Heat insulation type aluminum alloy casement window
By adopting a combined design of columns, support devices, lateral devices and sealing devices in the casement windows, a multi-layer thermal conductivity layer and a broken bridge aluminum structure is formed, which solves the problem of poor thermal insulation performance of the existing casement windows and improves the thermal insulation efficiency and working efficiency of the equipment.
Patent Information
- Application Number
- CN202421883364.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-05
AI Technical Summary
Due to the integrated structure of the existing casement windows, the center vacancy is low, the hot and cold air flow conduction is high, and the heat insulation is not effective, resulting in low working efficiency and poor practicality of the equipment.
By optimizing the structure of the casement window, a combined design of columns, support devices, lateral devices and sealing devices is adopted to form a multi-layer thermal conductive layer and a broken bridge aluminum structure to improve thermal insulation performance and structural stability.
It significantly improves the thermal insulation efficiency and working efficiency of casement windows and enhances the practicality of the equipment.
Smart Images

Figure CN222962710U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of casement window equipment attachments, in particular to a heat-insulating aluminum alloy casement window. Background Art
[0002] With the development of the times and the acceleration of industrialization, people's living standards are improving day by day, so the requirements for living environment are also changing with each passing day. Windows, as an important part of buildings, have been evolving in form and function with the advancement of building technology. Casement windows are new equipment used for ventilation and lighting in daily life. The emergence of casement windows is due to the widespread use of modern building materials and the precision manufacturing of hardware accessories.
[0003] When using existing casement windows, the window frame is first installed. The window frame, as the main body of the window, is responsible for fixing the position of the entire window and connecting to the wall. Then the window sash is installed on the window frame so that it can be opened relative to the window frame along a horizontal axis. It is found in the use of existing casement windows that most of the existing casement windows are integrated structures, resulting in a low center gap, high conduction of cold and hot air flows, and inability to effectively insulate, thereby resulting in low working efficiency of the equipment, resulting in poor practicality. Utility Model Content
[0004] In order to solve the above technical problems, the utility model provides a heat-insulating aluminum alloy casement window which can improve the heat insulation performance of the equipment by optimizing the structure of the casement window, thereby improving the working efficiency of the equipment and increasing the practicality.
[0005] The utility model discloses a heat-insulating aluminum alloy casement window, comprising a column and a combination device, wherein a connecting end of the combination device is connected to a connecting end of the column, and the combination device also comprises a supporting device, a lateral device and a sealing device, wherein the connecting end of the supporting device is connected to a connecting end of the column, and a plurality of groups of connecting ends of the lateral devices are respectively connected to corresponding connecting ends of the supporting devices, and grooves are provided on the supporting device and the lateral device, and the sealing device passes through the groove and is slidably connected to the supporting device and the lateral device.
[0006] Preferably, the supporting device also includes a transverse center support top plate, a longitudinal center support top plate, a connecting block, a positioning block, a connecting rod and a support rod. The longitudinal center support top plate and the support rod are penetrated with card slots, and multiple groups of connecting blocks pass through the corresponding card slots and are movably clamped with the longitudinal center support top plate and the support rod. The connecting ends of multiple groups of transverse center support top plates are respectively connected to the left and right ends of the longitudinal center support top plate, and multiple groups of transverse center support top plates and corresponding connecting rods are provided with long grooves. Multiple groups of positioning blocks pass through the corresponding long grooves and are movably clamped with the corresponding transverse atrium top plates and connecting rods. Multiple groups of transverse center support top plates and longitudinal center support top plates are penetrated with heat insulation holes, and multiple groups of connecting rods and support rods are provided with outward holes.
[0007] Preferably, the lateral device also includes window frames, window sashes, and pressure wires. Multiple groups of window frames are provided with inclined grooves, and multiple groups of window sashes are respectively passed through corresponding inclined grooves and fixedly mounted on corresponding window frames. Multiple groups of window frames and window sashes are provided with connecting buckles, and multiple groups of pressure wires are respectively passed through corresponding connecting buckles and fixedly mounted on corresponding window frames and window sashes.
