Double-lip flywheel rotary oiling device

CN224807720UActive Publication Date: 2026-09-29TAICANG SHANGXUAN AUTOMATION EQUIPMENT CO LTD
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Patent Information

Application Number
CN202522372996.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-10
Publication Date
2026-09-29
Estimated Expiration
2035-11-10

AI Technical Summary

Technical Problem

[0002]目前双唇飞轮的涂油方式为人工操作,涂油质量不能保证,涂油的效率低,拉长了生产周期,同时不适用现代的流水线式的生产,不适合大批量制造

Benefits of technology

1.本实用新型提出的一种双唇飞轮旋转涂油装置,通过上下伸缩升降旋转定位装置和升降涂油装置对飞轮进行涂油操作,实现了自动化的涂油,大幅缩短生产周期,涂油质量高,适用于流水线生产,适合大批量制造。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to oiling equipment technical field, specifically provides a kind of double-lip flywheel rotary oiling device, including lower frame and upper frame, lower frame and upper frame are equipped with workstation plate between;Workstation plate is equipped with lifting oiling device, and lifting rotary positioning device is embedded on workstation plate;Lifting oiling device includes the installation backboard erected on workstation plate, and a group of oiling assembly is slidably equipped on installation backplate, and servo module is also equipped on installation backplate, and servo module can drive oiling assembly longitudinal and transverse movement;Lifting rotary positioning device includes the power cylinder being equipped in workstation plate bottom, and the executing end of power cylinder is equipped with floating plate, and the upper and lower of floating plate are equipped with tray rotary gear wheel and rotary motor respectively, and the output shaft of rotary motor passes through floating plate and is connected with tray rotary gear wheel. Through the automatic oiling of up and down telescopic lifting oiling device, lifting rotary positioning device is realized, and production cycle is greatly shortened, and it is suitable for mass production.
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Description

Technical Field

[0001] This utility model relates to the field of oiling equipment technology, and in particular to a double-lip flywheel rotary oiling device. Background Technology

[0002] Currently, the oiling method for double-lip flywheels is manual, which cannot guarantee the quality of oiling, has low efficiency, prolongs the production cycle, and is not suitable for modern assembly line production or mass production.

[0003] Therefore, it is necessary to design a double-lip flywheel rotating oiling device to solve the above-mentioned technical problems. Utility Model Content

[0004] To address the aforementioned problems in the existing technology, this utility model provides a double-lip flywheel rotary oiling device, which achieves automated oiling, significantly shortens the production cycle, and is suitable for mass production.

[0005] Technical solution: In order to achieve the above objectives, this utility model provides a double-lip flywheel rotating oiling device, including a lower frame and an upper frame, with a worktable between the lower frame and the upper frame; a lifting oiling device is provided on the worktable, and a lifting and rotating positioning device is embedded in the worktable; The lifting oiling device includes a mounting back plate mounted on a workbench, a set of oiling components is slidably mounted on the mounting back plate, and a servo module is also provided on the mounting back plate, which can drive the oiling components to move longitudinally and laterally. The lifting and rotating positioning device includes a power cylinder located at the bottom of the worktable. The actuator of the power cylinder is provided with a floating plate. The upper and lower parts of the floating plate are respectively provided with a tray rotating gear and a rotary motor. The output shaft of the rotary motor passes through the floating plate and is connected to the tray rotating gear.

[0006] Furthermore, the oiling assembly includes a connecting plate slidably mounted on a mounting back plate. A valve mounting plate is provided on the connecting plate, and a shut-off valve controlling the inflow and outflow of oil is provided on the valve mounting plate. The shut-off valve is connected to an oiling nozzle. The connecting plate slides on the mounting back plate, thereby changing the position of the oiling nozzle. When the shut-off valve opens, lubricating grease can overflow from the oiling nozzle and be applied to the workpiece.

[0007] Furthermore, the mounting back plate is provided with a horizontal linear guide rail, on which a set of mounting plates are slidably fitted. The mounting plates are provided with vertical linear guide rails, and the connecting plate is slidably fitted on the vertical linear guide rails. The mounting plates move on the horizontal linear guide rails, and the connecting plate moves on the vertical linear guide rails, so that the oiling nozzle located at the end of the actuator can reach any position within the plane of the mounting back plate. The mounting plate has a rack on its back. The racks on the back of the two mounting plates are staggered vertically and their tooth surfaces face each other. The other side of the rack is slidably connected to a transverse linear guide rail.

