A top-side transverse pulling double-layer hollow glass built-in shutter
By combining the design of the lateral pulling mechanism and the traction mechanism with the flip adjustment unit, the problem of poor privacy protection of the built-in blinds in existing double-glazed windows is solved. The synchronous flipping and angle adjustment of the blinds are realized, which significantly reduces the closing gap and viewing angle of adjacent blinds and improves the privacy protection effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SUZHOU JIN ZHI HUA CONSTR MATERIAL TECH CO LTD
- Filing Date
- 2023-11-06
- Publication Date
- 2026-04-21
AI Technical Summary
When existing double-glazed windows with built-in blinds are vertically extended, the width of the closing gap between adjacent blinds and the maximum number of viewing angles cannot be significantly reduced, resulting in the outside being able to see into the room and poor privacy protection.
The design adopts a side-to-side horizontal pulling mechanism. Through the traction mechanism and the flip adjustment unit, the sliding sleeve is driven to slide by the unfolding pull rope and the storage pull rope. Combined with the meshing connection of the rotating gear and the tooth groove, the curtain slats are flipped synchronously and the angle is adjusted, reducing the closing gap and the visible angle between adjacent curtain slats.
It effectively protects privacy, prevents outsiders from peeping into the room, is easy to operate and effortless, and facilitates the opening and closing of the curtains, thus enhancing the privacy protection effect.
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Figure CN117489252B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sunshade insulated glass products technology, specifically to a double-layered insulated glass with built-in blinds that can be pulled laterally on the top side. Background Technology
[0002] Double-glazed windows with built-in blinds are an advanced window design that combines the functions of double-glazed windows and blinds. The key feature of this type of window is the air gap between the two panes of glass, which effectively isolates indoor and outdoor temperatures and noise. Between these two panes, a blind system is designed, allowing for adjustment of the window's transparency and light transmission as needed. Double-glazed windows with built-in blinds also provide good sound insulation and heat preservation, reducing the transfer of indoor and outdoor temperatures and the intrusion of environmental noise. Furthermore, the blinds allow for adjustment of the window's light transmission, enabling flexible control of the view and privacy protection.
[0003] Existing double-glazed insulated glass blinds typically employ a vertical folding and unfolding method, simultaneously adjusting the slat rotation angle during vertical unfolding. However, the width of the closing gap between adjacent slats and the maximum viewing angle cannot be significantly reduced, resulting in the outside being able to see into the interior and the blinds failing to provide adequate privacy. To address this, we propose a double-glazed insulated glass blind that can be horizontally pulled from the top side. Summary of the Invention
[0004] The purpose of this invention is to provide a double-glazed insulated glass window with built-in blinds that can be pulled laterally from the top side, in order to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A double-glazed louvered window with built-in blinds and horizontal pull-out design includes a top frame, a bottom frame, and glass mounting frames connected to the front and rear ends of the bottom frame. Each glass mounting frame contains a transparent glass panel, with a hollow layer between adjacent transparent glass panels, and the hollow layer is connected to the inner cavity of the top frame. The top frame contains a traction mechanism, which includes a fixed rod. The two ends of the fixed rod are connected to the inner walls of both sides of the top frame, and a side fixing sleeve is fixedly connected to the left side of the outer wall of the fixed rod. Multiple sliding sleeves are provided on the right side of the side fixing sleeves, and all of the sliding sleeves are slidably connected to the outer wall of the fixed rod. Connectors are rotatably installed at the bottom of the side fixing sleeves and the multiple sliding sleeves, and curtains are provided at the bottom of the connectors. The front end of the top frame has a flip adjustment unit, which includes a U-shaped frame that is slidably connected to the top frame, and multiple sets of rotating gears adapted to the connectors are provided inside the U-shaped frame.
