Novel energy-saving door and window convenient to assemble

Through innovative design of the mounting frame, fixing components, and laminated glass, the problem of unstable sealing of existing energy-saving doors and windows has been solved, achieving convenient installation and efficient sealing, and improving the energy-saving, heat-insulating, and sound-insulating performance of doors and windows.

CN224351851UActive Publication Date: 2026-06-12GUANGDONG JIAHUA ALUMINIUM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG JIAHUA ALUMINIUM CO LTD
Filing Date
2025-07-09
Publication Date
2026-06-12

AI Technical Summary

Technical Problem

Existing energy-saving doors and windows have unstable sealing during installation, leading to air leakage and failing to meet energy-saving requirements.

Method used

The system employs a mounting frame, fixing components, and laminated glass structure. The drive rod rotates via an internal hexagonal block, and the fixing plate folds and protrudes to secure the mounting frame. Combining the design of laminated glass and low-emissivity glass, it utilizes argon gas filling and sealing gaskets to improve sealing and thermal insulation performance.

Benefits of technology

It achieves convenient installation and efficient sealing, enhances the energy-saving, heat-insulating, and sound-insulating effects of doors and windows, and improves sealing and light transmission.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224351851U_ABST
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Abstract

The utility model discloses a novel energy -conserving door and window convenient to assemble, including installation frame and fixed component, the inner side rear end of installation frame is installed with baffle, and baffle is welded with installation frame, fixed component installs in the side wall inside of installation frame, and fixed component is inlayed connection with installation frame, fixed component includes fixed plate and screw rod, and the one side of fixed plate is installed with screw rod. This one kind is convenient to assemble novel energy -conserving door and window, compared with the existing novel energy -conserving door and window, will install the frame inlay to the wall hole, and the backboard is to the edge of wall hole and will install the gap between frame and wall body and cover, through the inner hexagonal block drive transmission rod rotation, transmission rod drives two screw rods to rotate, and the two parts of screw rod opposite thread drive fixed plate fold convex, and fixed plate is to the inside of wall hole, to install the frame fixed, and the front baffle is inlayed to the front end of installation frame through the embedded column, and the gap between installation frame and wall body is covered, and the installation is convenient, and the sealing property is better.
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Description

Technical Field

[0001] This utility model relates to the field of door and window technology, specifically a new type of energy-saving door and window that is easy to assemble. Background Technology

[0002] Doors and windows are categorized as either enclosure components or partition components based on their location, and each has different design requirements, including functions such as heat insulation, sound insulation, waterproofing, and fire resistance. New requirements emphasize energy conservation; in cold regions, heat loss through door and window gaps accounts for approximately 25% of total heating consumption. The airtightness of doors and windows is a crucial aspect of energy-efficient design. Doors and windows are essential components of a building's enclosure system. Temporary doors and windows are often required during construction, necessitating a new type of energy-efficient door and window that is easy to assemble.

[0003] The existing patent, CN214006896U, entitled "An Easy-to-Disassemble Door and Window," discloses an easy-to-disassemble door and window, belonging to the field of door and window technology. It includes a window frame, a glass frame on the inner side of the window frame, glass fixedly installed inside the glass frame, second window frame plates on both the left and right sides of the window frame, and first window frame plates at the top and bottom. Multiple movable locking posts are movably installed on the outer side of the window frame. A fastening device is provided on the front of the window frame. Movable locking plates are movably installed inside the glass frame. Sealing cloths are provided between the window frame and the second and third window frame plates, as well as between the window frame and the first window frame plates. This utility model, by setting movable locking posts, allows for convenient and effective disassembly and installation of the first window frame plates. By rotating the fastening device, the clamping posts abut against the movable locking posts, pushing the movable locking posts out and thus locking the pre-drilled opening in the window. The sealing cloths enhance the sealing at the connection points.

