the wear-resistant coating (205) on the window sash (202) abuts against the wedge-shaped block (405), while the sleeve (401) slides relative to the first guide rod (402), the first guide rod (402) also slides relative to the second guide rod (403), compressing the second spring (404), causing the two window sashes (202) to abut against each other, and making the sealing strip (204) on the window sash (202) abut against the window frame (102).
Citation Information
Patent Citations
Intelligent electric sliding window
CN104790820A
Improved air sealing window
TW332605U