Green modular drawer cabinet integrated emergency quick socket
The design of the green modular drawer cabinet with integrated emergency quick-connect socket enables automatic power supply and safe power cut-off of the drawer components during maintenance, solving the problem of complex maintenance operations in existing technologies, improving maintenance efficiency and safety, and meeting the needs of rapid industrial operation and maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- LIAONING LIMIT ELECTRIC POWER EQUIPMENT CO LTD
- Filing Date
- 2026-03-11
- Publication Date
- 2026-06-05
AI Technical Summary
Existing drawer-type switch cabinets cannot meet the power requirements for lighting and testing equipment during maintenance or inspection. Furthermore, maintenance operations are complex at night or in dimly lit outdoor environments, requiring additional temporary power supplies and lighting tools.
Design a green modular drawer cabinet integrated emergency quick-connect socket. Through the linkage structure of the second insertion component, the adjusting positioning component and the rotating component, the drawer component can be automatically powered when pulled out to provide internal lighting and power support. When the whole assembly is disassembled, the limit component and the adjusting positioning component work together to ensure safe power cut-off and quick replacement.
It simplifies the troubleshooting and repair process in low-light outdoor environments at night, improves repair efficiency, reduces downtime for repairs and replacements, adapts to the needs of rapid industrial operation and maintenance, and reduces carbon emissions.
Smart Images

Figure CN122159070A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of electrical equipment technology, specifically to a green modular drawer cabinet integrated emergency quick-connect socket. Background Technology
[0002] Drawer-type switchgear is a closed low-voltage power distribution equipment that integrates electrical components into independently removable drawer units. It combines high reliability, easy maintenance, and interoperability. The core principle is to ensure circuit control safety through the isolation function of the drawer. The operation process revolves around standardized steps such as opening, pulling out / pushing in, and closing the drawer. Drawer-type switchgear uses a steel plate to make a closed shell, and installs the electrical components of the incoming and outgoing circuits in the removable drawers to form independent functional units. The functional units are isolated from the busbar and cable areas, and there are also protective measures between each unit.
[0003] Existing drawer-type switchgear mainly consists of a cabinet, drawer units, and main busbar mounting components. The drawer units are modularly integrated inside the cabinet and are connected to the cabinet via slide rails. The core electrical connection relies on a single set of main circuit connectors. When the drawer is fully pushed into the cabinet, the connectors are connected to the busbar section, and the main circuit is powered. The drawer position can be fixed by the locking piece at the front of the drawer unit. When the drawer is pulled out, the connectors are disconnected, and the drawer unit is completely de-energized.
[0004] Existing drawer-type switch cabinets only support two states for a single drawer unit: fully pushed in for power-on or fully pulled out for power-off. When repairing or inspecting the drawer unit, it needs to be pulled out to check the internal components. Current technology relies solely on a single main circuit connector to connect to the cabinet. Power is cut off once the drawer unit is pulled out, and there is no independent auxiliary power supply channel. Therefore, it is difficult to meet the power requirements for lighting and testing equipment during maintenance. In addition, when repairing at night or in dim outdoor environments, additional lighting tools and an external temporary power supply are required, which complicates maintenance operations and makes it difficult to quickly troubleshoot and repair.
[0005] Therefore, the present invention provides a green modular drawer cabinet integrated emergency quick-connect socket with an independent auxiliary power channel and convenient maintenance. Summary of the Invention
[0006] To address the issues of inconvenience in quickly troubleshooting existing technologies, a green modular drawer cabinet integrated emergency quick-connect socket has been designed.
[0007] The technical solution adopted by the present invention to solve its technical problem is: a green modular drawer cabinet integrated emergency quick-connect socket, including a main frame, a drawer assembly and a first insertion assembly. The main frame is equipped with an installation assembly for connecting the drawer unit. The drawer unit is provided with a second insertion assembly near the installation assembly. Adjustable positioning parts for auxiliary positioning are provided on both sides of the second insertion assembly. The mounting assembly includes a limiting component and a rotating component symmetrically arranged inside the second insert assembly. The limiting component limits the second insert assembly when the drawer assembly is pushed in, and the positioning component is adjusted to abut against the rotating component so that the second insert assembly remains de-energized when the first insert assembly is powered on. The second insert assembly includes a mounting part fixedly connected to the drawer assembly and an insert for docking the mounting assembly. The insert part includes a flexible insert for adjusting the positioning member to disengage from the rotating member when the drawer assembly is pulled out, thereby providing power to the second insert assembly and providing lighting and auxiliary power for drawer assembly maintenance. When the drawer assembly needs to be disassembled, by rotating the adjusting positioning member and pushing the drawer assembly into the cabinet, the adjusting positioning member abuts against and moves the limiting component, releasing the limitation on the second insert assembly, and the drawer assembly can be removed for overall replacement and maintenance.
