Lubricating oil product storage and distribution transfer mechanism and its stereoscopic warehouse
Patent Information
- Application Number
- CN202610911111.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-23
- Publication Date
- 2026-08-28
AI Technical Summary
[0004]本发明的目的在于提供一种润滑油成品存储的调配转运机构及其立体仓库,以解决上述背景技术中提出的润滑油转运机构及立体仓库在使用时,通常在对润滑油进行运输时碰撞到润滑油的存储载体导致润滑油泄露,且仓库货架与转运机构的适配性差,无法实现同层货位间的直接转运调配,堆垛机需频繁执行上下往复运行完成同层物料转运等问题
1、本发明通过转运机构和夹持机构的配合,使装置在使用时,可通过液压伸缩缸驱动U型夹持杆伸缩,进而带动夹持端部卡入夹持底槽内部或从夹持底槽内部取出,当需要对储存机构进行转运时,转运机构和夹持机构通过滑动座在导轨表面移动,当滑动座经过需要转运的储存机构时,滑动座表面RFID读写器会读取到定位机构的RFID标签信息,从而使滑动座停止在对应的定位机构位置,此时通过液压伸缩缸驱动U型夹持杆收回,使夹持端部卡入夹持底槽的内部,随后液压升降缸驱动升降台上升,使夹持端部带动货物托盘和储液罐同步上升,进而使货物托盘离开储藏板或地面表面,此时即可继续移动转运机构,使转运机构通过定位机构进行定位将储存机构运输至指定位置,实现货架同层位置的物料转运;
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Figure CN122646489A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of warehousing and logistics equipment technology, specifically to a lubricating oil finished product storage and distribution transfer mechanism and its automated warehouse. Background Technology
[0002] An automated storage and retrieval system (AS / RS), also known as a high-bay warehouse, is an intelligent warehousing system that uses high-rise racks to store goods and utilizes automated equipment such as stacker cranes and shuttle cars in conjunction with a computer management system (WMS / WCS) to achieve automatic storage, retrieval, handling and management of goods. When storing lubricating oil, the finished product is usually stored in a sealed steel or high-density plastic container in an automated warehouse.
[0003] Existing lubricating oil transfer mechanisms and automated warehouses often experience lubricating oil leakage due to collisions with the storage carrier during transportation. Furthermore, the poor compatibility between warehouse shelves and transfer mechanisms prevents direct transfer and allocation between storage locations on the same level, requiring stacker cranes to frequently perform up-and-down reciprocating operations to complete material transfers within the same level. Therefore, these systems do not meet current requirements. To address this, we propose a lubricating oil finished product storage and allocation transfer mechanism and its automated warehouse. Summary of the Invention
[0004] The purpose of this invention is to provide a lubricating oil finished product storage and distribution transfer mechanism and its automated warehouse, in order to solve the problems mentioned in the background art, such as lubricating oil leakage caused by collision with the lubricating oil storage carrier during transportation, poor compatibility between warehouse shelves and transfer mechanism, inability to achieve direct transfer and distribution between the same level of storage locations, and the need for stacker cranes to frequently perform up and down reciprocating operations to complete the transfer of materials on the same level.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a lubricating oil finished product storage and distribution transfer mechanism and its three-dimensional warehouse, including a support structure, a transfer mechanism provided on the surface of the support structure, a clamping mechanism provided at the bottom end of each transfer mechanism, and multiple storage mechanisms provided inside the support structure. The transfer mechanism includes a sliding seat, a hydraulic lifting cylinder, and a lifting platform. Two sliding seats are slidably installed inside the support structure. A mounting frame is fixedly connected between the two sliding seats. A hydraulic lifting cylinder is installed inside the mounting frame. A lifting platform is fixedly connected to the output end of the bottom of the hydraulic lifting cylinder. The clamping mechanism includes a U-shaped clamping rod, a clamping end, rollers, and a telescopic end. The U-shaped clamping rod is movably installed on both sides of the lifting platform. The end of the U-shaped clamping rod near the lifting platform has a telescopic end, and the other end of the U-shaped clamping rod has a clamping end. Multiple rollers are provided near the clamping end of the U-shaped clamping rod.
[0006] Preferably, the support structure includes multiple sets of vertically arranged columns, with crossbeams movably installed between adjacent sets of columns, and the multiple sets of crossbeams are arranged at equal intervals along the height direction of the columns. Each end of the crossbeam is fixedly installed with a connecting frame, and the connecting frame is connected and cooperates with the column. The surface of the connecting frame and the column is provided with multiple connecting holes, and the connecting frame and the column are rigidly connected to the connecting holes by bolts.