[0004] The aforementioned device, by setting a movable locking post, can conveniently and effectively disassemble and install the first window frame panel. By rotating the fastening device, the clamping post is made to press against the movable locking post, pushing the movable locking post out and thus locking the reserved opening of the window. However, the sealing cloth used to increase the sealing at the connection is not stable enough, and the gap between the door / window and the wall opening is prone to air leakage, which cannot well meet people's usage needs. In view of the above situation, technical innovation is carried out on the basis of existing new energy-saving doors and windows. Utility Model Content

[0005] The purpose of this utility model is to provide a new type of energy-saving door and window that is easy to assemble, so as to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a novel energy-saving door and window that is easy to assemble, comprising an installation frame and a fixing component. A baffle is installed on the inner rear end of the installation frame, and the baffle is welded to the installation frame. The fixing component is installed inside the side wall of the installation frame, and the fixing component is embedded in the installation frame. The fixing component includes a fixing plate and a threaded rod, and the threaded rod is installed on one side of the fixing plate.

[0007] Preferably, the fixing assembly further includes a transmission rod and an internal hexagon block. The transmission rod is installed on the lower side of the lead screw, and an internal hexagon block is installed at one end of the transmission rod. The internal hexagon block drives the transmission rod to rotate, and the transmission rod drives the two lead screws to rotate. The two parts of the lead screw have opposite threads, which drive the fixing plate to fold and protrude.

[0008] Preferably, the front end of the mounting frame is inlaid with a column, and the front end of the column is fitted with a front cover plate. The front cover plate is inlaid into the front end of the mounting frame through the column, covering the gap between the mounting frame and the wall.

[0009] Preferably, a back plate is installed at the rear end of the mounting frame, and the back plate is welded to the mounting frame. The back plate abuts against the edge of the wall hole to cover the gap between the mounting frame and the wall.

[0010] Preferably, a rotating shaft is installed on the inner right side of the mounting frame, and an inner frame is installed on one side of the rotating shaft.

[0011] Preferably, a handle is installed at the front end of the inner frame, and the handle is embedded in the inner frame. The handle drives the inner frame to rotate on the pivot, which facilitates opening and closing.

[0012] Preferably, the inner front end of the inner frame is fitted with laminated glass, and the laminated glass is bonded to the inner frame. The sound-insulating damping film in the middle of the laminated glass plays a key role in weakening and attenuating the propagation.

[0013] Preferably, a sealing gasket is installed on the rear side of the laminated glass, and a low-emissivity glass is installed on the rear side of the sealing gasket. Argon gas is filled between the laminated glass and the low-emissivity glass. The sealing gasket expands and fits tightly against the inner side of the laminated glass and the low-emissivity glass, thereby improving the sealing performance.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: the mounting frame is embedded in the wall hole, the back plate abuts against the edge of the wall hole to cover the gap between the mounting frame and the wall, the transmission rod is rotated by the internal hexagon block, the transmission rod drives the two lead screws to rotate, the two parts of the lead screws have opposite threads, which drive the fixing plate to fold and protrude, the fixing plate abuts against the inside of the wall hole, thereby fixing the mounting frame, the front cover plate is embedded into the front end of the mounting frame by the embedded post, covering the gap between the mounting frame and the wall, which facilitates installation and has good sealing performance, and the inner frame abuts against the baffle when closed. The inner side of the baffle is bonded with a rubber sealing gasket. The device is sealed, and the inner frame is rotated on the shaft by the handle for easy opening and closing. The sound-insulating damping film in the middle of the laminated glass plays a key role in weakening and attenuating the sound transmission. The low-emissivity glass has excellent heat insulation and good light transmission. Argon gas is filled between the laminated glass and the low-emissivity glass. The sealing gasket expands and fits tightly to the inner side of the laminated glass and the low-emissivity glass. The gaps between the laminated glass, the low-emissivity glass and the inner frame are filled with sealant. The device has better energy-saving, heat insulation and sound insulation capabilities.

[0015] 1. This utility model embeds the mounting frame into the wall hole, and the back plate abuts against the edge of the wall hole to cover the gap between the mounting frame and the wall. The transmission rod is driven to rotate by the internal hexagon block, and the transmission rod drives the two lead screws to rotate. The two parts of the lead screws have opposite threads, which drive the fixing plate to fold and protrude. The fixing plate abuts against the inside of the wall hole, thereby fixing the mounting frame. The front cover plate is embedded into the front end of the mounting frame through the embedded post to cover the gap between the mounting frame and the wall, which facilitates installation and has good sealing performance.

