All-glass door integrated cabinet
By using the double-door design and meshing transmission components of the all-glass integrated cabinet, the problems of cumbersome equipment disassembly and assembly and narrow passages are solved, enabling convenient equipment installation and disassembly, while improving sealing and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN JINGZHI NETWORK EQUIP CO LTD
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-21
AI Technical Summary
Existing all-glass door integrated cabinets are cumbersome to install and disassemble, and the cabinet doors occupy passage space when opened, resulting in narrow passages and affecting the convenience of operation.
Featuring a double-door design, the door panels can be rotated to a vertical position and engage with the gear ring through the cooperation of connectors and transmission components. Pushing the door panels allows the mounting bracket to be moved out or retracted, enabling convenient installation and disassembly of the equipment. At the same time, panoramic glass panels and sealing strips are used to improve sealing and stability.
It enables convenient disassembly and assembly of the equipment, avoids occupying passage space when the cabinet door is opened, improves the convenience of operation and the unobstructed passage, and ensures sealing and stability through panoramic glass panels and sealing strips.
Smart Images

Figure CN224154451U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cabinet technology, specifically to an integrated cabinet with a full glass door. Background Technology
[0002] An integrated server rack is a standardized rack system that integrates multiple functional modules. It typically integrates rack, power distribution, cooling, network, monitoring and other equipment into a single unit. It aims to simplify deployment, improve space utilization and enhance the intelligence of equipment management. Through its "plug and play" design, the integrated server rack solves the problems of complex deployment and low energy efficiency of traditional distributed data centers. It is especially suitable for rapid business expansion and edge computing needs.
[0003] Currently, most existing all-glass door integrated server racks adopt a single or double door design. When installing or removing equipment, staff need to reach inside the rack, making the installation and removal work cumbersome and difficult to implement. At the same time, in the computer room, the aisles for the racks are relatively narrow, and opening the rack doors will cause congestion in the aisles, which has certain drawbacks. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides an integrated all-glass door cabinet, which facilitates the disassembly and assembly of equipment and avoids narrowing of passageways when the cabinet door is open. This solves the problems of cumbersome and difficult disassembly and assembly of equipment in current cabinets, as well as the problem of narrowing passageways when the cabinet door is open.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an integrated cabinet with a full glass door, comprising a cabinet body, door panels, and a mounting frame. Two door panels are arranged opposite each other on the cabinet body, and the mounting frame is movably connected inside the cabinet. Door panels of the same size are installed at both ends of the front surface of the cabinet door. The door panels achieve the closed and open states of the cabinet by rotating. When the door panels are closed, they can completely cover the front of the cabinet body.
[0006] The cabinet has connecting grooves and transmission grooves on its sides. Connectors are rotatably connected in the connecting grooves, and transmission components are rotatably connected in the transmission grooves. The transmission components are attached to the sides of the mounting bracket. Connecting grooves and transmission grooves are also provided parallel to each other on the top and bottom of both sides of the cabinet. Each connecting groove and transmission groove is equipped with a corresponding connector and transmission component. The connectors are used to connect the door panel to the cabinet, while the transmission components are used to transmit force.
[0007] A transmission component is fixed on the door panel and is movably connected to the connector. At the same time, the transmission component can connect with the transmission component at a set angle. Through the connection between the transmission component and the connector, the door panel can rotate on the cabinet. When it rotates to a set angle, the transmission component connects with the transmission component, and the displacement of the mounting bracket is realized under the transmission.
[0008] During installation and use, this all-glass door integrated cabinet is operated by pulling the door panel to make it perpendicular to the cabinet body. At this time, one end of the toothed plate meshes with the side of the toothed ring. By simultaneously pushing the two door panels, the transmission component rotates, and the mounting bracket moves outward under the force of the meshing of the toothed ring and the toothed plate. The product is then installed in the mounting bracket. After installation is complete, the door panel is pulled back into the cabinet under the reverse transmission force of the transmission component, and then the door panel is closed.
[0009] As a further improvement to the above solution, the door panel consists of a door frame and a glass panel, with the glass panel fixed inside the door frame.
[0010] The above technical solution uses a thin aluminum alloy plate for the door frame, which has strong hardness. A panoramic glass panel is installed inside the door frame, and the connection between the glass panel and the door frame is reinforced with glass glue. This allows for a clear and intuitive view of the inside of the cabinet when the door panel and the cabinet are closed.
[0011] As a further improvement to the above solution, a sealing strip is fixed on the door frame, and a mating groove is opened on the inside of the cabinet, with the sealing strip fitting into the mating groove.