[0007] Preferably, the support structure further includes a U-shaped snap-fit plate, a storage plate, and guide rails. A storage plate is movably installed between each group of crossbeams. Two guide rails are fixedly installed at the bottom of each storage plate. A U-shaped snap-fit plate is fixedly installed on the inner surface of each crossbeam. The storage plate slides into the interior of the U-shaped snap-fit plate.
[0008] Preferably, the transfer mechanism further includes a protective sleeve and a hydraulic telescopic cylinder. An RFID reader is provided at the center of the top of the sliding seat. Two protective sleeves are fixedly installed on both sides of the lifting platform. Multiple hydraulic telescopic cylinders are provided inside the lifting platform. The output end of each hydraulic telescopic cylinder is fixedly connected to the telescopic end.
[0009] Preferably, a positioning mechanism is provided at the center of the surface of the storage plate, and an RFID tag is provided at the bottom of the positioning mechanism. The RFID tag is read and written by an RFID reader to locate the position of the sliding seat.
[0010] Preferably, the clamping mechanism further includes a lifting groove, an outer mounting frame, an inner mounting frame, and a guide plate. Both sides of the U-shaped clamping rod are provided with lifting grooves. The outer mounting frame is movably installed on the surface of the outer lifting groove, and the inner mounting frame is movably installed on the surface of the inner lifting groove. The rollers are rotatably connected to the outer mounting frame and the inner mounting frame. The guide plate is fixedly installed on the side of the outer mounting frame and the inner mounting frame near the lifting groove, and the guide plate is slidably inserted into the interior of the lifting groove.
[0011] Preferably, the clamping mechanism further includes a guide rod and a compression spring. The guide rod is fixedly installed inside the lifting groove. The guide rod passes through the surface of the guide plate. A compression spring is movably installed between the guide plate and the inside of the lifting groove. One end of the compression spring is connected to the upper end of the inner wall of the lifting groove, and the other end of the compression spring is connected to the surface of the guide plate. The guide rod passes through the inside of the compression spring.
[0012] Preferably, the storage mechanism includes a cargo pallet, a clamping groove, a liquid storage tank, a liquid inlet, a top cover, and a liquid outlet. The cargo pallet is movably placed on the storage plate and the ground surface. Each cargo pallet is equipped with a liquid storage tank at its top. Each liquid storage tank is fixedly equipped with a liquid inlet at its top. Each liquid inlet is movably equipped with a top cover. Each liquid storage tank is equipped with a liquid outlet on one side. The liquid storage tank is filled with lubricating oil. Multiple support plates are fixedly installed at the bottom of the cargo pallet, and a clamping groove is provided between every two support plates.
[0013] Preferably, the clamping ends are all retracted and engaged inside the clamping bottom groove by the hydraulic telescopic cylinder drive output end.
[0014] Preferably, both sides of the sliding seat are slidably mounted on the surface of the guide rail, the inner side of the sliding seat is provided with multiple pulleys, the outer surface of the guide rail is provided with track grooves, and the pulleys are elastically fitted with the inner wall of the track grooves.
[0015] Compared with the prior art, the beneficial effects of the present invention are: 1. This invention, through the cooperation of a transfer mechanism and a clamping mechanism, allows the device to extend and retract via a hydraulic telescopic cylinder, thereby engaging or disengaging the clamping end into or out of the clamping groove. When the storage mechanism needs to be transferred, the transfer mechanism and the clamping mechanism move on the guide rail surface via a sliding seat. When the sliding seat passes the storage mechanism to be transferred, the RFID reader on the surface of the sliding seat reads the RFID tag information of the positioning mechanism, causing the sliding seat to stop at the corresponding positioning mechanism position. At this time, the hydraulic telescopic cylinder drives the U-shaped clamping rod to retract, causing the clamping end to engage in the clamping groove. Subsequently, the hydraulic lifting cylinder drives the lifting platform to rise, causing the clamping end to lift the cargo pallet and the liquid storage tank simultaneously, thereby causing the cargo pallet to leave the storage plate or the ground surface. At this time, the transfer mechanism can continue to move, allowing the transfer mechanism to be positioned by the positioning mechanism to transport the storage mechanism to the designated location, realizing the transfer of materials at the same level of the shelf. 2. This invention, through the cooperation of compression springs and guide plates, ensures that when the hydraulic lifting cylinder drives the lifting platform to rise during use, it simultaneously drives the U-shaped clamping rod to rise. At this time, the outer and inner mounting frames are pushed down inside the lifting groove by the elastic force of the compression spring, causing the rollers to elastically fit against the storage plate or ground surface. The outer and inner mounting frames and the rollers then support the U-shaped clamping rod, preventing the U-shaped clamping rod from being crushed by the storage mechanism during the lifting process and movement due to excessive weight. It also prevents the storage mechanism from colliding with the transfer mechanism and clamping mechanism during movement, thus avoiding lubricant leakage. Attached Figure Description
[0016] Figure 1This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the transfer mechanism of the present invention; Figure 3 This is a cross-sectional front view of the entire invention; Figure 4 This is a cross-sectional side view of the entire invention; Figure 5 This is a cross-sectional front view of the location of the lifting groove in this invention; Figure 6 This is a top cross-sectional view of the location of the lifting platform in this invention; Figure 7 For the present invention Figure 5 A partial structural diagram of part A in the middle.