[0008] Furthermore, the second insert assembly also includes a connector that is slidably connected to the end of the insert away from the rotating part, and an elastic storage part and a second spring symmetrically arranged about the elastic storage part are fixedly connected to the end of the insert away from the rotating part. The mounting part includes a fixing part that is fixedly connected to the drawer assembly and a housing provided at one end of the fixing part. A telescopic part is fixedly connected inside the fixing part, and a buckle is evenly distributed inside the connector about the telescopic part.
[0009] Furthermore, the end of the insert far from the rotating part is slidably connected to the inside of the connector, the ends of the elastic storage part and the second elastic part far from the insert are fixedly connected to the inside of the connector, the telescopic part can be telescopic in multiple stages, the end of the telescopic part near the connector is snapped to the connector, the fixed part is provided with a snap-fit part about the adjustment positioning part, one end of the outermost part of the telescopic part is fixedly connected to the inside of the fixed part, the other end is snapped to the inside of the connector, and one end of the innermost part of the telescopic part is fixedly connected to the connector.
[0010] Furthermore, the end of the telescopic component that is connected to the connector has a slot about the connector, and limit slots are symmetrically opened on both sides of the connector. The limit component cooperates with the limit slots to limit the second insertion component.
[0011] Furthermore, the end of the adjusting positioning component that is snapped together with the fixing component is set as the driving end. One end of the driving end is fixedly connected to a positioning rod that passes through the drawer assembly. A second adjusting block protrudes from the outside of the positioning rod. The end of the second adjusting block away from the driving end is chamfered to abut against the limiting component and release it from the snap-fit with the connecting component.
[0012] Furthermore, the mounting assembly also includes a mounting component fixedly connected inside the main frame. The end of the mounting component near the drawer assembly has a first mounting portion, a second mounting portion, and a third mounting portion disposed with respect to the first insert assembly, the second insert assembly, and the adjusting positioning component. The mounting component has an adjusting groove inside with respect to the limiting component and the rotating component. The first insert assembly, the second insert assembly, and the adjusting positioning component are connected to the mounting assembly through the first mounting portion, the second mounting portion, and the third mounting portion.
[0013] Furthermore, the limiting component includes a limiting block with a chamfer at one end and sliders symmetrically arranged on both sides of the limiting block. The upper and lower ends of the limiting block are fixedly connected to a first adjusting block for assisting in adjusting the position of the limiting component, and the end of the limiting block away from the end with the chamfer is fixedly connected to a first elastic element.
[0014] Furthermore, the end of the first adjusting block away from the first elastic member has a chamfer, which is used to abut against the chamfered end of the second adjusting block to drive the limiting component to move and release the limiting of the connecting member.
[0015] Furthermore, the drawer assembly includes a cabinet body and a first knob and a second knob disposed at the end of the cabinet body away from the mounting component. A base plate is fixedly connected to the end of the cabinet body near the mounting component. The ends of the first and second insert components away from the mounting component are respectively fixedly connected to the inner side of the base plate, and the other ends extend through to the outer side of the base plate.
[0016] The beneficial effects of this invention are: (1) The green modular drawer cabinet integrated emergency quick-connect socket of the present invention achieves automatic state switching through the linkage structure of the second insertion component, the adjusting positioning component and the rotating component. When the drawer component is pulled out to the maintenance position, the adjusting positioning component disengages from the rotating component, and the elastic insertion component automatically connects to the power supply, providing power support for lighting and testing equipment inside the drawer. There is no need to carry an extra temporary power supply and lighting tools, which greatly simplifies the troubleshooting and maintenance process in dark outdoor scenes at night and improves maintenance efficiency. At the same time, the limiting component limits the second insertion component, and the adjusting positioning component resists the rotating component, ensuring that when the main circuit of the first insertion component is powered, the auxiliary circuit of the second insertion component remains de-energized, avoiding the safety hazards of dual-circuit power supply.
