Building energy-saving door and window with high insulating property

By setting up positioning bases and synchronous card block structures on doors and windows, and combining with electric curtain equipment, stable positioning and tensioning of the curtains are achieved, the problem of poor light-shading and thermal insulation caused by the gap between existing doors and windows is solved, and the insulation performance of building energy-saving doors and windows is improved.

CN223075431UActive Publication Date: 2025-07-08LIAONING MINGFAN DOORS & WINDOWS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422341308.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-25
Publication Date
2025-07-08
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

There is a gap between the existing aluminum-plastic doors and windows after the reflective curtain is laid down, resulting in poor light-shading and heat insulation.

Method used

The positioning base and synchronous card block structure are adopted to control the tension and rolling of the curtain through the electric curtain equipment to ensure that the curtain is closely covered on the window surface. The combination of the installation column and the traction rod can achieve stable positioning of the curtain and maximize light shading.

Benefits of technology

It improves the insulation performance of doors and windows, ensures that the curtain can closely cover the window surface at any position, maximizes the light-shading area, and improves the heat insulation effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223075431U_ABST
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Abstract

The utility model relates to the technical field of doors and windows, and discloses a building energy-saving door and window with high insulation performance, which comprises a door and window frame, two windows for opening and closing adjustment are preset in the door and window frame, electric curtain equipment is fixedly mounted on the front side surface of the door and window frame, and curtain cloth for light reflection and heat insulation is rolled in the electric curtain equipment. A first positioning base is fixedly installed at the center of the surface of the door and window frame, and an adjusting cavity communicating with the left side surface and the right side surface of the first positioning base is formed in the first positioning base. A positioning stand column is inserted into a communicating insertion hole and rotationally abuts against the surface of a mounting stand column, the position of a synchronous clamping block can be locked, so that the positions of two traction rods are positioned, the lower portion of curtain cloth is kept tensioned and completely covers the surface of a window, the side, corresponding to the window, of the curtain cloth is a light reflecting face, incident sunlight is reflected, and the sunlight can be reflected through the light reflecting face. And a good heat insulation effect is kept.
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Description

Technical Field

[0001] The utility model relates to the technical field of doors and windows, in particular to an energy-saving building door and window with high insulation performance. Background Art

[0002] The existing aluminum-plastic doors and windows can only perform simple heat insulation. By blocking direct sunlight with a reflective curtain, the heat insulation effect is achieved. However, there is a gap between the existing reflective curtain and the window after it is lowered, resulting in poor light-shielding and heat-insulating effects. Therefore, an energy-saving building door and window with high insulation performance is proposed. Content of the Utility Model

[0003] The utility model mainly solves the technical problems existing in the above-mentioned prior art, and provides an energy-saving building door and window with high insulation performance.

[0004] To achieve the above purpose, the utility model adopts the following technical scheme. It includes a door and window frame. Two switch-adjustable windows are preset inside the door and window frame. An electric curtain device is fixedly installed on the front surface of the door and window frame. A curtain for reflective heat insulation is wound inside the electric curtain device. A positioning base one is fixedly installed at the center of the surface of the door and window frame. An adjustment cavity communicating with the left and right surfaces of the positioning base one is opened inside the positioning base one. Two positioning bases two with positions far away from each other are also fixedly installed on the surface of the door and window frame. The two positioning bases two are respectively located on both sides of the two windows. Locking grooves are opened at the centers of the upper and lower ends of the positioning base one and the positioning base two. The locking grooves communicate with the inside of the corresponding adjustment cavity. An installation column is inserted and installed between the two locking grooves.

[0005] Further, a synchronous block is inserted and installed inside the adjustment cavity. A traction rod is horizontally inserted and fixed between the corresponding two synchronous blocks. The lower end of the curtain below the electric curtain device is sleeved outside the traction rod.

[0006] Further, threaded columns are arranged at both ends of the traction rod. Insertion holes for insertion are opened on both side surfaces of the synchronous block. After the two ends of the traction rod are inserted into the corresponding insertion holes, they are rotated and locked.

[0007] Further, the overall size of the synchronous block corresponds to the internal size of the positioning base one. A sleeve insertion hole is opened at the center of the inside of the synchronous block. The synchronous block slides up and down by being sleeved outside the installation column through the sleeve insertion hole.

[0008] Further, a communication jack is opened at the center of one side of the synchronous block corresponding to the positioning through hole surface. The communication jack communicates with the inside of the sleeve insertion hole. A positioning column is inserted and installed inside the communication jack.

