Universal aluminum material structure for embedded window decoration products

By designing a recessed sealing strip slot and a self-locking corner bracket for the embedded window covering product's universal aluminum material structure, the problem of non-universal aluminum materials for honeycomb blind and Venetian blind frames has been solved, achieving cost reduction and improved assembly efficiency, and adapting to different window frame depths and installation methods.

CN223577827UActive Publication Date: 2025-11-21SHENYANG RUYIYUAN SHADE TECH CO LTD
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Patent Information

Application Number
CN202423171212.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-21
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The existing aluminum frame structure designs for honeycomb blinds and venetian blinds are not interchangeable, resulting in high design, manufacturing and storage costs, low assembly stability and efficiency, and different installation methods that prevent the profile structures from being used interchangeably.

Method used

Design a universal aluminum structure for embedded window covering products, featuring recessed sealing strip slots, self-locking corner brackets, and motor slot aluminum frames, which can adapt to window frames of different depths, improving versatility and assembly stability.

Benefits of technology

It reduces design and manufacturing costs, improves assembly efficiency and robustness, adapts to different installation methods, reduces the impact of production line switching, and enhances the versatility and aesthetics of aluminum structures.

✦ Generated by Eureka AI based on patent content.

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Abstract

A universal aluminum structure for embedded window decoration products belongs to the technical field of sunshade window decoration products, the aluminum structure is provided with a curtain frame and a curtain frame cover plate which are of special section bar structures, a concave sealing strip slot is formed in a window frame fitting cavity side, an opening of the sealing strip slot is flush with the surface of a long partition plate, and the aluminum structure can adapt to window frames with any depth after an I-shaped sealing strip is inserted. The universality of the aluminum material structure is improved; the concave sealing strip slot does not occupy the space of the window frame fitting cavity, and is more suitable for the window frame with large depth; after installation, the aluminum structure cannot obviously protrude out of the window frame and is closer to be flush. The aluminum structure can be used as four frames of a honeycomb blind or a venetian blind, and has good universality. When the aluminum material structure is used as a top frame aluminum material, a motor groove frame aluminum material and an end panel which are matched with the aluminum material structure are further designed. A self-locking corner connector matched with the aluminum material structure is further designed, so that the assembly firmness and the assembly efficiency are improved; the designed corner piece can be locked together with the corner connector, and firmer frame aluminum material assembly is achieved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of sunshade window decoration products, specifically relating to a general aluminum material structure for embedded window decoration products. Background Technology

[0002] In the field of interior decoration, blinds such as honeycomb blinds (pleated blinds) and Venetian blinds are used to block sunlight, regulate light, and protect privacy.

[0003] Honeycomb blinds (accordion blinds) are created by folding and connecting multiple layers of fabric in a specific way to form independent hollow hexagonal units. Venetian blinds, on the other hand, are favored for their adjustable slat angles. In terms of control methods, both honeycomb blinds (accordion blinds) and Venetian blinds have evolved from manual cord control to electric remote control, and can even be integrated with smart home systems to achieve intelligent scene linkage.

[0004] Honeycomb blinds (gusseted blinds) and Venetian blinds require various compatible aluminum frame structures to restrain the fabric. These frame structures also need to accommodate the built-in installation of the drive system. The shapes of the aluminum frame include the top frame, left and right frame, and bottom frame.

[0005] Currently, the top frame aluminum profile, left and right side frame aluminum profiles, and bottom frame aluminum profiles are typically designed with separate shapes to suit the application characteristics of different locations; that is, the top frame aluminum profile, side frame aluminum profile, and bottom frame aluminum profile are not interchangeable. Furthermore, due to the different structural characteristics and operating methods of curtain fabrics, the side frame aluminum profiles for (gusseted blinds) and Venetian blinds are also not interchangeable. In addition, the profile structures differ because of the different installation methods for ceilings or windows. The incompatibility of different profile structures significantly increases design, manufacturing, and storage costs, and switching between different shapes on the production line also affects production efficiency and yield rates. Moreover, the assembly strength and efficiency of the four side frame profiles need to be improved. Utility Model Content