[0007] Preferably, the traction mechanism further includes four sets of mounting plates, which are located at the top of the outer walls on both sides of the bottom frame. A rotating shaft is rotatably connected between adjacent mounting plates on both sides, and an auxiliary roller is fitted on the rotating shaft. A storage pull rope is provided on the left auxiliary roller. The top of the storage pull rope passes through the side fixing sleeve and multiple sets of sliding sleeves, and the top of the storage pull rope is fixedly connected to the outer wall of the rightmost sliding sleeve. The storage pull rope is slidably connected to the side fixing sleeve and multiple sets of sliding sleeves. An unfolding pull rope is provided on the right auxiliary roller. The top of the unfolding pull rope is fixedly connected to the outer wall of the rightmost sliding sleeve. Limiting connecting ropes are installed between the side fixing sleeve and adjacent sliding sleeves, and between adjacent sliding sleeves. Pull rings are installed at the bottom of the unfolding pull rope and the storage pull rope, and the outer surface of the pull rings is covered with anti-slip rubber sleeves.
[0008] Preferably, the flip adjustment unit further includes multiple sets of rotating rods, with both ends of each set of rotating rods rotatably connected to the inner wall of the U-shaped frame, and a rotating gear sleeved on the outer wall of the rotating rod, with the open end of the U-shaped frame facing the outer wall of the connector.
[0009] Preferably, the outer wall of the connector has multiple sets of toothed grooves adapted to the rotating gears, and the multiple sets of toothed grooves are meshed with the rotating gears. The multiple sets of toothed grooves are distributed in a ring array on the outer wall of the connector. The inner cavity of the U-shaped frame is also provided with a slidingly connected adjusting toothed plate. The adjusting toothed plate is meshed with the multiple sets of rotating gears, and the top of the adjusting toothed plate penetrates through the right outer wall of the U-shaped frame. The adjusting toothed plate is slidably connected to the right side wall of the U-shaped frame. A hand ring is installed on the top of the adjusting toothed plate, and the outer surface of the hand ring is embedded with corrugated protrusions.
[0010] Preferably, the front end of the top frame has a through opening, and the opening is slidably connected to the U-shaped frame. T-shaped grooves are provided at the top and bottom of the opening. T-shaped blocks that are adapted to the T-shaped grooves are installed in the middle of the upper surface and the middle of the lower surface of the U-shaped frame, and the T-shaped blocks are slidably connected to the T-shaped grooves.
[0011] Preferably, the front and rear outer walls of the fixed rod are provided with guide grooves, which are distributed in a transverse direction. Each set of sliding sleeves has a limiting slider that matches the guide groove installed on both inner walls. The limiting slider is slidably connected to the guide groove, and the outer surface of each set of limiting sliders is coated with lubricating oil.
[0012] Preferably, the side of the T-block near the T-shaped groove is provided with an anti-slip layer, and the front outer wall of the U-shaped frame is connected to a handle, and the hand-held end of the handle is covered with an anti-slip rubber sleeve.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] This invention utilizes a traction mechanism to pull a pull cord, which causes multiple sets of sliding sleeves to slide on a fixed rod. Because limiting connecting ropes connect the side fixed sleeves to adjacent sliding sleeves, and between adjacent sliding sleeves, these limiting connecting ropes limit the spacing between adjacent slats after they are unfolded. By pulling the retracting pull cord, multiple sets of sliding sleeves can move towards one side of the side fixed sleeve, thus retracting the slats. The venetian blinds built into the double-glazed insulated glass can be pulled laterally on the top side, making operation convenient and simple, facilitating the unfolding and retraction of the blinds. After the slats are unfolded, the sliding connection between the U-shaped frame and the top frame on the flip adjustment unit... This allows multiple sets of rotating gears to mesh with the grooves on the outer wall of the connector. Pulling the adjusting plate causes the multiple sets of rotating gears to rotate synchronously. Since the rotating gears mesh with the grooves on the corresponding connector, the bottom slats of each rotating connector rotate synchronously, allowing for quick adjustment of the slat angle. The width of the closing gap between adjacent slats and the maximum viewing angle are significantly reduced, preventing outside views into the interior and protecting privacy. The double-glazed windows with built-in blinds are easy to operate and effortless to use. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of the present invention;
[0016] Figure 2 This is a schematic diagram of the connection structure between the traction mechanism and the curtain slats of the present invention;
[0017] Figure 3 This is a schematic diagram of the traction mechanism, the tilting adjustment unit, and the curtain slat connection structure of the present invention;
[0018] Figure 4 This is a schematic diagram of the flip adjustment unit structure of the present invention;
[0019] Figure 5 For the present invention Figure 2 Enlarged structural diagram at point A in the middle;
[0020] Figure 6 For the present invention Figure 4 Enlarged structural diagram at point B.
