Efficient lubricating tool for high-rotating-speed machine
By designing a rust-removing block and lubrication brush structure for high-efficiency lubrication tools, the problems of rotor rusting and lubricant waste were solved, achieving efficient lubrication and resource recycling, and improving the performance of lubrication tools.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SANHE POWER GENERATION
- Filing Date
- 2025-07-15
- Publication Date
- 2026-05-08
AI Technical Summary
Existing lubrication tools cannot effectively protect the rotor from rust in high-speed machinery, and cannot recycle leaked lubricating oil, resulting in resource waste.
A high-efficiency lubrication tool was designed, comprising a rust removal block and a lubrication brush. Rust removal and lubrication are achieved through a sliding structure of push rod and push tube. It is fixed by a clamping structure and equipped with a filter screen to recover dripping lubricating oil and avoid waste.
It achieves rust removal and protection at the rotating head, and effectively recycles lubricating oil, avoiding resource waste and improving lubrication efficiency and resource utilization.
Smart Images

Figure CN224215110U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mechanical lubrication technology, specifically to a high-efficiency lubrication tool for high-speed machinery. Background Technology
[0002] In the metallurgical industry, belt conveyors are often used for transporting materials over long distances. Whether it is the first pulley bearing at the starting point, the middle pulley bearing, or the last pulley bearing at the end point, all belt conveyors need to be lubricated regularly. In the existing technology, automatic dry grease systems are used to lubricate the lubrication points of the belt conveyor. However, using automatic dry grease systems requires laying long pipelines, and the pipelines must be completely filled with lubricating grease before the lubrication points can be lubricated, which will result in the waste of lubricating grease.
[0003] Prior art 1 (application number: CN202322286649.1) discloses a rotor inlet lubrication tool, including a retaining strip, a ring in the middle of the retaining strip, a movable ring movably mounted inside the ring, a nut fixedly mounted on the movable ring, a shaft threadedly mounted at the position of the nut, and a crank handle integrally connected to the upper end of the shaft. A brush is provided on the portion of the shaft located below the retaining strip. In this utility model, the tool is adsorbed and fixed on the rotor inlet, and lubricating oil is applied by rotating the crank handle. The operation is fast. By pressing and rotating the nut to adjust the upward and downward movement of the shaft, it can reach the bottom and top of the rotor inlet, achieving complete oiling. Only one upward rotation and one downward rotation are needed to complete the lubrication of the rotor inlet. It is fast, provides comprehensive coverage, and saves oil.
[0004] However, in implementing the relevant technology, the following problems were found with the above-mentioned rotor port lubrication tools: the existing lubrication tools only apply lubricating oil, which is not convenient for rust removal and protection of the rotor head, and it is also not convenient for recycling the leaked lubricating oil, which easily leads to waste. Utility Model Content
[0005] This utility model proposes a high-efficiency lubrication tool for high-speed machinery, which solves the problems of existing lubrication tools in related technologies, which only apply lubricating oil, making it inconvenient to remove rust and protect the rotating head, and also making it inconvenient to recycle leaked lubricating oil, which easily leads to waste.
[0006] The technical solution of this utility model is as follows: A high-efficiency lubrication tool for high-speed machinery includes an adjusting cylinder, the lower end of which is fixedly connected to a connecting cylinder, and the lower end of the connecting cylinder is penetrated by an installation cylinder.
[0007] The lubricating oil tank is integrally and fixedly connected to the lower end of the mounting cylinder, and an oil pump is installed and connected to the upper right end of the lubricating oil tank.
[0008] An oil inlet pipe is connected to the water inlet of the oil pump, and an oil outlet pipe is connected to the water outlet of the oil pump. The lower end of the oil inlet pipe passes through the upper interior of the lubricating oil tank.
[0009] Also includes:
[0010] A chute is provided on the right end face of the adjusting cylinder, and a push rod and a push tube are sequentially connected inside the chute.
[0011] Rust removal block, the rust removal block is fixedly connected to the left end of the push rod, and the right ends of the push rod and the push tube are both fixedly connected to the push block, and the left end of the push tube is connected to the lubrication brush;
[0012] The clamping structure is fixedly installed on the lower end face of the adjusting cylinder by a fixing plate, and the fixing plate has a first screw hole at both the left front end and the left rear end.
[0013] Preferably, both the rust removal block and the lubrication brush are semi-cylindrical structures, and the rust removal block forms a left-right sliding structure inside the adjusting cylinder through the push rod. At the same time, the lubrication brush forms a communication structure with the universal hose through the push tube, and the lower end of the universal hose is connected to the right end of the oil outlet pipe.