[0016] 2. When the inner frame of this utility model is closed, it abuts against the baffle. The inner side of the baffle is bonded with a rubber sealing gasket. Through the sealing of the device, the inner frame is rotated on the shaft by the handle, which facilitates opening and closing. The sound-insulating damping film in the middle of the laminated glass plays a key role in weakening and attenuating the propagation. The low-emissivity glass has excellent heat insulation effect and good light transmission. Argon gas is filled between the laminated glass and the low-emissivity glass. The sealing gasket expands and fits tightly against the inner side of the laminated glass and the low-emissivity glass. The gaps between the laminated glass, the low-emissivity glass and the inner frame are filled with sealant. The device has better energy-saving, heat insulation and sound insulation capabilities. Attached Figure Description

[0017] Figure 1 This is a frontal three-dimensional structural diagram of a novel energy-saving door and window that is easy to assemble according to this utility model;

[0018] Figure 2 This is a partial three-dimensional sectional view of the installation frame of a novel energy-saving door and window that is easy to assemble, according to this utility model.

[0019] Figure 3 This is a partial three-dimensional structural diagram of a fixing component for a novel energy-saving door and window that is easy to assemble, according to the present invention.

[0020] In the diagram: 1. Mounting frame; 2. Back plate; 3. Front cover plate; 4. Embedded post; 5. Rotating shaft; 6. Inner frame; 7. Handle; 8. Laminated glass; 9. Sealing air cushion; 10. Low-emissivity glass; 11. Baffle; 12. Fixing assembly; 1201. Fixing plate; 1202. Lead screw; 1203. Transmission rod; 1204. Socket hexagon block. Detailed Implementation

[0021] like Figure 1 and Figure 3 As shown, a novel energy-saving door and window that is easy to assemble includes a mounting frame 1 and a fixing component 12. A baffle 11 is installed on the inner rear end of the mounting frame 1, and the baffle 11 is welded to the mounting frame 1. The fixing component 12 is installed inside the side wall of the mounting frame 1, and the fixing component 12 is embeddedly connected to the mounting frame 1. The fixing component 12 includes a fixing plate 1201 and a lead rod 1202, and the lead rod 1202 is installed on one side of the fixing plate 1201. The fixing component 12 also includes a transmission rod 1203 and an internal hexagon block 1204. The transmission rod 1203 is installed on the lower side of the lead rod 1202, and an internal hexagon block 1204 is installed at one end of the transmission rod 1203. The front end of the mounting frame 1 is embeddedly connected to a... The mounting frame 1 has a column 4, and a front cover plate 3 is installed at the front end of the column 4. The back plate 2 is installed at the rear end of the mounting frame 1 and is welded to the mounting frame 1. The mounting frame 1 is embedded in the wall hole, and the back plate 2 abuts against the edge of the wall hole to cover the gap between the mounting frame 1 and the wall. The transmission rod 1203 is rotated by the internal hexagon block 1204. The transmission rod 1203 drives the two lead screws 1202 to rotate. The two parts of the lead screw 1202 have opposite threads, which drive the fixing plate 1201 to fold and protrude. The fixing plate 1201 abuts against the inside of the wall hole, thereby fixing the mounting frame 1. The front cover plate 3 is embedded in the front end of the mounting frame 1 through the column 4 to cover the gap between the mounting frame 1 and the wall, which facilitates installation and has good sealing performance.

[0022] like Figure 1 and Figure 2As shown, a rotating shaft 5 is installed on the inner right side of the mounting frame 1, and an inner frame 6 is installed on one side of the rotating shaft 5. A handle 7 is installed at the front end of the inner frame 6, and the handle 7 is embedded in the inner frame 6. A laminated glass 8 is installed at the inner front end of the inner frame 6, and the laminated glass 8 is bonded to the inner frame 6. A sealing gasket 9 is installed on the rear side of the laminated glass 8, and a low-emissivity glass 10 is installed on the rear side of the sealing gasket 9. When the inner frame 6 is closed, it abuts against the baffle 11. A rubber sealing gasket is bonded to the inner side of the baffle 11. Through the sealing of the device, the air... The handle 7 drives the inner frame 6 to rotate on the shaft 5, facilitating opening and closing. The sound-insulating damping film in the middle of the laminated glass 8 plays a key role in weakening and attenuating the propagation. The low-emissivity glass 10 has excellent heat insulation and good light transmission. Argon gas is filled between the laminated glass 8 and the low-emissivity glass 10. The sealing gas pad 9 expands and fits tightly against the inner side of the laminated glass 8 and the low-emissivity glass 10. The gaps between the laminated glass 8, the low-emissivity glass 10, and the inner frame 6 are filled with sealant. The device has better energy-saving, heat-insulating, and sound-insulating capabilities.