[0006] The existing aluminum frame materials for different parts are not interchangeable, nor are those for honeycomb blinds and Venetian blinds. Furthermore, aluminum structures for different installation methods are also not interchangeable, resulting in high design, manufacturing, and storage costs. The assembly stability and efficiency of the four frame profiles also need improvement. This utility model provides a universal aluminum structure for embedded window coverings. This aluminum structure can be used as the four frames for honeycomb blinds or Venetian blinds, offering excellent versatility. A recessed sealing strip slot is provided on the side of the window frame fitting cavity, with its opening flush with the surface of the long partition. After inserting the I-shaped sealing strip, it can adapt to window frames of any depth, improving the versatility of the aluminum structure. Moreover, the recessed sealing strip slot does not occupy the space of the window frame fitting cavity itself, making it more suitable for deep window frames; and after installation, the aluminum structure does not protrude significantly from the window frame, appearing closer to a flush surface. End panels are installed on both ends of the motor slot frame aluminum profile, effectively protecting the end faces of the motor slot frame aluminum profile and the internal motor and battery equipment. The corner brackets are designed with self-locking properties, improving assembly stability and efficiency; the corner pieces are designed to lock together with the corner brackets, achieving a more robust assembly of the aluminum frame. The specific technical solution is as follows:

[0007] A general aluminum structure for embedded window coverings includes a curtain frame 1 and a curtain frame cover 2. The cross-section of the curtain frame 1 is divided by a middle plate 1.0. The middle plate 1.0 facing the window frame is divided into two L-shaped cavities by a long partition 1.1, namely a cavity 1.2 and a window frame fitting cavity 1.3. A corner slot 1.21 is provided on the side of the long partition 1.1 in the cavity 1.2, and the cavity 1.2 is sealed by the curtain frame cover 2. The long partition 1.1 is located on the window frame. A recessed sealing strip slot 1.31 is provided on the side of the fitting cavity 1.3. The opening of the sealing strip slot 1.31 is flush with the surface of the long partition 1.1. A rectangular corner bracket insertion hole 1.32 is provided on the side of the window frame fitting cavity 1.3 located on the middle plate 1.0. The side of the middle plate 1.0 facing the curtain is divided into two U-shaped cavities by three short partitions 1.4, namely the functional cavity 1.5 and the glass cavity 1.6. The functional cavity 1.5 is provided with a slot 1.51 on the side of the middle plate 1.0.

[0008] In the above technical solution, the middle plate 1.0 facing the curtain does not separate the glass cavity 1.6 and does not install glass; that is, only two short partitions 1.4 are used to separate the functional cavity 1.5.

[0009] In the above technical solution, the aluminum structure can be used as the top frame aluminum material, left and right side frame aluminum material and bottom frame aluminum material of honeycomb blind, and can also be used as the top frame aluminum material, left and right side frame aluminum material and bottom frame aluminum material of venetian blind; when the aluminum structure is used as the top frame aluminum material of honeycomb blind or venetian blind, the slot 1.51 is inserted with the motor slot frame aluminum material 3.

[0010] In the above technical solution, the aluminum material 3 of the motor slot frame includes an F-shaped main slot frame 3.1 and a side cover plate 3.2. The side cover plate 3.2 covers the side opening of the F-shaped main slot frame 3.1 to form a closed cavity 3.3. The F-shaped main slot frame 3.1 has a retaining 3.11 on the side facing the window frame that is engaged with the slot 1.51. The F-shaped main slot frame 3.1 also has screw mounting holes 3.12 on the side facing the window frame and a wire channel 3.13 on the side facing the window frame.

[0011] In the above technical solution, the aluminum material 3 of the motor slot frame is provided with a curtain slot 3.4 facing the curtain side; a cover edge 3.5 extends below the curtain slot 3.4; the closed cavity 3.3 is used to house the motor and battery; the curtain slot 3.4 is used to insert the curtain rod.

[0012] In the above technical solution, end panels 4 are installed on both ends of the aluminum profile of the motor slot frame 3. The end panels 4 have screw through holes 4.1, which correspond to screw mounting holes 3.12. The end panels 4 are fixed to both ends of the aluminum profile of the motor slot frame 3 by screws.

[0013] In the above technical solution, a right-angled L-shaped corner bracket 5 is inserted into the corner bracket 1.32 to achieve the angled connection and fixation between the four aluminum structures; the corner bracket 5 is flat when it is attached to the middle plate 1.0, and it is a wave-shaped surface when it is facing away from the middle plate 1.0. The maximum cross-sectional area of ​​the corner bracket 5 is equal to the hole area of ​​the corner bracket 1.32.