[0008] Furthermore, the servo module includes a lifting servo motor located on the front of the mounting backplate and a traversing servo motor located on the back of the mounting backplate. The lifting servo motor is connected to a lead screw, on which a slider nut is fitted. The slider nut is provided with a guide strip, and the two ends of the guide strip are provided with oblong holes. The upper end of the connecting plate is provided with a protruding roller, which is located in the oblong hole. The lifting servo motor drives the lead screw to rotate, the slider nut moves longitudinally on the lead screw, and the guide strip moves longitudinally with the connecting plate. The oblong holes at both ends of the guide strip cooperate with the roller on the connecting plate, and the connecting plate guides the plate when it moves laterally. The transverse servo motor is connected to a gear, which meshes with the rack. The transverse servo motor drives the gear to rotate, and the gear drives the two racks to move in opposite directions, thereby realizing the approach and separation of the two oiling nozzles.

[0009] Furthermore, the workbench is provided with a tooling connecting plate, and a set of limiting plates are also provided on the workbench. The limiting plates are provided with fine-tuning waist-shaped holes, and the limiting plates are located on two adjacent sides of the tooling connecting plate. The side of the tooling connecting plate is provided with an adjusting bolt, the other end of which is connected to the limiting plate through the adjusting waist-shaped holes. The position of the tooling connecting plate can be finely adjusted through the two limiting plates.

[0010] Furthermore, a fixing plate is provided below the tooling connecting plate via a connecting column. The power cylinder is located below the fixing plate. A guide sleeve is provided on the fixing plate, and a guide rod is installed inside the guide sleeve. The guide rod is connected to the floating plate, and a limiting ring is also fitted at the bottom of the guide rod. The cooperation between the guide rod and the guide sleeve ensures that the floating plate remains vertical when moving up and down, making the movement more precise. The limiting ring at the bottom of the guide rod limits the maximum upward stroke of the floating plate.

[0011] Furthermore, the lower frame is equipped with an electrical control box for controlling the entire device, and the bottom of the lower frame is also equipped with a foot cup.

[0012] Furthermore, the upper frame is equipped with a control panel and display components, and a set of aluminum profile doors are provided at the front and back of the upper frame.

[0013] Compared with the prior art, the double-lip flywheel rotary oiling device provided by this utility model has the following beneficial effects: 1. The present invention proposes a double-lip flywheel rotary oiling device, which performs oiling operation on the flywheel through an up-and-down telescopic lifting and rotating positioning device and a lifting oiling device, thereby realizing automated oiling, significantly shortening the production cycle, producing high-quality oiling, and being suitable for assembly line production and mass production.

[0014] 2. The bottom lifting and rotating positioning device is installed through a tooling connection plate. The tooling connection plate can be finely adjusted to adjust the position of the lifting and rotating positioning device in order to obtain a more accurate oiling position. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of a double-lip flywheel rotating oiling device according to the present invention; Figure 2 This is a schematic diagram of the structure of a double-lip flywheel rotating oiling device according to the present invention (upper frame omitted). Figure 3 This is a schematic diagram of the lifting oiling device described in this utility model; Figure 4 This is a top view of the lifting oiling device described in this utility model; Figure 5 This is a schematic diagram of the lifting and rotating positioning device described in this utility model.

[0016] In the diagram: 1-lower frame, 11-electrical control box, 12-foot cup; 2-Upper frame, 21-Control panel and monitor, 22-Aluminum profile door; 3-Workbench plate, 31-Tooling connecting plate, 32-Limiting plate, 321-Fine-adjustment waist-shaped hole; 4-Lifting and oiling device, 41-Mounting back plate, 411-Horizontal linear guide rail, 412-Mounting plate, 413-Vertical linear guide rail, 414-Rack, 42-Oiling assembly, 421-Connecting plate, 422-Valve mounting plate, 423-Stop valve, 43-Servo module, 431-Lifting servo motor, 432-Horizontal servo motor, 433-Slider nut, 434-Guide bar, 435-Gear; 5-Lifting and rotating positioning device, 51-Power cylinder, 52-Floating plate, 53-Pallet rotating toothed plate, 54-Fixed plate, 55-Guide rod, 56-Limit ring, 57-Rotating motor; 6-Double-lip flywheel. Detailed Implementation

[0017] The preferred embodiments of this utility model will now be described in detail with reference to the accompanying drawings, so that the advantages and features of this utility model can be more easily understood by those skilled in the art, thereby providing a clearer and more definite definition of the scope of protection of this utility model. The embodiments of this utility model include the following parts: like Figure 1-5 As shown, a double-lip flywheel rotating oiling device includes a lower frame 1 and an upper frame 2, with a worktable 3 provided between the lower frame 1 and the upper frame 2; a lifting oiling device 4 is provided on the worktable 3, and a lifting and rotating positioning device 5 is embedded in the worktable 3. The lifting oiling device 4 includes a mounting back plate 41 mounted on the workbench 3. A set of oiling components 42 are slidably mounted on the mounting back plate 41. A servo module 43 is also mounted on the mounting back plate 41. The servo module 43 can drive the oiling components 42 to move longitudinally and laterally. The lifting and rotating positioning device 5 includes a power cylinder 51 located at the bottom of the worktable 3. The actuating end of the power cylinder 51 is provided with a floating plate 52. The upper and lower parts of the floating plate 52 are respectively provided with a tray rotating toothed wheel 53 and a rotary motor 57. The output shaft of the rotary motor 57 passes through the floating plate 52 and is connected to the tray rotating toothed wheel 53.

