Windproof heat insulation system door and window
The extrusion mechanism promotes the movement of the inclined rod member and promotes the movement of the first frame member and the frame member, which solves the problem that aluminum alloy doors and windows cannot be sealed simultaneously when closed, and achieves better thermal insulation effect.
Patent Information
- Application Number
- CN202421965403.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-08-14
AI Technical Summary
Existing aluminum alloy doors and windows cannot be effectively sealed synchronously when closed, resulting in air convection and affecting the insulation effect.
The extrusion mechanism is used to drive the movement of the inclined rod member, push the first frame member and the frame member to move, so that they are inconsistent with the sealing conditions, and seal the door and window parts and the second frame member to avoid ventilation.
Effectively realize the sealing of doors and windows, avoid ventilation and heat loss, and improve thermal insulation performance.
Smart Images

Figure CN223281972U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of windproof and heat-insulating doors and windows, in particular to a windproof and heat-insulating system door and window. Background Art
[0002] Aluminum doors and windows consist of an aluminum frame and glass mounted within mounting grooves within the frame, secured in place by a glass press line. Before installing the glass press line, a sealing strip is sometimes placed between the glass and the aluminum frame to prevent air convection and improve insulation. However, this mounting structure still leaves a gap between the glass and the aluminum frame, which can easily lead to air convection and heat loss, resulting in poor insulation.
[0003] To address the above technical issues, a Chinese patent publication number CN214616147U discloses a windproof and heat-insulating aluminum profile door and window, comprising an aluminum alloy frame with a retaining bar detachably connected to one side of the frame. A mounting groove is formed between the retaining bar and the aluminum alloy frame, within which glass is mounted. A sealing ring is disposed within the mounting groove, with the side of the sealing ring proximate the glass being inclined, and the end of the sealing ring distal from the retaining bar being inclined toward the side proximate the glass. An elastic member is disposed within the mounting groove for pressing the sealing ring against the glass. This patent provides windproof and heat-insulating aluminum alloy doors and windows, improving the sealing and heat-insulating properties of the aluminum alloy doors and windows.
[0004] However, the above sealing mechanism cannot perform sealing operations synchronously when the doors and windows are closed, which affects the sealing effect, so it needs to be improved. Utility Model Content
[0005] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a windproof and heat-insulating system door and window.
[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0007] A windproof and heat-insulating door and window system comprises a door and window frame assembly, one side of the door and window frame assembly is hingedly connected to a door and window piece, a plug-in slot is formed on the side of the door and window frame assembly close to the door and window piece, a squeezing mechanism is provided in the plug-in slot, the squeezing mechanism is connected to the door and window piece, and an inclined rod is provided on the squeezing mechanism;
[0008] A second square frame member is fixed in the door and window frame assembly, a frame member is slidably sleeved in the second frame member, a first square frame member is fixed to both the front and rear ends of the frame member, a connecting member is fixed to the first frame member located on one side of the door and window member, the oblique rod member and the connecting member are rotatably connected, and a sealing condition is fixed to the side of the first frame member close to the door and window member.
[0009] Compared with the prior art, the present application can move the inclined rod member through the action of the extrusion mechanism to effectively push one of the first frame members to move, and can enable the first frame member to drive the frame member and the two first frame members to move, so as to effectively realize that the door and window member and the second frame member respectively conflict with the two sealing conditions, and can effectively perform sealing operations to avoid ventilation.
[0010] Preferably, the sealing condition on the first frame member on one side of the door and window member conflicts with the door and window member, and the other sealing condition conflicts with the second frame member.
[0011] Furthermore, by squeezing and deforming the sealing conditions, leakage and air leakage can be effectively avoided.
[0012] Preferably, the extrusion mechanism includes two lifting plates slidably mounted on the side wall at one end of the plug-in slot, and a pressure plate part is fixed to one side of the two lifting plates, and the pressure plate part is located in the plug-in slot, and a locking assembly is installed on the door and window part, and the locking assembly and the pressure plate part are in conflict with each other. A telescopic mechanism is provided on the pressure plate part, and the telescopic mechanism is in conflict with the side wall at one end of the plug-in slot. A roller part is rotatably sleeved on one end of the pressure plate part, and the roller part is in conflict with the oblique rod part. A through opening is opened on the side of the plug-in slot close to the door and window part, and the oblique rod part passes through the through opening, and the lower end of the oblique rod part is slidably mounted on the side wall in the plug-in slot.
[0013] Furthermore, the locking assembly can interfere with the pressure plate and push the pressure plate to move away from the door and window parts, so that the pressure plate can squeeze the roller part and the roller part squeezes the oblique rod part, so as to effectively control the movement of the first frame part and the second frame part.
