Bearing ring oiling device for bearing production
By designing a bearing ring oiling device that includes oiling, refueling, driving and loading and unloading components, the problem of skin contact with anti-rust oil during manual oiling and loading and unloading is solved, and automatic oiling and loading and unloading is realized, improving efficiency and safety.
Patent Information
- Application Number
- CN202421258858.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-03
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-03
AI Technical Summary
During the bearing production process, when manually oiling and loading and unloading the bearing ring, it is easy to cause the skin to come into contact with anti-rust oil for a long time, resulting in skin damage and accelerated aging, and even allergic reactions may occur.
Design a bearing ring oil coating device for bearing production, including oil coating components, refueling components, drive components and loading and unloading components, to realize automatic loading and unloading and oiling operations of bearing rings to avoid manual direct contact with anti-rust oil.
Through automated operations, long-term contact with anti-rust oil is avoided, the risk of skin damage is reduced, and the efficiency and uniformity of bearing ring oiling is improved.
Smart Images

Figure CN222829945U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bearing production and processing, in particular to a bearing ring oiling device for bearing production. Background Art
[0002] Bearings are components that fix and reduce the load friction coefficient during mechanical transmission. They are a vital component in contemporary mechanical equipment. After passing through the heat treatment production line, the bearing rings still need to be manually oiled to prevent rust. Due to the wide use of bearings, it is also necessary to optimize the equipment for bearing production and processing.
[0003] For example, a Chinese utility model patent with announcement number CN211613122U discloses an oiling device for bearing rings. In the above-mentioned prior art, although the oil collecting box and the filter net can filter and recycle the used oil for the next use, the inner and outer oil spray ports of the oil spray port help the oiling process to oil evenly and increase work efficiency, but some processing plants with incomplete automation use manual cooperation with machines for oiling operations. After the bearing rings are oiled, workers need to remove the bearing rings from the machine. Although gloves are generally worn for operation, the gloves will be damaged after a long time of use, and the machine is full of oil. Even if gloves are used, it is easy to get it on the body. When human skin is in contact with oil for a long time, it will cause skin damage and accelerated aging, and even cause allergic reactions. Therefore, it is necessary to design a bearing ring oiling device for bearing production that can automatically load and unload materials. Utility Model Content
[0004] In order to solve the technical problem that when the bearing ring is oiled manually, the skin will be exposed to excessive anti-rust oil during loading and unloading, the utility model provides a bearing ring oiling device for bearing production.
[0005] The utility model is implemented by the following technical scheme: a bearing ring oiling device for bearing production, comprising a bearing box, both sides of the bearing box are provided with a plurality of oiling components for oiling the bearing rings, one side of each of the oiling components is provided with an oiling component for adding rust-proof oil to the oiling component, one side of one of the oiling components is provided with a driving component for driving the adjacent oiling component to oil, and the other two sides of the bearing box are provided with loading and unloading components for loading and unloading the bearing rings.
[0006] Through the above technical solution, when the bearing ring is oiled, the loading and unloading components are used to load and unload the bearing ring, and the bearing ring will be contacted with the oiling component for oiling before unloading.
[0007] As a further improvement of the above solution, oil coating boxes are fixedly installed on both sides of the bearing box, and the oil coating assembly includes a rotating shaft rotatably installed inside the oil coating box and an oil coating roller fixedly sleeved on the oil coating box.
[0008] Through the above technical solution, the anti-rust oil will be applied to the bearing ring when the bearing ring contacts the oiling roller.
[0009] As a further improvement of the above solution, a plurality of first oiling ports matched with the oiling rollers are provided on one side of the two oiling boxes, and a plurality of second oiling ports matched with the first oiling ports are provided on both sides of the bearing box.
[0010] Through the above technical solution, one side of the oil coating roller will pass through the first oil coating port and the second oil coating port to contact the surface of the bearing ring.
[0011] As a further improvement of the above scheme, the refueling assembly includes a first refueling pipe arranged on one side of the oiling roller and fixedly mounted with the oiling box, and a brush fixedly mounted on one side of the first refueling pipe, one side of the brush extends to the interior of the first refueling pipe, and the other side of the brush fits with the circumferential surface of the adjacent oiling roller, one end of each of the first refueling pipes passes through the adjacent oiling box and extends to the outside thereof, one side of each of the oiling boxes is fixedly mounted with an oil tank, one side of each of the oil tanks is fixedly connected with a second refueling pipe, and each of the first refueling pipes is fixedly connected to an adjacent second refueling pipe.