[0018] The oiling assembly 42 includes a connecting plate 421 slidably mounted on a mounting back plate 41. A valve mounting plate 422 is provided on the connecting plate 421, and a shut-off valve 423 for controlling the inflow and outflow of oil is provided on the valve mounting plate 422. The shut-off valve 423 is connected to an oiling nozzle. When oiling begins, the shut-off valve 423 opens, and the grease is evenly applied to the double-lip flywheel through the oiling nozzle.

[0019] In a preferred embodiment, the mounting back plate 41 is provided with a horizontal linear guide rail 411, a set of mounting plates 412 are slidably fitted on the horizontal linear guide rail 411, the mounting plates 412 are provided with a vertical linear guide rail 413, and the connecting plate 421 is slidably fitted on the vertical linear guide rail 413. The back of the mounting plate 412 is provided with a rack 414. The racks 414 on the back of the two mounting plates 412 are staggered vertically and their tooth surfaces are opposite each other. The other side of the rack 414 is slidably connected to the transverse linear guide rail 411.

[0020] In a preferred embodiment, the servo module 43 includes a lifting servo motor 431 disposed on the front of the mounting backplate 41 and a traversing servo motor 432 disposed on the back of the mounting backplate 41. The lifting servo motor 431 is connected to a lead screw, and a slider nut 433 is sleeved on the lead screw. The slider nut 433 is provided with a guide bar 434. The two ends of the guide bar 434 are provided with waist-shaped holes. The upper end of the connecting plate 421 is provided with a protruding roller, and the roller is located in the waist-shaped hole. The transverse servo motor 432 is connected to a gear 435, which meshes with the rack 414.

[0021] A further optimized solution involves installing a photoelectric sensor on the bottom surface of the mounting backplate 41 and a corresponding sensor plate on the bottom of the mounting plate 412. Once the mounting plate is moved into position and detected by the photoelectric sensor, it indicates that the correct oiling position has been reached, and the servo module automatically stops. Simultaneously, a photoelectric sensor is installed in the upper frame. When the double-lip flywheel reaches the oiling position and is detected, the entire oiling device starts preparing for oiling.

[0022] Specifically, the workbench 3 is provided with a tooling connecting plate 31, and the workbench 31 is also provided with a set of limiting plates 32. The limiting plates 32 are provided with fine-tuning waist-shaped holes 321. The limiting plates 32 are located on two adjacent sides of the tooling connecting plate 31. The side of the tooling connecting plate 31 is provided with adjusting bolts, the other end of which is connected to the limiting plate 32 through the adjusting waist-shaped holes 321. The tooling connecting plate 31 is provided with a relatively large hole, through which bolts pass to connect the tooling connecting plate 31 to the workbench 3. Therefore, the tooling connecting plate 31 has a certain adjustment space on the workbench 31, the adjustment range of which is the difference between the bolt diameter and the hole diameter. The side of the tooling connecting plate 31 is provided with bolt holes, and adjusting bolts are provided in the bolt holes. The other side of the adjusting bolt is locked in the adjusting waist-shaped holes 321, thus locking the position of the tooling connecting plate 31. To further improve the accuracy and quality of oiling, the position of the tooling connecting plate 31 needs to be adjusted so that the double-lip flywheel 6 and the lifting oiling device 4 can be more accurately connected. At this time, only the adjusting bolt needs to be turned, and the adjustment of the waist-shaped hole will not interfere with the adjusting bolt on the other side.

[0023] In a preferred embodiment, a fixing plate 54 is provided below the tooling connecting plate 31 via a connecting column, the power cylinder 51 is located below the fixing plate 54, a guide sleeve is provided on the fixing plate 54, a guide rod 55 is installed inside the guide sleeve, the guide rod 55 is connected to the floating plate 52, and a limiting ring 56 is also sleeved at the bottom of the guide rod 55.

[0024] Specifically, the lower frame 1 is provided with an electrical control box 11 that controls the entire device, and the bottom of the lower frame 1 is also provided with a foot cup 12.

[0025] Specifically, the upper frame 2 is equipped with a control panel and display component 21, and a set of aluminum profile doors 22 are arranged at the front and back of the upper frame 2.