[0009] The present utility model provides an energy-saving building door and window with high insulation performance, having the following beneficial effects:

[0010] 1. For an energy-saving building door and window with high insulation performance, by providing a positioning base one and a positioning base two for adjusting and fixing, after inserting the synchronous block into the adjustment cavities opened inside the positioning base one and the positioning base two, the installation column is inserted into the inside of the adjustment cavity. The lower end of the installation column passes through the sleeve insertion hole, and then the synchronous block can slide up and down on the surface of the installation column. After the curtain cloth of the electric curtain device is sleeved outside the traction rod, the traction rod is inserted between the two corresponding synchronous blocks on the left and right. The threaded columns at both ends of the traction rod are inserted into the insertion holes opened on the surface of the synchronous block and rotated and locked. When the motor inside the electric curtain device rotates to release the curtain cloth, the two traction rods will move downward inside, and through the traction rods, the lower part of the curtain cloth can always be kept taut on the surface of the window, maximizing the light-shielding area and improving the heat insulation and insulation effect.

[0011] 2. For an energy-saving building door and window with high insulation performance, by providing a synchronous block for facilitating disassembly and assembly, the synchronous block is movably installed into the inside of the adjustment cavity. After the lower end of the curtain cloth is sleeved outside the traction rod, when the entire door frame is not in use, the electric curtain device winds up the curtain cloth and retracts it into the inside of the recovery shell. At this time, the position of the traction rod is above the inside of the adjustment cavity, and the two traction rods will not block the normal opening and closing of the window. When the weather is hot, the electric curtain device discharges the curtain cloth to shield the window. At this time, the two traction rods descend. When the traction rods descend to the lowest position inside the adjustment cavity, the positioning column is inserted into the inside of the communication jack and rotated to press against the surface of the installation column, and the position of the synchronous block will be locked to position the two traction rods, so that the lower part of the curtain cloth is kept taut and completely covers the surface of the window. One side of the curtain cloth corresponding to the window is a reflective surface, which reflects the incoming sunlight and maintains a good heat insulation effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] The structures, ratios, sizes, etc. shown in this specification are only used to cooperate with the content disclosed in the specification for those familiar with this technology to understand and read, and are not used to limit the limiting conditions for the implementation of the present utility model, so they do not have technical essential significance.

[0013] Figure 1 It is a schematic diagram of the whole device;

[0014] Figure 2 It is a schematic diagram of the structure of the positioning base one;

[0015] Figure 3 It is a schematic diagram of the installation of the synchronous block.

[0016] Legend Explanation:

[0017] 1. Door and window frame; 2. Electric curtain device; 3. First positioning base; 4. Second positioning base; 5. Adjustment cavity; 6. Positioning through hole; 7. Locking groove; 8. Installation column; 9. Synchronization block; 10. Traction rod; 11. Insertion hole; 12. Sleeve insertion hole; 13. Connecting insertion hole; 14. Positioning column. Detailed implementation mode

[0018] A building energy-saving door and window with high insulation performance, as Figures 1 to 3 shown, includes a door and window frame 1. There are two pre-set windows for switching and adjustment inside the door and window frame 1. An electric curtain device 2 is fixedly installed on the front surface of the door and window frame 1. A curtain for reflecting light and heat insulation is wound inside the electric curtain device 2. A first positioning base 3 is fixedly installed at the center of the surface of the door and window frame 1. An adjustment cavity 5 communicating with the left and right surfaces of the first positioning base 3 is opened inside the first positioning base 3. Two second positioning bases 4 far away from each other in position are also fixedly installed on the surface of the door and window frame 1. The two second positioning bases 4 are respectively located on both sides of the two windows. Locking grooves 7 are opened at the centers of the upper and lower ends of the first positioning base 3 and the second positioning base 4. The locking grooves 7 communicate with the inside of the corresponding adjustment cavity 5. An installation column 8 is inserted between the two locking grooves 7.

[0019] A synchronization block 9 is inserted and installed inside the adjustment cavity 5. A traction rod 10 is horizontally inserted and fixed between the corresponding two synchronization blocks 9. Threaded columns are arranged at both ends of the traction rod 10. Insertion holes 11 for insertion are opened on both side surfaces of the synchronization block 9. After the two ends of the traction rod 10 are inserted into the corresponding insertion holes 11 and rotated to lock, the lower end of the curtain cloth below the electric curtain device 2 is sleeved outside the traction rod 10. When the electric curtain device 2 is started, the internal motor rotates to drive the curtain cloth to wind up. After the curtain cloth is lowered, the whole curtain cloth will be tightened and covered on the surface of the window under the pulling of the traction rod 10.

[0020] The overall size of the synchronization block 9 corresponds to the internal size of the first positioning base 3. A sleeve insertion hole 12 is opened at the center of the inside of the synchronization block 9. The synchronization block 9 slides up and down by sleeving outside the installation column 8 through the sleeve insertion hole 12. A connecting insertion hole 13 is opened at the center of one side of the synchronization block 9 corresponding to the surface of the positioning through hole 6. The connecting insertion hole 13 communicates with the inside of the sleeve insertion hole 12. A positioning column 14 is inserted into the connecting insertion hole 13. When the curtain cloth below the electric curtain device 2 is completely lowered, the position of the synchronization block 9 is completely fixed by inserting the positioning column 14 into the connecting insertion hole 13 and rotating and pressing against the surface of the installation column 8, so as to keep the curtain cloth tightened and covered on the window surface for a long time, so that the curtain cloth can block sunlight and greatly improve the heat insulation and insulation effect.