[0021] In the diagram: 1. Top frame; 2. Bottom frame; 3. Glass mounting frame; 4. Transparent glass plate; 5. Curtain slats; 6. Traction mechanism; 600. Fixing rod; 601. Side fixing sleeve; 602. Sliding sleeve; 603. Mounting plate; 604. Auxiliary roller; 605. Unfolding pull rope; 606. Retracting pull rope; 607. Pull ring; 608. Limiting connecting rope; 609. Connector; 610. Gear groove; 7. Flip adjustment unit; 700. U-shaped frame; 701. Adjusting gear plate; 702. Hand ring; 703. Rotating rod; 704. Rotating gear; 705. T-block; 706. Handle. Detailed Implementation
[0022] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example
[0023] Please see Figure 1-6 This invention provides a technical solution: a double-glazed window with built-in blinds that can be pulled horizontally from the top. The double-glazed window with built-in blinds is an advanced window design that integrates the functions of double-glazed windows and blinds. This type of window features an air layer between the two panes of glass, effectively isolating indoor and outdoor temperatures and noise. A blind system is designed between these two panes of glass, allowing for adjustment of the window's transparency and light transmission as needed. However, existing double-glazed windows with built-in blinds typically use a vertical retraction and unfolding method, simultaneously adjusting the slat angle during vertical unfolding. However, the closing gap width between adjacent slats and the maximum viewing angle cannot be significantly reduced, resulting in the outside being able to see into the interior, and the blinds' privacy protection effect is poor. The system includes a top frame 1, a bottom frame 2 installed at the bottom of the top frame 1, and glass mounting frames 3 connected to the front and rear ends of the bottom frame 2. Each set... Each glass mounting frame 3 is equipped with a transparent glass plate 4. A hollow layer is provided between adjacent transparent glass plates 4, and the hollow layer is connected to the inner cavity of the top frame 1. The top frame 1 is equipped with a traction mechanism 6, which includes a fixed rod 600. The two ends of the fixed rod 600 are connected to the inner walls of both sides of the top frame 1. A side fixing sleeve 601 is fixedly connected to the left side of the outer wall of the fixed rod 600. Multiple sets of sliding sleeves 602 are provided on the right side of the side fixing sleeve 601, and the multiple sets of sliding sleeves 602 are slidably connected to the outer wall of the fixed rod 600. Connectors 609 are rotatably installed at the bottom of the side fixing sleeve 601 and the multiple sets of sliding sleeves 602. A curtain slat 5 is provided at the bottom of the connector 609. The front end of the top frame 1 is equipped with a flip adjustment unit 7, which includes a U-shaped frame 700. The U-shaped frame 700 is slidably connected to the top frame 1, and multiple sets of rotating gears 704 adapted to the connectors 609 are provided inside the U-shaped frame 700.
[0024] Before use, the top frame 1 and bottom frame 2 are installed in their corresponding positions, and the traction mechanism 6 and the flip adjustment unit 7 are installed in their designated positions. By pulling the unfolding pull rope 605 on the traction mechanism 6 (the auxiliary roller 604 assists in pulling the unfolding pull rope 605, ensuring smooth pulling), multiple sets of sliding sleeves 602 can slide on the fixed rod 600. Since the side fixed sleeve 601 and adjacent sliding sleeves 602 are connected by limiting connecting ropes 608, and between adjacent sliding sleeves 602, the limiting connecting ropes 608 limit the spacing between adjacent curtain slats 5 after unfolding. By pulling the retracting pull rope 606, multiple sets of sliding sleeves 602 can move towards one side of the side fixed sleeve 601, thus retracting the curtain slats 5. The blinds built into the double-glazed insulated glass can be pulled horizontally on the top side, making operation convenient and simple, facilitating the unfolding and retraction of the blinds. After the curtain slats 5 are unfolded… By sliding the U-shaped frame 700 on the flip adjustment unit 7 to the top frame 1, multiple sets of rotating gears 704 are engaged with the toothed grooves 610 on the outer wall of the connector 609 (the top of the connector 609 is rotatably connected to the sliding sleeve 602 and the bottom of the side fixing sleeve 601 via a bearing). Then, by pulling the adjustment tooth plate 701, the multiple sets of rotating gears 704 are engaged with the adjustment tooth plate 701, which in turn drives the multiple sets of rotating gears 704 to rotate synchronously. Since the rotating gears 704 are engaged with the multiple sets of toothed grooves 610 on the corresponding connector 609, the bottom curtain slats 5 of each rotating connector 609 are flipped synchronously, which can quickly adjust the angle of the curtain slats 5. The closing gap width between adjacent curtain slats 5 and the degree of the maximum visible angle are significantly reduced, preventing peeping into the room from the outside and protecting privacy. The venetian blinds built into the double-glazed insulated glass are easy to operate and use.