[0012] With the above technical solution, a sealing strip is fixed on the edge of the door frame opposite to the cabinet body, and a mating groove is opened on the interface edge of the front of the cabinet body. When the door panel and the cabinet body are closed, the sealing strip provides shock absorption. At the same time, when fully closed, the sealing strip is firmly adsorbed in the mating groove, thereby improving the sealing performance and the stability of the door panel and the cabinet body when closed.
[0013] As a further improvement to the above solution, the connector includes a connecting block rotatably connected in the connecting groove, and a sliding groove is provided on the side of the connecting block. Meanwhile, the transmission component includes a strip plate fixed on the door frame, and the strip plate is movably sleeved in the sliding groove.
[0014] The above technical solution achieves the displacement of the door panel by sliding the strip plate in the groove, thereby completing the closing and opening states of the front interface of the cabinet.
[0015] As a further improvement to the above solution, a toothed profile plate is fixed on the strip plate, and the transmission component includes a rotating cylinder rotatably connected in the transmission groove, with a toothed ring fixed on the side of the rotating cylinder, the toothed ring meshing with the toothed profile plate.
[0016] With the above technical solution, toothed profile plates of the same length are provided at the top and bottom of the strip plate, and toothed rings are fixed at the upper and lower positions of the side of the rotating cylinder. When the door panel is parallel to the side of the cabinet, the transmission component can be rotated by pushing the door panel and the toothed profile plates and toothed rings meshing.
[0017] As a further improvement to the above solution, a limiting groove is formed along the length of the strip plate, and an installation interface is provided on the connecting block. A limiting rod is threaded into the installation interface, and one end of the limiting rod is slidably connected in the limiting groove.
[0018] With the above technical solution, when the door panel is pushed, the limiting groove slides on the side of the limiting rod to limit the excessive movement of the door panel. When the limiting rod moves from the end of the limiting groove to the front end, the door panel is flush with the side of the cabinet.
[0019] As a further improvement to the above solution, the side of the mounting bracket is provided with a transmission groove, and a toothed strip is provided in the transmission groove, with the toothed ring meshing with the toothed strip.
[0020] Through the above technical solution, the toothed ring rotates under the force of the moving toothed plate, and under the force of the meshing between the toothed ring and the toothed strip, the mounting bracket moves out of the cabinet, thereby facilitating the installation and disassembly of the equipment in the cabinet.
[0021] As a further improvement to the above solution, one end of the limiting rod is provided with a magnetic block, which can be attracted to the mounting bracket at a set angle.
[0022] With the above technical solution, when the door panel rotates to be parallel to the front of the cabinet, the magnetic block is attracted to the edge of the front surface of the mounting bracket to fix the door panel and prevent the door panel from moving due to the tilt of the ground.
[0023] Compared with the prior art, this utility model provides an integrated cabinet with an all-glass door, which has the following advantages:
[0024] 1. This all-glass door integrated cabinet uses connectors and transmission components to connect the door panel and the cabinet body. When the door panel is opened, pushing the door panel causes the strip panel to slide backward in the groove, thereby retracting the door panel to both sides of the cabinet body. This effectively avoids the door panel blocking the passage when it is open, ensuring unobstructed passage.
[0025] 2. When the all-glass door integrated cabinet is retracted to both sides of the cabinet, the transmission components rotate in the opposite direction due to the meshing force between the toothed plate and the toothed ring. The mounting bracket is moved out of the cabinet by the meshing force between the rotating force of the toothed ring and the toothed strip, thus allowing the staff to complete the disassembly and assembly of the equipment, greatly improving convenience. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the overall closed structure of the device of this utility model;
[0027] Figure 2 This is a schematic diagram of the overall unfolded structure of the device of this utility model;
[0028] Figure 3 This is a schematic diagram of the overall structure of the mounting bracket of this utility model;
[0029] Figure 4 This is a schematic diagram of the cabinet and door panel installation structure of this utility model;
[0030] Figure 5 This is a schematic diagram of the overall unfolded planar structure of the device of this utility model;
[0031] Figure 6 This utility model Figure 1 Schematic diagram of the structure at point A in the middle;
[0032] Figure 7 This utility model Figure 4 Schematic diagram of the structure at point B;
[0033] Figure 8 This utility model Figure 5 Schematic diagram of the structure at point C.