[0008] Preferably, the sealing device also includes a window, a sealing strip and glass. The window is provided with an installation groove, the glass passes through the installation groove and the window fixing set, the connecting end of the sealing strip passes through the installation groove and the window fixing clamp, and the window passes through the groove and is movably clamped with the corresponding window frame and window sash.
[0009] Preferably, it is also configured as an aluminum alloy material, so that the corresponding transverse center support top plate, longitudinal center support top plate, window frame, window sash, support rod and connecting rod are all configured as aluminum alloy materials.
[0010] Compared with the prior art, the beneficial effects of the utility model are as follows: in the process of using the casement window, by connecting the column and the supporting device, and assembling them through the side device and the supporting device, a multi-layer heat-conducting layer is formed through the heat-insulating holes and the outward holes in the side device and the supporting device, and through the broken bridge aluminum equipment, it is ensured that the profile has good heat-insulating performance and structural stability, thereby improving the heat-insulating efficiency of the equipment, thereby improving the working efficiency of the equipment, thereby increasing the practicality of an insulated aluminum alloy casement window. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a structural schematic diagram of the utility model;
[0012] Figure 2 It is a schematic diagram of the connection structure of the column and the connecting rod of the utility model;
[0013] Figure 3 It is a schematic diagram of the connection structure of the column and the connection block of the utility model;
[0014] Figure 4 It is a schematic diagram of the window frame structure of the utility model;
[0015] Figure 5 This is a schematic diagram of the window sash structure of the utility model
[0016] Figure 6 This is a schematic diagram of the longitudinal middle support top plate structure of the utility model.
[0017] Figure 7 This is a schematic diagram of the structure of the horizontal middle support top plate of the utility model.
[0018] Figure 8 This is a schematic diagram of the wire pressing structure of the utility model
[0019] Markings in the attached drawings: 1, column; 201, groove; 301, horizontal center support top plate; 302, longitudinal center support top plate; 303, connecting block; 304, positioning block; 305, connecting rod; 306, supporting rod; 307, slot; 308, long slot; 309, insulation hole; 310, outward hole; 401, window frame; 402, window sash; 403, pressure line; 404, inclined groove; 405, connecting buckle; 501, window; 502, sealing strip; 503, glass; 504, installation groove. DETAILED DESCRIPTION
[0020] The following is a further detailed description of the specific implementation of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0021] like Figures 1 to 8 As shown, a heat-insulating aluminum alloy casement window of the utility model comprises a column 1 and a combination device, wherein the connecting end of the combination device is connected to the connecting end of the column 1, and the combination device further comprises a supporting device, a lateral device and a sealing device, wherein the connecting end of the supporting device is connected to the connecting end of the column 1, and the connecting ends of multiple groups of lateral devices are respectively connected to the connecting ends of the corresponding supporting devices, and the supporting device and the lateral device are both provided with grooves 201, and the sealing device passes through the grooves 201 and is slidably connected to the supporting device and the lateral device; in the process of using the casement window, by connecting the column and the supporting device, and assembling them through the lateral device and the supporting device, a multi-layer heat-conducting layer is formed through the heat-insulating holes and the outward holes in the lateral device and the supporting device, and through the broken bridge aluminum equipment, it is ensured that the profile has good heat-insulating performance and structural stability, thereby improving the heat-insulating efficiency of the equipment, thereby improving the working efficiency of the equipment, thereby increasing practicality.
[0022] Preferably, as an embodiment above, the supporting device further includes a horizontal mullion top plate 301, a vertical mullion top plate 302, a connecting block 303, a positioning block 304, a connecting rod 305 and a supporting rod 306. A clamping groove 307 is penetrated through the vertical mullion top plate 302 and the supporting rod 306. A plurality of groups of connecting blocks 303 respectively pass through the corresponding clamping grooves 307 and are movably clamped with the vertical mullion top plate 302 and the supporting rod 306. The connecting ends of a plurality of groups of horizontal mullion top plates 301 are respectively connected to the left and right ends of the vertical mullion top plate 302. Long grooves 308 are provided on a plurality of groups of horizontal mullion top plates 301 and the corresponding connecting rods 305. A plurality of groups of positioning blocks 304 respectively pass through the corresponding long grooves 308 and are movably clamped with the corresponding horizontal atrium top plates and connecting rods 305. Heat insulation holes 309 are penetrated through a plurality of groups of horizontal mullion top plates 301 and vertical mullion top plates 302. Outer holes 310 are provided on a plurality of groups of connecting rods 305 and supporting rods 306. During the process of supporting the inside of the casement window, both the horizontal atrium top plate and the vertical mullion top plate adopt a broken bridge aluminum structure to make the profile more stable. During this process, the supporting rod and the connecting rod are connected through the corresponding positioning block and connecting block. After combination, the supporting device is provided with double-layer heat insulation of outer holes and heat insulation holes. Through the double-layer heat conduction method, heat insulation materials are injected at the same time to seal the profile, so as to form a multi-section heat insulation effect, thereby improving the heat insulation performance of the equipment. Therefore, the working efficiency of the equipment is improved, and the practicability is increased.