[0017] (2) The green modular drawer cabinet integrated emergency quick-connect socket of the present invention achieves rapid overall disassembly of the drawer assembly through the coordinated design of the adjusting positioning component and the limiting component. Only by rotating the adjusting positioning component and pushing the drawer assembly into the cabinet, the second adjusting block of the adjusting positioning component will abut against the limiting component, releasing the limiting of the second insertion component, and the drawer assembly can be completely removed for overall replacement or deep repair without complicated wiring disassembly operations. The modular structure effectively reduces the downtime for maintenance and replacement, and is suitable for the needs of rapid operation and maintenance in industrialization. Attached Figure Description
[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] Figure 1 This is a schematic diagram of the main structure of the present invention; Figure 2 This is a schematic diagram of the mounting assembly and drawer assembly structure of the present invention; Figure 3 This is a schematic diagram of the drawer assembly structure of the present invention; Figure 4 This is a schematic diagram of the bottom structure of the drawer assembly of the present invention; Figure 5 This is a partial structural diagram of the mounting component of the present invention; Figure 6 For the present invention Figure 5 Enlarged view of the local structure at point A; Figure 7 This is a partial sectional view of the fastener of the present invention; Figure 8 For the present invention Figure 7 A partially enlarged sectional view at point B; Figure 9 This is a schematic diagram of the second insertion assembly structure of the present invention; Figure 10 This is a schematic diagram of the buckle structure of the present invention; Figure 11 This is a partial structural cross-sectional view of the fastener of the present invention; Figure 12 This is a cross-sectional view of the connector structure of the present invention; Figure 13 This is a schematic diagram of the insert and flexible storage component structure of the present invention; Figure 14 This is a partial structural diagram of the second insertion assembly of the present invention when it is connected to the mounting component; Figure 15 For the present invention Figure 15 A partially enlarged sectional view at point C; Figure 16 This is a partial cross-sectional view of the mounting component of the present invention; Figure 17 For the present invention Figure 16 A partially enlarged sectional view at point D; Figure 18 This is a schematic diagram of the limiting component structure of the present invention; Figure 19 This is a schematic diagram of the adjusting and positioning component structure of the present invention; Figure 20 This is a schematic diagram of the second insertion component structure when the drawer assembly of the present invention is pulled out for maintenance.
[0020] In the diagram: 1. Main frame; 2. Drawer assembly; 21. Cabinet body; 22. First knob; 23. Second knob; 24. Base plate; 3. Mounting assembly; 31. Mounting component; 32. First mounting part; 33. Second mounting part; 34. Third mounting part; 35. Limiting assembly; 351. Limiting block; 352. Slider; 353. First adjusting block; 354. First elastic element; 36. Rotating component; 4. First insertion assembly; 5. Second insertion assembly; 51. Housing; 52. Fixing component; 53. Telescopic component; 531. Slot; 54. Connecting component; 541. Limiting slot; 55. Insertion piece; 56. Elastic storage component; 57. Second elastic element; 58. Buckle component; 6. Adjusting and positioning component; 61. Drive end; 62. Positioning rod; 63. Second adjusting block. Detailed Implementation
[0021] To make the technical means, technical features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0022] Example: Figures 1-20 As shown, the green modular drawer cabinet integrated emergency quick-connect socket of the present invention includes a main frame 1, a drawer assembly 2, a first insertion assembly 4, and an installation assembly 3 including a limiting assembly 35 and a rotating member 36 symmetrically arranged about a second insertion assembly 5. The limiting assembly 35 limits the second insertion assembly 5 when the drawer assembly 2 is pushed in, and the positioning member 6 is adjusted to abut against the rotating member 36 so that the second insertion assembly 5 is kept de-energized when the first insertion assembly 4 is powered. The second insertion assembly 5 includes an installation part fixedly connected to the drawer assembly 2 and a insertion plug 55 for docking with the installation assembly 3. The insertion part includes an elastic insertion plug 55, which is used to adjust the positioning member 6 to disengage from the rotating member 36 when the drawer assembly 2 is pulled out so that the second insertion assembly 5 is powered. When the drawer assembly 2 needs to be disassembled, the positioning member 6 is rotated and the drawer assembly 2 is pushed into the cabinet 21 to remove the drawer assembly 2 for replacement and maintenance.
