Energy-saving window with good heat insulation effect

By setting up a coil bobbin, a draw rope and a flexible louver on the front window of the energy-saving window, and using the pull of the magnetic rod to spread the louver, the problem of poor insulation effect of traditional energy-saving windows when direct sunlight is encountered is solved, and more efficient heat insulation and energy-saving effects are achieved.

CN222909864UActive Publication Date: 2025-05-27CHANGZHOU BOLI GLASS PROD CO LTD
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Patent Information

Application Number
CN202421839920.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-05-27
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

In the case of direct sunlight, high temperatures will still be transmitted directly into the room, resulting in poor thermal insulation.

Method used

An energy-saving window including the main form and the front form is designed. The top of the front form is equipped with a coil bobbin, a draw rope and a flexible blade. The blades are unfolded by pulling the magnetic rod to block the sunlight, and convenient and fast blade expansion is achieved by damping the rotating shaft and coil spring.

Benefits of technology

Effectively block the direct sunlight, improve heat insulation effect, increase energy saving and efficiency, and realize the rotation and locking functions of the front form through the setting of the rotating seat and magnetic block, meeting the usage needs of different situations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of windows, in particular to an energy-saving window with a good heat insulation effect, which comprises a main window body and a front window body, the front window body is rotatably mounted on one side of the main window body through a rotating seat, a winding reel is arranged in the top end of the front window body through a damping rotating shaft, a pull rope is wound on the winding reel, and a plurality of flexible louver blades are mounted on the pull rope. The other end of the pull rope extends out of the front window body and is connected with a magnetic rod, sliding blocks are arranged at the two ends of the magnetic rod, a plurality of balls are installed on the sliding blocks, and the sliding blocks are installed in sliding grooves formed in the inner wall of the front window body in a limited sliding mode. The flexible louvre blades descend and are unfolded by pulling the magnetic rods, so that the shielding effect on the front window body is achieved, direct sunlight is effectively blocked, the operation process is convenient and fast, the heat insulation effect can be effectively improved, meanwhile, the rotating and locking functions of the front window body are achieved through the arrangement of the rotating base, the magnetic attraction block and other assemblies, and the practicability is high. Therefore, different use requirements are met, and the energy-saving benefit of the window body is effectively improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of windows, in particular to an energy-saving window with good heat insulation effect. Background Art

[0002] Energy-saving windows are important energy-saving elements in modern buildings. By improving the heat insulation and heat preservation performance of materials and enhancing the airtightness of windows, the purpose of energy conservation and consumption reduction can be achieved.

[0003] At present, in order to effectively block the influence of external high temperature or low temperature on the indoor temperature, corresponding materials are mostly arranged inside traditional energy-saving windows to achieve the basic heat insulation effect. However, in the actual use process, its heat insulation effect is average. In the case of direct sunlight, high temperature will still directly penetrate into the room. Therefore, there is an urgent need for an energy-saving window with good heat insulation effect. Content of the Utility Model

[0004] The purpose of the utility model is to solve the deficiencies existing in the prior art, and to propose an energy-saving window with good heat insulation effect.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] An energy-saving window with good heat insulation effect includes a main window body and a front window body. One side of the main window body is rotatably installed with the front window body through a rotating seat. Inside the top end of the front window body, a winding drum is arranged through a damping rotating shaft. A pulling rope is wound around the winding drum. A plurality of flexible louver blades are installed on the pulling rope. The other end of the pulling rope extends out of the front window body and is connected with a magnetic rod. Sliders are arranged at both ends of the magnetic rod. A plurality of balls are installed on the sliders. The sliders are installed in a sliding groove opened on the inner wall of the front window body in a limited sliding manner;

[0007] A torsion spring is installed at the rotating end of the damping rotating shaft;

[0008] Both ends of the magnetic rod are installed in the inner side of the front window body in a limited sliding manner through sliders. A magnetic attraction groove is opened at the bottom side of the inner wall of the front window body. The magnetic attraction groove is magnetically adsorbed and connected with the magnetic rod. When the magnetic rod is connected with the magnetic attraction groove, the magnetic rod is embedded and installed in the magnetic attraction groove.