[0034] The attached diagram lists the components represented by each number as follows:
[0035] 1. Cabinet body; 11. Connecting groove; 12. Transmission groove; 13. Connector; 131. Connecting block; 14. Transmission component; 141. Rotary drum; 142. Gear ring; 15. Mounting interface; 16. Limiting rod; 161. Magnetic block; 17. Butt groove; 18. Slide groove;
[0036] 2. Door panel; 21. Door frame; 22. Glass panel; 23. Sealing strip; 25. Conductor; 251. Strip plate; 252. Toothed plate; 253. Limiting groove;
[0037] 3. Mounting bracket; 31. Transmission slide; 32. Toothed rack. Detailed Implementation
[0038] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example
[0039] Please see Figure 1-8 As shown, the all-glass door integrated cabinet proposed in this embodiment includes a cabinet body 1, door panels 2 and mounting brackets 3. Two door panels 2 are arranged opposite each other on the cabinet body 1, and the mounting brackets 3 are movably connected inside the cabinet body 1. Door panels 2 of the same size are installed on both ends of the front surface of the door panels 2. The door panels 2 realize the closed and open states of the cabinet by rotating. When the door panels 2 are closed, they can completely cover the front of the cabinet body 1.
[0040] The side of the cabinet 1 is provided with a connecting groove 11 and a transmission groove 12. A connector 13 is rotatably connected in the connecting groove 11, and a transmission component 14 is rotatably connected in the transmission groove 12. At the same time, the transmission component 14 is attached to the side of the mounting bracket 3. The top and bottom of both sides of the cabinet 1 are provided with parallel connecting grooves 11 and transmission grooves 12. Each connecting groove 11 and transmission groove 12 is equipped with a corresponding connector 13 and transmission component 14. The connector 13 is used to connect the door panel 2 to the cabinet 1, while the transmission component 14 is used to transmit force.
[0041] A transmission component 25 is fixed on the door panel 2. The transmission component 25 is movably connected to the connector 13. At the same time, the transmission component 25 can be connected to the transmission component 14 at a set angle. Through the connection between the transmission component 25 and the connector 13, the door panel 2 can rotate on the cabinet 1. When it rotates to a set angle, the transmission component 25 is connected to the transmission component 14, and the displacement of the mounting bracket 3 is realized under the transmission.
[0042] The working principle of the all-glass door integrated cabinet proposed in this embodiment is as follows: When in use, by pulling the door panel 2, the door panel 2 is perpendicular to the cabinet body 1 at 90°. At this time, one end of the toothed plate 252 meshes with the side of the toothed ring 142. By simultaneously pushing the two door panels 2, the transmission component 14 rotates. Under the action of the toothed ring 142 meshing with the toothed strip 32, the mounting frame 3 moves outward. At this time, the product is installed in the mounting frame 3. After the installation is completed, by pulling the door panel 2, under the action of the reverse transmission of the transmission component 14, the mounting frame 3 is retracted into the cabinet body 1, and then the door panel 2 is closed. Example
[0043] Please see Figure 1-8As shown, the all-glass door integrated cabinet proposed in this embodiment, based on embodiment one, further includes the following: the door panel 2 is composed of a door frame 21 and a glass panel 22, the glass panel 22 is fixed inside the door frame 21, a sealing strip 23 is fixed on the door frame 21, and a mating groove 17 is provided on the inner side of the cabinet body 1, the sealing strip 23 is fitted into the mating groove 17, the connecting member 13 includes a connecting block 131 rotatably connected in the connecting groove 11, a sliding groove 18 is provided on the side of the connecting block 131, and the transmission member 25 includes a strip plate 251 fixed on the door frame 21, the strip plate 251 is movably sleeved in the sliding groove 18, a toothed profile plate 252 is fixed on the strip plate 251, and a transmission member... 14 includes a rotating drum 141 rotatably connected in the transmission groove 12. A toothed ring 142 is fixed on the side of the rotating drum 141. The toothed ring 142 meshes with the toothed profile plate 252. A limiting groove 253 is formed on the strip plate 251 along its length. At the same time, a mounting interface 15 is provided on the connecting block 131. A limiting rod 16 is threadedly connected in the mounting interface 15. One end of the limiting rod 16 is slidably connected in the limiting groove 253. A transmission groove 31 is formed on the side of the mounting frame 3. A toothed strip 32 is provided in the transmission groove 31. The toothed ring 142 meshes with the toothed strip 32. A magnetic block 161 is provided at one end of the limiting rod 16. The magnetic block 161 can be attracted to the mounting frame 3 at a set angle.
