A bearing rust-preventive oil spraying atomizing device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-12
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]在使用过程中发现,现有的喷涂雾化装置不方便实现对轴承进行快速全方面喷涂,需要对轴承翻转后,对其进行另一面进行喷涂,导致时间的浪费,因此亟需一种轴承防锈油喷涂雾化装置
[0015]与现有技术相比本实用新型的有益效果为:通过限位装置和转动装置对轴承进行限位并转动,通过移动装置、调整装置、升降装置、角度调整装置和喷涂装置配合对轴承进行喷涂。
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Figure CN224614112U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of bearing processing, and in particular to a bearing anti-rust oil spraying atomization device. Background Technology
[0002] Rust prevention in bearings is a critical step in bearing manufacturing, directly impacting product lifespan and reliability. Traditional oil immersion or manual spraying methods suffer from uneven oil film, oil waste, and environmental oil mist pollution. Atomized spraying technology atomizes rust-preventive oil into micron-sized particles, achieving uniform coverage of the bearing surface while simultaneously meeting high rust prevention requirements, clean production, and cost control.
[0003] For example, in a class of prior art represented by application number CN202222047728.2, the main structure includes a housing, a first spray gun, a material conveying pipe, and a storage tank. The first spray gun is disposed in the housing, and the material conveying pipe connects the first spray gun and the storage tank. The housing also includes a connecting plate disposed in the housing, with the first spray gun mounted on the connecting plate. The housing has a rotating assembly for driving the connecting plate to rotate horizontally, and the connecting plate has a first driving component for driving the first spray gun to move vertically. This application has the effect of improving the quality of electrostatic spraying.
[0004] During use, it was found that the existing spray atomization device is not convenient for quickly and comprehensively spraying the bearing. It is necessary to flip the bearing over and spray the other side, which wastes time. Therefore, there is an urgent need for a bearing anti-rust oil spray atomization device. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a bearing anti-rust oil spraying atomizing device that limits and rotates the bearing by means of a limiting device and a rotating device, and sprays the bearing by means of a moving device, an adjusting device, a lifting device, an angle adjusting device and a spraying device.
[0006] This utility model discloses a bearing anti-rust oil spraying atomizing device, including an operating table; it also includes a limiting device, a rotating device, a moving device, an adjusting device, a lifting device, an angle adjusting device, and a spraying device. The limiting device and the moving device are both mounted on the operating table, the rotating device is mounted on the limiting device, the adjusting device is mounted on the moving device, the lifting device is mounted on the adjusting device, the angle adjusting device is mounted on the lifting device, and the spraying device is mounted on the angle adjusting device. The limiting device limits the bearing, the rotating device rotates, the moving device moves, the adjusting device adjusts the position, the lifting device raises and lowers, the angle adjusting device adjusts the angle, and the spraying device sprays the bearing. The bearing is limited and rotated by the limiting device and the rotating device, and the bearing is sprayed by the moving device, the adjusting device, the lifting device, the angle adjusting device, and the spraying device working together.
[0007] Preferably, the operating table includes a base, which is installed in the work area and has a sliding groove; the base provides support.
[0008] Preferably, the limiting device includes a motor, a bidirectional lead screw, a slider, and a second slider. The motor is mounted on the side of the base, and its output end is rotatably connected to the input end of the bidirectional lead screw. Both sliders are threadedly mounted on the bidirectional lead screw and slidably mounted in the slide groove. When the motor is started, the bidirectional lead screw is rotated, enabling sliders one and two to move in opposite directions on the slide groove.
[0009] Preferably, the rotating device includes a bearing seat one, a mold plate one, a bearing seat two, a motor two, and a mold plate two. The bearing seat one is installed on the top of the slider one, the mold plate one is installed on the bearing seat one, the bearing seat two and the motor two are both installed on the top of the slider two, the motor two is provided with an output shaft, the output shaft of the motor two passes through the bearing seat two, and the mold plate two is installed on the side end of the output shaft of the motor two. When the motor two is started, the output shaft of the motor two and the mold plate two are driven to rotate, and at the same time, the bearings of the mold plate two rotate.