[0023] Preferably, as an embodiment above, the lateral device further includes a window frame 401, a window sash 402 and a pressing strip 403. Oblique grooves 404 are provided on a plurality of groups of window frames 401. A plurality of groups of window sashes 402 respectively pass through the corresponding oblique grooves 404 and are fixedly clamped with the corresponding window frames 401. Connecting buckles 405 are provided on a plurality of groups of window frames 401 and window sashes 402. A plurality of groups of pressing strips 403 respectively pass through the corresponding connecting buckles 405 and are fixedly clamped with the corresponding window frames 401 and window sashes 402. During the process of connecting the supporting device, the window sash and the window frame are connected in a butted manner. The window frame and the window sash are butted by means of bevel cutting of the profile. By different cutting methods, the combination methods and types of the profile are improved. During this process, the pressing strip forms a triangular support structure with the corresponding window frame and window sash through a clamping method, improving the stability of the equipment. Cooperating with the heat dissipation holes on the window frame and window sash to improve the heat conduction performance of the equipment. Therefore, the working efficiency of the equipment is improved, and the practicability is increased.
[0024] As a preference of the above embodiment, the sealing device further includes a window 501, a sealing strip 502 and a glass 503. An installation groove 504 is formed through the window 501. The glass 503 passes through the installation groove 504 and is fixedly sleeved with the window 501. The connecting end of the sealing strip 502 passes through the installation groove 504 and is fixedly clamped with the window 501. The window 501 passes through the groove 201 and is movably clamped with the corresponding window frame 401 and window sash 402. During the use of the casement window, the glass and the window are connected by inlaying, and a sealing strip is added to seal the glass, improving the moisture resistance and sealing performance of the device. By the inlaying method, the integration of the window and the glass is improved, thereby improving the stability of the device. Therefore, the working efficiency of the device is improved, and the practicability is increased.
[0025] As a preference of the above embodiment, it is also made of aluminum alloy material, so that the corresponding transverse middle muntin top plate 301, longitudinal middle muntin top plate 302, window frame 401, window sash 402, support rod 306 and connecting rod 305 are all made of aluminum alloy material. During the process of selecting materials for the profiles, high-strength and corrosion-resistant aluminum alloy materials are selected and combined with heat-insulating materials filled, so that the profiles have good structural stability and heat-insulating performance, thereby improving the quality and service life of the device. Therefore, the working efficiency of the device is improved, and the practicability is increased.
[0026] The working principle of an insulating aluminum alloy casement window of the present utility model is as follows: during the use of the casement window, the column and the support device are connected, and are assembled by buckling with the side device and the support device. Heat-insulating holes and outward holes in the side device and the support device form multiple heat-conducting layers. Through the broken bridge aluminum equipment, it is ensured that the profiles have good heat-insulating performance and structural stability. The transverse middle atrium top plate and the longitudinal middle muntin top plate both adopt the broken bridge aluminum structure, making the profiles more stable. During this process, the support rod and the connecting rod are connected through the corresponding positioning blocks and connecting blocks. After combination, the support device is provided with double-layer heat insulation of outward holes and heat-insulating holes. By the way of double-layer heat conduction, heat-insulating materials are injected at the same time to seal the profiles, so as to form the effect of multi-section heat insulation. The window sash and the window frame are connected in a butting manner. The window frame and the window sash are butted by the way of bevel cutting of the profiles. By different cutting methods, the combination methods and types of the profiles are improved. During this process, the pressing strip forms a triangular support structure with the corresponding window frame and window sash by clamping, improving the stability of the device. Cooperating with the heat dissipation holes on the window frame and the window sash to improve the heat conduction performance of the device. The glass and the window are connected by inlaying, and a sealing strip is added to seal the glass, improving the moisture resistance and sealing performance of the device. By the inlaying method, the integration of the window and the glass is improved. During the process of selecting materials for the profiles, high-strength and corrosion-resistant aluminum alloy materials are selected and combined with heat-insulating materials filled, so that the profiles have good structural stability and heat-insulating performance.
