Novel outward opening system window

By introducing cross-shaped middle lifting, misaligned drainage holes and sealing strips into the outer opening system window, the drainage and sealing properties of traditional outer opening system windows are solved, efficient drainage and mosquito prevention effects are achieved, and the service life and comfort of the window are improved.

CN223305610UActive Publication Date: 2025-09-05HENAN KEYU WINDOWS CO LTD
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Patent Information

Application Number
CN202422734990.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-09-05
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

Traditional outdoor system windows cannot guarantee the drainage of the windows, and are prone to water accumulation, and there is a problem of rainwater entering the room. At the same time, they lack sealing and anti-mosquito effects, which affects the service life and indoor environment.

Method used

A new type of external opening system window was designed, including cross-type central lifting, glass components, sealant strips, drainage mechanisms and ventilation holes. The drainage function is improved through misaligned drainage holes and sealing mechanisms, and sealing properties are increased, and a yarn frame is installed on the window sash to prevent mosquitoes.

Benefits of technology

Effectively avoid rainwater entering the room, ensure smooth drainage, improve sealing effect, prevent mosquitoes from entering, extend service life and improve use comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel outward opening system window, and relates to the technical field of doors and windows. Comprising an outer frame, a cross-shaped mullion is fixedly installed between the inner walls of the outer frame, first glass assemblies are fixedly installed between the right side face and the upper surface of the cross-shaped mullion and the inner walls of the outer frame through fixing pressing blocks, and first sealing rubber strips are arranged between the front side face and the rear side face of each first glass assembly and the cross-shaped mullion and between the outer frame and the fixing pressing blocks; a first drainage mechanism is arranged at the position, close to the rear side, of the lower side wall of the cross-shaped mullion, and auxiliary frames are installed between the left side face and the lower surface of the cross-shaped mullion and the inner walls of the left side and the upper side of the outer frame through first locking bolts. Through the first drainage mechanism and the second drainage mechanism, the drainage function of the outward-opening system window is greatly improved, rainwater is effectively prevented from entering the window, smooth drainage is ensured, the sealing function of the outward-opening window sash, the auxiliary frame and the second glass assembly is added, the sealing effect is better, meanwhile, the anti-mosquito effect is achieved, and use is facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of doors and windows, in particular to a novel outward-opening system window. Background Art

[0002] Modern windows are composed of three parts: window frames, glass and movable components (hinges, handles, pulleys, etc.). The window frame is responsible for supporting the main structure of the window and can be made of wood, metal, ceramic or plastic. The transparent part is attached to the window frame and can be made of paper, cloth, silk or glass. The movable components are mainly made of metal, and may also be wrapped with insulating materials such as plastic in places where people can touch them.

[0003] In the existing technology, traditional outward-opening system windows cannot guarantee the drainage of the windows, and are prone to water accumulation, which causes the problem of rainwater entering the room, causing property damage and reducing the service life of the windows. In addition, the sealing and heat insulation of the outward-opening window sashes cannot be guaranteed, resulting in the indoor room being easily affected by the external environment. At the same time, it lacks the effect of preventing mosquitoes and is not conducive to use. Utility Model Content

[0004] The utility model provides a novel outward-opening system window to solve the problems in the background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a new type of outward-opening system window, comprising an outer frame, a cross-shaped center brace fixedly installed between the inner walls of the outer frame, a first glass assembly fixedly installed between the right side and upper surface of the cross-shaped center brace and the inner wall of the outer frame through a fixed pressure block, a first sealing strip is provided between the front and rear sides of the first glass assembly and the cross-shaped center brace, the outer frame and the fixed pressure block, a first drainage mechanism is provided on the lower side wall of the cross-shaped center brace near the rear side, and the left side and lower surface of the cross-shaped center brace are fixedly installed. A sub-frame is installed between the left side and upper inner wall of the outer frame by a first locking bolt, an outward-opening window sash is hingedly installed on the left inner wall of the sub-frame, a second glass assembly is fixedly installed between the inner walls around the outward-opening window sash by fixing buckles, a sealing mechanism is provided between the front and rear side surfaces of the second glass assembly and the outward-opening window sash, the outward-opening window sash is locked and fixed to the right inner wall of the sub-frame by a first lock buckle, a second drainage mechanism is provided on the outward-opening window sash, the sub-frame and the lower side wall of the outer frame, and a ventilation mechanism is provided on the upper side of the rear side walls of the outer frame and the sub-frame.