[0009] In addition, the preferred structure is that the main window body and the front window body form an energy-saving window body.

[0010] In addition, the preferred structure is that rotating seats are installed on both the upper and lower parts of one side of the main window body. A limit pin is installed on one side of the rotating seat. The limit pin is clamped and installed in a rotating groove opened on one side of the front window body.

[0011] In addition, the preferred structure is that limit grooves are opened at both the top and bottom ends of the inner wall of the rotating groove. The limit pin is installed in the limit groove in a limited manner.

[0012] In addition, a preferred structure is that magnetic blocks are installed on the upper and lower parts of one side of the main window, and magnetic grooves are opened on the upper and lower parts of one side of the front window corresponding to the main window, the magnetic grooves and the magnetic blocks are magnetic adsorption structures to each other, and when the main window and the front window are connected, the magnetic blocks are embedded and installed in the magnetic grooves.

[0013] In addition, a preferred structure is that a fitting groove is opened on one side of the top of the front window body, a plurality of pull ropes are passed through the fitting groove, and a magnetic rod is fitted and mounted on the fitting groove.

[0014] In addition, a preferred structure is that each of the balls is rotatably mounted on the outer wall of the slider and is in sliding contact with the inner wall of the sliding groove.

[0015] The beneficial effects of the utility model are:

[0016] In the utility model, components such as a wire reel, a pull rope, and flexible louvers are provided inside the front window. The flexible louvers are lowered and unfolded by pulling the magnetic rod, thereby completing the shielding effect on the front window and effectively blocking direct sunlight. Moreover, by providing components such as a coil spring and a damping shaft, the unfolding process of the louvers is not only convenient but also fast and stable, and can effectively improve the heat insulation effect and increase energy-saving benefits.

[0017] At the same time, the front window rotation and locking functions are realized by setting components such as a rotating seat and a magnetic block, thereby meeting the usage requirements in different situations and effectively improving the energy-saving benefits of the window. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the external structure of an energy-saving window with good heat insulation effect proposed by the utility model;

[0019] Figure 2 This is a schematic diagram of the unfolded structure of an energy-saving window with good heat insulation effect proposed by the utility model;

[0020] Figure 3 This is a schematic diagram of the rotating seat connection structure proposed by the utility model;

[0021] Figure 4 This is a schematic diagram of the magnetic block connection structure proposed by the utility model;

[0022] Figure 5 This is a schematic diagram of the internal structure of the front window body proposed by the utility model;

[0023] Figure 6 This is a schematic diagram of the magnetic rod connection structure proposed by the utility model.

[0024] In the figure: 1 is the energy-saving window body, 11 is the main window, 12 is the front window, 128 is the fitting groove, 2 is the rotating groove, 21 is the limiting groove, 3 is the rotating seat, 31 is the limiting pin, 5 is the pulling rope, 6 is the flexible louver, 7 is the magnetic attraction block, 71 is the magnetic groove, 8 is the damping rotating shaft, 81 is the wire winding drum, 82 is the coil spring, 9 is the magnetic rod, 91 is the slider, 92 is the ball, 93 is the magnetic attraction groove, 10 is the sliding groove. Detailed implementation mode

[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0026] Refer to Figure 1-6 , an energy-saving window with good heat insulation effect, including a main window 11 and a front window 12. One side of the main window 11 is rotatably installed with the front window 12 through a rotating seat 3. The top inner part of the front window 12 is provided with a wire winding drum 81 through a damping rotating shaft 8. A pulling rope 5 is wound on the wire winding drum 81. A plurality of flexible louvers 6 are installed on the pulling rope 5. The other end of the pulling rope 5 extends out of the front window 12 and is connected with a magnetic rod 9. Sliders 91 are arranged at both ends of the magnetic rod 9. A plurality of balls 92 are installed on the sliders 91. The sliders 91 are installed in a limited sliding manner in a sliding groove 10 opened on the inner wall of the front window 12;

[0027] Further, a coil spring 82 is installed at the rotating end of the damping rotating shaft 8;

[0028] Further, both ends of the magnetic rod 9 are installed in a limited sliding manner on the inner side of the front window 12 through sliders 91. A magnetic attraction groove 93 is opened at the bottom side of the inner wall of the front window 12. The magnetic attraction groove 93 is magnetically adsorbed and connected with the magnetic rod 9. When the magnetic rod 9 is connected with the magnetic attraction groove 93, the magnetic rod 9 is embedded and installed in the magnetic attraction groove 93.

