Full-automatic receiving and dispatching container
By installing lubricating components in the vertical circulation container and using gear bars to drive lubricating oil to spray it on the chain, the chain rust problem is solved, the transmission efficiency and stability are improved, the maintenance costs are reduced, and the continuous operation of the production line is ensured.
Patent Information
- Application Number
- CN202510734206.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-07-04
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The transmission chain of the vertical circulation container is prone to rust during long-term use, resulting in a decrease in transmission efficiency and impact on operating stability, increasing maintenance costs and possibly affecting continuous operation of the production line.
Install lubricating components inside the container. Through the coordination of the fixing components and the lubricating components, the lubricating oil is driven to spray to the chain and rotation point with gear strips. The lubricating oil volume is accurately adjusted in combination with the one-way sealing sheet and the adjustment component to prevent the chain from rusting and improve rotationality.
Effectively prevent chain rust, improve transmission efficiency and operating stability, reduce failure rate, reduce maintenance costs, and ensure the stability of continuous operation of the production line.
Smart Images

Figure CN120246503A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of receiving and delivering cabinets, and particularly to a fully automatic receiving and delivering cabinet. Background Art
[0002] A fully automatic receiving and delivering cabinet, as a core component in the modern logistics and warehousing management system, its excellent operating efficiency and stability have invaluable value for comprehensively improving the overall logistics operation efficiency. Among various types of fully automatic receiving and delivering cabinets, the vertical circulating cabinet stands out among many applications with its unique design concept and functional characteristics. This type of cabinet ingeniously uses hoppers as basic storage units and drives the hoppers to continuously rotate on a closed circulating track through a precise chain drive mechanism, thereby realizing efficient, orderly management and rapid access of items.
[0003] In the daily operation of the vertical circulating cabinet, its built-in intelligent optimization algorithm plays a crucial role. This algorithm can quickly calculate the optimal path based on the specific location of the stored items and the retrieval requirements, ensuring that the required materials can be accurately delivered to the operator's hands in the shortest time. This efficient and accurate access mode makes the vertical circulating cabinet an ideal choice near the production area, especially suitable for storing items such as product parts, production tools, and CNC cutting tools that are frequently used and need to be quickly retrieved, thus greatly improving the efficiency and flexibility of production operations.
[0004] However, in actual application scenarios, the vertical circulating cabinet also faces some challenges. Especially its drive chain, during long-term use, the surface of the chain is prone to rust. Once the chain rusts, its transmission efficiency and operating stability will be severely affected, not only resulting in a decline in the overall operating efficiency of the cabinet, but also possibly causing an extension of the material access time and a significant increase in the failure rate. This not only increases the maintenance cost but also may have an adverse impact on the continuous operation of the production line. Summary of the Invention
[0005] The purpose of the present invention is to solve the problem that in actual application scenarios, the vertical circulating cabinet also faces some challenges. Especially its drive chain, during long-term use, the surface of the chain is prone to rust. Once the chain rusts, its transmission efficiency and operating stability will be severely affected, not only resulting in a decline in the overall operating efficiency of the cabinet, but also possibly causing an extension of the material access time and a significant increase in the failure rate. This not only increases the maintenance cost but also may have an adverse impact on the continuous operation of the production line, and the proposed solution.
[0006] In order to achieve the above purpose, the present invention adopts the following technical solution for a fully automatic receiving and delivering cabinet: including a cabinet body, and also including: a fixing component and a lubricating component assembled inside the cabinet body; The lubrication assembly includes a fixing frame fixedly connected inside the cabinet body. One side of the fixing frame is connected with an inclined block through a fixing rod. An avoidance groove is formed inside the fixing frame, and a moving block is slidably connected to the inner wall of the avoidance groove. A gear rack is fixedly connected to one side of the moving block, and a resilient member is installed on the side surface of the moving block. An installation block is installed on the inner wall of the cabinet body. A pushing groove is formed inside the installation block, and a pushing column is slidably connected inside the pushing groove. The pushing column and the gear rack are connected through a transmission member, and a three-way spraying pipe communicated with the pushing groove is installed on one side of the installation block; The fixing component presses against the moving block and drives the gear rack to drive the pushing column to move in the pushing groove, pushing the lubricating oil to flow and spray along the three-way spraying pipe.