[0014] Preferably, the left end of the adjusting cylinder has a hollow semi-cylindrical structure, and the right end of the adjusting cylinder has a hollow cylindrical structure, and the lower left end face of the adjusting cylinder is inclined.
[0015] Preferably, the outer surfaces of the push rod and the push tube are fitted with limiting cylinders, and the upper and lower sides of the left end face of the limiting cylinder are fixedly connected with locking blocks, and the push rod and the push tube form an up-and-down sliding structure on the sliding groove.
[0016] Preferably, the slide groove has a candied hawthorn-shaped hole structure, and the distance between the holes in the slide groove is equal to the distance between the locking blocks, and the locking blocks and the slots of the slide groove are engaged.
[0017] Preferably, the clamping structure includes a push-pull plate, a slide rod, a spring, a clamping rod, a second screw hole, and a clamping block. The push-pull plate passes through the interior of the fixed plate. The front and rear side walls of the push-pull plate are provided with second screw holes at equal intervals. The second screw holes are fixedly connected to the first screw holes by bolts. The left end of the push-pull plate is connected to the front and rear sides of the push-pull plate with clamping rods. The end of the clamping rod located inside the push-pull plate is connected to the slide rod. The front and rear ends of the slide rod are fitted with springs. The upper inner wall of the clamping rod is fixedly connected to a clamping block.
[0018] Preferably, the clamping rod forms a telescopic structure inside the push-pull plate via a sliding rod, and the clamping block fixedly connected to the upper end of the clamping rod has an arc-shaped structure.
[0019] Preferably, the inner wall of the mounting cylinder is integrally fixed with a limiting block, and a filter screen is engaged and connected to the limiting block.
[0020] The working principle and beneficial effects of this utility model are as follows: It is mainly to facilitate the rust removal and protection of the rotating head, and also to facilitate the recycling of leaked lubricating oil, thus avoiding waste.
[0021] In this utility model, a rust removal block and a lubrication brush are provided. The rust removal block and the lubrication brush slide left and right inside the adjusting cylinder, which makes it easy to remove rust and lubricate the outer surface of the rotor. The lubrication brush, the push tube and the lubricating oil tank are connected, which makes it easy to pump out lubricating oil and apply it to the outer surface of the rotor for convenient lubrication.
[0022] In this utility model, a fixing plate and a clamping structure are provided. The clamping structure slides inside the fixing plate. The fixing plate and the clamping structure are fixed by bolts. Pulling the sub-part clamping block of the clamping structure makes it easy to clamp the clamping block on the outer shell of the machine, which facilitates the installation and fixing of the adjusting cylinder and facilitates the normal operation of subsequent lubrication and rust removal.
[0023] In this utility model, a filter screen and a limiting block are provided. The limiting block is fixed inside the mounting cylinder, and the filter screen is engaged on the limiting block. The mounting cylinder and the connecting cylinder are fixedly connected by bolts, which facilitates the filtration of lubricating oil dripping from the regulating cylinder through the filter screen, and also facilitates its recovery into the lubricating oil tank to avoid waste. Attached Figure Description
[0024] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0025] Figure 1 This is a schematic diagram of the overall structure proposed in this utility model;
[0026] Figure 2 The present utility model proposes Figure 1 Enlarged structural diagram at point A in the middle;
[0027] Figure 3 This is a schematic diagram of the connection structure between the adjusting cylinder and the fixing plate proposed in this utility model;
[0028] Figure 4 This is a schematic diagram of the clamping structure proposed in this utility model.
[0029] In the diagram: 1. Adjusting cylinder; 2. Rust removal block; 3. Lubrication brush; 4. Push rod; 5. Limiting cylinder; 6. Push block; 7. Push tube; 8. Universal hose; 9. Lubricating oil tank; 10. Slide groove; 11. Clamping block; 12. Fixing plate; 13. First screw hole; 14. Clamping structure; 1401. Push-pull plate; 1402. Slide rod; 1403. Spring; 1404. Clamping rod; 1405. Second screw hole; 1406. Clamping block; 15. Connecting cylinder; 16. Filter screen; 17. Mounting cylinder; 18. Limiting block; 19. Oil pump; 20. Oil outlet pipe; 21. Oil inlet pipe. Detailed Implementation
[0030] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this utility model.
[0031] Please see Figures 1-4 This utility model provides a technical solution for a high-efficiency lubrication tool for high-speed machinery, including an adjusting cylinder 1, a rust removal block 2, a lubrication brush 3, a push rod 4, a limiting cylinder 5, a push block 6, a push tube 7, a universal hose 8, a lubricating oil tank 9, a sliding groove 10, a clamping block 11, a fixing plate 12, a first screw hole 13, a clamping structure 14, a push-pull plate 1401, a sliding rod 1402, a spring 1403, a clamping rod 1404, a second screw hole 1405, a clamping block 1406, a connecting cylinder 15, a filter screen 16, an installation cylinder 17, a limiting block 18, an oil pump 19, an oil outlet pipe 20, and an oil inlet pipe 21.