[0017] In the diagram: 1. Support structure; 101. Column; 102. Crossbeam; 103. Connecting frame; 104. Connecting hole; 105. U-shaped snap-fit plate; 106. Storage plate; 107. Guide rail; 2. Transfer mechanism; 201. Sliding seat; 202. Hydraulic lifting cylinder; 203. Lifting platform; 204. Protective sleeve; 205. Hydraulic telescopic cylinder; 3. Clamping mechanism; 301. U-shaped clamping rod; 302. Clamping end; 303. Lifting groove; 304. External mounting frame; 305. Internal mounting frame; 306. Roller; 307. Guide rod; 308. Compression spring; 309. Guide plate; 310. Telescopic end; 4. Storage mechanism; 401. Cargo pallet; 402. Clamping bottom groove; 403. Liquid storage tank; 404. Liquid inlet; 405. Top cover; 406. Liquid outlet; 5. Positioning mechanism. Detailed Implementation
[0018] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0019] Please see Figures 1 to 7 An embodiment of the present invention provides a lubricating oil finished product storage and transfer mechanism and its three-dimensional warehouse, including a support structure 1, a transfer mechanism 2 provided on the surface of the support structure 1, a clamping mechanism 3 provided at the bottom of each transfer mechanism 2, and a plurality of storage mechanisms 4 provided inside the support structure 1. The transfer mechanism 2 includes a sliding seat 201, a hydraulic lifting cylinder 202, and a lifting platform 203. The two sliding seats 201 are slidably installed inside the support structure 1. A mounting frame is fixedly connected between the two sliding seats 201. The mounting frame is equipped with a hydraulic lifting cylinder 202. The output end of the bottom of the hydraulic lifting cylinder 202 is fixedly connected to the lifting platform 203. The clamping mechanism 3 includes a U-shaped clamping rod 301, a clamping end 302, rollers 306, and a telescopic end 310. The U-shaped clamping rod 301 is movably installed on both sides of the lifting platform 203. The telescopic end 310 is provided at one end of the U-shaped clamping rod 301 near the lifting platform 203, and the clamping end 302 is provided at the other end of the U-shaped clamping rod 301. Multiple rollers 306 are provided at the position of the U-shaped clamping rod 301 near the clamping end 302.
[0020] Through the cooperation of the transfer mechanism 2 and the clamping mechanism 3, the device can extend and retract the U-shaped clamping rod 301 via the hydraulic telescopic cylinder 205 during use, thereby causing the clamping end 302 to engage with or disengage from the clamping bottom groove 402. When the storage mechanism 4 needs to be transferred, the transfer mechanism 2 and the clamping mechanism 3 move on the surface of the guide rail 107 via the sliding seat 201. When the sliding seat 201 passes the storage mechanism 4 to be transferred, the RFID reader on the surface of the sliding seat 201 will read the RFID tag information of the positioning mechanism 5, thereby causing the sliding seat 201 to engage with the storage mechanism 4. 1. Stop at the corresponding positioning mechanism 5. At this time, the U-shaped clamping rod 301 is retracted by the hydraulic telescopic cylinder 205, so that the clamping end 302 is inserted into the clamping bottom groove 402. Then, the hydraulic lifting cylinder 202 drives the lifting platform 203 to rise, so that the clamping end 302 drives the cargo pallet 401 and the liquid storage tank 403 to rise synchronously, thereby making the cargo pallet 401 leave the storage plate 106 or the ground surface. At this time, the transfer mechanism 2 can continue to move, so that the transfer mechanism 2 is positioned by the positioning mechanism 5 to transport the storage mechanism 4 to the designated position, realizing the transfer of materials in the same layer of the shelf.