[0007] As a further description of the above technical solution: The lubrication assembly further includes a storage cavity and a moving groove formed inside the installation block. The storage cavity is communicated with the pushing groove through a communication port, and a one-way sealing piece is connected to the inner wall of the communication port. A connecting pipe is connected to one side of the storage cavity, and the connecting pipe extends out of the cabinet body.
[0008] As a further description of the above technical solution: The transmission member includes a gear plate slidably connected to the inner wall of the moving groove, and the gear plate is fixedly connected to the pushing column. Two extension plates are fixedly connected to the bottom of the installation block. A rotating gear is rotatably connected between the two extension plates through a limiting rod, and the rotating gear is meshed with both the gear plate and the gear rack.
[0009] As a further description of the above technical solution: The resilient member includes compression plates fixedly connected to both sides of the moving block and two support plates fixedly connected to one side of the fixing frame. A support block is fixedly connected to one side of the support plate, and a support column is installed on one side of the support block. The compression plate is slidably connected to the outer periphery of the support column, and a compression spring is sleeved on the outer periphery of the support column.
[0010] As a further description of the above technical solution: The fixing component includes a fixing sleeve block connected inside the cabinet body. A sliding rod is slidably connected inside the fixing sleeve block. A contact block in contact with the inclined surface of the inclined block is fixedly connected to one side of the sliding rod. A fixing column is fixedly connected to one side of the fixing sleeve block. An extrusion block is fixedly connected to one side of the sliding rod, and the extrusion block is slidably connected to the fixing column. A limiting block is installed on one side of the fixing column, and a telescopic spring is sleeved on the outer periphery of the fixing column.
[0011] As a further description of the above technical solution: An adjustment component is installed inside the installation block. The adjustment component includes a fixed disk fixedly connected inside the installation block. The fixed disk is slidably connected with a rotating plate through a rotating groove opened inside. One side of the rotating plate is fixedly connected with an adjustment plate. A circulation port is opened inside the adjustment plate. A lifting groove is opened inside the fixed disk. Two lifting plates are slidably connected to the inner wall of the lifting groove. Two limiting grooves are opened on the side surface of the adjustment plate. One side of the two lifting plates is fixedly connected with a limiting rod in contact with the limiting groove. The outer periphery of the adjustment plate is connected with a driving source through an extension block.
[0012] As a further description of the above technical solution: The driving source includes a connecting rod connected to the inner wall of the extension block. A rotating sleeve block is rotatably connected to the outer periphery of the connecting rod. A welding block is fixedly connected to the bottom of the installation block. A welding rod is fixedly connected to the inner wall of the welding block. A rotating sleeve block is rotatably connected to the outer periphery of the welding rod. And the rotating sleeve block and the rotating sleeve block are connected by an electric push rod.
[0013] As a further description of the above technical solution: A driving component and a transmission component are installed inside the cabinet body. A chain is connected to the outer periphery of the transmission component. And a moving track is connected to the side surface of the chain through a moving component. A storage cabinet is rotatably connected to one side of the moving component. A storage port is installed on one side of the cabinet body.