[0006] Furthermore, the first drainage mechanism includes a first drainage hole and a second drainage hole. The first drainage hole is provided on the upper side wall on the rear side of the cross-shaped center support transverse wall, and the second drainage hole is provided on the lower side wall of the cross-shaped center support transverse wall.

[0007] Furthermore, the sealing mechanism includes a second sealing strip and silicone sealant. The front and rear sides of the second glass assembly, the outward-opening window sash and the fixed buckle block are all provided with a second sealing strip, and silicone sealant is provided on the upper surface of the rear second sealing strip.

[0008] Furthermore, the second drainage mechanism includes a third drainage hole, a fourth drainage hole and a fifth drainage hole. The third drainage hole is provided at upper and lower positions on the rear side of the lower side wall of the outward-opening window sash, the fourth drainage hole is provided at upper and lower positions on the rear side of the lower side wall of the sub-frame, and the fifth drainage hole is provided at upper and lower positions on the rear side of the lower side wall of the outer frame. The third drainage hole, the fourth drainage hole and the fifth drainage hole are staggered front to back.

[0009] Furthermore, the ventilation mechanism includes a first ventilation hole and a second ventilation hole. The first ventilation hole is opened near the upper position on the rear side of the left side wall of the sub-frame, and the second ventilation hole is opened near the upper position on the rear side of the left side wall of the outer frame.

[0010] Furthermore, a decorative buckle tube is installed on the inner wall of the sub-frame near the front side through a second locking bolt, and a decorative buckle cover is snap-fitted on the inner wall of the decorative buckle tube.

[0011] Furthermore, a gauze frame is mounted on the inner walls around the sub-frame and the front side of the decorative buckle tube by snap-fitting, and a gauze net is mounted on the inner walls around the gauze frame near the front side through a gauze pressing block.

[0012] Furthermore, elastic sealing rings are provided on the outward-opening window sash and the sub-frame.

[0013] Compared with the prior art, the present invention provides a new type of outward opening system window with the following features:

[0014] Beneficial effects:

[0015] 1. This new outward-opening system window greatly improves the drainage function of the outward-opening system window by setting the first drainage mechanism and the second drainage mechanism, and the staggered setting avoids backflow and effectively prevents rainwater from entering. At the same time, the ventilation mechanism balances the air pressure to ensure smooth drainage and facilitate use.

[0016] 2. This new outward-opening system window increases the sealing function between the outward-opening window sash, the auxiliary frame and the second glass component by arranging an elastic sealing ring, a first sealing strip and a sealing mechanism, thereby achieving a better sealing effect.

[0017] 3. This new type of outward-opening system window increases the mosquito-proof effect by setting a screen mesh inside the screen frame, preventing mosquitoes from entering and facilitating use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a structural diagram of the utility model;

[0019] Figure 2 It is a left side sectional view of the present utility model;

[0020] Figure 3 It is a top sectional view of the utility model;

[0021] Figure 4 It is a right side sectional view of the sealing mechanism of the present invention.