[0014] In the above technical solution, the corner bracket 5 is also provided with a nail hole 5.1 for screwing in a screw, with the screw end resting on the middle plate 1.0 to fix the corner bracket 5 to the middle plate 1.0; the corner bracket 5 is also provided with a wire hole 5.2.

[0015] In the above technical solution, a right-angled L-shaped corner piece 6 is inserted into the corner slot 1.21 to achieve the angled connection and fixation between the four aluminum structures.

[0016] In the above technical solution, the aluminum structure is snapped into the window frame, the sealing strip slot 1.31 is inserted with an I-shaped sealing strip, and the window frame fitting cavity 1.3 is snapped into the window frame.

[0017] In the above technical solution, the corner code socket 1.32 is located inside the functional cavity 1.5, that is, the window frame fitting cavity 1.3 does not have a corner code socket 1.32, and the functional cavity 1.5 has a rectangular corner code socket 1.32 on the side of the middle plate 1.0; the functional cavity 1.5 does not have a slot 1.51, and the functional cavity 1.5 extends and expands to accommodate the drive mechanism.

[0018] The present invention provides a universal aluminum material structure for embedded window decoration products, which has the following advantages:

[0019] I. This utility model's aluminum structure features a recessed sealing strip slot on the long partition side of the window frame fitting cavity. The slot is for inserting an I-shaped sealing strip, the thickness of which can be arbitrarily designed to accommodate window frames of any depth. This eliminates the need to customize the installation cavity depth based on the window frame thickness, significantly reducing design costs and achieving versatility for the aluminum structure. The recessed sealing strip slot's opening is flush with the surface of the long partition, not occupying space within the window frame fitting cavity itself, making it suitable for deep window frames. Furthermore, after installation, the aluminum structure does not protrude significantly from the window frame; the aluminum structure and window frame are nearly flush.

[0020] Second, the I-shaped sealing strip has a better isolation effect on water vapor, preventing water vapor from seeping into the space between the curtain and the window glass and causing water mist, effectively ensuring the transparency of the glass; it can also effectively prevent the internal components from corroding.

[0021] 3. A shielding edge is provided below the curtain slot of the aluminum material of the motor slot frame. The shielding edge can protect the curtain and cover the curtain connection end, making it more beautiful and preventing light leakage.

[0022] IV. End panels are installed on both ends of the aluminum profile of the motor slot frame. These end panels are fixed to both ends of the aluminum profile with screws. The end panels effectively protect the end faces of the aluminum profile, as well as the internal motor and battery components, and prevent scratches from the sharp edges of the aluminum profile. After the slot is inserted into the aluminum profile of the motor slot frame, the space in the middle of the slot is relatively large, allowing for the passage of motor or battery wires, resulting in high space utilization.

[0023] V. Existing conventional corner brackets are slender, right-angled L-shaped strips. The cross-section of the corner bracket is much smaller than the inner diameter of the corner bracket slot. When corner brackets are used to connect the ends of two adjacent aluminum structures, the corner brackets do not provide self-locking restraint for the two adjacent aluminum structures (the aluminum structures will move relative to the corner brackets, without constraint), which is inconvenient for subsequent screw fastening operations and results in low installation efficiency. The corner bracket structure designed in this utility model not only saves material for the corner brackets but also ensures the thickness of the corner brackets, making the maximum cross-sectional area of ​​the corner bracket equal to the slot area of ​​the corner bracket slot. After the two ends of the corner bracket are inserted into the corner bracket slots of the aluminum structures, the cross-sectional size of the corner bracket can completely fill the corner bracket slots, preventing the aluminum structures from moving relative to the corner brackets. That is, the corner brackets provide self-locking restraint for the two adjacent aluminum structures, making subsequent screw fastening operations more convenient, improving assembly firmness and assembly efficiency. In addition, even without screw fastening, the corner brackets can effectively fix two adjacent aluminum structures.

[0024] 6. Corner slots are provided within the cavity for inserting corner pieces. These corner pieces can be used in conjunction with corner brackets to lock together, achieving a more robust assembly of the aluminum frame. The corner slots and corner bracket insertion holes are located in different cavities to avoid interference and facilitate easy insertion.

[0025] VII. The aluminum structure of this utility model can be used as the top frame aluminum material, left and right side frame aluminum material and bottom frame aluminum material of honeycomb blinds, and can also be used as the top frame aluminum material, left and right side frame aluminum material and bottom frame aluminum material of Venetian blinds, which has good versatility.