[0014] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: When taking and placing materials, start the driving component. The rotation of the transmission component drives the chain to move. Further, the moving component is driven to move smoothly along the preset track and rotate the storage cabinet to the vicinity of the storage port, which is convenient for material operation. During the moving process, the fixed sleeve block moves along. The contact block contacts the inclined block when turning, pulls the sliding rod and the extrusion block to slide and compress the telescopic spring, so that the sliding rod disengages from the fixed port of the storage cabinet. After the contact is disengaged, the spring rebounds and the sliding rod resets, ensuring that the storage cabinet is stable without shaking and improving the moving stability. To prevent the chain from rusting, when the contact block moves to the highest point, it pushes the moving block. The rotating gear and the gear plate are driven to move through the rack and pinion, driving the pushing column to extrude lubricating oil, which is sprayed onto the chain and the rotating point through the three-way spraying pipe, not only preventing rust but also improving the rotation performance. At the same time, the one-way sealing piece is closed to prevent the lubricating oil from leaking. The movement of the moving block also drives the compression plate to compress the spring. After the contact is disengaged, the spring rebounds, pushing each component to reset, the one-way sealing piece opens, and the lubricating oil flows back to fill, maintaining lubrication. To adjust the lubricating oil spraying amount, start the electric push rod to push the extension block, drive the adjustment plate and the rotating plate to rotate, move along the limit groove through the limit rod, drive the lifting plate to move up and down, adjust the size of the circulation port. When approaching, the lubricating oil accelerates atomization and expands the spraying area; when moving away, the flow rate increases and it sprays in a water droplet shape. This design can precisely adjust the lubricating oil amount, meet different lubrication requirements, and improve the system efficiency. Description of the Drawings
[0015] Figure 1 Shows the overall structural schematic diagram of the present invention; Figure 2 Shows the internal structural schematic diagram of the present invention; Figure 3 Shows the structural schematic diagram of the moving part of the present invention; Figure 4 Shows the present invention Figure 3 Partial enlarged view at A in; Figure 5 Shows the structural schematic diagram of the moving track of the present invention; Figure 6 Shows the structural schematic diagram of the lubrication component of the present invention; Figure 7 Shows the present invention Figure 6 Partial enlarged view at B in; Figure 8 Shows the sectional structural schematic diagram of the mounting block of the present invention; Figure 9 Shows the structural schematic diagram of the push column of the present invention; Figure 10 Shows the disassembled structural schematic diagram of the adjustment component of the present invention; Figure 11 Shows the sectional structural schematic diagram of the adjustment component of the present invention.
[0016] Legend Explanation: 10, cabinet; 11, driving component; 12, transmission component; 121, chain; 13, moving component; 131, moving track; 14, storage cabinet; 15, storage opening; 20, fixing component; 21, fixing sleeve block; 22, sliding rod; 23, contact block; 24, fixing column; 25, extrusion block; 26, telescopic spring; 27, limit block; 30. Lubricating assembly; 31. Fixed frame; 311. Fixed rod; 312. Avoidance groove; 32. Tilt block; 33. Mounting block; 331. Pushing groove; 332. Moving groove; 333. Storage cavity; 334. Connecting pipe; 335. Communication port; 336. One-way sealing piece; 337. Three-way spraying pipe; 34. Moving block; 341. Rack; 342. Extension plate; 343. Rotating gear; 344. Gear plate; 345. Pushing column; 35. Support plate; 351. Support block; 352. Support column; 353. Compression spring; 354. Compression plate; 40. Adjusting assembly; 41. Fixed disk; 411. Rotating plate; 412. Adjusting plate; 413. Rotating groove; 42. Flow port; 43. Lifting groove; 44. Limiting groove; 45. Limiting rod; 46. Lifting plate; 47. Extension block; 471. Connecting rod; 472. Rotating sleeve block; 473. Welding block; 474. Welding rod; 475. Rotating sleeve block; 476. Electric push rod. Detailed implementation manners
[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
[0018] As Figures 1 - 11 shown, the full-automatic receiving and dispatching cabinet provided by the present invention includes a cabinet body 10. A driving component 11 and a transmission component 12 are installed inside the cabinet body 10. A chain 121 is connected to the outer periphery of the transmission component 12. And a moving track 131 is connected to the side surface of the chain 121 through a moving component 13. One end of the moving component 13 is slidably connected in the moving track 131. One side of the moving component 13 is connected to the chain 121. A storage cabinet 14 is rotatably connected to one side of the moving component 13. Symmetric fixing ports are opened on both sides of the storage cabinet 14. A storage port 15 is installed on one side of the cabinet body 10. It further includes: a fixing component 20 assembled on the outer periphery of the moving component 13 and a lubricating component 30 connected to the top of the moving track 131; When it is necessary to perform the operation of taking and placing materials, first start the driving component 11. The driving component 11 then drives the transmission component 12 to start rotating. As the transmission component 12 rotates, the chain 121 also moves accordingly. During the movement of the chain 121, it further drives the moving component 13 to move. The moving component 13 moves smoothly along the preset moving track 131 and drives the storage cabinet 14 to rotate during this process. In this way, the storage cabinet 14 to be taken out will be rotated to a position close to the storage port 15, thus facilitating the taking and placing of materials.