[0021] The support structure 1 includes multiple sets of vertically arranged columns 101. A crossbeam 102 is movably installed between two adjacent sets of columns 101. The multiple sets of crossbeams 102 are arranged at equal intervals along the height direction of the columns 101. A connecting frame 103 is fixedly installed at both ends of the crossbeam 102. The connecting frame 103 is connected and cooperates with the column 101. The surfaces of the connecting frame 103 and the column 101 are provided with multiple connecting holes 104. The connecting frame 103 and the column 101 are rigidly connected to the connecting holes 104 by bolts.
[0022] The support structure 1 also includes a U-shaped snap-fit plate 105, a storage plate 106, and a guide rail 107. A storage plate 106 is movably installed between each set of crossbeams 102. Two guide rails 107 are fixedly installed at the bottom of each storage plate 106. A U-shaped snap-fit plate 105 is fixedly installed on the inner surface of each crossbeam 102. The storage plates 106 are slidably snapped into the interior of the U-shaped snap-fit plate 105.
[0023] The transfer mechanism 2 also includes a protective sleeve 204 and a hydraulic telescopic cylinder 205. An RFID reader is provided at the top center of the sliding seat 201. Two protective sleeves 204 are fixedly installed on both sides of the lifting platform 203. Multiple hydraulic telescopic cylinders 205 are provided inside the lifting platform 203. The output end of each hydraulic telescopic cylinder 205 is fixedly connected to the telescopic end 310.
[0024] Each storage plate 106 has a positioning mechanism 5 at its center. The bottom of the positioning mechanism 5 is equipped with an RFID tag. The RFID tag is read and written by an RFID reader to locate the position of the sliding seat 201.
[0025] The clamping mechanism 3 also includes a lifting groove 303, an outer mounting bracket 304, an inner mounting bracket 305, and a guide plate 309. Both sides of the U-shaped clamping rod 301 are provided with lifting grooves 303. The outer mounting bracket 304 is movably installed on the surface of the outer lifting groove 303, and the inner mounting bracket 305 is movably installed on the surface of the inner lifting groove 303. The rollers 306 are rotatably connected to the outer mounting bracket 304 and the inner mounting bracket 305. The guide plate 309 is fixedly installed on the side of the outer mounting bracket 304 and the inner mounting bracket 305 near the lifting groove 303. The guide plate 309 is slidably inserted into the interior of the lifting groove 303.
[0026] The clamping mechanism 3 also includes a guide rod 307 and a compression spring 308. The guide rod 307 is fixedly installed inside the lifting groove 303. The guide rod 307 passes through the surface of the guide plate 309. The compression spring 308 is movably installed between the guide plate 309 and the inside of the lifting groove 303. One end of the compression spring 308 is connected to the upper end of the inner wall of the lifting groove 303, and the other end of the compression spring 308 is connected to the surface of the guide plate 309. The guide rod 307 passes through the inside of the compression spring 308.
[0027] With the cooperation of compression spring 308 and guide plate 309, when the device is in use, when the hydraulic lifting cylinder 202 drives the lifting platform 203 to rise, it will simultaneously drive the U-shaped clamping rod 301 to rise. At this time, the outer mounting frame 304 and inner mounting frame 305 will be pushed by the elastic force of compression spring 308 and descend inside the lifting groove 303, so that the roller 306 elastically contacts the storage plate 106 or the ground surface. Then, the outer mounting frame 304, inner mounting frame 305 and roller 306 support the U-shaped clamping rod 301, avoiding the U-shaped clamping rod 301 being crushed by the storage mechanism 4 due to excessive weight during the rising process of the clamping end 302 and during the movement process. It also prevents the storage mechanism 4 from colliding with the transfer mechanism 2 and clamping mechanism 3 during movement, which would cause lubricating oil leakage.