[0023] Specifically, the main frame 1 is used to install the internal components of the drawer-type switch cabinet. The drawer assembly 2 is the drawer unit inside the drawer-type switch cabinet. It is modularly integrated into the main frame 1 and several sets are provided. The mounting assembly 3 is used to install the internal wiring and other components of the equipment. It is powered by connecting the first plug assembly 4 and the second plug assembly 5. The first plug assembly 4 serves as the main circuit connector to power the internal components of the drawer assembly 2. The second plug assembly 5 is used as an auxiliary power supply to enable the auxiliary power supply on demand and avoid meaningless power consumption. Under normal conditions, the equipment does not supply power to the second plug assembly 5, but only supplies power to the first plug assembly 4 to power the single-layer drawer unit. The drawer assembly 2 slides inside the main frame 1 through the slide rails on both sides. When a single-layer drawer unit malfunctions, by pulling out drawer assembly 2, the adjusting positioning piece 6 disengages from mounting assembly 3 as drawer assembly 2 is pulled out. At this time, rotating piece 36 loses its resistance pressure, and insert 55 resets and aligns with mounting piece 31. Simultaneously, limiting component 35 limits one end of second insert assembly 5. The mounting part of second insert assembly 5 moves with drawer assembly 2 and extends and retracts. Then, the equipment supplies power to second insert assembly 5 as auxiliary power. In nighttime or dimly lit outdoor environments, second insert assembly 5 provides illumination inside drawer assembly 2 and provides auxiliary power to meet the power needs of the testing equipment. At this time, drawer assembly 2 is not fully pulled out. After the repair is completed and the equipment malfunction is resolved... Drawer assembly 2 can then be pushed back in. If the problem is more complex and requires complete disassembly of the drawer unit, the drawer assembly 2 can be pushed into the main frame 1 by rotating the adjusting positioning piece 6. As the adjusting positioning piece 6, the second insert assembly 5, and the first insert assembly 4 align with the mounting piece 31, the outer protrusion of the adjusting positioning piece 6 abuts against the outer protrusion of the limiting assembly 35, causing the limiting assembly 35 to adjust its position. Then, the limiting of the second insert assembly 5 can be released, and the drawer assembly 2 can be completely removed for overall replacement or subsequent maintenance. There is no need to carry additional temporary power and lighting tools, reducing carbon emissions from the production, use, and disposal of related auxiliary equipment, which aligns with the environmental goals of low-carbon, carbon reduction, and carbon conservation.
[0024] In this embodiment, the second insert assembly 5 further includes a connector 54 slidably connected to the end of the insert 55 away from the rotating member 36. An elastic storage member 56 and a second spring symmetrically arranged about the elastic storage member 56 are fixedly connected to the end of the insert 55 away from the rotating member 36. The mounting part includes a fixing member 52 fixedly connected to the drawer assembly 2 and a housing 51 provided at one end of the fixing member 52. A telescopic member 53 is fixedly connected inside the fixing member 52. A uniformly distributed snap fastener 58 is provided inside the connector 54 about the telescopic member 53. A slot 531 is provided at the end of the telescopic member 53 that is snapped into the connector 54 about the snap fastener 58. Limiting slots 541 are symmetrically opened on both sides of the connector 54. The limiting assembly 35 cooperates with the limiting slots 541 to limit the second insert assembly 5.
