A motor rotating shaft oiling device

By designing a motor shaft oiling device that meshes with the power component, the problems of uneven oiling and low efficiency of motor shafts were solved, enabling simultaneous coating of multiple motor shafts and reducing labor intensity and production costs.

CN116054514BActive Publication Date: 2025-11-11WUXI MAITONG METAL PROD CO LTD
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Patent Information

Application Number
CN202211682987.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-27
Publication Date
2025-11-11
Estimated Expiration
2042-12-27

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Abstract

This invention relates to the field of motor shaft processing equipment technology, and discloses a motor shaft oiling device, including a support frame, a conveyor table fixedly connected to the top of the support frame, a first positioning table fixedly installed inside the conveyor table, a rotating platform movably connected to the top of the conveyor table, a power component fixedly connected to the top of the first positioning table, an oiling component fixedly connected to one side of the first positioning table, the rotating platform including a rotation gear, a second positioning table movably connected to the bottom of the rotation gear, a connecting platform fixedly connected to the top of the rotation gear, a support column fixedly connected to the top of the connecting platform, and a power component including a power housing. By providing a rotating platform, a power component, and an oiling component, it is beneficial to mechanically coat the motor shaft, eliminating the need for manual coating, ensuring uniform coating, greatly reducing labor intensity, and simplifying operation.
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Description

Technical Field

[0001] This invention relates to the field of motor shaft processing equipment technology, and more specifically to a motor shaft oiling device. Background Technology

[0002] After the motor is manufactured and assembled, the motor shaft needs to be coated with lubricating oil or grease to prevent corrosion, oxidation, etc.

[0003] However, the existing conventional method of lubricating motor shafts is manual. Generally, the person holds the oil can manually and applies it to the surface of the shaft. The application of oil is often uneven, which affects the quality. The parts of the motor shaft that are not coated with lubricating oil or grease have poor resistance to corrosion and oxidation. In addition, the application operation is complicated and labor-intensive. Lubricating oil can easily get on the hands and even the body after the work is finished, which is very dirty and uncomfortable for workers, increasing their discomfort.

[0004] While there are existing automatic oiling and coating devices, most of them can only coat one motor at a time, resulting in low efficiency, increased production time, and higher production costs. Summary of the Invention

[0005] In order to overcome the above-mentioned defects of the prior art, the present invention provides a motor shaft oiling device to solve the problems existing in the background art.

[0006] This invention provides the following technical solution: a motor shaft oiling device, comprising a support frame, a conveyor platform fixedly connected to the top of the support frame, a first positioning platform fixedly installed inside the conveyor platform, a rotating platform movably connected to the top of the conveyor platform, a power assembly fixedly connected to the top of the first positioning platform, the first positioning platform including a platform body, the platform body being fixedly connected to the conveyor platform via connecting wheels, an oiling assembly fixedly connected to one side of the first positioning platform, the rotating platform including a rotation gear, a second positioning platform movably connected to the bottom of the rotation gear, a connecting platform fixedly connected to the top of the rotation gear, a support column fixedly connected to the top of the connecting platform, the power assembly including a power housing, a motor box fixedly connected to the top of the power housing, a power column movably installed inside the power housing, a power gear fixedly connected to one end of the power column, a fixing member movably connected to the bottom of the power gear, and an oiling assembly including a supporting main board. An oil tank is fixedly connected to one end of the main support plate. A connecting side plate is fixedly connected to one side of the main support plate, and an extension side plate is fixedly connected to the other side of the main support plate. A positioning plate is fixedly connected to the top of the extension side plate. A motor is fixedly installed on the inner side of the main support plate near the oil tank. The end of the motor away from the oil tank is chained to a rotating rod via a chain rod. A power rod is movably connected to the end of the rotating rod away from the chain rod. The side of the main support plate connected to the motor is fixedly connected to one end of a fixed rod. A first auxiliary rod is movably connected to the other end of the fixed rod. A second auxiliary rod is movably connected to the end of the first auxiliary rod away from the fixed rod. A transition rod is fixedly connected to the end of the power rod away from the rotating rod. An oil brush is fixedly connected to one side of the transition rod. A power rod is fixedly connected to one end of the second auxiliary rod. A third auxiliary rod is movably connected to the other end of the second auxiliary rod. A positioning post is movably connected to the end of the third auxiliary rod away from the second auxiliary rod.

[0007] Furthermore, there are two positioning plates, one end of the positioning post is fixedly connected to one of the positioning plates, and the other end of the positioning post is fixedly connected to the other positioning plate.

