Horizontal sliding window motor mounting bracket and electric horizontal sliding window

By designing a self-locking structure with self-locking screws and fixing screws in the electric sliding window, the problem of loose motor connection parts is solved, the motor chain head is firmly fixed and the stability of the electric sliding window is improved, and the maintenance process is simplified.

CN224204858UActive Publication Date: 2026-05-05GUANGDONG HUANGPAI CUSTOM HOME FURNISHING GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG HUANGPAI CUSTOM HOME FURNISHING GRP CO LTD
Filing Date
2025-05-13
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The connection between the movable sash and the motor of existing electric sliding windows is prone to loosening, leading to poor opening and closing or detachment, affecting service life and safety.

Method used

A mounting bracket for a sliding window motor is designed, employing a self-locking structure with self-locking screws and fixing screws. By setting mounting grooves, self-locking holes, and connecting holes on the bracket body, the motor chain head is firmly fixed, and a self-locking structure is formed by glass pressure lines to prevent loosening or falling off.

Benefits of technology

It improves the connection stability between the motor mounting bracket and the motor, avoids the motor chain head from falling off due to loose connection, enhances the reliability and stability of electric sliding windows, and simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a horizontal sliding window motor installation support and an electric horizontal sliding window, and belongs to the technical field of doors and windows. The horizontal sliding window motor installation support comprises a support body, and an installation groove is formed in the support body and used for installing a motor chain head. A first fixing hole and a second fixing hole are formed in the two opposite sides of the groove wall of the mounting groove correspondingly, the first fixing hole penetrates through the end face of the mounting support, and the first fixing hole is used for allowing a fixing screw to be sequentially inserted into the mounting groove and the second fixing hole so that the motor chain head can be fixed into the mounting groove; the support body is further provided with a self-locking hole, the self-locking hole communicates with the first fixing hole, and the self-locking hole is used for allowing a self-locking screw to be inserted into the first fixing hole so as to limit the fixing screw in the first fixing hole. According to the utility model, a self-locking structure is formed between the motor and the motor mounting bracket of the horizontal sliding window, so that the anti-falling effect of the motor mounting bracket and the motor is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of door and window technology, and in particular to a motor mounting bracket for a sliding window and an electric sliding window. Background Technology

[0002] Electric sliding windows, with their superior design and functionality, are widely used in curtain wall products and various public spaces. They not only blend seamlessly with the overall style of the curtain wall, adding a touch of modern aesthetics to the building, but also allow for easy opening and closing via remote control or intelligent systems, offering convenient operation. Furthermore, their large opening area ensures excellent ventilation, meeting people's needs for a comfortable environment.

[0003] However, the connection between the movable sash and the motor of an electric sliding window is a critical component of the entire system, and its stability directly affects the window's opening and closing performance and lifespan. Existing connection methods are prone to loosening during long-term use. For example, in a wind and rain sensor-operated sliding window with four-sided ventilation (CN210033111U), the motor hinge is typically secured directly by bolts or fasteners inserted into the connector and the sash frame. Due to factors such as vibration, temperature changes, and frequent use, these bolts or fasteners may gradually loosen, leading to difficulty in opening and closing the sash, or even the risk of it falling off. This not only affects the normal use of the electric sliding window but may also pose a threat to personal and property safety. Utility Model Content

[0004] The purpose of this utility model is to provide a mounting bracket for a sliding window motor and an electric sliding window. By forming a self-locking structure between the motor and the mounting bracket for the sliding window motor, the motor mounting bracket and the motor are prevented from detaching.

[0005] In a first aspect, this utility model provides a sliding window motor mounting bracket, including a bracket body. The bracket body has a mounting groove for mounting a motor chain head. The mounting groove has a first fixing hole and a second fixing hole on opposite sides of its groove wall. The first fixing hole extends through to the end face of the bracket body and is used for inserting a fixing screw into the mounting groove and the second fixing hole in sequence to fix the motor chain head in the mounting groove. The bracket body also has a self-locking hole that communicates with the first fixing hole. The self-locking hole is used for inserting a self-locking screw into the first fixing hole to limit the fixing screw in the first fixing hole.