[0019] As Figure 1 , Figure 3 , Figure 4 shown, the fixing component 20 includes a fixing sleeve block 21 fixedly connected to the outer periphery of the moving part 13. A sliding rod 22 is slidably connected inside the fixing sleeve block 21. The sliding rod 22 is in contact with the fixing port. A contact block 23 fixedly connected to one side of the sliding rod 22 is in inclined surface contact with the inclined block 32. One side of the fixing sleeve block 21 is fixedly connected to a fixing column 24. A pressing block 25 is fixedly connected to one side of the sliding rod 22, and the pressing block 25 is slidably connected with the fixing column 24. A limiting block 27 is installed on one side of the fixing column 24. A telescopic spring 26 is sleeved on the outer periphery of the fixing column 24; As the moving part 13 moves, the fixing sleeve block 21 is also driven together. When the moving part 13 reaches the turning area of the moving track 131, the contact block 23 on the fixing sleeve block 21 comes into contact with the inclined surface of the inclined block 32. As the moving part 13 continues to move, the contact block 23 will pull the sliding rod 22 to slide inside the fixing sleeve block 21. At the same time, the movement of the sliding rod 22 drives the pressing block 25 to slide along the outer periphery of the fixing column 24 and compresses the telescopic spring 26. During this process, the sliding rod 22 disengages from the contact with the fixing port on the side of the storage cabinet 14; When the contact block 23 disengages from the inclined surface contact with the inclined block 32, it has completed a 180-degree rotation compared to the initial contact position. At this time, once the contact block 23 completely disengages from the inclined block 32, the compressed telescopic spring 26 will start to rebound, pulling the pressing block 25 and the sliding rod 22 back to their original positions. In this way, the sliding rod 22 will re-enter the fixing port on the side of the storage cabinet 14, ensuring that the storage cabinet 14 does not shake during movement, avoiding the shaking of the materials on the storage cabinet 14, and at the same time ensuring the stability of the storage cabinet 14 when the moving part 13 moves along the straight section of the moving track 131.
[0020] As Figure 1 , Figure 3 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9As shown in the figure, the lubrication assembly 30 includes a fixing frame 31 fixedly connected to the top of the moving track 131. One side of the fixing frame 31 is connected with an inclined block 32 through a fixing rod 311. An avoidance groove 312 is formed inside the fixing frame 31, and a moving block 34 is slidably connected to the inner wall of the avoidance groove 312. One side of the moving block 34 is fixedly connected with a gear rack 341. A resilient member is installed on the side of the moving block 34. The resilient member includes compression plates 354 fixedly connected to both sides of the moving block 34 and two support plates 35 fixedly connected to one side of the fixing frame 31. One side of the support plate 35 is fixedly connected with a support block 351, and a support column 352 is installed on one side of the support block 351. The compression plate 354 is slidably connected to the outer periphery of the support column 352, and a compression spring 353 is sleeved on the outer periphery of the support column 352. An installation block 33 is installed on the inner wall of the cabinet body 10. A pushing groove 331 is formed inside the installation block 33. A pushing column 345 is slidably connected to the inside of the pushing groove 331. A transmission member is connected between the pushing column 345 and the gear rack 341. The transmission member includes a gear plate 344 slidably connected to the inner wall of the moving groove 332, and the gear plate 344 is fixedly connected to the pushing column 345. Two extension plates 342 are fixedly connected to the bottom of the installation block 33. A rotating gear 343 is rotatably connected between the two extension plates 342 through a limiting rod, and the rotating gear 343 is meshed with both the gear plate 344 and the gear rack 341. A three-way spraying pipe 337 communicated with the pushing groove 331 is installed on one side of the installation block 33. The lubrication assembly 30 further includes a storage cavity 333 and a moving groove 332 formed inside the installation block 33. The storage cavity 333 is communicated with the pushing groove 331 through a communication port 335, and a one-way sealing piece 336 is connected to the inner wall of the communication port 335. A connecting pipe 334 is connected to one side of the storage cavity 333, and the connecting pipe 334 extends out of the cabinet body 10. When it is necessary to supplement the lubricating oil inside the storage cavity 333, the lubricating oil is conveyed into the storage cavity 333 through the connecting pipe 334; In order to prevent the