[0008] Furthermore, the bottom of the rotating gear has a groove that matches the second positioning platform, and the rotating gear can rotate outside the second positioning platform.

[0009] Furthermore, a motor is fixedly installed inside the motor box and is linked to the power column.

[0010] Furthermore, the bottom of the power gear has a groove that matches the fixing member, and the power gear can rotate outside the fixing member. The power gear meshes with the rotational gear.

[0011] Furthermore, the first assisting rod, the second assisting rod, and the transition rod are all internally connected and each has a pipe.

[0012] Furthermore, the surface of the conveyor platform is provided with a conveyor belt.

[0013] Furthermore, the number of the rotating platforms is unlimited, and each rotating gear meshes with the others.

[0014] The technical effects and advantages of this invention are as follows:

[0015] 1. This invention, by incorporating a rotating platform, a power assembly, and an oiling assembly, facilitates mechanical coating of the motor shaft. Under the action of the motor, the rotating rod is rotated via a chain drive, thereby driving the power rod to move. As a result, the oil brush moves up and down. At this time, the third, first, and second auxiliary rods all swing at different amplitudes, so the oil brush coats the motor shaft with oil as it moves up and down. No manual coating is required, the coating is uniform, greatly reduces labor intensity, and the operation is simple.

[0016] 2. This invention, by incorporating a rotating platform, a power assembly, and an oiling assembly, facilitates the simultaneous oiling of multiple motor shafts. Since the torque gear meshes with the power gear, the motor within the motor housing causes the power column to rotate, which in turn drives the power gear, causing the torque gear to rotate. The torque gears drive each other, resulting in simultaneous rotation of the motor shafts. The oil brush can simultaneously coat multiple motor shafts, improving work efficiency, reducing production time, and lowering production costs. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0018] Figure 2 This is a schematic diagram of the self-rotating platform structure of the present invention.

[0019] Figure 3 This is a schematic diagram of the power component structure of the present invention.

[0020] Figure 4 This is a schematic diagram of the oiling assembly structure of the present invention.

[0021] Figure 5 This is an enlarged structural diagram of point A in the present invention.

[0022] Figure 6 This is a first cross-sectional view of the present invention.

[0023] Figure 7 This is a second cross-sectional view of the present invention.

[0024] The attached figures are labeled as follows: 1. Support frame; 2. Conveyor platform; 3. First positioning platform; 301. Platform body; 302. Connecting wheel; 4. Rotating platform; 401. Rotating gear; 402. Second positioning platform; 403. Connecting platform; 404. Support column; 5. Power assembly; 501. Power housing; 502. Motor box; 503. Power column; 504. Power gear; 505. Fixing component; 6. Oiling assembly; 601. Support main board; 602. Connecting side plate; 603. Extending side plate; 604. Positioning plate; 605. Motor; 606. Chain rod; 607. Rotating rod; 608. Power rod; 609. Fixing rod; 6010. First assisting rod; 6011. Second assisting rod; 6012. Transition rod; 6013. Oil brush; 6014. Third assisting rod; 6015. Positioning column; 7. Oil tank. Detailed Implementation

[0025] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. In addition, the forms of the various structures described in the following embodiments are merely illustrative. The motor shaft oiling device involved in the present invention is not limited to the structures described in the following embodiments. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0026] Reference Figure 1-7This invention provides a motor shaft oiling device, including a support frame 1, a conveyor platform 2 fixedly connected to the top of the support frame 1, a first positioning platform 3 fixedly installed inside the conveyor platform 2, a rotating platform 4 movably connected to the top of the conveyor platform 2, a power assembly 5 fixedly connected to the top of the first positioning platform 3, the first positioning platform 3 including a platform body 301, the platform body 301 being fixedly connected to the conveyor platform 2 via a connecting wheel 302, an oiling assembly 6 fixedly connected to one side of the first positioning platform 3, the rotating platform 4 including a rotation gear 401, a second positioning platform 402 movably connected to the bottom of the rotation gear 401, and a connecting... Platform 403, with a support column 404 fixedly connected to the top of platform 403; power assembly 5 includes a power housing 501, with a motor box 502 fixedly connected to the top of power housing 501; a power column 503 is movably installed inside power housing 501; a power gear 504 is fixedly connected to one end of power column 503; a fixing member 505 is movably connected to the bottom of power gear 504; oiling assembly 6 includes a support main board 601, with an oil tank 7 fixedly connected to one end of support main board 601; a connecting side plate 602 is fixedly connected to one side of support main board 601; and an extension side plate 603 is fixedly connected to the other side of support main board 601. A positioning plate 604 is fixedly connected to the top of 603. A motor 605 is fixedly installed on the inner side of the support main board 601 near the oil tank 7. The end of the motor 605 away from the oil tank 7 is chained to the rotating rod 607 via a chain rod 606. A power rod 608 is movably connected to the end of the rotating rod 607 away from the chain rod 606. The side of the support main board 601 connected to the motor 605 is fixedly connected to one end of a fixed rod 609. A first assisting rod 6010 is movably connected to the other end of the fixed rod 609. A second assisting rod 6011 is movably connected to the end of the first assisting rod 6010 away from the fixed rod 609. The power rod 608 is located away from the rotating rod 607. A transition rod 6012 is fixedly connected to one end, and an oil brush 6013 is fixedly connected to one side of the transition rod 6012. A power rod 608 is fixedly connected to one end of the second auxiliary rod 6011, and a third auxiliary rod 6014 is movably connected to the other end of the second auxiliary rod 6011. A positioning column 6015 is movably connected to the end of the third auxiliary rod 6014 away from the second auxiliary rod 6011. Through the rotary table 4, the power assembly 5, and the oiling assembly 6, it is beneficial to mechanically coat the motor shaft, and multiple motor shafts can be oiled simultaneously. This reduces manual labor intensity, improves mechanization, increases work efficiency, reduces production time, and lowers production costs.