[0026] In summary, this utility model's aluminum structure features a curtain frame and curtain frame cover with a special profile structure. A recessed sealing strip slot is provided on the side of the window frame fitting cavity, its opening flush with the surface of the long partition. After inserting the I-shaped sealing strip, it can adapt to window frames of any depth, improving the versatility of the aluminum structure. Furthermore, the recessed sealing strip slot does not occupy the space of the window frame fitting cavity itself, making it more suitable for deep window frames. After installation, the aluminum structure does not protrude significantly from the window frame, remaining nearly flush. The aluminum structure can be used as the four frames of honeycomb blinds or Venetian blinds, exhibiting excellent versatility. When used as the top frame aluminum structure, a motor slot frame aluminum structure and end panels adapted to the aluminum structure are also designed. Self-locking corner brackets adapted to the aluminum structure are also designed to improve assembly firmness and efficiency; the corner pieces are designed to lock together with the corner brackets, achieving a more secure frame aluminum assembly. The aluminum structure has significant practical value. Attached Figure Description

[0027] Figure 1 This is a cross-sectional view of the aluminum material structure of a general-purpose aluminum material structure for an embedded window decoration product according to embodiments 1 and 2 of this utility model;

[0028] Figure 2 This is a cross-sectional view of the motor slot frame aluminum material of a general aluminum material structure for an embedded window decoration product according to embodiments 1 and 2 of this utility model;

[0029] Figure 3 This is a perspective view of the combination of the motor slot frame aluminum material and the end panel of a general aluminum material structure for an embedded window decoration product according to Embodiment 2 of this utility model.

[0030] Figure 4 This is a cross-sectional view of the aluminum material structure and motor slot frame aluminum material combination of a general aluminum material structure for an embedded window decoration product according to embodiments 1 and 2 of this utility model;

[0031] Figure 5 This is a perspective view of a corner bracket of a general aluminum material structure for an embedded window decoration product according to embodiments 1, 2 and 3 of this utility model;

[0032] Figure 6 This is a perspective view of a corner piece of a general aluminum material structure for an embedded window decoration product according to embodiments 1, 2 and 3 of this utility model;

[0033] Figure 7 Cross-sectional views of the aluminum material structure, motor slot frame aluminum material, corner bracket, and corner piece combination of a general aluminum material structure for an embedded window decoration product according to embodiments 1 and 2 of this utility model;

[0034] Figure 8 This is a perspective view of the aluminum material structure, motor slot frame aluminum material, corner bracket, and corner piece combination of a general aluminum material structure for an embedded window decoration product according to embodiments 1 and 2 of this utility model.

[0035] Figure 9 This is a three-dimensional schematic diagram of the three-sided aluminum material structure, motor slot frame aluminum material, corner bracket, and corner piece combination of a general aluminum material structure for an embedded window decoration product according to embodiments 1 and 2 of this utility model.

[0036] Figure 10 This is a cross-sectional view of the aluminum material structure (without glass cavity) of a general aluminum material structure for an embedded window decoration product according to Embodiment 3 of this utility model.

[0037] Figure 11 This is a cross-sectional view of the aluminum material structure of a general-purpose aluminum material structure for an embedded window decoration product according to Embodiment 4 of this utility model;

[0038] Figures 1-11 Components: 1-Curtain frame, 1.0-Intermediate plate, 1.1-Long partition, 1.2-Cavity, 1.21-Corner slot, 1.3-Window frame fitting cavity, 1.31-Sealing strip slot, 1.32-Corner code insertion hole, 1.4-Short partition, 1.5-Functional cavity, 1.51-Slot, 1.6-Glass cavity; 2-Curtain frame cover; 3-Motor slot frame aluminum material, 3.1-F-type main slot frame, 3.11-Corner, 3.12-Screw mounting hole, 3.13-Wire channel, 3.2-Side cover plate, 3.3-Closed cavity, 3.4-Curtain slot, 3.5-Blinding edge; 4-End panel, 4.1-Screw through hole; 5-Corner code, 5.1-Nail hole, 5.2-Wire channel hole; 6-Corner piece. Detailed Implementation

[0039] The following are specific implementation cases and appendices. Figures 1-11 The present invention will be further described below, but the present invention is not limited to these embodiments.