[0025] Specifically, such as Figures 7-13As shown, the end of the insert 55 away from the rotating member 36 is slidably connected to the inside of the connector 54. When the second insert assembly 5 is docked with the mounting assembly 3, the positioning member 6 is adjusted to abut against one end of the rotating member 36 to make it rotate, thereby causing the other end of the rotating member 36 to abut against the insert 55, so that the insert 55 slides inside the connector 54 and thus does not supply power. The elastic storage member 56 is used to store the wiring inside the second insert assembly 5. The elastic storage member 56 can elastically contract as the insert 55 slides. The ends of the elastic storage member 56 and the second elastic member 57 away from the insert 55 are fixedly connected to the inside of the connector 54. The second elastic member 57 is used to drive the insert 55 to dock with the mounting member 31 to supply power when the positioning member 6 is disengaged from the mounting member 31. The housing 51 is used to shield and protect the end of the telescopic component 53 located inside the drawer assembly 2. The power supply line can be set inside the telescopic component 53. The telescopic component 53 can extend and retract in multiple stages. The end of the telescopic component 53 near the connector 54 is snapped together with the connector 54. The fixing component 52 is provided with a snap-fit component 58 for the adjustment positioning component 6. One end of the outermost part of the telescopic component 53 is fixedly connected to the inside of the fixing component 52, and the other end is snapped together with the inside of the connector 54. One end of the innermost part of the telescopic component is fixedly connected to the connector 54. The force of the snap-fit component 58 on the telescopic component 53 is less than the force of the limiting component 35 on the connector 54. Therefore, when the drawer assembly 2 is pulled out, the outer part of the end of the telescopic component 53 that is snapped together with the connector 54 is disengaged from the connector 54. The telescopic component 53 extends and retracts as the drawer assembly 2 is pulled out. The extension and retraction distance of the telescopic component 53 is sufficient to allow the drawer assembly 2 to be pulled out to the maintenance state, but it is not completely disengaged. The limiting groove 541 is used to limit the connecting piece 54 in conjunction with the limiting component 35. The slot 531 is used to engage with the buckle 58 to buckle the outer part of the telescopic piece 53 so that the telescopic piece 53 remains in a retracted state when the drawer assembly 2 is disengaged as a whole, so that the second insert assembly 5 can be disengaged. At the same time, the telescopic piece 53 can provide auxiliary limiting for the drawer assembly 2 to prevent it from accidentally disengaging from the main frame 1 during maintenance. The buckle 58 includes an elastic telescopic rod and a locking block at one end. The second elastic element 57 can be a spring. The buckle 58 and the second elastic element 57 can also be any other structure that can achieve the same effect.
[0026] In this embodiment, the end of the adjusting positioning member 6 that is snapped together with the fixing member 52 is set as the driving end 61. The driving end 61 is fixedly connected to a positioning rod 62 that passes through the drawer assembly 2. A second adjusting block 63 protrudes from the outside of the positioning rod. The end of the second adjusting block 63 away from the driving end 61 is chamfered to abut against the limiting component 35 so that it is released from the snap-fit with the connecting member 54.
[0027] Specifically, such as Figure 7-9 and Figure 19As shown, the adjusting positioning piece 6 facilitates the docking of the second insertion assembly 5 through auxiliary positioning. Two sets of adjusting positioning pieces 6 are symmetrically arranged above and below the limiting assembly 35 on one side. In the initial state, the handle of the driving end 61 of the adjusting positioning piece 6 is vertical. At this time, the adjusting positioning piece 6 inserted into the mounting piece 31 will not abut against the limiting assembly 35. When the drawer assembly 2 needs to be removed as a whole, the driving end 61 is rotated to make the handle of the driving end 61 of the adjusting positioning piece 6 horizontal. At this time, the adjusting positioning piece 6 is inserted into the mounting piece 31, and the second adjusting positioning piece 6 on the outside... The segment 63 will abut against the limiting component 35 to move and disengage from the limiting of the connector 54. The setting distance of the second adjusting block 63 is greater than the distance from the connector 54 to the second mounting part 33. Therefore, when the adjusting positioning part 6 is reset, the connector 54 moves to the second mounting part 33 before the second adjusting block 63, so the second insert component 5 can be removed. The drive end 61 and the release end of the fixing part 52 are provided with a snap-fit groove corresponding to the snap-fit part 58. There are four sets of snap-fit grooves arranged in a circumferential array about the positioning rod 62. Therefore, the rotation of the adjusting positioning part 6 will be limited.