[0025] The traction mechanism 6 includes four sets of mounting plates 603, which are located at the top of the outer walls on both sides of the base frame 2. A rotating shaft connects adjacent mounting plates 603 on both sides, and an auxiliary roller 604 is fitted onto the rotating shaft. A pull rope 606 is mounted on the left auxiliary roller 604. The top of the pull rope 606 passes through a side fixing sleeve 601 and multiple sliding sleeves 602, and the top of the pull rope 606 is fixedly connected to the outer wall of the rightmost sliding sleeve 602. 606 is slidably connected to the side fixing sleeve 601 and multiple sets of sliding sleeves 602. The right auxiliary roller 604 is provided with an unfolding pull rope 605. The top of the unfolding pull rope 605 is fixedly connected to the outer wall of the rightmost sliding sleeve 602. Limiting connecting ropes 608 are installed between the side fixing sleeve 601 and the adjacent sliding sleeve 602, and between the adjacent sliding sleeves 602. Pull rings 607 are installed at the bottom of the unfolding pull rope 605 and the storage pull rope 606, and the outer surface of the pull rings 607 is covered with anti-slip rubber sleeves.
[0026] Both the unfolding pull cord 605 and the retracting pull cord 606 are fitted onto the auxiliary roller 604. The side fixing sleeve 601 and multiple sets of sliding sleeves 602 each have through holes, which are slidably connected to the fixing rod 600. The side fixing sleeve 601 is fixedly connected to the fixing rod 600. When retracting the curtain slat 5, pulling the retracting pull cord 606 causes the auxiliary roller 604 to rotate, thus moving the retracting pull cord 606 to one side. The rightmost sliding sleeve 602 moves to the left, and this movement causes the adjacent sliding sleeve 602 to move to the left, and so on, sequentially moving the auxiliary roller 604 and the retracting pull cord 606 to the left. The sliding sleeve 602 moves to the left, causing multiple sets of sliding sleeves 602 to fit together. The sliding sleeve 602 at the right end of the side fixing sleeve 601 fits against the outer wall of the side fixing sleeve 601, thus folding in the curtain slat 5. When the curtain slat 5 is unfolded, the unfolding pull cord 605 is pulled. The pulling of the unfolding pull cord 605 causes the rightmost sliding sleeve 602 to move to the right. The rightmost sliding sleeve 602 causes each set of sliding sleeves 602 on the left to move to the right. The limiting connecting cord 608 limits the unfolding distance between adjacent sliding sleeves 602 and between the sliding sleeve 602 and the side fixing sleeve 601, ensuring that the unfolding time of the curtain slat 5 is consistent.
[0027] The flip adjustment unit 7 also includes multiple sets of rotating rods 703. Both ends of each set of rotating rods 703 are rotatably connected to the inner wall of the U-shaped frame 700, and the rotating gear 704 is sleeved on the outer wall of the rotating rod 703. The open end of the U-shaped frame 700 is directly opposite the outer wall of the connector 609.
[0028] The outer wall of the connector 609 has multiple sets of toothed grooves 610 that are adapted to the rotating gear 704, and the multiple sets of toothed grooves 610 are meshed with the rotating gear 704. The multiple sets of toothed grooves 610 are arranged in a ring array on the outer wall of the connector 609. The inner cavity of the U-shaped frame 700 is also provided with a slidingly connected adjusting toothed plate 701. The adjusting toothed plate 701 is meshed with the multiple sets of rotating gears 704, and the top of the adjusting toothed plate 701 penetrates the right outer wall of the U-shaped frame 700. The adjusting toothed plate 701 is slidably connected to the right side wall of the U-shaped frame 700. A hand ring 702 is installed on the top of the adjusting toothed plate 701, and the outer surface of the hand ring 702 is embedded with corrugated protrusions.