[0040] Example 1

[0041] A common aluminum material structure for embedded window covering products, such as Figure 1 , Figure 2 , Figures 4-9As shown, the aluminum structure includes a curtain frame 1 and a curtain frame cover plate 2. The cross-section of the curtain frame 1 is divided by a middle plate 1.0. The middle plate 1.0 facing the window frame is divided into two L-shaped cavities by a long partition 1.1, namely a cavity 1.2 and a window frame fitting cavity 1.3. A corner bracket slot 1.21 is provided on the side of the middle plate 1.0. The cavity 1.2 is sealed by the curtain frame cover plate 2. A recessed sealing strip slot 1.31 is provided on the side of the long partition 1.1 facing the window frame fitting cavity 1.3. The opening of the sealing strip slot 1.31 is flush with the surface of the long partition 1.1. The middle plate 1.0 facing the curtain is divided into two U-shaped cavities by three short partitions 1.4, namely a functional cavity 1.5 and a glass cavity 1.6. A slot 1.51 is provided on the side of the middle plate 1.0.

[0042] The aluminum structure can be used as the top frame, left and right side frame, and bottom frame of a honeycomb blind, and also as the top frame, left and right side frame, and bottom frame of a Venetian blind. When the aluminum structure is used as the top frame of a honeycomb blind or Venetian blind, the motor slot frame aluminum material 3 is inserted into the slot 1.51. The motor slot frame aluminum material 3 includes an F-shaped main slot frame 3.1 and a side cover plate 3.2. The side cover plate 3.2 covers the side opening of the F-shaped main slot frame 3.1 to form a closed cavity 3.3. The F-shaped main slot frame 3.1 has a retaining 3.11 on the side facing the window frame that mates with the slot 1.51. The F-shaped main slot frame 3.1 also has screw mounting holes 3.12 on the side facing the window frame. The aluminum material 3 of the motor slot frame is provided with a curtain slot 3.4 facing the curtain side; a cover edge 3.5 extends below the curtain slot 3.4; the closed cavity 3.3 is used to house the motor and battery; the curtain slot 3.4 is used to insert the curtain rod.

[0043] Angle bracket slot 1.21 is used to insert right-angled L-shaped angle brackets 5, achieving angled connection and fixation between the four aluminum structures. The side of angle bracket 5 that is in contact with the middle plate 1.0 is flat, while the side of angle bracket 5 that faces away from the middle plate 1.0 is corrugated. The maximum cross-sectional area of ​​angle bracket 5 is equal to the area of ​​the slot in angle bracket slot 1.21. Angle bracket 5 also has screw holes 5.1 for screwing in screws. The screw head rests on the middle plate 1.0, thus fixing angle bracket 5 to the middle plate 1.0.

[0044] The aluminum structure is snapped into the window frame, and an I-shaped sealing strip is inserted into the sealing strip slot 1.31. The window frame fitting cavity 1.3 is snapped into the window frame.

[0045] A general aluminum structure for embedded window coverings includes a curtain frame 1 and a curtain frame cover 2. The cross-section of the curtain frame 1 is divided by a middle plate 1.0. The middle plate 1.0 facing the window frame is divided into two L-shaped cavities by a long partition 1.1, namely a cavity 1.2 and a window frame fitting cavity 1.3. A corner slot 1.21 is provided on the side of the long partition 1.1 in the cavity 1.2, and the cavity 1.2 is sealed by the curtain frame cover 2. The long partition 1.1 is located on the window frame. A recessed sealing strip slot 1.31 is provided on the side of the fitting cavity 1.3. The opening of the sealing strip slot 1.31 is flush with the surface of the long partition 1.1. A rectangular corner bracket insertion hole 1.32 is provided on the side of the window frame fitting cavity 1.3 located on the middle plate 1.0. The side of the middle plate 1.0 facing the curtain is divided into two U-shaped cavities by three short partitions 1.4, namely the functional cavity 1.5 and the glass cavity 1.6. The functional cavity 1.5 is provided with a slot 1.51 on the side of the middle plate 1.0.

[0046] In the above technical solution, the aluminum structure can be used as the top frame aluminum material, left and right side frame aluminum material, and bottom frame aluminum material for honeycomb blinds, and can also be used as the top frame aluminum material, left and right side frame aluminum material, and bottom frame aluminum material for Venetian blinds. When the aluminum structure is used as the top frame aluminum material for honeycomb blinds or Venetian blinds, the motor slot frame aluminum material 3 is inserted into the slot 1.51. The motor slot frame aluminum material 3 includes an F-shaped main slot frame 3.1 and a side cover plate 3.2. The side cover plate 3.2 covers the side opening of the F-shaped main slot frame 3.1 to form a closed cavity 3.3. The F-shaped main slot frame 3.1 has a retaining 3.11 on the window frame side that cooperates with the slot 1.51 for insertion. The F-shaped main slot frame 3.1 also has screw mounting holes 3.12 on the window frame side and a wire channel 3.13 on the window frame side. The aluminum material 3 of the motor slot frame is provided with a curtain slot 3.4 facing the curtain side; a cover edge 3.5 extends below the curtain slot 3.4; the closed cavity 3.3 is used to house the motor and battery; the curtain slot 3.4 is used to insert the curtain rod.