chain 121 from rusting after long-term use, as the contact block 23 moves in contact with the inclined block 32, when the contact block 23 is about to move to the highest point, it will push the moving block 34 to move in the avoidance groove 312. At the same time, as the moving block 34 moves, it drives the gear rack 341 to drive the rotating gear 343 to rotate on the outer periphery of the limiting rod. And as the rotating gear 343 rotates, it drives the gear plate 344 to move in the moving groove 332. At the same time, the gear plate 344 will drive the pushing column 345 to move in the pushing groove 331 and squeeze the lubricating oil in the pushing groove 331, so that the lubricating oil flows along the three-way spraying pipe 337 and sprays on the chain 121 and the rotation points of the moving part 13 and the storage cabinet 14. While preventing the chain 121 from rusting, it improves the rotationality between the moving part 13 and the storage cabinet 14. And when the pushing column 345 squeezes the lubricating oil, the one-way sealing piece 336 will be in a closed state; And while the contact block 23 moves the moving block 34, the moving block 34 drives the compression plate 354 to slide along the outer periphery of the support column 352 and squeezes the compression spring 353. When the contact block 23 gradually disengages from the moving block 34, the compressed compression spring 353 rebounds and pushes the compression plate 354 to reset. And as the compression plate 354 resets, it drives the moving block 34 to move, and at the same time makes the gear rack 341 drive the rotating gear 343 to rotate, driving the push column 345 connected to the gear plate 344 to reset. When the push column 345 resets, the pressure inside the push groove 331 will open the one-way seal piece 336, and make the lubricating oil flow along the communication port 335 and fill the push groove 331, so that the push groove 331 always maintains lubricating oil.
[0021] As Figure 1 , Figure 3 , Figure 8 , Figure 9 , Figure 10 , Figure 11 As shown, an adjustment assembly 40 is installed inside the mounting block 33. The adjustment assembly 40 includes a fixed disk 41 fixedly connected inside the mounting block 33. The fixed disk 41 is slidably connected with a rotating plate 411 through a rotating groove 413 opened inside. One side of the rotating plate 411 is fixedly connected with an adjustment plate 412. A communication port 42 is opened inside the adjustment plate 412. A lifting groove 43 is opened inside the fixed disk 41. The inner wall of the lifting groove 43 is slidably connected with two lifting plates 46. One side of the lifting plate 46 is provided with a slope. Two limiting grooves 44 are opened on the side surface of the adjustment plate 412. One side of the two lifting plates 46 is fixedly connected with a limiting rod 45 that contacts the limiting groove 44. The outer periphery of the adjustment plate 412 is connected with a driving source through an extension block 47. The driving source includes an adapter rod 471 connected to the inner wall of the extension block 47. A rotating sleeve block 472 is rotatably connected to the outer periphery of the adapter rod 471. The bottom of the mounting block 33 is fixedly connected with a welding block 473. The inner wall of the welding block 473 is fixedly connected with a welding rod 474. A rotating sleeve block 475 is rotatably connected to the outer periphery of the welding rod 474. And the rotating sleeve block 475 is connected to the rotating sleeve block 472 through an electric push rod 476; In order to facilitate the adjustment of the spraying amount of the lubricating oil, the electric push rod 476 is started to extend, so that it moves the extension block 47 connected to the adapter rod 471 inside the rotating sleeve block 472. This action drives the adjustment plate 412 to rotate, and further makes the rotating plate 411 connected to the adjustment plate 412 rotate in the rotating groove 413. As the adjustment plate 412 rotates, the limiting rod 45 in contact with the limiting groove 44 will move along the limiting groove 44. This moving process drives the lifting plate 46 to move up and down in the lifting groove 43, so that the two lifting plates 46 approach or move away from each other; When the two lifting plates 46 approach each other, the flow port 42 between them will narrow, thereby restricting the outflow of lubricating oil. In this case, when the lubricating oil flows through the lifting plate 46 under the push of the push column 345, due to the design of the slope, the lubricating oil will accelerate and tend to atomize, thus expanding the spraying area. On the contrary, when the two lifting plates 46 move away from each other, the flow port 42 increases, and the amount of lubricating oil flowing out will also increase correspondingly, presenting a water droplet-like spraying method. In this way, the spraying amount of lubricating oil can be accurately adjusted to meet different lubrication requirements.