[0032] The working principle and usage process of this utility model are as follows: First, combined with... Figure 3 and Figure 4As shown, the clamping structure 14 includes a push-pull plate 1401, a slide rod 1402, a spring 1403, a clamping rod 1404, a second screw hole 1405, and a clamping block 1406. The push-pull plate 1401 passes through the interior of the fixed plate 12. The front and rear side walls of the push-pull plate 1401 are provided with second screw holes 1405 at equal intervals. The second screw holes 1405 are fixedly connected to the first screw hole 13 by bolts. The left end of the push-pull plate 1401 is connected to the front and rear sides of the clamping rod 1404. The end of the clamping rod 1404 located inside the push-pull plate 1401 is connected to the slide rod 1402. The front and rear ends of the slide rod 1402 are fitted with springs 1403. The upper inner wall of the clamping rod 1404 is fixedly connected to the clamping block 1406. The clamping rod 1404 passes through the slide rod 1402 on the push-pull plate 1401. The internal structure is telescopic, and the clamping block 1406 fixedly connected to the upper end of the clamping rod 1404 has an arc structure. According to the length of the mechanical rotor head, the push-pull plate 1401 is pulled on the fixed plate 12. The push-pull plate 1401 is fixed on the fixed plate 12 by bolts passing through the first screw hole 13 and the second screw hole 1405, which facilitates adjustment and fixation. Then, the clamping block 1406 is pulled outward on both sides of the push-pull plate 1401 by the clamping rod 1404. While the clamping rod 1404 slides on the slide rod 1402, the spring 1403 is compressed, which facilitates adjustment of the distance between the clamping blocks 1406 and the clamping blocks 1406. This facilitates the clamping blocks 1406 to be clamped on the mechanical housing for reinforcement and facilitates the later application of lubricating oil to the rotor head.
[0033] Combination Figure 1 and Figure 3 As shown, both the rust-removing block 2 and the lubricating brush 3 are semi-cylindrical structures. The rust-removing block 2 slides left and right inside the adjusting cylinder 1 via the push rod 4. The lubricating brush 3 is connected to the universal hose 8 via the push tube 7. The lower end of the universal hose 8 is connected to the right end of the oil outlet pipe 20. The left end of the adjusting cylinder 1 is a hollow semi-cylindrical structure, and the right end is a hollow cylindrical structure. The lower left end face of the adjusting cylinder 1 is inclined. Limiting cylinders 5 are fitted onto the outer surfaces of both the push rod 4 and the push tube 7. Both the upper and lower sides of the left end face of the cylinder 5 are fixedly connected with the locking blocks 11, and the push rod 4 and the push tube 7 form an up-and-down sliding structure on the slide groove 10. The slide groove 10 has a candied hawthorn-shaped hole structure, and the distance between the round holes of the slide groove 10 is equal to the distance between the locking blocks 11. The locking blocks 11 and the holes of the slide groove 10 are engaged. By pushing and pulling the push rod 4 and the push tube 7 through the push block 6, it is convenient for the rust removal block 2 and the lubrication brush 3 to contact the outer surface of the rotor, which is convenient for rust removal and lubrication.
[0034] During rust removal, the rust removal block 2 slides on the slide groove 10 via the push rod 4. When the inner wall of the rust removal block 2 contacts the outer surface of the rotor, the limiting cylinder 5 slides on the push rod 4 and engages with the slot of the slide groove 10 via the locking block 11 to limit the horizontal position of the push rod 4. At the same time, the push rod 4 is slid left and right and then rotated to allow the rust removal block 2 to protect the outer surface of the rotor. During lubrication, the same method is used: the push rod 4 is moved away, and the push tube 7 is slid to the corresponding position to allow the inner wall of the lubrication brush 3 to contact the rotor. The oil pump 19 is turned on, and the oil pump 19 pumps the lubricating oil in the lubricating oil tank 9 into the push tube 7 through the universal hose 8. The lubrication brush 3 is used to lubricate the outer surface of the rotor. The push tube 7 is slid left and right to allow the lubricating oil to be fully applied to the rotor connected to the end of the rotor. The push tube 7 is rotated 90° clockwise and counterclockwise for sufficient lubrication. This method is convenient for use.