[0044] In this design, the door frame 21 uses a thin aluminum alloy sheet with high rigidity, and a panoramic glass panel is installed inside the door frame 21. The connection between the glass panel 22 and the door frame 21 is reinforced with glass glue. This allows for a clear and direct view of the interior of the cabinet when the door panel 2 is closed. A sealing strip 23 is fixed to the edge of the door frame 21 opposite to the cabinet 1, and a mating groove 17 is provided on the interface edge of the front of the cabinet 1. When the door panel 2 is closed, the sealing strip 23 provides shock absorption. When fully closed, the sealing strip 23 is firmly adhered to the mating groove 17, thereby improving the sealing performance and the stability of the door panel 2 and cabinet 1 when closed. The door panel 2 is displaced by the sliding plate 251 within the slide groove 18, thus completing the closing and unfolding states of the front interface of the cabinet 1. It should be further noted that the door panel 2 can be pushed directly to both ends in the closed state to unfold the cabinet 1 internally. Alternatively, the door panel 2 can be pushed after the connecting block 131 is rotated 90°, allowing it to retract into the cabinet. To avoid obstructing the passageway space, the top and bottom of the strip plate 251 are both equipped with toothed profile plates 252 of the same length. Meanwhile, toothed rings 142 are fixed at the upper and lower positions on the side of the rotating cylinder 141. When the door panel 2 is parallel to the side of the cabinet 1, pushing the door panel 2 causes the transmission component 14 to rotate due to the meshing of the toothed profile plates 252 and toothed rings 142. When pushing the door panel 2, the limiting groove 253 slides on the side of the limiting rod 16 to limit excessive movement of the door panel 2. When the limiting rod 16 is in the limiting groove 253... When the end moves to the front, the door panel 2 is flush with the side of the cabinet 1. The toothed ring 142 rotates under the force of the moving toothed plate 252. Under the force of the meshing of the toothed ring 142 and the toothed strip 32, the mounting bracket 3 moves out of the cabinet 1, which facilitates the installation and disassembly of the equipment in the cabinet. When the door panel 2 rotates and is parallel to the front of the cabinet 1, the magnetic block 161 is attracted to the edge of the front surface of the mounting bracket 3 to fix the door panel 2 and prevent the door panel 2 from moving due to the tilt of the ground.
[0045] Although embodiments of the present 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 present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A full-glass door integrated cabinet, comprising a cabinet body (1), a door panel (2) and a mounting frame (3), characterized in that, The cabinet (1) has two door panels (2) facing each other, and a mounting bracket (3) is movably connected inside the cabinet (1). The cabinet (1) has a connecting groove (11) and a transmission groove (12) on its side. A connector (13) is rotatably connected in the connecting groove (11), and a transmission component (14) is rotatably connected in the transmission groove (12). At the same time, the transmission component (14) is attached to the side of the mounting bracket (3). A conductor (25) is fixed on the door panel (2). The conductor (25) is movably connected to the connector (13). At the same time, the conductor (25) can be connected to the transmission component (14) at a set angle.
2. The all-glass door integrated cabinet according to claim 1, characterized in that: The door panel (2) consists of a door frame (21) and a glass panel (22), with the glass panel (22) fixed inside the door frame (21).
3. The all-glass door integrated cabinet according to claim 2, characterized in that: A sealing strip (23) is fixed on the door frame (21), and a docking groove (17) is opened on the inner side of the cabinet (1), with the sealing strip (23) fitting into the docking groove (17).
4. The all-glass door integrated cabinet according to claim 1, characterized in that: The connector (13) includes a connecting block (131) rotatably connected in the connecting groove (11), and a sliding groove (18) is provided on the side of the connecting block (131). Meanwhile, the conductor (25) includes a strip plate (251) fixed on the door frame (21), and the strip plate (251) is movably sleeved in the sliding groove (18).
5. The all-glass door integrated cabinet according to claim 4, characterized in that: A toothed profile plate (252) is fixed on the strip plate (251), and the transmission component (14) includes a rotating cylinder (141) rotatably connected in the transmission groove (12), and a toothed ring (142) is fixed on the side of the rotating cylinder (141), which meshes with the toothed profile plate (252).
6. The all-glass door integrated cabinet according to claim 5, characterized in that: On the strip plate (251), a limiting groove (253) is provided along its length direction. At the same time, the connecting block (131) is provided with an installation interface (15). A limiting rod (16) is threadedly connected in the installation interface (15), and one end of the limiting rod (16) is slidably connected in the limiting groove (253).
7. The all-glass door integrated cabinet according to claim 1, characterized in that: The mounting bracket (3) has a transmission groove (31) on its side, and a toothed strip (32) is provided in the transmission groove (31). The toothed ring (142) meshes with the toothed strip (32).
8. The all-glass door integrated cabinet according to claim 6, characterized in that: One end of the limiting rod (16) is provided with a magnetic block (161), which can be attracted to the mounting bracket (3) at a set angle.