[0027] In a preferred embodiment, there are two positioning plates 604. One end of the positioning post 6015 is fixedly connected to one of the positioning plates 604, and the other end of the positioning post 6015 is fixedly connected to the other positioning plate 604, so that the third assisting rod 6014 can move, thereby enabling the oil brush 6013 to move up and down, thus ensuring the feasibility of the overall movement.

[0028] In a preferred embodiment, the bottom of the rotation gear 401 has a groove that matches the second positioning platform 402, and the rotation gear 401 can rotate outside the second positioning platform 402. Therefore, the rotation gear 401 will not affect the second positioning platform 402 when it rotates, and the stability of the rotation gear 401 can be guaranteed, thereby ensuring the smooth rotation of the motor shaft.

[0029] In a preferred embodiment, a motor is fixedly installed inside the motor box 502 and linked to the power column 503. Therefore, the power column 503 can rotate under the drive of the motor, thereby causing the power gear 504 to rotate, which in turn drives the torque gear 401 to rotate, thus ensuring the rotation of the motor shaft and allowing the motor shaft to be coated more comprehensively.

[0030] In a preferred embodiment, the bottom of the power gear 504 has a groove that matches the fixing member 505, and the power gear 504 can rotate outside the fixing member 505. The power gear 504 meshes with the torque gear 401, so the power gear 504 can rotate on the fixing member 505, ensuring the stability and rotation feasibility of the power gear 504. At the same time, it can drive the torque gear 401 to rotate, and then through the mutual meshing between the torque gears 401, all motor shafts rotate simultaneously.

[0031] In a preferred embodiment, the first assist rod 6010, the second assist rod 6011, and the transition rod 6012 are all interconnected and each has a pipe. Therefore, the oil in the oil tank can enter the transition rod 6012 through the pipe and be delivered to the oil brush 6013 to apply oil to the motor shaft.

[0032] In a preferred embodiment, the surface of the conveyor 2 is provided with a conveyor belt, which can drive the rotating table 4 to rotate cyclically and continuously pass through the oil brush 6013, thereby completing the coating work on the motor shaft.

[0033] In a preferred embodiment, the number of the rotating tables 4 is unlimited. Each rotating gear 401 meshes with each other, so the rotating gears 401 can drive each other. A power gear 504 can drive all the rotating gears 401 to rotate, thereby causing all the motor shafts to rotate, thus completing the coating work.

[0034] The working principle of this invention is as follows: First, the motor shaft is placed on the support column 404. Then, under the conveyor 2, the un-oiled motor shaft is brought close to the oil brush 6013. At this time, the torque gear 401 meshes with the power gear 504. Then, under the action of the motor in the motor box 502, the power column 503 rotates, thereby driving the power gear 504 to rotate, which in turn drives the torque gear 401 to rotate. The torque gears 401 drive each other, so the motor shaft rotates simultaneously. At this time, under the action of the motor 605, the chain rod 606 drives the rotating rod 607 to rotate, thereby driving the power rod 608 to move. As the motor shaft moves up and down, the oil brush 6013 moves up and down. At this time, the third assisting rod 6014, the first assisting rod 6010, and the second assisting rod 6011 all swing at different amplitudes. Thus, the oil brush 6013 applies oil to the motor shaft as it moves up and down. At this time, the conveyor table 2 is in a stopped state. Since the rotating table 4 drives the motor shaft to rotate, the oil brush 6013 can fully coat the motor shaft. Then, the worker removes the coated motor shaft and places a new uncoated motor shaft on it. Under the action of the conveyor belt on the surface of the conveyor table 2, the motor shaft will be transported to the coating area again. This cycle is repeated to fully coat the motor shaft.