[0028] The storage mechanism 4 includes a cargo pallet 401, a clamping groove 402, a liquid storage tank 403, a liquid inlet 404, a top cover 405, and a liquid outlet 406. The cargo pallet 401 is movably placed on the storage plate 106 and the ground surface. Each cargo pallet 401 is equipped with a liquid storage tank 403 at its top. Each liquid storage tank 403 is fixedly equipped with a liquid inlet 404 at its top. Each liquid inlet 404 is movably equipped with a top cover 405. Each liquid storage tank 403 is equipped with a liquid outlet 406 on one side. The liquid storage tank 403 is filled with lubricating oil. Multiple support plates are fixedly installed at the bottom of the cargo pallet 401. A clamping groove 402 is provided between every two support plates.
[0029] The clamping end 302 is retracted and locked into the clamping bottom groove 402 by the hydraulic telescopic cylinder 205 drive output end.
[0030] Both sides of the sliding seat 201 are slidably mounted on the surface of the guide rail 107. Multiple pulleys are provided on the inner side of the sliding seat 201, and the outer surface of the guide rail 107 is provided with track grooves. The pulleys are elastically fitted to the inner wall of the track grooves.
[0031] When using the lubricating oil finished product storage and transfer mechanism and its automated warehouse, the storage unit 4 is first placed inside the device by a forklift or other transportation mechanism. Then, when the storage unit 4 needs to be transferred, the transfer mechanism 2 and the clamping mechanism 3 move on the surface of the guide rail 107 via the sliding seat 201. When the sliding seat 201 passes the storage unit 4 that needs to be transferred, the RFID reader on the surface of the sliding seat 201 will read the RFID tag information of the positioning mechanism 5, so that the sliding seat 201 stops at the corresponding positioning mechanism 5 position. At this time, the U-shaped clamping rod 301 is driven to retract by the hydraulic telescopic cylinder 205, so that the clamping end 302 is locked into the inside of the clamping bottom groove 402. Then, the hydraulic lifting cylinder 202 drives the lifting platform 203 to rise, so that the clamping end 302 drives the cargo pallet 401 and the liquid storage tank 403 to rise synchronously, thereby making the cargo pallet 401 leave the storage plate 106 or the ground surface. At this time, the transfer mechanism 2 can continue to move, so that the transfer mechanism 2 is positioned by the positioning mechanism 5 to transport the storage unit 4 to the designated position, realizing the transfer of materials at the same level of the shelf.
[0032] When the hydraulic lifting cylinder 202 drives the lifting platform 203 to rise, it will simultaneously drive the U-shaped clamping rod 301 to rise. At this time, the outer mounting frame 304 and the inner mounting frame 305 will be pushed by the elastic force of the compression spring 308 and descend inside the lifting groove 303, so that the roller 306 elastically fits against the storage plate 106 or the ground surface. Then, the outer mounting frame 304, the inner mounting frame 305 and the roller 306 support the U-shaped clamping rod 301, so as to avoid the U-shaped clamping rod 301 being crushed by the storage mechanism 4 due to excessive weight during the rising process of the clamping end 302 and during the movement process. It also prevents the storage mechanism 4 from colliding with the transfer mechanism 2 and the clamping mechanism 3 during the movement, which would cause the lubricating oil to leak.
[0033] The size of the automated warehouse can be adjusted according to the needs of goods by combining the columns 101, beams 102 and storage panels 106, thereby adapting to the loading and storage of different goods.
[0034] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A lubricating oil finished product storage and distribution transfer mechanism and its three-dimensional warehouse, comprising a support structure (1), characterized in that: The surface of the support structure (1) is provided with a transfer mechanism (2), and the bottom end of the transfer mechanism (2) is provided with a clamping mechanism (3). The interior of the support structure (1) is provided with multiple storage mechanisms (4). The transfer mechanism (2) includes a sliding seat (201), a hydraulic lifting cylinder (202), and a lifting platform (203). The two sliding seats (201) are slidably installed inside the support structure (1). A mounting frame is fixedly connected between the two sliding seats (201). The mounting frame is equipped with a hydraulic lifting cylinder (202). The output end of the bottom of the hydraulic lifting cylinder (202) is fixedly connected to the lifting platform (203). The clamping mechanism (3) includes a U-shaped clamping rod (301), a clamping end (302), rollers (306) and a telescopic end (310). The U-shaped clamping rod (301) is movably installed on both sides of the lifting platform (203). The end of the U-shaped clamping rod (301) near the lifting platform (203) is provided with a telescopic end (310), and the other end of the U-shaped clamping rod (301) is provided with a clamping end (302). Multiple rollers (306) are provided near the clamping end (302) of the U-shaped clamping rod (301).