[0029] Further, the main window 11 and the front window 12 form the energy-saving window body 1.

[0030] Further, rotating seats 3 are installed on both the upper and lower parts of one side of the main window 11. A limiting pin 31 is installed on one side of the rotating seat 3. The limiting pin 31 is clamped and installed in a rotating groove 2 opened on one side of the front window 12.

[0031] Further, limiting grooves 21 are opened at both the top and bottom ends of the inner wall of the rotating groove 2. The limiting pin 31 is installed in a limited manner in the limiting groove 21. The basic rotating function of the front window 12 is realized through the setting of the limiting pin 31.

[0032] Furthermore, magnetic blocks 7 are installed on the upper and lower parts of one side of the main window 11, and magnetic grooves 71 are opened on the upper and lower parts of one side of the front window 12 corresponding to the main window 11. The magnetic groove 71 and the magnetic block 7 are mutually magnetically attracted structures, and when the main window 11 and the front window 12 are connected, the magnetic block 7 is embedded and installed in the magnetic groove 71.

[0033] Furthermore, a fitting groove 128 is provided on one side of the top of the front window 12 , a plurality of pull cords 5 are passed through the fitting groove 128 , and a magnetic rod 9 is fitted and mounted on the fitting groove 128 .

[0034] Furthermore, each ball bearing 92 is rotatably mounted on the outer wall of the slider 91 and is in sliding contact with the inner wall of the sliding groove 10 , so that the ball bearing 92 improves the smoothness of the slider 91 during the sliding process.

[0035] In the present embodiment, in a natural state, the front window 12 is installed on one side of the main window 11, and the connection stability between the front window 12 and the main window 11 is ensured by the arrangement of the magnetic block 7 and the magnetic groove 71. At the same time, when the outside sunlight is directly exposed and causes the indoor temperature to rise, in order to ensure the heat insulation and energy-saving benefits, by pulling the magnetic rod 9 arranged on the top of the front window 12, the magnetic rod 9 slides in the sliding groove 10 opened on the inner side of the front window 12 through the sliders 91 on both sides. At this time, the magnetic rod 9 moves downward and drives the pull rope 5 to extend. Under the action of pulling downward, the pull rope 5 drives the winding drum 81 to rotate, and the multiple flexible louvers 6 installed on the pull rope 5 are gradually unfolded. When the magnetic rod 9 is completely lowered, the magnetic rod 9 is matched with the magnetic groove 93 arranged at the bottom of the front window 12 and adsorbed and connected, and the flexible louvers 6 block the window over a large area, so that sunlight cannot directly shine into the room.

[0036] In actual use, during the rotation of the winding drum 81, the coil spring 82 connected to the damping shaft 8 is wound and compressed to store energy, and is released and wound when the pull rope 5 is recovered, driving the pull rope 5 to automatically wind up.

[0037] Among them, in actual use, the damping shaft 8 generates friction force through the extrusion between the gaskets, thereby achieving a damping effect, so that it has a certain damping force during its rotation, thereby achieving stability during the winding process.

[0038] In actual use, the slider 91 cooperates with the rotation of the ball bearing 92 so that the slider 91 slides more smoothly in the sliding groove 10 .

[0039] In the actual use process, due to the flexible material of the flexible louver 6, it can be effectively wound on the winding drum 81 during the storage process, thereby ensuring the stability of use.

[0040] Among them, during actual use, by pulling the front window 12 outwards, the limit pin 31 in the main window 11 moves within the limit groove 21 provided in the front window 12, enabling the front window 12 to have a certain distance to meet the rotation function. At this time, the front window 12 can be appropriately rotated to meet different usage requirements.