[0029] During the unfolding or retraction of the curtain slat 5, the U-shaped frame 700 of the flip adjustment unit 7 is pulled outward, causing the rotating gear 704 to not be in contact with the outer wall of the connector 609. When the curtain slat 5 unfolds, the U-shaped frame 700 moves inward, at which point each set of rotating gears 704 aligns with the corresponding outer wall of the connector 609, and the teeth on the outer wall of the rotating gear 704 mesh with the tooth grooves 610 on the outer wall of the corresponding connector 609. Then, the adjustment tooth plate 701 is pulled outward, because the adjustment tooth plate 701 and multiple sets of rotating gears 704... The meshing connection drives the rotating gears 704 on multiple sets of rotating rods 703 to rotate synchronously. Since the rotating gears 704 mesh with the multiple sets of toothed grooves 610 on the corresponding connecting parts 609, the bottom slats 5 of each set of rotating connecting parts 609 rotate synchronously, which can quickly adjust the angle of the slats 5. The closing gap width between adjacent slats 5 and the degree of the maximum viewing angle are significantly reduced, avoiding peeping into the room from the outside and protecting privacy. The venetian blinds built into the double-glazed insulated glass are easy to operate and use.
[0030] The top frame 1 has a through opening at its front end, which is slidably connected to the U-shaped frame 700. T-shaped grooves are provided at the top and bottom of the opening. T-shaped blocks 705 that are adapted to the T-shaped grooves are installed at the middle of the upper and lower surfaces of the U-shaped frame 700, and the T-shaped blocks 705 are slidably connected to the T-shaped grooves. The T-shaped blocks 705 are fixedly connected to the outer wall of the U-shaped frame 700. The sliding connection between the T-shaped blocks 705 and the T-shaped grooves limits the forward and backward sliding of the U-shaped frame 700, preventing the U-shaped frame 700 from detaching from the top frame 1.
[0031] Guide grooves are provided on the front and rear outer walls of the fixed rod 600. The guide grooves are distributed in a transverse direction. Each set of sliding sleeves 602 has a limiting slider that matches the guide groove on both sides of its inner wall. The limiting slider is slidably connected to the guide groove. The outer surface of each set of limiting sliders is coated with lubricating oil. Through the sliding connection between the limiting slider and the guide groove on the fixed rod 600, the sliding of the sliding sleeve 602 is limited, ensuring that the sliding sleeve 602 can slide laterally and preventing the sliding sleeve 602 from rotating during the sliding process. Example
[0032] Reference Figure 4 and Figure 6 This embodiment differs from the first embodiment in that: the T-shaped block 705 has an anti-slip layer on the side near the T-shaped groove, and the front outer wall of the U-shaped frame 700 is connected to a handle 706, and the hand-held end of the handle 706 is covered with an anti-slip rubber sleeve; the anti-slip layer plays an anti-slip role, the U-shaped frame 700 requires manual force to pull, preventing the U-shaped frame 700 from detaching from the top frame 1 when not under manual force, the handle 706 facilitates the pulling of the U-shaped frame 700, and the anti-slip rubber sleeve plays an anti-slip role, preventing the hand from slipping when holding the handle 706.