[0028] In this embodiment, the mounting component 3 further includes a mounting member 31 fixedly connected inside the main frame 1. The mounting member 31 has a first mounting portion 32, a second mounting portion 33, and a third mounting portion 34 disposed at one end near the drawer component 2 regarding the first insert component 4, the second insert component 5, and the adjusting positioning member 6. The mounting member 31 has an adjustment groove inside regarding the limiting component 35 and the rotating member 36. The first insert component 4, the second insert component 5, and the adjusting positioning member 6 are connected to the mounting component 3 through the first mounting portion 32, the second mounting portion 33, and the third mounting portion 34.
[0029] Specifically, such as Figure 5 and Figure 6 As shown, the mounting part 31 is used to connect the first insertion assembly 4 and the second insertion assembly 5. The third mounting part 34 is adapted to the adjustment and positioning part 6, and can pass through the adjustment and positioning part 6 in both vertical and horizontal states. The limiting assembly 35 includes a limiting block 351 with a chamfer at one end and sliders 352 symmetrically arranged on both sides of the limiting block 351. The upper and lower ends of the limiting block 351 are fixedly connected to a first adjusting block 353 for assisting in adjusting the position of the limiting assembly 35. The end of the limiting block 351 away from the chamfered end is fixedly connected to a first elastic member 354. The end of the first adjusting block 353 away from the first elastic member 354 is chamfered, which is used to abut against the first adjusting block 353 by the chamfered end of the second adjusting block 63 to drive the limiting assembly 35 to move and release the limiting of the connecting part 54. The first elastic member 354 can be a spring, or any other structure that can achieve the same effect.
[0030] In this embodiment, the drawer assembly 2 includes a cabinet body 21 and a first knob 22 and a second knob 23 disposed at the end of the cabinet body 21 away from the mounting assembly 3. A base plate 24 is fixedly connected to the end of the cabinet body 21 near the mounting assembly 3. The ends of the first insert assembly 4 and the second insert assembly 5 away from the mounting assembly 3 are fixedly connected to the inner side of the base plate 24, and their other ends extend to the outer side of the base plate 24. Specifically, as shown... Figures 1-4 As shown, the cabinet 21 is used to install the internal structure and components of the drawer unit. After the drawer assembly 2 is pushed into the main frame 1, the cabinet 21 can be limited by rotating the second knob 23 to prevent the drawer assembly 2 from detaching from the main frame 1. The fastener 52 is installed on the inside of the base plate 24. The drawer assembly 2 is existing technology and will not be described in detail here.
[0031] Working principle: When a single-layer drawer unit malfunctions, the drawer assembly 2 is pulled out. As the drawer assembly 2 is pulled out, the adjusting positioning piece 6 disengages from the mounting piece 3. At this time, the rotating piece 36 loses its resistance pressure, and the insert 55 resets and mates with the mounting piece 31. Simultaneously, the limiting component 35 limits one end of the second insert component 5. The mounting part of the second insert component 5 moves with the drawer assembly 2 and is extended and retracted. Then, the device supplies power to the second insert component 5 as an auxiliary power source. In the dark at night or in outdoor dim environments, the second insert component 5 provides lighting inside the drawer assembly 2 and provides auxiliary power to meet the power requirements of the testing equipment. At this time, the drawer assembly 2 is not fully pulled out. After the repair is completed and the equipment malfunction is resolved, the drawer assembly 2 can be pushed back in. If the problem is complex and requires complete disassembly of the drawer unit, rotate the drive end 61 to make the handle of the drive end 61 of the adjusting positioning component 6 horizontal. At this time, the adjusting positioning component 6 is inserted into the mounting component 31. The second adjusting block 63 on the outside of the adjusting positioning component 6 will abut against the limiting component 35, causing it to move away from the limiting of the connecting component 54. Then the drawer assembly 2 can be pushed into the main frame 1. As the adjusting positioning component 6, the second inserting component 5, and the first inserting component 4 are connected to the mounting component 31, the outer protrusion of the adjusting positioning component 6 abuts against the outer protrusion of the limiting component 35, causing the limiting component 35 to adjust its position. Then the limiting of the second inserting component 5 can be released. Then the drawer assembly 2 can be completely removed for overall replacement or subsequent repair.