[0022] In the figure: 1. outer frame; 2. cross-shaped center support; 3. fixed pressure block; 4. first glass component; 5. first sealing strip; 6. first drainage mechanism; 601. first drainage hole; 602. second drainage hole; 7. first locking bolt; 8. sub-frame; 9. outward-opening window sash; 10. fixed buckle block; 11. second glass component; 12. sealing mechanism; 121. second sealing strip; 122. silicone sealant; 13. first locking buckle; 14. second drainage mechanism; 141. third drainage hole; 142. fourth drainage hole; 143. fifth drainage hole; 15. ventilation mechanism; 151. first ventilation hole; 152. second ventilation hole; 16. second locking bolt; 17. decorative buckle tube; 18. buckle cover; 19. screen frame; 20. second locking buckle; 21. screen pressure block; 22. screen; 23. elastic sealing ring. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] See also Figures 1-4The utility model discloses a new type of outward-opening system window, including an outer frame 1, a cross-shaped center brace 2 is fixedly installed between the inner walls of the outer frame 1, a first glass assembly 4 is fixedly installed between the right side and upper surface of the cross-shaped center brace 2 and the inner wall of the outer frame 1 through a fixed pressure block 3, and a first sealing strip 5 is provided between the front and rear sides of the first glass assembly 4 and the cross-shaped center brace 2 and the outer frame 1 and the fixed pressure block 3. A first drainage mechanism 6 is provided near the rear side of the lower side wall of the cross-shaped center brace 2, and a sub-frame 8 is installed between the left side and lower surface of the cross-shaped center brace 2 and the left and upper inner walls of the outer frame 1 through a first locking bolt 7. The outer frame 1 is pre-designed with an L groove and the sub-frame 8 is spliced ​​with an inverted L groove to ensure splicing flatness and splicing strength, and at the same time, better protect the notch. Increase the supporting force of the hardware in the groove, and it will not deform under long-term stress. The insulation strip of the sub-frame 8 is 4.5mm higher than the plane to construct a new watertight area, so that no water accumulation area will be formed in the central part of the sub-frame 8, which greatly enhances the watertight performance of the entire window. An outward-opening window sash 9 is hingedly installed on the left inner wall of the sub-frame 8. A second glass assembly 11 is fixedly installed between the inner walls around the outward-opening window sash 9 by fixing buckles 10. A sealing mechanism 12 is provided between the front and rear sides of the second glass assembly 11 and the outward-opening window sash 9. The outward-opening window sash 9 is locked and fixed to the right inner wall of the sub-frame 8 by a first lock buckle 13. A second drainage mechanism 14 is provided on the lower side wall of the outward-opening window sash 9, the sub-frame 8 and the outer frame 1, and a ventilation mechanism 15 is provided on the upper side of the rear side wall of the outer frame 1 and the sub-frame 8.

[0025] Specifically, the first drainage mechanism 6 includes a first drainage hole 601 and a second drainage hole 602. The first drainage hole 601 is opened on the upper side wall of the rear side of the cross-shaped center support 2 horizontal wall, and the second drainage hole 602 is opened on the lower side wall of the cross-shaped center support 2 horizontal wall.

[0026] In this embodiment, when rainwater enters the upper first glass assembly 4, it flows into the second drainage hole 602 through the first drainage hole 601, and then flows out of the cross-shaped center support 2 through the second drainage hole 602. The first drainage hole 601 and the second drainage hole 602 are staggered front and back.

[0027] Specifically, the sealing mechanism 12 includes a second sealing strip 121 and a silicone sealant 122. The front and rear sides of the second glass assembly 11, the outward-opening window sash 9 and the fixed buckle block 10 are all provided with a second sealing strip 121, and the upper surface of the rear second sealing strip 121 is provided with silicone sealant 122.

[0028] In this embodiment, the second sealing strip 121 and the silicone sealant 122h provide a better sealing effect between the outward-opening window sash 9 and the second glass assembly 11 and have a better UV protection effect.

[0029] Specifically, the second drainage mechanism 14 includes a third drainage hole 141, a fourth drainage hole 142 and a fifth drainage hole 143. The third drainage hole 141 is provided at upper and lower positions on the rear side of the lower side wall of the outward-opening window sash 9, the fourth drainage hole 142 is provided at upper and lower positions on the rear side of the lower side wall of the sub-frame 8, and the fifth drainage hole 143 is provided at upper and lower positions on the rear side of the lower side wall of the outer frame 1. The third drainage hole 141, the fourth drainage hole 142 and the fifth drainage hole 143 are staggered front to back.

[0030] In this embodiment, rainwater flowing into the second glass assembly 11 enters the watertight area constructed by the insulation strip of the sub-frame 8 being 4.5 mm above the plane, and then flows into the outward-opening window sash 9 through the third drainage hole 141 on the upper side, flows into the sub-frame 8 through the third drainage hole 141 on the lower side, flows into the outer frame 1 through the third drainage hole 141 on the lower side of the sub-frame 8, and is discharged through the fifth drainage hole 143 on the lower side of the outer frame 1. The vertical double drainage hole structure drains water downward, utilizing the gravity of the water itself and the height difference to achieve more efficient drainage.