[0023] Working Principle: When using this new type of energy-saving door and window that is easy to assemble, firstly, the mounting frame 1 is inserted into the wall opening. The back plate 2 abuts against the edge of the wall opening to cover the gap between the mounting frame 1 and the wall. The internal hexagon block 1204 drives the transmission rod 1203 to rotate, which in turn drives the two lead screws 1202 to rotate. The two parts of the lead screws 1202 have opposite threads, which cause the fixing plate 1201 to fold and protrude. The fixing plate 1201 abuts against the inside of the wall opening, thereby fixing the mounting frame 1. The front cover plate 3 is embedded into the front end of the mounting frame 1 through the inset post 4, covering the gap between the mounting frame 1 and the wall, which facilitates installation and provides good sealing. When the inner frame 6 is closed, it abuts against the baffle 11. The inner side of the baffle 11 is bonded with a rubber sealing gasket. Through the sealing of the device, the inner frame 6 is rotated on the rotating shaft 5 by the handle 7, which facilitates opening and closing. The sound insulation damping film in the middle of the laminated glass 8 plays a key role in weakening and attenuating the propagation. The low-emissivity glass 10 has excellent heat insulation effect and good light transmission. Argon gas is filled between the laminated glass 8 and the low-emissivity glass 10. The sealing gasket 9 expands and fits tightly against the inner side of the laminated glass 8 and the low-emissivity glass 10. The gaps between the laminated glass 8, the low-emissivity glass 10 and the inner frame 6 are filled with sealant. The device has better energy-saving, heat insulation and sound insulation capabilities.

Claims

1. A novel energy-saving door and window that is easy to assemble, comprising a mounting frame (1) and a fixing component (12), characterized in that, A baffle (11) is installed on the inner rear end of the mounting frame (1), and the baffle (11) is welded to the mounting frame (1). The fixing component (12) is installed inside the side wall of the mounting frame (1), and the fixing component (12) is embedded in the mounting frame (1). The fixing component (12) includes a fixing plate (1201) and a lead rod (1202), and the lead rod (1202) is installed on one side of the fixing plate (1201).

2. The novel energy-saving door and window that is easy to assemble according to claim 1, characterized in that, The fixing assembly (12) also includes a transmission rod (1203) and an internal hexagon block (1204). The transmission rod (1203) is installed on the lower side of the lead screw (1202), and an internal hexagon block (1204) is installed at one end of the transmission rod (1203).

3. The novel energy-saving door and window that is easy to assemble according to claim 1, characterized in that, The front end of the mounting frame (1) is inlaid with a post (4), and the front end of the post (4) is fitted with a front cover plate (3).

4. The novel energy-saving door and window that is easy to assemble according to claim 1, characterized in that, The rear end of the mounting frame (1) is fitted with a back plate (2), and the back plate (2) is welded to the mounting frame (1).

5. A novel energy-saving door and window that is easy to assemble according to claim 1, characterized in that, A rotating shaft (5) is installed on the inner right side of the mounting frame (1), and an inner frame (6) is installed on one side of the rotating shaft (5).

6. A novel energy-saving door and window that is easy to assemble according to claim 5, characterized in that, The inner frame (6) is fitted with a handle (7) at its front end, and the handle (7) is inlaid with the inner frame (6).

7. A novel energy-saving door and window that is easy to assemble according to claim 5, characterized in that, The inner front end of the inner frame (6) is fitted with laminated glass (8), and the laminated glass (8) is bonded to the inner frame (6).

8. A novel energy-saving door and window that is easy to assemble according to claim 7, characterized in that, A sealing gasket (9) is installed on the rear side of the laminated glass (8), and a low-emissivity glass (10) is installed on the rear side of the sealing gasket (9).

Citation Information

Patent Citations

  • Door and window convenient to disassemble

    CN214006896U