[0035] Combination Figure 1 and Figure 2 As shown, the inner wall of the mounting cylinder 17 is integrally fixed with a limiting block 18, and a filter screen 16 is engaged with the limiting block 18. The lower end face of the adjusting cylinder 1 is inclined, so that excess dripping lubricating oil can be collected into the lubricating oil tank 9 through the filtering effect of the filter screen 16 for easy reuse. The mounting cylinder 17 and the connecting cylinder 15 are fixed together by bolts. This is the working process of the high-efficiency lubrication tool for high-speed machinery.
[0036] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A high-efficiency lubrication tool for high-speed machinery, comprising an adjusting cylinder (1), wherein a connecting cylinder (15) is fixedly connected to the lower end of the adjusting cylinder (1), and an mounting cylinder (17) passes through the lower end of the connecting cylinder (15). The lubricating oil tank (9) is integrally fixedly connected to the lower end of the mounting cylinder (17), and an oil pump (19) is installed and connected to the upper right end of the lubricating oil tank (9). The oil inlet pipe (21) is connected to the inlet flange of the oil pump (19), and the outlet flange of the oil pump (19) is connected to the outlet pipe (20). The lower end of the oil inlet pipe (21) passes through the upper end of the lubricating oil tank (9). Its features are, Also includes: The slide (10) is located on the right end face of the adjusting cylinder (1), and the push rod (4) and the push tube (7) are connected through the inside of the slide (10) in sequence. Rust removal block (2), the rust removal block (2) is fixedly connected to the left end of the push rod (4), and the right ends of the push rod (4) and the push tube (7) are both fixedly connected to the push block (6), and the left end of the push tube (7) is connected to the lubricating brush (3). The clamping structure (14) is fixedly installed on the lower end face of the adjusting cylinder (1) by a fixing plate (12), and the left front end and left rear end of the fixing plate (12) are provided with first screw holes (13).
2. The high-efficiency lubrication tool for high-speed machinery according to claim 1, characterized in that, The rust removal block (2) and the lubrication brush (3) are both semi-cylindrical structures. The rust removal block (2) forms a left-right sliding structure inside the adjusting cylinder (1) through the push rod (4). At the same time, the lubrication brush (3) forms a communication structure with the universal hose (8) through the push tube (7). The lower end of the universal hose (8) is connected to the right end of the oil outlet pipe (20).
3. The high-efficiency lubrication tool for high-speed machinery according to claim 1, characterized in that, The left end of the regulating cylinder (1) is a hollow semi-cylindrical structure, and the right end of the regulating cylinder (1) is a hollow cylindrical structure. The lower left end face of the regulating cylinder (1) is inclined.
4. The high-efficiency lubrication tool for high-speed machinery according to claim 1, characterized in that, The outer surfaces of the push rod (4) and the push tube (7) are fitted with limiting cylinders (5), and the upper and lower sides of the left end face of the limiting cylinder (5) are fixedly connected with locking blocks (11), and the push rod (4) and the push tube (7) form an up-and-down sliding structure on the slide groove (10).
5. The high-efficiency lubrication tool for high-speed machinery according to claim 1, characterized in that, The groove (10) has a candied hawthorn-shaped hole structure, and the distance between the round holes of the groove (10) is equal to the distance between the locking blocks (11), and the locking blocks (11) and the groove of the groove (10) are engaged.
6. The high-efficiency lubrication tool for high-speed machinery according to claim 1, characterized in that, The clamping structure (14) includes a push-pull plate (1401), a slide rod (1402), a spring (1403), a clamping rod (1404), a second screw hole (1405), and a clamping block (1406). The push-pull plate (1401) passes through the interior of the fixed plate (12). The front and rear side walls of the push-pull plate (1401) are provided with second screw holes (1405) at equal intervals. The second screw holes (1405) are fixedly connected to the first screw hole (13) by bolts. The left end of the push-pull plate (1401) is connected to the front and rear sides of the front and rear sides of the front and rear sides of the front and rear sides of the front and rear sides of the front and rear sides of the front and rear sides of the clamping plate (1401). The slide rod (1402) is connected to the end of the clamping rod (1404) located inside the push-pull plate (1401). The front and rear ends of the slide rod (1402) are fitted with springs (1403). The clamping block (1406) is fixedly connected to the inner wall of the upper end of the clamping rod (1404).
7. The high-efficiency lubrication tool for high-speed machinery according to claim 6, characterized in that, The clamping rod (1404) forms a telescopic structure inside the push-pull plate (1401) through the slide rod (1402), and the clamping block (1406) fixedly connected to the upper end of the clamping rod (1404) has an arc structure.
8. The high-efficiency lubrication tool for high-speed machinery according to claim 1, characterized in that, The inner wall of the mounting cylinder (17) is integrally fixed with a limiting block (18), and a filter screen (16) is engaged with the limiting block (18).
Citation Information
Patent Citations
Rotor opening lubricating tool
CN220631381U