[0026] The double-lip flywheel rotary oiling device provided by this utility model is used by manually placing the double-lip flywheel 6 into the support plate. The conveyor belt transports the support plate carrying the double-lip flywheel 6 to the rotary oiling position. After sensing the position, the lower power cylinder 51 drives the tray rotating gear 53 to rise, lifting the double-lip flywheel 6 while the support plate remains stationary. The upper oiling component 42, driven by the servo module 43, moves to the oiling position, and the lower rotary motor 57 starts rotating. At the same time, the upper shut-off valve 423 opens the oiling nozzle to begin oiling. After oiling is completed, rotation stops, the tray rotating gear 53 retracts to its original position, the double-lip flywheel 6 falls back into the support plate, and the upper lifting oiling device 4 returns to its original position. The double-lip flywheel is then transported to the next work station via the conveyor belt.

[0027] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements can be made without departing from the principle of the present utility model, and these improvements should also be considered within the protection scope of the present utility model.

Claims

1. A double-lip flywheel rotating oiling device, characterized in that, It includes a lower frame (1) and an upper frame (2), and a worktable (3) is provided between the lower frame (1) and the upper frame (2); a lifting oiling device (4) is provided on the worktable (3), and a lifting rotation positioning device (5) is embedded on the worktable (3); The lifting oiling device (4) includes a mounting back plate (41) mounted on the workbench (3), a set of oiling components (42) is slidably mounted on the mounting back plate (41), and a servo module (43) is also mounted on the mounting back plate (41). The servo module (43) can drive the oiling components (42) to move longitudinally and laterally. The lifting and rotating positioning device (5) includes a power cylinder (51) located at the bottom of the worktable (3). The execution end of the power cylinder (51) is provided with a floating plate (52). The upper and lower parts of the floating plate (52) are respectively provided with a tray rotating toothed wheel (53) and a rotary motor (57). The output shaft of the rotary motor (57) passes through the floating plate (52) and is connected to the tray rotating toothed wheel (53).

2. The double-lip flywheel rotary oiling device according to claim 1, characterized in that, The oiling assembly (42) includes a connecting plate (421) slidably mounted on a mounting back plate (41). The connecting plate (421) is provided with a valve mounting plate (422). The valve mounting plate (422) is provided with a shut-off valve (423) for controlling the inlet and outlet of oil. The shut-off valve (423) is connected to an oiling nozzle.

3. The double-lip flywheel rotary oiling device according to claim 2, characterized in that, The mounting back plate (41) is provided with a horizontal linear guide rail (411), a set of mounting plates (412) are slidably fitted on the horizontal linear guide rail (411), a vertical linear guide rail (413) is provided on the mounting plate (412), and the connecting plate (421) is slidably fitted on the vertical linear guide rail (413). The mounting plate (412) has a rack (414) on its back. The racks (414) on the back of the two mounting plates (412) are staggered vertically and their tooth surfaces are opposite each other. The other side of the rack (414) is slidably connected to the transverse linear guide rail (411).

4. The double-lip flywheel rotating oiling device according to claim 3, characterized in that, The servo module (43) includes a lifting servo motor (431) located on the front of the mounting back plate (41) and a traversing servo motor (432) located on the back of the mounting back plate (41). The lifting servo motor (431) is connected to a lead screw, and a slider nut (433) is sleeved on the lead screw. A guide strip (434) is provided on the slider nut (433). The guide strip (434) has waist-shaped holes at both ends. The upper end of the connecting plate (421) is provided with a protruding roller, and the roller is located in the waist-shaped hole. The transverse servo motor (432) is connected to a gear (435), which meshes with the rack (414).

5. The double-lip flywheel rotary oiling device according to claim 1, characterized in that, The workbench (3) is provided with a tooling connection plate (31) and a set of limiting plates (32) are also provided on the workbench (3). The limiting plates (32) are provided with fine-tuning waist-shaped holes (321). The limiting plates (32) are located on two adjacent sides of the tooling connection plate (31). The side of the tooling connection plate (31) is provided with adjusting bolts. The other end of the adjusting bolts is connected to the limiting plates (32) through the adjusting waist-shaped holes (321).

6. The double-lip flywheel rotary oiling device according to claim 5, characterized in that, A fixing plate (54) is provided below the tooling connecting plate (31) via a connecting column. The power cylinder (51) is located below the fixing plate (54). A guide sleeve is provided on the fixing plate (54), and a guide rod (55) is installed inside the guide sleeve. The guide rod (55) is connected to the floating plate (52), and a limiting ring (56) is also fitted at the bottom of the guide rod (55).

7. The double-lip flywheel rotary oiling device according to claim 1, characterized in that, The lower frame (1) is provided with an electrical control box (11) for controlling the entire device, and the bottom of the lower frame (1) is also provided with a foot cup (12).

8. The double-lip flywheel rotary oiling device according to claim 1, characterized in that, The upper frame (2) is provided with a control panel and display components (21), and a set of aluminum profile doors (22) are provided at the front and back of the upper frame (2).