[0006] The sliding window motor mounting bracket provided by this utility model features a self-locking structure between the self-locking screw and the fixing screw, ensuring the motor chain head is firmly fixed in the mounting groove. After the self-locking screw is inserted into the first fixing hole, it effectively limits the fixing screw, preventing it from loosening or falling off under vibration or external force. This design significantly improves the connection stability between the motor mounting bracket and the motor, effectively avoiding the problem of the motor chain head falling off due to loose connection, and enhancing the reliability of the electric sliding window during long-term use.

[0007] Furthermore, the bracket body is also provided with a connecting hole for inserting a connecting screw that passes through the movable window sash to fix the bracket body to the movable window sash.

[0008] By employing the above technical solution and providing connection holes on the main body of the bracket, the motor mounting bracket can be securely fixed to the movable window sash. This design not only ensures the stable installation of the motor mounting bracket on the movable window sash but also further enhances the stability of the entire electric sliding window system.

[0009] Furthermore, both the self-locking hole and the connecting hole are located on the side of the bracket body away from the mounting groove opening.

[0010] By adopting the above technical solution, and placing the self-locking holes and connecting holes on the same side of the bracket body, away from the mounting slot, the installation of self-locking screws and connecting screws becomes more centralized and convenient. Maintenance personnel can install both self-locking screws and connecting screws simultaneously on the same side, eliminating the need to frequently switch between different positions on the bracket, thus greatly improving installation efficiency.

[0011] Furthermore, the mounting slot is U-shaped.

[0012] The above technical solution uses a U-shaped mounting slot, which provides a more reasonable installation space for the motor chain head. This design allows the motor chain head to be better positioned and fixed within the mounting slot.

[0013] Secondly, this utility model provides an electric sliding window, comprising:

[0014] Mounting bracket for any of the above sliding window motors;

[0015] Fixed window frame;

[0016] A sliding window sash, wherein the main support body is mounted on the sliding window sash;

[0017] A push motor is mounted on the fixed window frame. The output end of the push motor is provided with a motor chain head. The motor chain head is provided with a third fixing hole. The fixing screws are sequentially inserted into the first fixing hole, the third fixing hole and the second fixing hole to fix the motor chain head in the mounting groove.

[0018] Furthermore, the sliding window sash includes a window sash profile and a glass pressure line. The window sash profile has a connecting channel connecting opposite sides. The end of the connecting channel facing the fixed window frame can be aligned with the self-locking hole so that the self-locking screw can be fixedly connected to the self-locking hole through the connecting channel. The glass pressure line is detachably provided on the window sash profile, and the glass pressure line can close the end of the connecting channel facing away from the fixed window frame.

[0019] Using the above technical solution, when a motor malfunctions and prevents the window from opening, maintenance personnel only need to remove the glass retaining line and unplug the self-locking screws to disconnect the connection between the fixed window frame and the window sash. This design allows maintenance personnel to perform motor maintenance and repair quickly and safely without the need for forced disassembly. Furthermore, the glass retaining line not only secures the glass but also prevents the self-locking screws from disengaging from the connection channel, forming a self-locking structure that prevents the bracket body from detaching from the fixed window frame.

[0020] Furthermore, the connecting channel includes a first opening, a second opening, and a connecting cavity. The first opening and the second opening are respectively located on opposite sides of the connecting cavity. The first opening is used to align with the self-locking hole, and the glass pressure line can close the second opening.

[0021] By employing the above technical solution, the connection channel is subdivided into a first opening, a second opening, and a connection cavity. This structural optimization reduces unnecessary profile usage. Compared to the traditional single-channel design, this split structure significantly reduces profile usage while ensuring connection strength.

[0022] Furthermore, the connecting channel includes a first connecting channel and a second connecting channel, which are spaced apart on the window sash profile. The bracket body is also provided with a connecting hole. The first connecting channel is used to align with the self-locking hole, and the self-locking screw is fixed in the self-locking hole through the first connecting channel. The second connecting channel is used to align with the connecting hole, and the connecting screw is disposed in the connecting hole through the second connecting channel.