[0033] Working principle: When using this invention, firstly, the top frame 1 and bottom frame 2 are installed in corresponding positions, so that multiple sets of curtain slats 5 are located in the hollow layer between adjacent transparent glass plates 4. When storing the curtain slats 5 (both the unfolding pull cord 605 and the storing pull cord 606 are sleeved on the auxiliary roller 604, and the side fixing sleeve 601 and multiple sets of sliding sleeves 602 are all provided with through holes, the holes are slidably connected to the fixing rod 600, and the side fixing sleeve 601 is fixedly connected to the fixing rod 600), pulling the storing pull cord 606 causes the auxiliary roller 604 to rotate, thereby causing the storing pull cord 606 to move to one side, and the rightmost sliding sleeve 602 to move to the left. The movement of the rightmost sliding sleeve 602 causes the adjacent The sliding sleeve 602 moves to the left, which in turn causes the sliding sleeves 602 to move to the left in sequence, so that multiple sets of sliding sleeves 602 are in contact with each other. The sliding sleeve 602 at the right end of the side fixing sleeve 601 is in contact with the outer wall of the side fixing sleeve 601, realizing the storage of the curtain slat 5. When the curtain slat 5 is unfolded, the unfolding pull rope 605 is pulled. The pulling of the unfolding pull rope 605 causes the rightmost sliding sleeve 602 to move to the right. The rightmost sliding sleeve 602 causes each set of sliding sleeves 602 on the left to move to the right. The limiting connecting rope 608 limits the unfolding distance between adjacent sliding sleeves 602 and between the sliding sleeve 602 and the side fixing sleeve 601, ensuring that the unfolding distance of the curtain slat 5 is consistent (through the limiting slider and the guide groove on the fixing rod 600). The sliding connection limits the sliding of the sliding sleeve 602, ensuring that the sliding sleeve 602 can slide laterally and preventing the sliding sleeve 602 from rotating during the sliding process. During the unfolding or retraction of the curtain 5, the U-shaped frame 700 of the flip adjustment unit 7 is pulled outward (the T-shaped block 705 is fixedly connected to the outer wall of the U-shaped frame 700, and the sliding connection between the T-shaped block 705 and the T-shaped groove limits the forward and backward sliding of the U-shaped frame 700, preventing the U-shaped frame 700 from detaching from the top frame 1), so that the rotating gear 704 is not in contact with the outer wall of the connector 609. When the curtain 5 unfolds, the U-shaped frame 700 moves inward, and at this time each set of rotating gears 704 is aligned with the outer wall of the corresponding connector 609, rotating. The teeth on the outer wall of gear 704 are engaged with the tooth grooves 610 on the outer wall of the corresponding connector 609. Then, the adjusting tooth plate 701 is pulled outward. Since the adjusting tooth plate 701 is engaged with multiple sets of rotating gears 704, it drives the rotating gears 704 on multiple sets of rotating rods 703 to rotate synchronously. Since the rotating gears 704 are engaged with multiple sets of tooth grooves 610 on the corresponding connector 609, the bottom curtain slats 5 of each rotating connector 609 are rotated synchronously, which can quickly adjust the angle of the curtain slats 5. The closing gap width and the maximum viewing angle between adjacent curtain slats 5 are significantly reduced, avoiding peeping into the room from the outside and protecting privacy. The venetian blinds built into the double-glazed insulated glass are easy to operate and use.
[0034] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A double-glazed window with built-in blinds that can be pulled laterally from the top, comprising a top frame (1), characterized in that: The bottom of the top frame (1) is fitted with a bottom frame (2). The front and rear ends of the bottom frame (2) are connected to glass mounting frames (3). Each set of glass mounting frames (3) contains a transparent glass plate (4). A hollow layer is provided between adjacent transparent glass plates (4), and the hollow layer is connected to the inner cavity of the top frame (1). The top frame (1) contains a traction mechanism (6). The traction mechanism (6) includes a fixing rod (600). The two ends of the fixing rod (600) are connected to the inner walls of both sides of the top frame (1), and a side fixing sleeve (601) is fixedly connected to the left side of the outer wall of the fixing rod (600). The right side is provided with multiple sets of sliding sleeves (602), and the multiple sets of sliding sleeves (602) are all slidably connected to the outer wall of the fixed rod (600). The bottom of the side fixed sleeve (601) and the multiple sets of sliding sleeves (602) are rotatably installed with connectors (609), and the bottom of the connectors (609) is provided with curtains (5). The front end of the top frame (1) is provided with a flip adjustment unit (7). The flip adjustment unit (7) includes a U-shaped frame (700). The U-shaped frame (700) is slidably connected to the top frame (1), and the U-shaped frame (700) is provided with multiple sets of rotating gears (704) that are adapted to the connectors (609). The inner cavity of the U-shaped frame (700) is also provided with a slidingly connected adjusting tooth plate (701). The adjusting tooth plate (701) is meshed with multiple sets of rotating gears (704), and the top of the adjusting tooth plate (701) penetrates the right outer wall of the U-shaped frame (700). The adjusting tooth plate (701) is slidably connected to the right side wall of the U-shaped frame (700). A hand ring (702) is installed on the top of the adjusting tooth plate (701), and the outer surface of the hand ring (702) is embedded with corrugated protrusions.