[0047] Angle bracket 5, a right-angled L-shaped bracket, is inserted into angle bracket 1.32 to achieve angled joint fixation between the four aluminum structures. Angle bracket 5 has a flat surface against the middle plate 1.0 and a wavy surface facing away from the middle plate 1.0. The maximum cross-sectional area of ​​angle bracket 5 is equal to the area of ​​angle bracket 1.32. Angle bracket 5 also has a nail hole 5.1 for screwing in screws, with the screw tip resting on the middle plate 1.0 to fix angle bracket 5 to the middle plate 1.0. Angle bracket 5 also has a through hole 5.2. Angle piece slot 1.21 contains a right-angled L-shaped corner piece 6 to achieve angled joint fixation between the four aluminum structures.

[0048] The aluminum structure is snapped into the window frame, and an I-shaped sealing strip is inserted into the sealing strip slot 1.31. The window frame fitting cavity 1.3 is snapped into the window frame.

[0049] Example 2

[0050] This embodiment describes a general aluminum material structure for an embedded window covering product, similar to that described in Embodiment 1. The difference between this embodiment and Embodiment 1 is as follows:

[0051] End panels 4 are installed on both ends of the aluminum profile 3 of the motor slot frame. Each end panel 4 has screw through holes 4.1, which correspond to screw mounting holes 3.12. The end panels 4 are fixed to both ends of the aluminum profile 3 of the motor slot frame by screws. Figure 3 As shown.

[0052] Example 3

[0053] This embodiment describes a general aluminum material structure for an embedded window covering product, similar to that described in Embodiment 1. The difference between this embodiment and Embodiment 1 is as follows:

[0054] The middle plate 1.0 facing the curtain does not separate the glass cavity 1.6, and no glass is installed; that is, only two short partitions 1.4 are used to separate the functional cavity 1.5. For example... Figure 10 As shown.

[0055] Example 4

[0056] A common aluminum material structure for embedded window covering products, such as Figure 11 As shown, the aluminum structure includes a curtain frame 1 and a curtain frame cover plate 2. The cross-section of the curtain frame 1 is divided by a middle plate 1.0. The middle plate 1.0 facing the window frame is divided into two L-shaped cavities by a long partition 1.1, namely a cavity 1.2 and a window frame fitting cavity 1.3. A corner slot 1.21 is provided on the side of the long partition 1.1. The cavity 1.2 is sealed by the curtain frame cover plate 2. A recessed sealing strip slot 1.31 is provided on the side of the long partition 1.1 facing the window frame fitting cavity 1.3. The opening of the sealing strip slot 1.31 is flush with the surface of the long partition 1.1. The middle plate 1.0 facing the curtain is divided into two U-shaped cavities by three short partitions 1.4, namely a functional cavity 1.5 and a glass cavity 1.6. A rectangular corner bracket insertion hole 1.32 is provided on the side of the middle plate 1.0. The functional cavity 1.5 extends and enlarges to accommodate the drive mechanism. The aluminum structure in this embodiment is used for the top frame aluminum material of manually driven honeycomb blinds or venetian blinds.

[0057] The corner bracket 1.32 is located inside the functional cavity 1.5, which does not occupy the space of the window frame fitting cavity 1.3, and helps the window frame fitting cavity 1.3 to fit better with the window frame.