[0023] By employing the above technical solution and adding connecting screws, the connection between the bracket body and the window sash profile is made more secure. The multiple connection points effectively distribute stress, preventing loosening or detachment due to excessive force at a single point. This design significantly improves the stability of the electric sliding window during long-term use, especially in environments with frequent opening and closing and vibration.

[0024] Furthermore, it also includes a first spring washer and a second spring washer, the first spring washer being fitted onto the self-locking screw and the second spring washer being fitted onto the connecting screw.

[0025] By employing the above technical solution, a first spring washer and a second spring washer are added and respectively fitted onto the self-locking screw and the connecting screw. The use of spring washers effectively prevents the screws from loosening due to vibration or external force during long-term use, thereby significantly improving the stability and reliability of the connection.

[0026] Furthermore, a first glass adhesive strip is provided on the side of the window sash profile facing away from the fixed window frame, and a second glass adhesive strip is provided on the glass pressure line facing the first glass adhesive strip. The first glass adhesive strip and the second glass adhesive strip are respectively used to abut against the opposite sides of the fixed glass.

[0027] As can be seen from the above, the self-locking structure design between the self-locking screw and the fixing screw in the sliding window motor mounting bracket provided by this utility model ensures the firm fixation of the motor chain head in the mounting groove. After the self-locking screw is inserted into the first fixing hole, it effectively limits the fixing screw, preventing it from loosening or falling off under vibration or external force. This design significantly improves the connection stability between the motor mounting bracket and the motor, effectively avoids the problem of the motor chain head falling off due to loose connection, and enhances the reliability of the electric sliding window during long-term use.

[0028] Other features and advantages of this application will be set forth in the following description and will be apparent in part from the description or may be learned by practicing embodiments of this application. The objectives and other advantages of this application may be realized and obtained by means of the structures particularly pointed out in the written description and the accompanying drawings. Attached Figure Description

[0029] Figure 1 This is a schematic diagram of the structure of a sliding window motor mounting bracket proposed in this utility model.

[0030] Figure 2 This is a cross-sectional structural diagram of a sliding window motor mounting bracket proposed in this utility model.

[0031] Figure 3 This is a cross-sectional structural diagram of an electric sliding window proposed in this utility model.

[0032] Figure 4 This is an exploded structural diagram of an electric sliding window proposed in this utility model.

[0033] In the attached diagram: 100, bracket body; 110, mounting groove; 120, first fixing hole; 121, fixing screw; 130, second fixing hole; 140, self-locking hole; 141, self-locking screw; 150, connecting hole; 151, connecting screw; 200, fixed window frame; 300, sliding window sash; 310, window sash profile; 320, glass pressure line; 330, connecting channel; 331, first opening; 332, second opening; 333, connecting cavity; 334, first connecting channel; 335, second connecting channel; 400, sliding motor; 410, motor chain head; 420, third fixing hole; 500, first spring washer; 600, second spring washer; 700, first glass sealing strip; 800, second glass sealing strip. Detailed Implementation

[0034] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0035] The following disclosure provides many different embodiments or examples for implementing various structures of the present invention. To simplify the disclosure, specific examples of components and arrangements are described below. Of course, these are merely examples and are not intended to limit the scope of the invention. Furthermore, reference numerals and / or reference letters may be repeated in different examples; such repetition is for simplification and clarity and does not in itself indicate a relationship between the various embodiments and / or arrangements discussed.

[0036] The sliding window motor mounting bracket disclosed in this utility model is mainly used in electric sliding windows. By forming a self-locking structure between the motor and the sliding window motor mounting bracket, the motor mounting bracket and the motor are prevented from detaching.