[0014] Preferably, the telescopic mechanism includes a notch opened on the pressure plate, a moving block is slidably installed in the notch, a tension spring is fixed on the moving block, the tension spring and the lifting plate are fixedly connected, and a rocker arm is connected to the moving block and the side wall in the plug-in slot for rotation.
[0015] Furthermore, the position of the moving block can be controlled by the action of the tension spring member to adapt to the external force and facilitate the swinging of the rocker member. The swinging of the rocker member can control the lifting and lowering of the pressure plate member.
[0016] Preferably, the upper end of the roller member and the upper end of the pressure plate member are arranged flush with each other.
[0017] Furthermore, it can fully ensure that the door and window parts can stably lift and lower the pressure plate parts.
[0018] The beneficial effects of the utility model are:
[0019] 1. The extrusion mechanism can move the oblique rod to effectively push one of the first frame members to move, so that the first frame member can drive the frame member and the two first frame members to move, so as to effectively achieve the door and window member and the second frame member respectively conflicting with the two sealing conditions, and effectively perform the sealing operation to avoid the occurrence of ventilation;
[0020] 2. The locking assembly can contact the pressure plate and push the pressure plate to move away from the door and window member, so that the pressure plate can squeeze the roller member, and the roller member squeezes the oblique rod member, so as to effectively control the movement of the first frame member and the second frame member;
[0021] 3. The roller member can adapt to the oblique rod member so that the oblique rod member can effectively push the first square frame member and the frame member to move through the connecting member. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a front view of the utility model;
[0023] Figure 2 This is a structural diagram of the door and window frame assembly of the utility model;
[0024] Figure 3 This is a structural diagram of the pressure plate and roller components of the utility model;
[0025] Figure 4 This is a structural diagram of the second frame member, the frame member and the first frame member of the utility model;
[0026] In the figure: 1 door and window frame assembly, 2 door and window parts, 3 locking assembly, 4 first frame part, 5 plug-in slot, 6 through-hole, 7 pressure plate part, 8 lifting plate, 9 tension spring part, 10 rocker part, 11 roller part, 12 notch, 13 moving block, 14 sealing condition, 15 frame part, 16 second frame part, 17 diagonal rod part, 18 connecting part. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present invention will be described clearly and completely 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 present invention, rather than all the embodiments.
[0028] Reference Figure 1-4A windproof and heat-insulating system door and window includes a door and window frame assembly 1, and a door and window part 2 is hinged on one side of the door and window frame assembly 1. During actual production and preparation, the door and window frame assembly 1 can be installed on the door and window hole, which can effectively ensure the stability of the door and window frame assembly 1. At the same time, the door and window part 2 and the door and window frame assembly 1 are hinged, which is convenient for the door and window part 2 to rotate. A plug-in groove 5 is opened on the side of the door and window frame assembly 1 close to the door and window part 2, and an extrusion mechanism is provided in the plug-in groove 5. The extrusion mechanism is connected to the door and window part 2, and an inclined rod 17 is provided on the extrusion mechanism. The movement of the inclined rod 17 can be controlled by the extrusion mechanism, which is convenient for providing power for the extrusion sealing condition 14 to realize the sealing operation.
[0029] Reference Figure 1-4 The extrusion mechanism includes two lifting plates 8 slidably mounted on the side wall of one end of the plug-in slot 5. A pressure plate 7 is fixed to one side of the two lifting plates 8. The pressure plate 7 is located in the plug-in slot 5. A locking assembly 3 is installed on the door and window member 2. The locking assembly 3 and the pressure plate 7 are in conflict. A telescopic mechanism is provided on the pressure plate 7. The telescopic mechanism conflicts with the side wall of one end of the plug-in slot 5. A roller member 11 is rotatably sleeved on one end of the pressure plate 7. The upper end of the roller member 11 is flush with the upper end of the pressure plate 7. By setting it flush, it can adapt to the locking assembly 3. After extrusion, the roller member 11 and the oblique rod member 17 conflict with each other, and the action of the roller member 11 can fully enable the oblique rod member 17 to rotate. A through-hole 6 is provided on the side of the plug-in slot 5 close to the door and window member 2, and the oblique rod member 17 passes through the through-hole 6. The lower end of the oblique rod member 17 is slidably installed on the side wall in the plug-in slot 5. During actual production and preparation, the plug-in slot 5 is located on the side of the second frame member 16 close to the door and window member 2. At the same time, the plug-in slot 5 can fully adapt to the rotation of the oblique rod member 17, so as to effectively achieve the purpose of the oblique rod member 17 pushing the first frame member 4 to move.
[0030] Reference Figure 2-4 The telescopic mechanism includes a notch 12 provided on the pressure plate member 7, a moving block 13 is slidably installed in the notch 12, a tension spring member 9 is fixed on the moving block 13, the tension spring member 9 and the lifting plate 8 are fixedly connected, and the moving block 13 and the side wall in the plug-in slot 5 are connected to a rocker member 10 for rotation together. When the pressure plate member 7 is squeezed, the pressure plate member 7 can drive the moving block 13 to descend, so as to realize the rotation of the rocker member 10, so that the pressure plate member 7 can be stably lifted and lowered.