[0012] Through the above technical solution, when the oiling roller rotates, it will contact with the brush, so that the brush can apply the anti-rust oil to the oiling roller.
[0013] As a further improvement of the above scheme, one end of each rotating shaft passes through the adjacent oiling box and extends to the outside thereof, the driving assembly includes a servo motor arranged on one side of one of the rotating shafts and a driving rod fixedly installed on the output end of the servo motor, one end of the driving rod is fixedly installed on one end of the adjacent rotating shaft, a driving gear is fixedly sleeved on each of the rotating shafts, and a plurality of the driving gears are sleeved with a synchronous belt for synchronously transmitting the plurality of driving gears, a rotating column is rotatably installed on one side of each of the oiling boxes, and a rubber extrusion ring is sleeved on each of the rotating columns, and the outer surface of each of the rubber extrusion rings is squeezed and fit with the outer surface of the synchronous belt.
[0014] Through the above technical solution, when the servo motor is started, the driving rod will drive the adjacent rotating shafts to rotate, and cooperate with the driving gear and the synchronous belt to rotate all the rotating shafts, so that all the oiling rollers can rotate to oil the bearing rings.
[0015] As a further improvement of the above scheme, the top and bottom of the bearing box are provided with through openings, and the loading and unloading components include a loading plate fixedly installed on the top of the bearing box and provided with a loading opening, a unloading plate fixedly installed on the bottom of the bearing box and provided with a unloading opening, and a driving cylinder fixedly installed on the bottom of one of the oiling boxes, and a stopper is fixedly installed on the pushing end of the driving cylinder.
[0016] Through the above technical solution, the loading plate and the unloading plate are responsible for loading and unloading the bearing ring, and the driving cylinder cooperates with the stopper to allow the bearing ring to remain inside the bearing box and be oiled.
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] The utility model provides an oiling component, a refueling component, a driving component and a loading and unloading component. When oiling the bearing rings, the loading and unloading components can be used to automatically load and unload a plurality of bearing rings. Before the bearing rings are unloaded, they will contact a plurality of oiling components so that the surfaces are oiled. The driving component will rotate all the oiling components to facilitate more uniform oiling of the bearing rings. The refueling component will add anti-rust oil to the oiling components to avoid failure in oiling the bearing rings. This arrangement can avoid the need for manual oiling of the bearing rings and avoid long-term contact of the skin with the anti-rust oil. It can also make most of the links of bearing ring oiling become automated operations to improve the oiling efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the internal structure of the bearing box and the oiling box of the utility model;
[0020] Figure 2 It is a schematic diagram of the three-dimensional structure of the utility model;
[0021] Figure 3 It is a schematic diagram of the structure of the utility model having a driving component;
[0022] Figure 4 For this utility model Figure 3 A-section structure enlarged view.
[0023] Description of main symbols:
[0024] 1. Bearing box; 201. Rotating shaft; 202. Oiling roller; 301. First oiling pipe; 302. Brush; 401. Servo motor; 402. Driving rod; 501. Loading plate; 502. Unloading plate; 503. Driving cylinder; 6. Oiling box; 7. Oil tank; 8. Second oiling pipe; 9. Driving gear; 10. Synchronous belt; 11. Rotating column; 12. Rubber extrusion ring; 13. Stopper. DETAILED DESCRIPTION
[0025] The present invention is further described below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form a new embodiment.
[0026] Please combine Figure 1-Figure 4A bearing ring oiling device for bearing production in this embodiment includes a bearing box 1, and multiple oiling components for oiling the bearing rings are provided on both sides of the bearing box 1, and a refueling component for adding rust-proof oil to the oiling component is provided on one side of each oiling component, and a driving component for driving the adjacent oiling component to oil is provided on one side of one of the oiling components, and loading and unloading components for loading and unloading the bearing rings are provided on the other two sides of the bearing box 1.
[0027] Combination Figure 1 and Figure 2 , oiling boxes 6 are fixedly installed on both sides of the bearing box 1, and the oiling assembly includes a rotating shaft 201 rotatably installed inside the oiling box 6 and an oiling roller 202 fixedly sleeved on the oiling box 6, and a plurality of first oiling ports adapted to the oiling roller 202 are opened on one side of the two oiling boxes 6, and a plurality of second oiling ports adapted to the first oiling ports are opened on both sides of the bearing box 1. When the bearing ring contacts the oiling roller 202, anti-rust oil will be applied to the bearing ring.