[0010] Preferably, the moving device includes two sets of linear motors and a moving bracket. The two sets of linear motors are symmetrically installed on the top of the base, and each set of linear motors is provided with a set of sliders. The moving bracket is installed on the top of the two sets of sliders. The linear motors are started to drive the sliders and the moving bracket to move.
[0011] Preferably, the adjustment device includes a third motor, a lead screw, a moving block, a first guide shaft, and a first guide sleeve. The third motor is mounted on the side of the moving bracket, and the output end of the third motor is rotatably connected to the input end of the lead screw. The moving block is mounted on the lead screw via a threaded connection. The first guide shaft is mounted on the moving bracket, and the first guide sleeve is mounted on the moving block and fitted onto the first guide shaft. By starting the third motor, the lead screw is driven to rotate, and the moving block is directionally moved on the first guide shaft via the first guide sleeve.
[0012] Preferably, the lifting device includes an electric telescopic rod, a lifting seat, a second guide shaft, and a second guide sleeve. The electric telescopic rod is installed at the top of the moving block, and an output shaft is provided on the electric telescopic rod. The lifting seat is installed at the bottom end of the output shaft of the electric telescopic rod. The second guide shaft is installed at the top of the lifting seat, and the second guide sleeve is installed on the moving block. The electric telescopic rod is fitted onto the second guide shaft. By activating the electric telescopic rod, the output shaft of the electric telescopic rod is extended, and the lifting seat is directionally lowered on the second guide sleeve via the second guide shaft.
[0013] Preferably, the angle adjustment device includes a dual-output shaft motor and a swing arm. The dual-output shaft motor is installed at the bottom of the lifting seat and has two sets of output shafts. The two sets of output shafts of the dual-output shaft motor pass through the lifting seat, and the swing arm is fitted onto the two sets of output shafts of the dual-output shaft motor. By starting the dual-output shaft motor, the two sets of output shafts of the dual-output shaft motor are driven to rotate, thereby realizing the angle adjustment of the swing arm.
[0014] Preferably, the spraying device includes a paint pump, a feed pipe, and an atomizing nozzle. The paint pump is installed at the top of the swing arm, the input end of the paint pump is connected to the output end of the feed pipe, and the output end of the paint pump is connected to the input end of the atomizing nozzle. By starting the paint pump, bearing rust-preventive oil enters through the input end of the feed pipe, and the bearing rust-preventive oil is atomized and sprayed through the atomizing nozzle.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: the bearing is limited and rotated by the limiting device and the rotating device, and the bearing is sprayed by the cooperation of the moving device, the adjusting device, the lifting device, the angle adjusting device and the spraying device. Attached Figure Description
[0016] Figure 1 This is an isometric drawing of the structure of this utility model; Figure 2 yes Figure 1 Structural isometric drawing of the operating table and limiting device in this utility model; Figure 3 yes Figure 1 Structural isometric drawing of the operating console and moving device in this utility model; Figure 4 yes Figure 1Enlarged isometric view of the adjustment device and lifting device structure in this utility model; Figure 5 yes Figure 1 Enlarged isometric view of the angle adjustment device and spraying device in this utility model.
[0017] The attached diagram is labeled as follows: 01, operating table; 11, base; 12, slide rail; 02, limiting device; 21, motor one; 22, double-acting lead screw; 23, slider one; 24, slider two; 03, rotating device; 31, bearing seat one; 32, mold plate one; 33, bearing seat two; 34, motor two; 35, mold plate two; 04, moving device; 41, linear motor; 42, slider; 43, moving bracket; 05, adjusting device; 51, motor three; 52, lead screw; 53, moving block; 54, guide shaft one; 55, guide sleeve one; 06, lifting device; 61, electric telescopic rod; 62, lifting seat; 63, guide shaft two; 64, guide sleeve two; 07, angle adjustment device; 71, dual output shaft motor; 72, swing arm; 08, spraying device; 81, paint pump; 82, feed pipe; 83, atomizing nozzle. Detailed Implementation
[0018] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.