[0031] Reference Figure 2-4, a second frame member 16 is fixed in the door and window frame assembly 1, and the second frame member 16 and the door and window frame assembly 1 are sealed to avoid the occurrence of ventilation. A frame member 15 is slidably sleeved in the second frame member 16, which can make the frame member 15 move stably. The front and rear ends of the frame member 15 are fixed with a first frame member 4. A connecting member 18 is fixed on the first frame member 4 on one side of the door and window member 2. The oblique rod member 17 and the connecting member 18 are rotatably connected. The first frame member 4 is fixed with a sealing condition on the side close to the door and window member 2. 14. The sealing condition 14 on the first frame member 4 on one side of the door and window member 2 conflicts with the door and window member 2, and the other sealing condition 14 conflicts with the second frame member 16. When the pressure plate member 7 moves, the roller member 11 can squeeze the oblique rod member 17, so that the oblique rod member 17 can be pushed by the connecting member 18 to move in the direction close to the door and window member 2, so that the two sealing conditions 14 can conflict with the door and window member 2 and the second frame member 16 respectively, which can effectively realize the extrusion and deformation of the sealing condition 14 to effectively avoid the occurrence of drafts.
[0032] In the present invention, the locking assembly 3 can interfere with the pressure plate member 7 and push the pressure plate member 7 to move away from the door and window member 2, so that the pressure plate member 7 can squeeze the roller member 11 so that the roller member 11 squeezes the oblique rod member 17; the movement of the oblique rod member 17 can effectively push one of the first frame members 4 to move, so that the first frame member 4 can drive the frame member 15 and the two first frame members 4 to move, so as to effectively realize that the door and window member 2 and the second frame member 16 respectively interfere with the two sealing conditions 14, and can effectively perform sealing operations to avoid ventilation.
[0033] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A windproof and heat-insulating door and window system, comprising a door and window frame assembly (1), characterized in that: One side of the door and window frame assembly (1) is hingedly connected to a door and window member (2); a plug-in slot (5) is provided on a side of the door and window frame assembly (1) close to the door and window member (2); a squeezing mechanism is provided in the plug-in slot (5); the squeezing mechanism is connected to the door and window member (2); and an inclined rod member (17) is provided on the squeezing mechanism; A second square frame member (16) is fixed in the door and window frame assembly (1), a frame member (15) is slidably sleeved in the second square frame member (16), a first square frame member (4) is fixed to both the front and rear ends of the frame member (15), a connecting member (18) is fixed to the first square frame member (4) located on one side of the door and window member (2), the oblique rod member (17) and the connecting member (18) are rotatably connected, and a sealing member (14) is fixed to the side of the first frame member (4) close to the door and window member (2).
2. The windproof and heat-insulating door and window system according to claim 1, characterized in that: A sealing condition (14) on a first frame member (4) on one side of the door and window member (2) conflicts with the door and window member (2), and another sealing condition (14) conflicts with the second frame member (16).
3. The windproof and heat-insulating door and window system according to claim 1, characterized in that: The squeezing mechanism comprises two lifting plates (8) slidably mounted on the side wall at one end of the plug-in slot (5), a pressing plate (7) is fixed to one side of the two lifting plates (8), the pressing plate (7) is located in the plug-in slot (5), a locking assembly (3) is mounted on the door and window member (2), the locking assembly (3) and the pressing plate (7) are in conflict with each other, a telescopic mechanism is provided on the pressing plate member (7), the telescopic mechanism is in conflict with the side wall at one end of the plug-in slot (5), a roller member (11) is rotatably sleeved on one end of the pressing plate member (7), the roller member (11) and the oblique rod member (17) are in conflict with each other, a through-hole (6) is provided on the side of the plug-in slot (5) close to the door and window member (2), the oblique rod member (17) passes through the through-hole (6), and the lower end of the oblique rod member (17) is slidably mounted on the side wall in the plug-in slot (5).
4. The windproof and heat-insulating door and window system according to claim 3, characterized in that: The telescopic mechanism comprises a notch (12) provided on the pressure plate (7), a moving block (13) being slidably mounted in the notch (12), a tension spring (9) being fixed on the moving block (13), the tension spring (9) being fixedly connected to the lifting plate (8), and a rocker member (10) being rotatably connected to the side wall of the moving block (13) and the plug-in slot (5).
5. The windproof and heat-insulating door and window system according to claim 3, characterized in that: The upper end of the roller member (11) and the upper end of the pressure plate member (7) are arranged flush with each other.
Citation Information
Patent Citations
Windproof heat insulation aluminum profile door and window
CN214616147U