2. The double-glazed insulated glass window with built-in blinds that can be laterally pulled from the top as described in claim 1, characterized in that: The traction mechanism (6) also includes four sets of mounting plates (603). The four sets of mounting plates (603) are located at the top of the outer walls on both sides of the bottom frame (2). A rotating shaft is rotatably connected between the adjacent mounting plates (603) on both sides, and an auxiliary roller (604) is sleeved on the rotating shaft.
3. A double-glazed insulated glass window with built-in blinds that can be laterally pulled from the top side according to claim 2, characterized in that: The left auxiliary roller (604) is provided with a storage pull rope (606). The top of the storage pull rope (606) passes through the side fixing sleeve (601) and multiple sets of sliding sleeves (602), and the top of the storage pull rope (606) is fixedly connected to the outer wall of the rightmost sliding sleeve (602). The storage pull rope (606) is slidably connected to the side fixing sleeve (601) and multiple sets of sliding sleeves (602).
4. A double-glazed insulated glass window with built-in blinds that can be laterally pulled from the top side according to claim 2, characterized in that: The right auxiliary roller (604) is provided with an unfolding pull rope (605). The top of the unfolding pull rope (605) is fixedly connected to the outer wall of the rightmost sliding sleeve (602). Limiting connecting ropes (608) are installed between the side fixing sleeve (601) and the adjacent sliding sleeve (602) and between the adjacent sliding sleeves (602). Pull rings (607) are installed at the bottom of the unfolding pull rope (605) and the storage pull rope (606), and the outer surface of the pull ring (607) is covered with an anti-slip rubber sleeve.
5. A double-glazed insulated glass window with built-in blinds that can be laterally pulled from the top side according to claim 1, characterized in that: The flip adjustment unit (7) also includes multiple sets of rotating rods (703). Both ends of each set of rotating rods (703) are rotatably connected to the inner wall of the U-shaped frame (700), and the rotating gear (704) is sleeved on the outer wall of the rotating rod (703). The open end of the U-shaped frame (700) is directly opposite the outer wall of the connector (609).
6. A double-glazed insulated glass window with built-in blinds that can be laterally pulled from the top side according to claim 5, characterized in that: The outer wall of the connector (609) has multiple sets of tooth grooves (610) adapted to the rotating gear (704), and the multiple sets of tooth grooves (610) are meshed with the rotating gear (704). The multiple sets of tooth grooves (610) are distributed in a ring array on the outer wall of the connector (609).
7. A double-glazed insulated glass window with built-in blinds that can be laterally pulled from the top side according to claim 1, characterized in that: The top frame (1) has a through opening at its front end, and the opening is slidably connected to the U-shaped frame (700). The top and bottom of the opening are provided with T-shaped grooves. The middle of the upper surface and the middle of the lower surface of the U-shaped frame (700) are provided with T-shaped blocks (705) that are compatible with the T-shaped grooves, and the T-shaped blocks (705) are slidably connected to the T-shaped grooves.
8. A double-glazed insulated glass window with built-in blinds that can be laterally pulled from the top side according to claim 1, characterized in that: The front and rear outer walls of the fixed rod (600) are provided with guide grooves, which are distributed in a transverse direction. Each set of sliding sleeves (602) has a limiting slider that is compatible with the guide groove installed on both inner walls. The limiting slider is slidably connected to the guide groove. The outer surface of each set of limiting sliders is coated with lubricating oil.
9. A double-glazed insulated glass window with built-in blinds that can be laterally pulled from the top side according to claim 7, characterized in that: The T-shaped block (705) has an anti-slip layer on the side near the T-shaped groove, and the front outer wall of the U-shaped frame (700) is connected to a handle (706), and the hand-held end of the handle (706) is covered with an anti-slip rubber sleeve.
Citation Information
Patent Citations
Shutter adjusting device of hollow built-in shutter glass window
CN210530696U