[0028] Combination Figure 1 and Figure 3 The refueling assembly includes a first refueling pipe 301 arranged on one side of the oiling roller 202 and fixedly installed with the oiling box 6, and a brush 302 fixedly installed on one side of the first refueling pipe 301, one side of the brush 302 extends to the inside of the first refueling pipe 301, and the other side of the brush 302 fits the circumferential surface of the adjacent oiling roller 202, one end of each first refueling pipe 301 passes through the adjacent oiling box 6 and extends to the outside thereof, one side of each oiling box 6 is fixedly installed with an oil tank 7, one side of each oil tank 7 is fixedly connected with a second refueling pipe 8, each first refueling pipe 301 is fixedly connected with the adjacent second refueling pipe 8, and when the oiling roller 202 rotates, it will contact the brush 302, allowing the brush 302 to apply anti-rust oil on the oiling roller 202.
[0029] Combination Figure 1 , Figure 3 and Figure 4One end of each rotating shaft 201 passes through the adjacent oiling box 6 and extends to its outside. The driving assembly includes a servo motor 401 arranged on one side of one of the rotating shafts 201 and a driving rod 402 fixedly installed on the output end of the servo motor 401. One end of the driving rod 402 is fixedly installed with one end of the adjacent rotating shaft 201. A driving gear 9 is fixedly sleeved on each rotating shaft 201. A plurality of driving gears 9 are sleeved with a synchronous belt 10 for synchronously transmitting the plurality of driving gears 9. A rotating column 11 is rotatably installed on one side of each oiling box 6. A rubber extrusion ring 12 is sleeved on each rotating column 11. The outer surface of each rubber extrusion ring 12 is pressed and fitted with the outer surface of the synchronous belt 10. When the servo motor 401 is started, the driving rod 402 will drive the adjacent rotating shaft 201 to rotate, and cooperate with the driving gear 9 and the synchronous belt 10 to rotate all the rotating shafts 201, so that all the oiling rollers 202 can rotate to oil the bearing rings.
[0030] Combination Figure 1 and Figure 2 The top and bottom of the bearing box 1 are both provided with through openings, and the loading and unloading components include a loading plate 501 fixedly installed on the top of the bearing box 1 and provided with a loading opening, a unloading plate 502 fixedly installed on the bottom of the bearing box 1 and provided with a unloading opening, and a driving cylinder 503 fixedly installed on the bottom of one of the oiling boxes 6, and a stopper 13 is fixedly installed on the pushing end of the driving cylinder 503.
[0031] The implementation principle of a bearing ring oiling device for bearing production in the embodiment of the present application is as follows: when a large number of bearing rings need to be oiled, starting the servo motor 401 driving rod 402 will drive the adjacent rotating shaft 201 to rotate, and the driving gear 9 on the rotating shaft 201 will move the synchronous belt 10, thereby allowing all the driving gears 9 to rotate. Some driving gears 9 will have a small contact area with the synchronous belt 10. At this time, the rubber extrusion ring 12 will squeeze one side of the synchronous belt 10, increasing the friction between the synchronous belt 10 and the driving gear 9, which is convenient for the driving gear 9 rotates, and the existing synchronous belt 10 has teeth and grooves, which can easily drive the driving gear 9 after meshing with the driving gear 9. The rotation of all driving gears 9 will drive all rotating shafts 201 to drive the oiling roller 202 to rotate. The rotation of the oiling roller 202 will contact the brush 302, allowing the brush 302 to apply the anti-rust oil on the oiling roller 202. A small hole is opened on the top of the oil tank 7 to prevent the anti-rust oil in the first refueling pipe 301 from being consumed and unable to be replenished. The opening of the small hole will allow the air in the first refueling pipe 301 to The oil will float up and be discharged from the small hole, and the anti-rust oil inside the first refueling pipe 301 will be replenished. The bearing rings are placed in the loading plate 501, and the bearing rings will enter the interior of the bearing box 1. While the bearing rings move, they will contact the rotating oiling roller 202 to be oiled. The driving cylinder 503 will push the roller stopper 13 to block the discharge port. When the bearing rings are oiled, the stopper 13 will be removed to allow the adjacent bearing rings to fall. After the bearing rings fall, the discharge port will be blocked. This operation can be performed by calculating in advance that a bearing ring can be unloaded after the stopper 13 is removed. The operation time is adjusted, and the pushing time of the driving cylinder 503 is adjusted so that each time the driving cylinder 503 removes the block 13, only one bearing ring can be discharged, avoiding multiple bearing rings being discharged at one time and causing uneven oiling of the bearing rings. When the bearing rings use the device, the two bearing rings are not squeezed together, because the overall width of the device is slightly larger than the height of the bearing rings. This arrangement can avoid manual oiling of the bearing rings, avoiding long-term contact of the skin with the anti-rust oil, and can also make most of the links of the bearing ring oiling become automated operations to improve the oiling efficiency.