[0031] Specifically, the ventilation mechanism 15 includes a first ventilation hole 151 and a second ventilation hole 152. The first ventilation hole 151 is opened near the upper position on the rear side of the left side wall of the sub-frame 8, and the second ventilation hole 152 is opened near the upper position on the rear side of the left side wall of the outer frame 1.

[0032] In this embodiment, the first vent hole 151 and the second vent hole 152 allow external air to flow into the outer frame 1, the sub-frame 8 and the outward-opening window sash 9 to balance the air pressure so that rainwater can be discharged smoothly through the second drainage mechanism 14.

[0033] Specifically, a decorative buckle tube 17 is installed near the front side of the inner wall of the sub-frame 8 through a second locking bolt 16, and a decorative buckle cover 18 is snap-fitted onto the inner wall of the decorative buckle tube 17.

[0034] In this embodiment, the second locking bolt 16 is used to install the decorative buckle tube 17 , and the decorative buckle cover 18 is used to install the decorative buckle tube 17 , thereby increasing the beauty of the interior of the sub-frame 8 .

[0035] Specifically, a gauze frame 19 is hingedly installed on the left inner wall of the sub-frame 8, and the right side wall of the gauze frame 19 is locked and fixed to the cross-shaped center support 2 through a second lock buckle 20, and a gauze mesh 22 is installed on the inner walls of the gauze frame 19 near the front side through a gauze pressure block 21.

[0036] In this embodiment, a gauze net 22 is installed in the gauze frame 19 through a gauze pressure block 21 to increase the mosquito-proof effect. The gauze frame 19 is easily opened through the second lock buckle 20, thereby achieving the effect of facilitating the opening and closing of the first lock buckle 13 on the outward-opening window sash 9.

[0037] Specifically, elastic sealing rings 23 are provided on the outward-opening window sash 9 and the sub-frame 8 .

[0038] In this embodiment, the elastic sealing ring 23 provides a better sealing effect between the outward-opening window sash 9 and the sub-frame 8 .

[0039] When in use, rainwater flows into the second drainage hole 602 through the first drainage hole 601 in the first drainage mechanism 6, and then is discharged from the cross-shaped center support 2 and the second glass assembly 11 through the second drainage hole 602. It enters the watertight area constructed by the insulation strip of the sub-frame 8 being 4.5 mm higher than the plane, and then flows into the outward-opening window sash 9 through the upper third drainage hole 141 in the second drainage mechanism 14, flows into the sub-frame 8 through the lower third drainage hole 141, flows into the outer frame 1 through the third drainage hole 141 on the lower side of the sub-frame 8, and is discharged through the fifth drainage hole 143 on the lower side of the outer frame 1. At the same time, the vertical double drainage hole structure is used to drain water downward, utilizing the water's own gravity and the height difference. , achieving more efficient drainage, greatly improving the drainage function of the outward-opening system window, and the staggered setting avoids backflow, effectively preventing rainwater from entering. At the same time, the first air vent 151 and the second air vent 152 in the ventilation mechanism 15 allow external air to flow into the outer frame 1, the sub-frame 8 and the outward-opening window sash 9, balancing the air pressure so that rainwater can be discharged smoothly, ensuring smooth drainage and facilitating use. The sealing function of the outward-opening window sash 9 and the sub-frame 8 and the second glass assembly 11 is increased by the elastic sealing ring 23, the first sealing strip 5 and the sealing mechanism 12, and the sealing effect is better. The mosquito-proof effect is increased by the gauze 22 inside the gauze frame 19 to prevent mosquitoes from entering, which is convenient for use.

[0040] In summary, the new outward-opening system window greatly improves the drainage function of the outward-opening system window through the first drainage mechanism 6 and the second drainage mechanism 14, effectively preventing rainwater from entering while ensuring smooth drainage, increasing the sealing function of the outward-opening window sash 9 and the sub-frame 8 and the second glass assembly 11, and the sealing effect is better. At the same time, it has an anti-mosquito effect and is easy to use.