[0032] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. A green modular drawer cabinet integrated emergency quick-connect socket, comprising a main frame, drawer components, and a first insertion component, characterized in that: The main frame is equipped with an installation component for docking with the drawer unit. The drawer unit is provided with a second insertion component near the installation component. Adjustment and positioning components for auxiliary positioning are provided on both sides of the second insertion component. The mounting components include internal limiting components and rotating parts symmetrically arranged about the second insert component. When the drawer component is pushed in, the limiting components limit the second insert component, and the positioning parts are adjusted to abut against the rotating parts so that the second insert component remains de-energized when the first insert component is powered. The second insertion assembly includes a mounting part that is fixedly connected to the drawer assembly and a insertion plug for docking the mounting assembly. The insertion part includes a flexible insertion plug, which is used to adjust the positioning part to disengage from the rotating part when the drawer assembly is pulled out so that the second insertion assembly is powered. When the drawer assembly needs to be disassembled, the positioning part is rotated and the drawer assembly is pushed into the cabinet so that the drawer assembly can be removed for overall replacement and repair.
2. The green modular drawer cabinet integrated emergency quick-connect socket according to claim 1, characterized in that: The second insert assembly also includes a connector that is slidably connected to the end of the insert away from the rotating part. The end of the insert away from the rotating part is fixedly connected to an elastic storage part and a second spring that is symmetrically arranged about the elastic storage part. The mounting part includes a fixing part that is fixedly connected to the drawer assembly and a housing provided at one end of the fixing part. A telescopic part is fixedly connected inside the fixing part, and a buckle is evenly distributed inside the connector about the telescopic part.
3. The green modular drawer cabinet integrated emergency quick-connect socket according to claim 2, characterized in that: The end of the insert far from the rotating part is slidably connected to the inside of the connector. The ends of the elastic storage part and the second elastic part far from the insert are respectively fixedly connected to the inside of the connector. The telescopic part can extend and retract in multiple stages. The end of the telescopic part close to the connector is snapped to the connector. The fixed part has a snap-fit part inside the adjusting positioning part.
4. The green modular drawer cabinet integrated emergency quick-connect socket according to claim 3, characterized in that: The end of the telescopic component that is connected to the connector has a slot about the fastener, and the connector has symmetrical limit slots on both sides. The limit component works with the limit slots to limit the second insertion component.
5. The green modular drawer cabinet integrated emergency quick-connect socket according to claim 3, characterized in that: One end of the adjusting positioning component that is snapped together with the fixing component is set as the driving end. One end of the driving end is fixedly connected to a positioning rod that passes through the drawer assembly. A second adjusting block protrudes from the outside of the positioning rod. The end of the second adjusting block away from the driving end is chamfered to abut against the limiting component and release it from the snap-fit with the connecting component.
6. The green modular drawer cabinet integrated emergency quick-connect socket according to claim 1, characterized in that: The mounting assembly also includes a mounting component fixedly connected inside the main frame. The mounting component has a first mounting part, a second mounting part, and a third mounting part at one end near the drawer assembly, which are provided with respect to the first insert assembly, the second insert assembly, and the adjusting positioning component. The mounting component has an adjusting groove inside with respect to the limiting component and the rotating component.
7. The green modular drawer cabinet integrated emergency quick-connect socket according to claim 6, characterized in that: The limiting component includes a limiting block with a chamfer at one end and sliders symmetrically arranged on both sides of the limiting block. The upper and lower ends of the limiting block are fixedly connected to a first adjusting block for assisting in adjusting the position of the limiting component. The end of the limiting block away from the end with the chamfer is fixedly connected to a first elastic element.
8. The green modular drawer cabinet integrated emergency quick-connect socket according to claim 7, characterized in that: The first adjusting block has a chamfer at the end away from the first elastic member, which is used to abut against the chamfered end of the second adjusting block to move the limiting component and release it from the limiting of the connecting member.
9. The green modular drawer cabinet integrated emergency quick-connect socket according to claim 6, characterized in that: The drawer assembly includes a cabinet body and a first knob and a second knob located at the end of the cabinet body away from the mounting component. A base plate is fixedly connected to the end of the cabinet body near the mounting component. The ends of the first and second insert components away from the mounting component are fixedly connected to the inside of the base plate, and the other ends extend through to the outside of the base plate.