[0022] Working principle: When performing the operation of picking and placing materials, first start the driving component 11 to drive the transmission component 12 to rotate, and then drive the chain 121 to move. The chain 121 then drives the moving component 13 to move along the preset moving track 131 and rotates the storage cabinet 14 to near the storage port 15 for easy picking and placing of materials; As the moving component 13 moves, the fixed sleeve block 21 moves synchronously. When reaching the turning point of the track, the contact block 23 contacts the inclined block 32, pulling the sliding rod 22 to slide within the fixed sleeve block 21 and driving the extrusion block 25 to slide along the fixed column 24, compressing the telescopic spring 26. At the same time, the sliding rod 22 disengages from the fixed port of the storage cabinet 14. After the contact block 23 completely disengages from the inclined block 32, the telescopic spring 26 rebounds, pushing the sliding rod 22 to reset and re-fixing the storage cabinet 14 to prevent shaking and ensure stable movement; To prevent the chain 121 from rusting, when the contact block 23 moves to the highest point, it pushes the moving block 34 to move within the avoidance groove 312, driving the rotating gear 343 to rotate through the gear rack 341, and then driving the gear plate 344 and the push column 345 to move, extruding the lubricating oil in the push groove 331. The lubricating oil is sprayed onto the chain 121 and the rotating point through the three-way spraying pipe 337. At the same time, the one-way sealing piece 336 is closed. When the moving block 34 moves, it also drives the compression plate 354 to slide, compressing the compression spring 353. After the contact block 23 disengages, the spring rebounds, pushing each component to reset, and the one-way sealing piece 336 opens, and the lubricating oil flows back to fill the push groove 331; To adjust the spraying amount of lubricating oil, start the electric push rod 476 to push the extension block 47, driving the adjusting plate 412 to rotate, and then enabling the rotating plate 411 to rotate within the rotating groove 413. During this process, the limiting rod 45 is driven to move along the limiting groove 44, driving the lifting plate 46 to move up and down within the lifting groove 43, adjusting the distance between the two lifting plates 46, thereby controlling the size of the flow port 42 and accurately adjusting the lubricating oil flow rate. When approaching, the lubricating oil accelerates and atomizes, expanding the spraying area; when moving away, the flow rate increases, presenting a water droplet-like spraying.
[0023] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes should be covered by the protection scope of the present invention.
Claims
1. Full-automatic receiving and dispatching cabinet, comprising a cabinet body (10), characterized in that, Also included are: A fixed component (20) and a lubrication component (30) assembled inside the cabinet body (10); The lubrication component (30) includes a fixed frame (31) fixedly connected inside the cabinet body (10). One side of the fixed frame (31) is connected with an inclined block (32) through a fixed rod (311). An avoidance groove (312) is formed inside the fixed frame (31), and a moving block (34) is slidably connected to the inner wall of the avoidance groove (312). One side of the moving block (34) is fixedly connected with a gear rack (341). A rebound member is installed on the side surface of the moving block (34). An installation block (33) is installed on the inner wall of the cabinet body (10). A pushing groove (331) is formed inside the installation block (33), and a pushing column (345) is slidably connected to the inside of the pushing groove (331). A transmission member is connected between the pushing column (345) and the gear rack (341), and a three-way spraying pipe (337) communicating with the pushing groove (331) is installed on one side of the installation block (33); The fixed component (20) presses against the moving block (34) and drives the gear rack (341) to drive the pushing column (345) to move inside the pushing groove (331), and the lubricating oil is pushed to flow and spray along the three-way spraying pipe (337).