[0037] Reference Appendix Figure 1 , attached Figure 2In one embodiment, the sliding window motor mounting bracket includes a bracket body 100, which has a mounting groove 110 for mounting a motor chain head 410. The mounting groove 110 has a first fixing hole 120 and a second fixing hole 130 on opposite sides of its groove wall. The first fixing hole 120 extends to the end face of the bracket body 100 and is used to insert a fixing screw 121 into the mounting groove 110 and the second fixing hole 130 sequentially to fix the motor chain head 410 within the mounting groove 110. The bracket body 100 also has a self-locking hole 140, which communicates with the first fixing hole 120. The self-locking hole 140 is used to insert a self-locking screw 141 into the first fixing hole 120 to limit the position of the fixing screw 121 within the first fixing hole 120.

[0038] As can be seen from the above, the self-locking structure design between the self-locking screw 141 and the fixing screw 121 in the sliding window motor mounting bracket provided by this utility model ensures the firm fixation of the motor chain head 410 in the mounting groove 110. After the self-locking screw 141 is inserted into the first fixing hole 120, it effectively limits the fixing screw 121, preventing the fixing screw 121 from loosening or falling off under vibration or external force. This design significantly improves the connection stability between the motor mounting bracket and the motor, effectively avoids the problem of the motor chain head 410 falling off due to loose connection, and enhances the reliability of the electric sliding window during long-term use.

[0039] In one embodiment, the bracket body 100 is further provided with a connection hole 150 for inserting and fixing a connecting screw 151 that passes through the movable window sash, so as to fix the bracket body 100 to the movable window sash.

[0040] By employing the above technical solution, the motor mounting bracket can be securely fixed to the movable window sash by providing a connection hole 150 on the bracket body 100. This design not only ensures the stable installation of the motor mounting bracket on the movable window sash but also further enhances the stability of the entire electric sliding window system.

[0041] In one embodiment, both the self-locking hole 140 and the connecting hole 150 are located on the side of the bracket body 100 away from the groove of the mounting slot 110.

[0042] By adopting the above technical solution, and by setting the self-locking hole 140 and the connecting hole 150 on the same side of the bracket body 100 and away from the mounting groove 110, the installation operation of the self-locking screw 141 and the connecting screw 151 is more centralized and convenient. Maintenance personnel can install the self-locking screw 141 and the connecting screw 151 simultaneously on the same side, without having to frequently switch between different positions on the bracket, greatly improving installation efficiency.

[0043] In one embodiment, the mounting slot 110 is arranged in a U-shape.

[0044] By adopting the above technical solution, the mounting groove 110 is arranged in a "U" shape, which can provide a more reasonable installation space for the motor chain head 410. This design allows the motor chain head 410 to be better positioned and fixed within the mounting groove 110.

[0045] Reference Appendix Figure 3 Appendix Figure 4 This utility model also provides an electric sliding window, including any of the above-mentioned sliding window motor mounting brackets, a fixed window frame 200, a sliding window sash 300, and a sliding motor 400; the bracket body 100 is disposed on the sliding window sash 300; the sliding motor 400 is disposed on the fixed window frame 200, and the output end of the sliding motor 400 is provided with a motor chain head 410, the motor chain head 410 is provided with a third fixing hole 420, and fixing screws 121 are sequentially inserted into the first fixing hole 120, the third fixing hole 420, and the second fixing hole 130 to fix the motor chain head 410 in the mounting groove 110.

[0046] In existing electric sliding window designs, when a motor malfunctions and prevents the window from opening properly, maintenance personnel face a thorny problem: the motor is difficult to maintain and repair. In such situations, because the window is closed, the internal connecting parts cannot be disassembled normally, often forcing maintenance personnel to resort to forced disassembly. This not only wastes a significant amount of repair time but also poses a high risk of damaging the window frame and hardware, ultimately affecting the window's continued usability.

[0047] Therefore, please refer to the appendix. Figure 3 In one embodiment, the sliding window sash 300 includes a window sash profile 310 and a glass pressure line 320. The window sash profile 310 is provided with a connecting channel 330 connecting opposite sides. The end of the connecting channel 330 facing the fixed window frame 200 can be aligned with the self-locking hole 140 so that the self-locking screw 141 is fixedly connected to the self-locking hole 140 through the connecting channel 330. The glass pressure line 320 is detachably provided on the window sash profile 310, and the glass pressure line 320 can close the end of the connecting channel 330 facing away from the fixed window frame 200.