2. The lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 1, characterized in that: The support structure (1) includes multiple sets of vertically arranged columns (101), with crossbeams (102) movably installed between adjacent sets of columns (101), and the multiple sets of crossbeams (102) are arranged at equal intervals along the height direction of the columns (101). Each end of the crossbeam (102) is fixedly installed with a connecting frame (103), and the connecting frame (103) is connected and cooperates with the column (101). The surfaces of the connecting frame (103) and the column (101) are provided with multiple connecting holes (104), and the connecting frame (103) and the column (101) are rigidly connected to the connecting holes (104) by bolts.
3. The lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 2, characterized in that: The support structure (1) also includes a U-shaped snap-fit plate (105), a storage plate (106) and a guide rail (107). A storage plate (106) is movably installed between each set of crossbeams (102). Two guide rails (107) are fixedly installed at the bottom of each storage plate (106). A U-shaped snap-fit plate (105) is fixedly installed on the inner surface of each crossbeam (102). The storage plates (106) are slidably snapped into the interior of the U-shaped snap-fit plate (105).
4. The lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 3, characterized in that: The transfer mechanism (2) also includes a protective sleeve (204) and a hydraulic telescopic cylinder (205). An RFID reader is provided at the top center of the sliding seat (201). Two protective sleeves (204) are fixedly installed on both sides of the lifting platform (203). Multiple hydraulic telescopic cylinders (205) are provided inside the lifting platform (203). The output end of each hydraulic telescopic cylinder (205) is fixedly connected to the telescopic end (310).
5. The lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 4, characterized in that: The center of the surface of each storage plate (106) is provided with a positioning mechanism (5), and the bottom of the positioning mechanism (5) is provided with an RFID tag. The RFID tag is read and written by an RFID reader to locate the position of the sliding seat (201).
6. The lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 5, characterized in that: The clamping mechanism (3) further includes a lifting groove (303), an outer mounting bracket (304), an inner mounting bracket (305), and a guide plate (309). The two sides of the U-shaped clamping rod (301) are provided with lifting grooves (303). The outer mounting bracket (304) is movably installed on the surface of the lifting groove (303) on the outer side, and the inner mounting bracket (305) is movably installed on the surface of the lifting groove (303) on the inner side. The rollers (306) are rotatably connected to the outer mounting bracket (304) and the inner mounting bracket (305). The guide plate (309) is fixedly installed on the side of the outer mounting bracket (304) and the inner mounting bracket (305) near the lifting groove (303). The guide plate (309) is slidably inserted into the interior of the lifting groove (303).
7. The lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 6, characterized in that: The clamping mechanism (3) further includes a guide rod (307) and a compression spring (308). The guide rod (307) is fixedly installed inside the lifting groove (303). The guide rod (307) passes through the surface of the guide plate (309). The compression spring (308) is movably installed between the guide plate (309) and the inside of the lifting groove (303). One end of the compression spring (308) is connected to the upper end of the inner wall of the lifting groove (303), and the other end of the compression spring (308) is connected to the surface of the guide plate (309). The guide rod (307) passes through the inside of the compression spring (308).
8. The lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 7, characterized in that: The storage mechanism (4) includes a cargo pallet (401), a clamping groove (402), a liquid storage tank (403), a liquid inlet (404), a top cover (405), and a liquid outlet (406). The cargo pallet (401) is movably placed on the storage plate (106) and the ground surface. The top of the cargo pallet (401) is provided with a liquid storage tank (403). The top of the liquid storage tank (403) is fixedly installed with a liquid inlet (404). The surface of the liquid inlet (404) is movably installed with a top cover (405). The side of the liquid storage tank (403) is provided with a liquid outlet (406). The inside of the liquid storage tank (403) is filled with lubricating oil. The bottom of the cargo pallet (401) is fixedly installed with multiple support plates. A clamping groove (402) is provided between every two support plates.
9. A lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 8, characterized in that: The clamping ends (302) are all retracted and locked into the clamping bottom groove (402) by the hydraulic telescopic cylinder (205) drive output end.
10. A lubricating oil finished product storage, dispensing and transfer mechanism and its automated warehouse according to claim 8, characterized in that: Both sides of the sliding seat (201) are slidably mounted on the surface of the guide rail (107). The inner side of the sliding seat (201) is provided with multiple pulleys, and the outer surface of the guide rail (107) is provided with track grooves. The pulleys are elastically fitted to the inner wall of the track grooves.