[0019] Example 1 A bearing rust-preventive oil spraying atomizing device includes an operating table 01; characterized in that it further includes a limiting device 02, a rotating device 03, a moving device 04, an adjusting device 05, a lifting device 06, an angle adjusting device 07, and a spraying device 08. The limiting device 02 and the moving device 04 are both installed on the operating table 01, the rotating device 03 is installed on the limiting device 02, the adjusting device 05 is installed on the moving device 04, the lifting device 06 is installed on the adjusting device 05, the angle adjusting device 07 is installed on the lifting device 06, and the spraying device 08 is installed on the angle adjusting device 07. Limiting device 02 limits the position, rotating device 03 rotates the position, moving device 04 moves the position, adjusting device 05 adjusts the position, lifting device 06 lifts the position, angle adjusting device 07 adjusts the angle, and spraying device 08 sprays the position. The operating table 01 includes a base 11, which is installed in the work area and has a sliding groove 12. The moving device 04 includes two sets of linear motors 41 and a moving bracket 43. The two sets of linear motors 41 are symmetrically installed on the top of the base 11. Each set of linear motors 41 is provided with a set of sliders 42. The moving bracket 43 is installed on the top of the two sets of sliders 42. The adjustment device 05 includes a motor 51, a lead screw 52, a moving block 53, a guide shaft 54, and a guide sleeve 55. The motor 51 is mounted on the side of the moving bracket 43, and the output end of the motor 51 is rotatably connected to the input end of the lead screw 52. The moving block 53 is mounted on the lead screw 52 by a threaded connection. The guide shaft 54 is mounted on the moving bracket 43, and the guide sleeve 55 is mounted on the moving block 53 and fitted onto the guide shaft 54. The lifting device 06 includes an electric telescopic rod 61, a lifting seat 62, a second guide shaft 63, and a second guide sleeve 64. The electric telescopic rod 61 is installed on the top of the moving block 53, and an output shaft is provided on the electric telescopic rod 61. The lifting seat 62 is installed on the bottom end of the output shaft of the electric telescopic rod 61. The second guide shaft 63 is installed on the top of the lifting seat 62. The second guide sleeve 64 is installed on the moving block 53. The electric telescopic rod 61 is fitted onto the second guide shaft 63. The angle adjustment device 07 includes a dual-output shaft motor 71 and a swing arm 72. The dual-output shaft motor 71 is installed at the bottom of the lifting seat 62. The dual-output shaft motor 71 is provided with two sets of output shafts. The two sets of output shafts of the dual-output shaft motor 71 pass through the lifting seat 62. The swing arm 72 is fitted on the two sets of output shafts of the dual-output shaft motor 71. The spraying device 08 includes a paint pump 81, a feed pipe 82, and an atomizing nozzle 83. The paint pump 81 is installed at the top of the swing arm 72. The input end of the paint pump 81 is connected to the output end of the feed pipe 82, and the output end of the paint pump 81 is connected to the input end of the atomizing nozzle 83. The moving device 04 moves the object, the adjusting device 05 adjusts the position, the lifting device 06 raises and lowers the object, the angle adjusting device 07 adjusts the angle, and the spraying device 08 sprays the object. The top of the bearing base 11 is moved by starting the linear motor 41, which drives the slider 42 and the moving bracket 43 to move. Then, starting the motor 51 drives the lead screw 52 to rotate, and the moving block 53 moves directionally on the guide shaft 54 via the guide sleeve 55, so that the atomizing nozzle 83 is positioned above the bearing. Then, starting the electric telescopic rod 61 drives the output shaft of the electric telescopic rod 61 to extend, and the lifting seat 62 descends directionally on the guide sleeve 64 via the guide shaft 63. When the atomizing nozzle 83 sprays bearing anti-rust oil and just covers the bearing surface, the electric telescopic rod 61 is stopped. Then, starting the paint pump 81, the bearing anti-rust oil enters through the input end of the feed pipe 82 and is atomized and sprayed by the atomizing nozzle 83. The bearing is then manually flipped over, and the linear motor 41 is started to move the slider 42 and the moving bracket 43. Then, by starting motor 3 51, the lead screw 52 is driven to rotate, and the moving block 53 is directionally moved on guide shaft 54 through guide sleeve 1 55, so that the atomizing nozzle 83 is positioned above the bearing. Then, by starting electric telescopic rod 61, the output shaft of electric telescopic rod 61 is driven to extend, and the lifting seat 62 is directionally lowered on guide sleeve 2 64 through guide shaft 2 63. At the same time, by starting dual output shaft motor 71, the two sets of output shafts of dual output shaft motor 71 are driven to rotate, so as to adjust the angle of swing arm 72. When the atomizing nozzle 83 sprays bearing anti-rust oil and just covers the side surface of the bearing, electric telescopic rod 61 and dual output shaft motor 71 are stopped. Then, by starting paint pump 81, bearing anti-rust oil enters through the input end of feed pipe 82, and bearing anti-rust oil is atomized and sprayed onto the bearing surface through atomizing nozzle 83 until the spraying is completed.