[0048] Using the above technical solution, when a motor malfunctions and prevents the window from opening, maintenance personnel only need to remove the glass pressure line 320 and unplug the self-locking screw 141 to disconnect the connection between the fixed window frame 200 and the window sash. This design allows maintenance personnel to perform motor maintenance and repair quickly and safely without the need for forced disassembly. Furthermore, the glass pressure line 320 not only secures the glass but also prevents the self-locking screw 141 from disengaging from the connecting channel 330, forming a self-locking structure, thereby achieving an anti-detachment effect between the bracket body 100 and the fixed window frame 200.

[0049] In one embodiment, the connecting channel 330 includes a first opening 331, a second opening 332, and a connecting cavity 333. The first opening 331 and the second opening 332 are respectively located on opposite sides of the connecting cavity 333. The first opening 331 is used to align with the self-locking hole 140, and the glass pressure line 320 can close the second opening 332.

[0050] By adopting the above technical solution, the connecting channel 330 is subdivided into a first opening 331, a second opening 332, and a connecting cavity 333. This structural optimization reduces unnecessary profile usage. Compared with the traditional single-channel design, this split structure significantly reduces the amount of profile used while ensuring connection strength.

[0051] In one embodiment, a first glass adhesive strip 700 is provided on the side of the window sash profile 310 facing away from the fixed window frame 200, and a second glass adhesive strip 800 is provided on the glass pressure line 320 facing the first glass adhesive strip 700. The first glass adhesive strip 700 and the second glass adhesive strip 800 are respectively used to abut against the opposite sides of the fixed glass.

[0052] Reference Appendix Figure 4 In one embodiment, the connecting channel 330 includes a first connecting channel 334 and a second connecting channel 335, which are spaced apart on the window sash profile 310. The bracket body 100 is also provided with a connecting hole 150 (as shown in the attached figure). Figure 2 As shown, the first connecting channel 334 is used to align with the self-locking hole 140, and the self-locking screw 141 is fixedly installed in the self-locking hole 140 through the first connecting channel 334; the second connecting channel 335 is used to align with the connecting hole 150, and the connecting screw 151 is installed in the connecting hole 150 through the second connecting channel 335.

[0053] It is worth noting that in this embodiment, the connecting channel 330 includes a first connecting channel 334 and a second connecting channel 335. The first connecting channel 334 and the second connecting channel 335 are distinguished by their function. In the above embodiment, the connecting channel 330 includes a first opening 331, a second opening 332 and a connecting cavity 333. The first opening 331, the second opening 332 and the connecting cavity 333 are the specific structures of each connecting channel. That is, both the first connecting channel 334 and the second connecting channel 335 include a first opening 331, a second opening 332 and a connecting cavity 333.

[0054] By adopting the above technical solution and adding connecting screws 151, the connection between the bracket body 100 and the window sash profile 310 is more secure. The multiple connection points effectively distribute stress, preventing loosening or detachment due to excessive force at a single point. This design significantly improves the stability of the electric sliding window during long-term use, especially in environments with frequent opening and closing and vibration.

[0055] In one embodiment, a first spring washer 500 and a second spring washer 600 are also included. The first spring washer 500 is sleeved on the self-locking screw 141, and the second spring washer 600 is sleeved on the connecting screw 151.

[0056] Specifically, since both the self-locking screw 141 and the connecting screw 151 are M5x15 hex socket screws, the first spring washer 500 and the second spring washer 600 are both M5 spring washers.

[0057] By adopting the above technical solution, a first spring washer 500 and a second spring washer 600 are added and respectively fitted onto the self-locking screw 141 and the connecting screw 151. The use of spring washers can effectively prevent the screws from loosening due to vibration or external force during long-term use, thereby significantly improving the stability and reliability of the connection.

[0058] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of this utility model. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0059] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and all such modifications and improvements fall within the protection scope of this utility model.