[0027] The terms "vertical", "horizontal", "left", "right" and similar expressions used in this text are for illustrative purposes only.
[0028] In this utility model, the "first", "second", "third" do not represent specific quantities and sequences, but are only used for name distinction.
[0029] The above is only the preferred embodiment of this utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of this utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of this utility model.
Claims
1. A heat-insulating aluminum alloy casement window, comprising a column (1) and a combination device, wherein a connecting end of the combination device is connected to a connecting end of the column (1); characterized in that: The combined device also includes a supporting device, a lateral device and a sealing device. The connecting end of the supporting device is connected to the connecting end of the column (1). The connecting ends of the plurality of lateral devices are respectively connected to the connecting ends of the corresponding supporting devices. The supporting device and the lateral device are both provided with grooves (201). The sealing device passes through the grooves (201) and is slidably connected to the supporting device and the lateral device.
2. The heat-insulating aluminum alloy casement window according to claim 1, characterized in that: The supporting device further comprises a transverse middle support top plate (301), a longitudinal middle support top plate (302), a connecting block (303), a positioning block (304), a connecting rod (305) and a supporting rod (306); a card slot (307) is provided through the longitudinal middle support top plate (302) and the supporting rod (306); a plurality of groups of connecting blocks (303) respectively pass through corresponding card slots (307) and are movably mounted with the longitudinal middle support top plate (302) and the supporting rod (306); the connecting ends of the plurality of groups of transverse middle support top plates (301) are respectively connected to the longitudinal middle support The left and right ends of the top plate (302) are connected, and long grooves (308) are provided on multiple groups of transverse center support top plates (301) and corresponding connecting rods (305). Multiple groups of positioning blocks (304) pass through the corresponding long grooves (308) and are movably clamped with the corresponding transverse atrium top plates and connecting rods (305). Heat insulation holes (309) are provided through multiple groups of transverse center support top plates (301) and longitudinal center support top plates (302), and outward holes (310) are provided on multiple groups of connecting rods (305) and support rods (306).
3. The heat-insulating aluminum alloy casement window according to claim 2, characterized in that: The lateral device also includes a window frame (401), a window sash (402), and a pressure line (403); multiple groups of window frames (401) are each provided with an inclined groove (404); multiple groups of window sashes (402) respectively pass through the corresponding inclined grooves (404) and the corresponding window frames (401) to be fixedly mounted; multiple groups of window frames (401) and window sashes (402) are each provided with a connecting buckle (405); multiple groups of pressure lines (403) respectively pass through the corresponding connecting buckle (405) and the corresponding window frames (401) and window sashes (402) to be fixedly mounted.
4. The heat-insulating aluminum alloy casement window according to claim 3, characterized in that: The sealing device also includes a window (501), a sealing strip (502) and a glass (503); a mounting groove (504) is provided through the window (501); the glass (503) passes through the mounting groove (504) and is fixedly mounted on the window (501); the connecting end of the sealing strip (502) passes through the mounting groove (504) and is fixedly mounted on the window (501); and the window (501) passes through the groove (201) and is movably mounted on the corresponding window frame (401) and the window sash (402).
5. The heat-insulating aluminum alloy casement window according to claim 4, characterized in that: It is also configured to be made of aluminum alloy material, so that the corresponding transverse center support top plate (301), longitudinal center support top plate (302), window frame (401), window sash (402), support rod (306) and connecting rod (305) are all configured to be made of aluminum alloy material.