[0041] Among them, it is worth noting that basic heat insulation components, such as heat insulation plates and heat insulation cavities, have already been provided inside the window body of the main window 11 to meet the basic energy-saving and heat insulation functions. The heat insulation effect is further enhanced by the setting of the front window 12.

[0042] In the present utility model, components such as a wire reel 81, a pull rope 5, and flexible louvers 6 are provided inside the front window 12. By pulling the magnetic rod 9, the flexible louvers 6 are lowered and unfolded, thereby completing the shielding effect on the front window 12, effectively blocking the direct sunlight. Moreover, through the settings of components such as a torsion spring 82 and a damping rotating shaft 8, the unfolding process of the louvers is not only convenient but also fast and stable, which can effectively improve the heat insulation effect and increase the energy-saving benefit.

[0043] At the same time, through the settings of components such as a rotating seat 3 and a magnetic attraction block 7, the rotation and locking functions of the front window 12 are realized, thereby meeting the usage requirements in different situations and effectively improving the energy-saving benefit of the window.

[0044] The above is only the preferred specific implementation manner of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, makes equivalent substitutions or changes, and should be covered by the protection scope of the present utility model.

Claims

1. An energy-saving window with good heat insulation effect, comprising a main window (11) and a front window (12), characterized in that: A front window (12) is rotatably mounted on one side of the main window (11) via a rotating seat (3); a winding drum (81) is arranged inside the top of the front window (12) via a damping shaft (8); a pull rope (5) is wound on the winding drum (81); a plurality of flexible louvers (6) are mounted on the pull rope (5); the other end of the pull rope (5) extends out of the front window (12) and is connected to a magnetic rod (9); sliders (91) are arranged at both ends of the magnetic rod (9); a plurality of balls (92) are mounted on the slider (91); and the slider (91) is limitedly slidably mounted in a sliding groove (10) provided on the inner wall of the front window (12); A coil spring (82) is installed at the rotating end of the damping shaft (8); The two ends of the magnetic rod (9) are respectively installed on the inner side of the front window body (12) by means of sliders (91) for limiting sliding, and a magnetic suction groove (93) is provided on the bottom side of the inner wall of the front window body (12), the magnetic suction groove (93) is connected to the magnetic rod (9) by magnetic attraction, and when the magnetic rod (9) is connected to the magnetic suction groove (93), the magnetic rod (9) is embedded and installed in the magnetic suction groove (93).

2. The energy-saving window with good heat insulation effect according to claim 1, characterized in that: The main window (11) and the front window (12) constitute an energy-saving window body (1).

3. The energy-saving window with good heat insulation effect according to claim 1, characterized in that: A rotating seat (3) is installed on the upper and lower parts of one side of the main window (11), and a limit pin (31) is installed on one side of the rotating seat (3). The limit pin (31) is snap-fitted into a rotating groove (2) opened on one side of the front window (12).

4. The energy-saving window with good heat insulation effect according to claim 3, characterized in that: The top and bottom ends of the inner wall of the rotating groove (2) are both provided with a limiting groove (21), and a limiting pin (31) is installed in the limiting groove (21) for limiting position.

5. The energy-saving window with good heat insulation effect according to claim 1, characterized in that: A magnetic block (7) is installed on the upper and lower parts of one side of the main window (11), and a magnetic groove (71) is opened on the upper and lower parts of one side of the front window (12) corresponding to the main window (11), the magnetic groove (71) and the magnetic block (7) are mutually magnetically attracted structures, and when the main window (11) and the front window (12) are connected, the magnetic block (7) is embedded and installed in the magnetic groove (71).

6. The energy-saving window with good heat insulation effect according to claim 1, characterized in that: A fitting groove (128) is provided on one side of the top of the front window (12), a plurality of drawstrings (5) are passed through the fitting groove (128), and a magnetic rod (9) is fitted and mounted on the fitting groove (128).

7. The energy-saving window with good heat insulation effect according to claim 1, characterized in that: Each of the balls (92) is rotatably mounted on the outer wall of the slider (91) and is in sliding contact with the inner wall of the sliding groove (10).