[0020] Example 2 like Figures 1 to 5 As shown, based on Embodiment 1, it also includes a limiting device 02 and a rotating device 03; The limiting device 02 includes a motor 21, a bidirectional lead screw 22, a slider 23, and a slider 24. The motor 21 is installed on the side of the base 11. The output end of the motor 21 is rotatably connected to the input end of the bidirectional lead screw 22. The sliders 23 and 24 are both installed on the bidirectional lead screw 22 by threaded connection. The sliders 23 and 24 are both slidably installed on the slide groove 12. The rotating device 03 includes a bearing seat 31, a mold plate 32, a bearing seat 33, a motor 34, and a mold plate 35. The bearing seat 31 is installed on the top of the slider 23, the mold plate 32 is installed on the bearing seat 31, the bearing seat 33 and the motor 34 are both installed on the top of the slider 24, the motor 34 is provided with an output shaft, the output shaft of the motor 34 passes through the bearing seat 33, and the mold plate 35 is installed on the side end of the output shaft of the motor 34. Limiting device 02 performs the limiting function, and rotating device 03 rotates. First, the bearing is placed between mold plate 1 (32) and mold plate 2 (35). Then, by starting motor 1 (21), the bidirectional lead screw 22 is rotated, causing slider 1 (23) and slider 2 (24) to move in opposite directions on the slide groove 12. The bearing is limited by mold plate 1 (32) and mold plate 2 (35). Then, by starting linear motor 41, slider 42 and moving bracket 43 are moved. Then, by starting motor 3 (51), lead screw 52 is rotated, causing moving block 53 to move in a direction on guide shaft 54 via guide sleeve 1 (55), so that the atomizing nozzle 83 is positioned on the shaft. Following the above, the electric telescopic rod 61 is activated, causing its output shaft to extend. This allows the lifting seat 62 to descend directionally via guide shaft 63 on guide sleeve 64. When the atomizing nozzle 83 sprays bearing anti-rust oil that precisely covers the bearing surface, the electric telescopic rod 61 stops. Then, the paint pump 81 is activated, allowing bearing anti-rust oil to enter through the inlet pipe 82. The atomizing nozzle 83 then atomizes and sprays the bearing anti-rust oil. Simultaneously, the motor 34 is activated, causing its output shaft and mold plate 35 to rotate. The bearing is rotated in conjunction with the mold plate 32 to achieve spraying on the outer surface of the bearing. Then, the linear motor 41 is started, which drives the slider 42 and the moving bracket 43 to move. Then, the motor 3 is started, which drives the lead screw 52 to rotate. The moving block 53 is directionally moved on the guide shaft 54 through the guide sleeve 55, so that the atomizing nozzle 83 is located on the side of the bearing. Then, the electric telescopic rod 61 is started, which drives the output shaft of the electric telescopic rod 61 to extend. The lifting seat 62 is directionally lowered on the guide sleeve 64 through the guide shaft 2 63. At the same time, through The start of the dual-output shaft motor 71 drives the two output shafts of the dual-output shaft motor 71 to rotate, thereby adjusting the angle of the swing arm 72. When the atomizing nozzle 83 sprays bearing anti-rust oil that just covers the side surface of the bearing, the electric telescopic rod 61 and the dual-output shaft motor 71 are stopped. Then, the paint pump 81 is started to bring the bearing anti-rust oil into the feed pipe 82 through the input end. The bearing anti-rust oil is then atomized and sprayed onto the side of the bearing through the atomizing nozzle 83. Then, following the above operation, the atomizing nozzle 83 is adjusted to the other side of the bearing for atomized spraying until the spraying is completed.