Claims

1. A mounting bracket for a sliding window motor, characterized in that, The system includes a support body (100), which has a mounting groove (110) for mounting a motor chain head. The mounting groove (110) has a first fixing hole (120) and a second fixing hole (130) on opposite sides of its groove wall. The first fixing hole (120) extends through to the end face of the support body (100) and is used for inserting a fixing screw (121) into the mounting groove (110) and the second fixing hole (130) in sequence to fix the motor chain head in the mounting groove (110). The support body (100) also has a self-locking hole (140) that communicates with the first fixing hole (120). The self-locking hole (140) is used for inserting a self-locking screw (141) into the first fixing hole (120) to limit the fixing screw (121) in the first fixing hole (120).

2. The sliding window motor mounting bracket according to claim 1, characterized in that, The bracket body (100) is also provided with a connection hole (150), which is used for inserting and fixing a connecting screw (151) that passes through the movable window sash, so as to fix the bracket body (100) to the movable window sash.

3. The sliding window motor mounting bracket according to claim 2, characterized in that, Both the self-locking hole (140) and the connecting hole (150) are located on the side of the bracket body (100) away from the groove of the mounting slot (110).

4. The sliding window motor mounting bracket according to claim 1, characterized in that, The mounting slot (110) is U-shaped.

5. An electrically operated sliding window, characterized in that, include: The sliding window motor mounting bracket according to any one of claims 1-4; Fixed window frame (200); A sliding window sash (300), wherein the main body of the bracket (100) is mounted on the sliding window sash (300); A push motor (400) is mounted on the fixed window frame (200). The output end of the push motor (400) is provided with a motor chain head (410). The motor chain head (410) is provided with a third fixing hole (420). The fixing screw (121) is sequentially inserted into the first fixing hole (120), the third fixing hole (420) and the second fixing hole (130) to fix the motor chain head (410) in the mounting groove (110).

6. The electrically operated sliding window according to claim 5, characterized in that, The sliding window sash (300) includes a window sash profile (310) and a glass pressure line (320). The window sash profile (310) is provided with a connecting channel (330) connecting opposite sides. The end of the connecting channel (330) facing the fixed window frame (200) can be aligned with the self-locking hole (140) so that the self-locking screw (141) is fixedly connected to the self-locking hole (140) through the connecting channel (330). The glass pressure line (320) is detachably provided on the window sash profile (310), and the glass pressure line (320) can close the end of the connecting channel (330) facing away from the fixed window frame (200).

7. An electrically operated sliding window according to claim 6, characterized in that, The connecting channel (330) includes a first opening (331), a second opening (332), and a connecting cavity (333). The first opening (331) and the second opening (332) are respectively located on opposite sides of the connecting cavity (333). The first opening (331) is used to align with the self-locking hole (140), and the glass pressure line (320) can close the second opening (332).

8. An electrically operated sliding window according to claim 6, characterized in that, The connecting channel (330) includes a first connecting channel (334) and a second connecting channel (335). The first connecting channel (334) and the second connecting channel (335) are spaced apart on the window sash profile (310). The bracket body (100) is also provided with a connecting hole (150). The first connecting channel (334) is used to align with the self-locking hole (140). The self-locking screw (141) is fixed in the self-locking hole (140) through the first connecting channel (334). The second connecting channel (335) is used to align with the connecting hole (150). The connecting screw (151) is provided in the connecting hole (150) through the second connecting channel (335).

9. An electrically operated sliding window according to claim 8, characterized in that, It also includes a first spring washer (500) and a second spring washer (600), the first spring washer (500) being fitted onto the self-locking screw (141), and the second spring washer (600) being fitted onto the connecting screw (151).

10. An electrically operated sliding window according to claim 6, characterized in that, The window sash profile (310) is provided with a first glass adhesive strip (700) on the side facing away from the fixed window frame (200), and the glass pressure line (320) is provided with a second glass adhesive strip (800) facing the first glass adhesive strip (700). The first glass adhesive strip (700) and the second glass adhesive strip (800) are respectively used to abut against the opposite sides of the fixed glass.

Citation Information

Patent Citations

  • Wind and rain induction horizontal sliding window with ventilated periphery

    CN210033111U