[0021] The working principle of the present utility model:

[0022] By providing a positioning base one 3 and a positioning base two 4 for adjusting the fixed installation, after snapping the synchronous block 9 into the adjustment cavity 5 opened inside the positioning base one 3 and the positioning base two 4, the installation column 8 is inserted and installed inside the adjustment cavity 5. The lower end of the installation column 8 passes through the sleeve insertion hole 12, and then the synchronous block 9 can slide up and down on the surface of the installation column 8. After the curtain cloth of the electric curtain device 2 is sleeved outside the traction rod 10, the traction rod 10 is inserted between two corresponding synchronous blocks 9 on the left and right. The threaded columns at both ends of the traction rod 10 are inserted into the insertion holes 11 opened on the surface of the synchronous block 9 and rotated and locked. When the motor inside the electric curtain device 2 rotates to release the curtain cloth, the two traction rods 10 will move downward inside, and through the traction rod 10, the lower part of the curtain cloth can be kept always tightened on the surface of the window, maximizing the light-shielding area and improving the heat insulation and insulation effect.

[0023] By providing a synchronous block 9 for facilitating disassembly and assembly, the synchronous block 9 is movably installed into the adjustment cavity 5. After the lower end of the curtain cloth is sleeved outside the traction rod 10, when the entire door frame is not in use, the electric curtain device 2 winds up the curtain cloth and retracts it into the recycling shell. At this time, the position of the traction rod 10 is above the adjustment cavity 5, and the two traction rods 10 will not block the normal opening and closing of the window. When the weather is hot, the electric curtain device 2 discharges the curtain cloth to shield the window. At this time, the two traction rods 10 descend. When the traction rod 10 descends to the lowest position inside the adjustment cavity 5, the positioning column 14 is inserted into the communication insertion hole 13 and rotated to press against the surface of the installation column 8, and the position of the synchronous block 9 will be locked to position the two traction rods 10, so that the lower part of the curtain cloth is kept tightened and fully covers the surface of the window. One side of the curtain cloth corresponding to the window is a reflective surface, which reflects the incoming sunlight and maintains a good heat insulation effect.

[0024] The above shows and describes the basic principles, main features and advantages of the present utility model. Those skilled in the art of this industry should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed.

Claims

1. An energy-saving building door and window with high insulation performance, comprising a door and window frame (1). Two switch-adjustable windows are preset inside the door and window frame (1). An electric curtain device (2) is fixedly installed on the front surface of the door and window frame (1). A curtain cloth for reflecting light and heat insulation is wound inside the electric curtain device (2). A positioning base one (3) is fixedly installed at the center of the surface of the door and window frame (1). It is characterized in that: An adjustment cavity (5) communicating with the left and right side surfaces of the first positioning base (3) is formed inside the first positioning base (3). Two positioning bases (4) that are far away from each other in position are fixedly installed on the surface of the door and window frame (1). The two positioning bases (4) are respectively located on both sides of the two windows. Locking grooves (7) are formed at the centers of the upper and lower ends of the first positioning base (3) and the second positioning base (4). The locking grooves (7) communicate with the inside of the corresponding adjustment cavity (5). An installation column (8) is inserted between the two locking grooves (7).

2. The highly insulating building energy-saving doors and windows according to claim 1 are characterized in that: A synchronous block (9) is inserted and installed inside the adjustment cavity (5). A traction rod (10) is horizontally inserted and fixed between the corresponding two synchronous blocks (9). The lower end of the curtain cloth below the electric curtain device (2) is sleeved outside the traction rod (10).

3. The highly insulating building energy-saving door and window according to claim 2, characterized in that: Threaded columns are arranged at both ends of the traction rod (10). Insertion holes (11) for insertion are formed on both side surfaces of the synchronous block (9). After the two ends of the traction rod (10) are inserted into the corresponding insertion holes (11), they are rotationally locked.

4. The highly insulating building energy-saving door and window according to claim 2, characterized in that: The overall size of the synchronous block (9) corresponds to the internal size of the first positioning base (3). A sleeve insertion hole (12) is formed at the center of the inside of the synchronous block (9). The synchronous block (9) is sleeved outside the installation column (8) through the sleeve insertion hole (12) and slides up and down.

5. The highly insulating building energy-saving door and window according to claim 2, wherein: A communication jack (13) is formed at the center of one side of the synchronous block (9) corresponding to the surface of the positioning through hole (6). The communication jack (13) communicates with the inside of the sleeve insertion hole (12). A positioning column (14) is inserted into the communication jack (13).