[0041] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A novel outward-opening system window, comprising an outer frame (1), characterized in that: A cross-shaped center brace (2) is fixedly installed between the inner walls of the outer frame (1), a first glass assembly (4) is fixedly installed between the right side and upper surface of the cross-shaped center brace (2) and the inner wall of the outer frame (1) via a fixed pressure block (3), a first sealing strip (5) is provided between the front and rear sides of the first glass assembly (4) and the cross-shaped center brace (2), the outer frame (1) and the fixed pressure block (3), a first drainage mechanism (6) is provided near the rear side of the lower side wall of the cross-shaped center brace (2), a sub-frame (1) is installed between the left side and lower surface of the cross-shaped center brace (2) and the left and upper inner walls of the outer frame (1) via a first locking bolt (7), 8), an outward-opening window sash (9) is hingedly mounted on the left inner wall of the sub-frame (8), a second glass assembly (11) is fixedly mounted between the inner walls around the outward-opening window sash (9) via a fixing buckle block (10), a sealing mechanism (12) is provided between the front and rear sides of the second glass assembly (11) and the outward-opening window sash (9), the outward-opening window sash (9) is locked and fixed to the right inner wall of the sub-frame (8) via a first locking buckle (13), a second drainage mechanism (14) is provided on the lower side walls of the outward-opening window sash (9), the sub-frame (8) and the outer frame (1), and a ventilation mechanism (15) is provided on the upper side of the rear side walls of the outer frame (1) and the sub-frame (8).

2. The novel outward-opening system window according to claim 1, characterized in that: The first drainage mechanism (6) comprises a first drainage hole (601) and a second drainage hole (602); the first drainage hole (601) is provided on the upper side wall of the rear side of the transverse wall of the cross-shaped center support (2); and the second drainage hole (602) is provided on the lower side wall of the transverse wall of the cross-shaped center support (2).

3. The novel outward-opening system window according to claim 1, characterized in that: The sealing mechanism (12) comprises a second sealing strip (121) and a silicone sealant (122); the front and rear side surfaces of the second glass assembly (11), the outward-opening window sash (9) and the fixed buckle block (10) are all provided with the second sealing strip (121), and the upper surface of the rear second sealing strip (121) is provided with the silicone sealant (122).

4. The novel outward-opening system window according to claim 1 is characterized in that: The second drainage mechanism (14) comprises a third drainage hole (141), a fourth drainage hole (142) and a fifth drainage hole (143); the third drainage hole (141) is provided at upper and lower positions on the rear side of the lower side wall of the outward-opening window sash (9); the fourth drainage hole (142) is provided at upper and lower positions on the rear side of the lower side wall of the auxiliary frame (8); the fifth drainage hole (143) is provided at upper and lower positions on the rear side of the lower side wall of the outer frame (1); the third drainage hole (141), the fourth drainage hole (142) and the fifth drainage hole (143) are staggered in front and back.

5. The novel outward-opening system window according to claim 1 is characterized in that: The ventilation mechanism (15) comprises a first ventilation hole (151) and a second ventilation hole (152); the first ventilation hole (151) is provided on the rear side of the left side wall of the sub-frame (8) near the upper position; and the second ventilation hole (152) is provided on the rear side of the left side wall of the outer frame (1) near the upper position.

6. The novel outward-opening system window according to claim 1 is characterized in that: A decorative buckle tube (17) is installed on the inner wall of the auxiliary frame (8) near the front side through a second locking bolt (16), and a decorative buckle cover (18) is buckled and installed on the inner wall of the decorative buckle tube (17).

7. The novel outward-opening system window according to claim 1 is characterized in that: A yarn frame (19) is hingedly mounted on the left inner wall of the sub-frame (8), and the right side wall of the yarn frame (19) is locked and fixed to the cross-shaped center support (2) through a second lock buckle (20), and a yarn net (22) is mounted on the inner walls of the yarn frame (19) near the front side through a yarn pressing block (21).

8. The novel outward-opening system window according to claim 1 is characterized in that: The outward-opening window sash (9) and the auxiliary frame (8) are both provided with elastic sealing rings (23).