Claims

1. A motor shaft oiling device, comprising a support frame (1), characterized in that: A conveyor platform (2) is fixedly connected to the top of the support frame (1). A first positioning platform (3) is fixedly installed inside the conveyor platform (2). A rotating platform (4) is movably connected to the top of the conveyor platform (2). A power assembly (5) is fixedly connected to the top of the first positioning platform (3). The first positioning platform (3) includes a platform body (301). The platform body (301) is fixedly connected to the conveyor platform (2) via a connecting wheel (302). An oiling assembly (6) is fixedly connected to one side of the first positioning platform (3). The rotating platform (4) includes a rotation gear (401). A second positioning platform (402) is movably connected to the bottom of the rotation gear (401). The top of the rotation gear (401)... A connecting platform (403) is fixedly connected to the top of the connecting platform (403), and a support column (404) is fixedly connected to the top of the connecting platform (403). The power assembly (5) includes a power housing (501), a motor box (502) is fixedly connected to the top of the power housing (501), a power column (503) is movably installed inside the power housing (501), a power gear (504) is fixedly connected to one end of the power column (503), and a fixing piece (505) is movably connected to the bottom of the power gear (504). The oiling assembly (6) includes a support main board (601), an oil tank (7) is fixedly connected to one end of the support main board (601), and a fixed part (7) is fixed to one side of the support main board (601). A connecting side plate (602) is connected to the main support plate (601), and an extension side plate (603) is fixedly connected to the other side of the main support plate (601). A positioning plate (604) is fixedly connected to the top of the extension side plate (603). A motor (605) is fixedly installed on the inner side of the main support plate (601) near the oil tank (7). The end of the motor (605) away from the oil tank (7) is chained to a rotating rod (607) via a chain rod (606). A power rod (608) is movably connected to the end of the rotating rod (607) away from the chain rod (606). The side of the main support plate (601) connected to the motor (605) is fixedly connected to one end of a fixed rod (609). The other end is movably connected to a first assist rod (6010), and the end of the first assist rod (6010) away from the fixed rod (609) is movably connected to a second assist rod (6011). The end of the power rod (608) away from the rotating rod (607) is fixedly connected to a transition rod (6012). One side of the transition rod (6012) is fixedly connected to an oil brush (6013). One end of the second assist rod (6011) is fixedly connected to a power rod (608), and the other end of the second assist rod (6011) is movably connected to a third assist rod (6014). The end of the third assist rod (6014) away from the second assist rod (6011) is movably connected to a positioning post (6015).

2. The motor shaft oiling device according to claim 1, characterized in that: There are two positioning plates (604). One end of the positioning post (6015) is fixedly connected to one of the positioning plates (604), and the other end of the positioning post (6015) is fixedly connected to the other positioning plate (604).

3. The motor shaft oiling device according to claim 1, characterized in that: The bottom of the rotating gear (401) has a groove that matches the second positioning platform (402), and the rotating gear (401) can rotate outside the second positioning platform (402).

4. The motor shaft oiling device according to claim 1, characterized in that: The motor is fixedly installed inside the motor box (502) and is chained to the power column (503).

5. The motor shaft oiling device according to claim 1, characterized in that: The bottom of the power gear (504) has a groove that matches the fixing member (505) and the power gear (504) can rotate outside the fixing member (505). The power gear (504) meshes with the rotation gear (401).

6. The motor shaft oiling device according to claim 1, characterized in that: The first assisting rod (6010), the second assisting rod (6011), and the transition rod (6012) are all internally connected and each has a pipe.

7. The motor shaft oiling device according to claim 1, characterized in that: The surface of the conveyor platform (2) is provided with a conveyor belt.

8. The motor shaft oiling device according to claim 1, characterized in that: The number of the rotating platforms (4) is unlimited, and each rotating gear (401) meshes with each other.

Citation Information

Patent Citations

  • Full automatic bearing oiling device

    CN102029238A

  • Automatic oil coating device of automobile motor rotor

    CN108418359A