2. The fully automatic receiving and dispatching cabinet according to claim 1, wherein The lubrication component (30) further includes a storage cavity (333) and a moving groove (332) formed inside the installation block (33). The storage cavity (333) is communicated with the pushing groove (331) through a communication port (335), and a one-way sealing piece (336) is connected to the inner wall of the communication port (335). A connecting pipe (334) is connected to one side of the storage cavity (333), and the connecting pipe (334) extends out of the cabinet body (10).
3. The fully automatic receiving and dispatching cabinet according to claim 2, wherein, The transmission member includes a gear plate (344) slidably connected to the inner wall of the moving groove (332), and the gear plate (344) is fixedly connected to the pushing column (345). Two extension plates (342) are fixedly connected to the bottom of the installation block (33). A rotating gear (343) is rotatably connected between the two extension plates (342) through a limiting rod, and the rotating gear (343) is meshed with both the gear plate (344) and the gear rack (341).
4. The fully automatic receiving and dispatching cabinet according to claim 3, wherein, The rebound member includes compression plates (354) fixedly connected to both sides of the moving block (34) and two support plates (35) fixedly connected to one side of the fixed frame (31). A support block (351) is fixedly connected to one side of the support plate (35), and a support column (352) is installed on one side of the support block (351). The compression plate (354) is slidably connected to the outer periphery of the support column (352), and a compression spring (353) is sleeved on the outer periphery of the support column (352).
5. The fully automatic receiving and dispatching cabinet according to claim 1, wherein, The fixed component (20) includes a fixed sleeve block (21) connected inside the cabinet body (10). A sliding rod (22) is slidably connected inside the fixed sleeve block (21). One side of the sliding rod (22) is fixedly connected to a contact block (23) that is in inclined contact with the inclined surface of the inclined block (32). One side of the fixed sleeve block (21) is fixedly connected to a fixed column (24). One side of the sliding rod (22) is fixedly connected to an extrusion block (25), and the extrusion block (25) is slidably connected to the fixed column (24). A limit block (27) is installed on one side of the fixed column (24), and a telescopic spring (26) is sleeved on the outer periphery of the fixed column (24).
6. The full-automatic receiving and dispatching cabinet according to claim 1, characterized in that, An adjustment component (40) is installed inside the installation block (33). The adjustment component (40) includes a fixed disk (41) fixedly connected inside the installation block (33). The fixed disk (41) is slidably connected to a rotating plate (411) through a rotating groove (413) opened inside. One side of the rotating plate (411) is fixedly connected to an adjustment plate (412). A circulation port (42) is opened inside the adjustment plate (412). A lifting groove (43) is opened inside the fixed disk (41). Two lifting plates (46) are slidably connected to the inner wall of the lifting groove (43). Two limit grooves (44) are opened on the side surface of the adjustment plate (412). One side of the two lifting plates (46) is fixedly connected to a limit rod (45) that is in contact with the limit groove (44). The outer periphery of the adjustment plate (412) is connected to a drive source through an extension block (47).
7. The fully automatic receiving and dispatching cabinet according to claim 6, characterized in that, The drive source includes an adapter rod (471) connected to the inner wall of the extension block (47). A rotating sleeve block (472) is rotatably connected to the outer periphery of the adapter rod (471). The bottom of the installation block (33) is fixedly connected to a welding block (473). A welding rod (474) is fixedly connected to the inner wall of the welding block (473). A rotating sleeve block (475) is rotatably connected to the outer periphery of the welding rod (474), and the rotating sleeve block (475) is connected to the rotating sleeve block (472) through an electric push rod (476).
8. The full-automatic receiving and dispatching cabinet according to claim 1, characterized in that, A drive component (11) and a transmission component (12) are installed inside the cabinet body (10). A chain (121) is connected to the outer periphery of the transmission component (12). A moving track (131) is connected to the side surface of the chain (121) through a moving component (13). A storage cabinet (14) is rotatably connected to one side of the moving component (13). A storage opening (15) is installed on one side of the cabinet body (10).
Citation Information
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