Claims

1. A universal aluminum structure for embedded window covering products, the aluminum structure comprising a curtain frame (1) and a curtain frame cover plate (2), characterized in that, The cross-section of the curtain frame (1) is divided by a middle plate (1.0). The middle plate (1.0) facing the window frame is divided into two L-shaped cavities by a long partition (1.1), namely a cavity (1.2) and a window frame fitting cavity (1.3). The cavity (1.2) is provided with a corner slot (1.21) on the side of the long partition (1.1), and the cavity (1.2) is sealed by a curtain frame cover plate (2). The long partition (1.1) is provided with a recessed sealing strip on the side of the window frame fitting cavity (1.3). The slot (1.31) has an opening flush with the surface of the long partition (1.1). The window frame fitting cavity (1.3) is provided with a rectangular corner code insertion hole (1.32) on the side of the middle plate (1.0). The middle plate (1.0) facing the curtain is divided into two U-shaped cavities by three short partitions (1.4), namely the functional cavity (1.5) and the glass cavity (1.6). The functional cavity (1.5) is provided with a slot (1.51) on the side of the middle plate (1.0).

2. The universal aluminum material structure for embedded window decoration products according to claim 1, characterized in that, The intermediate plate (1.0) facing the curtain does not separate the glass cavity (1.6) and does not install glass; that is, it only uses two short partitions (1.4) to separate the functional cavity (1.5).

3. A universal aluminum material structure for embedded window covering products according to claim 1 or 2, characterized in that, The aluminum structure can be used as the top frame aluminum material, left and right side frame aluminum material and bottom frame aluminum material of honeycomb blind, and can also be used as the top frame aluminum material, left and right side frame aluminum material and bottom frame aluminum material of venetian blind; when the aluminum structure is used as the top frame aluminum material of honeycomb blind or venetian blind, the slot (1.51) is inserted with motor slot frame aluminum material (3).

4. The universal aluminum material structure for embedded window decoration products according to claim 3, characterized in that, The motor slot frame aluminum material (3) includes an F-shaped main slot frame (3.1) and a side cover plate (3.2). The side cover plate (3.2) covers the side opening of the F-shaped main slot frame (3.1) to form a closed cavity (3.3). The F-shaped main slot frame (3.1) facing the window frame is provided with a retaining rib (3.11) that cooperates with the slot (1.51). The F-shaped main slot frame (3.1) facing the window frame is also provided with a screw mounting hole (3.12) and a wire channel (3.13).

5. The universal aluminum material structure for embedded window decoration products according to claim 4, characterized in that, The aluminum material (3) of the motor slot frame is provided with a curtain slot (3.4) facing the curtain; a cover edge (3.5) extends below the curtain slot (3.4); the closed cavity (3.3) is used to house the motor and the battery; the curtain slot (3.4) is used to insert the curtain rod.

6. The universal aluminum material structure for embedded window decoration products according to claim 4, characterized in that, The aluminum profile of the motor slot frame (3) is equipped with end panels (4) on both ends of the profile. The end panels (4) have screw through holes (4.1) and screw mounting holes (3.12) corresponding to each other. The end panels (4) are fixed to both ends of the aluminum profile of the motor slot frame (3) by screws.

7. A universal aluminum material structure for embedded window covering products according to claim 1 or 2, characterized in that, The corner bracket insertion hole (1.32) is into which a right-angled L-shaped corner bracket (5) is inserted to achieve the angled connection and fixation between the four aluminum structures; the corner bracket (5) is flat on the side that is in contact with the middle plate (1.0) and wavy on the side that is away from the middle plate (1.0); the maximum cross-sectional area of ​​the corner bracket (5) is equal to the hole area of ​​the corner bracket insertion hole (1.32); the corner bracket (5) is also provided with a nail hole (5.1) for screwing in a screw, with the screw head pressing against the middle plate (1.0) to fix the corner bracket (5) to the middle plate (1.0); the corner bracket (5) is also provided with a through hole (5.2).

8. A universal aluminum material structure for embedded window covering products according to claim 1 or 2, characterized in that, The corner slot (1.21) is into which a right-angled L-shaped corner piece (6) is inserted to achieve the angled connection and fixation between the four aluminum structures.

9. The universal aluminum material structure for embedded window decoration products according to claim 1, characterized in that, The aluminum structure is snapped into the window frame, the sealing strip slot (1.31) is inserted with an I-shaped sealing strip, and the window frame fitting cavity (1.3) is snapped into the window frame.

10. The universal aluminum material structure for embedded window decoration products according to claim 1, characterized in that, The corner code socket (1.32) is located inside the functional cavity (1.5), that is, the window frame fitting cavity (1.3) does not have a corner code socket (1.32), and the functional cavity (1.5) has a rectangular corner code socket (1.32) on the side of the middle plate (1.0); the functional cavity (1.5) does not have a slot (1.51), and the functional cavity (1.5) extends and enlarges to accommodate the drive mechanism.