[0032] The above-mentioned implementation modes are only preferred implementation modes of the present invention, and cannot be used to limit the protection scope of the present invention. Any non-substantial changes and substitutions made by technicians in this field on the basis of the present invention shall fall within the scope of protection required by the present invention.
Claims
1. A bearing ring oiling device for bearing production, comprising a bearing box (1), characterized in that: Both sides of the bearing box (1) are provided with a plurality of oiling components for oiling the bearing rings, one side of each of the oiling components is provided with an oiling component for adding rust-proof oil to the oiling component, one side of one of the oiling components is provided with a driving component for driving an adjacent oiling component to oil, and the other two sides of the bearing box (1) are provided with loading and unloading components for loading and unloading the bearing rings.
2. A bearing ring oiling device for bearing production as claimed in claim 1, characterized in that: An oiling box (6) is fixedly mounted on both sides of the bearing box (1), and the oiling assembly comprises a rotating shaft (201) rotatably mounted inside the oiling box (6) and an oiling roller (202) fixedly sleeved on the oiling box (6).
3. A bearing ring oiling device for bearing production as claimed in claim 2, characterized in that: A plurality of first oiling ports matched with the oiling rollers (202) are provided on one side of the two oiling boxes (6), and a plurality of second oiling ports matched with the first oiling ports are provided on both sides of the bearing box (1).
4. A bearing ring oiling device for bearing production as claimed in claim 2, characterized in that: The refueling assembly comprises a first refueling pipe (301) arranged on one side of the oiling roller (202) and fixedly mounted with the oiling box (6), and a brush (302) fixedly mounted on one side of the first refueling pipe (301), one side of the brush (302) extends to the interior of the first refueling pipe (301), and the other side of the brush (302) fits with the circumferential surface of the adjacent oiling roller (202), one end of each of the first refueling pipes (301) passes through the adjacent oiling box (6) and extends to the outside thereof, one side of each of the oiling boxes (6) is fixedly mounted with an oil tank (7), one side of each of the oil tanks (7) is fixedly connected with a second refueling pipe (8), and each of the first refueling pipes (301) is fixedly connected with an adjacent second refueling pipe (8).
5. A bearing ring oiling device for bearing production as claimed in claim 2, characterized in that: One end of each rotating shaft (201) passes through the adjacent oiling box (6) and extends to the outside thereof. The driving assembly comprises a servo motor (401) arranged on one side of one of the rotating shafts (201) and a driving rod (402) fixedly mounted on the output end of the servo motor (401). One end of the driving rod (402) is fixedly mounted on one end of the adjacent rotating shaft (201). A driving gear (9) is fixedly sleeved on each rotating shaft (201). A plurality of driving gears (9) are sleeved with a synchronous belt (10) for synchronously transmitting the plurality of driving gears (9). A rotating column (11) is rotatably mounted on one side of each of the oiling boxes (6). Each of the rotating columns (11) is sleeved with a rubber extrusion ring (12). The outer surface of each of the rubber extrusion rings (12) is pressed and fitted with the outer surface of the synchronous belt (10).
6. A bearing ring oiling device for bearing production as claimed in claim 2, characterized in that: The top and bottom of the bearing box (1) are both provided with through openings, and the loading and unloading assembly comprises a loading plate (501) fixedly mounted on the top of the bearing box (1) and provided with a loading opening, a unloading plate (502) fixedly mounted on the bottom of the bearing box (1) and provided with a unloading opening, and a driving cylinder (503) fixedly mounted on the bottom of one of the oiling boxes (6), wherein a stopper (13) is fixedly mounted on the pushing end of the driving cylinder (503).
Citation Information
Patent Citations
Oiling device for bearing ring
CN211613122U