[0021] This utility model discloses a bearing anti-rust oil spraying atomizing device. During operation, the bearing is first placed between mold plate 1 (32) and mold plate 2 (35). Then, the motor 1 (21) is started, driving the bidirectional lead screw 22 to rotate, causing sliders 1 (23) and 2 (24) to move in opposite directions on the slide groove 12. The mold plates 1 (32) and 2 (35) limit the bearing's movement. Next, the linear motor 41 is started, driving slider 42 and the moving bracket 43 to move. Then, the motor 3 (51) is started, driving the lead screw 52 to rotate, causing the moving block 53 to move via guide sleeve 1 (55) on guide shaft 1 (5). 4. Directional movement is achieved, positioning the atomizing nozzle 83 above the bearing. Then, by activating the electric telescopic rod 61, the output shaft of the electric telescopic rod 61 extends, causing the lifting seat 62 to descend directionally on the guide sleeve 64 via the guide shaft 63. When the atomizing nozzle 83 sprays bearing anti-rust oil that precisely covers the bearing surface, the electric telescopic rod 61 stops. Subsequently, by activating the paint pump 81, bearing anti-rust oil enters through the input end of the feed pipe 82, and is atomized and sprayed by the atomizing nozzle 83. Simultaneously, by activating the motor 34, the output shaft of the motor 34 and the mold... The second mold plate 35 rotates, simultaneously rotating the bearing in conjunction with the first mold plate 32, thus spraying the outer surface of the bearing. Then, the linear motor 41 is activated, driving the slider 42 and the moving bracket 43 to move. Next, the third motor 51 is activated, driving the lead screw 52 to rotate, causing the moving block 53 to move directionally on the guide shaft 54 via the first guide sleeve 55, positioning the atomizing nozzle 83 to the side of the bearing. Then, the electric telescopic rod 61 is activated, causing its output shaft to extend, allowing the lifting seat 62 to descend directionally via the second guide shaft 63 on the second guide sleeve 64. Simultaneously, the start of the dual-output shaft motor 71 drives the two sets of output shafts of the dual-output shaft motor 71 to rotate, thereby adjusting the angle of the swing arm 72. When the atomizing nozzle 83 sprays the bearing anti-rust oil and just covers the side surface of the bearing, the electric telescopic rod 61 and the dual-output shaft motor 71 are stopped. Then, the paint pump 81 is started, and the bearing anti-rust oil enters through the input end of the feed pipe 82. The bearing anti-rust oil is atomized and sprayed onto the side of the bearing through the atomizing nozzle 83. Then, following the above operation, the atomizing nozzle 83 is adjusted to the other side of the bearing for atomized spraying until the spraying is completed.
[0022] The motor 21, motor 34, linear motor 41, motor 51, electric telescopic rod 61, dual output shaft motor 71, and paint pump 81 of this utility model are commercially available. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0023] The main function of this invention is to enable the bearing to rotate and to quickly perform atomized spraying.
[0024] 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 and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A bearing rust-proof oil spraying atomizing device, comprising an operation table (01); characterized in that, It also includes a limiting device (02), a rotating device (03), a moving device (04), an adjusting device (05), a lifting device (06), an angle adjusting device (07), and a spraying device (08). The limiting device (02) and the moving device (04) are both installed on the operating table (01), the rotating device (03) is installed on the limiting device (02), the adjusting device (05) is installed on the moving device (04), the lifting device (06) is installed on the adjusting device (05), the angle adjusting device (07) is installed on the lifting device (06), and the spraying device (08) is installed on the angle adjusting device (07). The limiting device (02) limits the position, the rotating device (03) rotates, the moving device (04) moves, the adjusting device (05) adjusts the position, the lifting device (06) lifts the position, the angle adjusting device (07) adjusts the angle, and the spraying device (08) sprays the coating.
2. A bearing anti-rust oil spraying and atomizing device according to claim 1, characterized in that, The operating table (01) includes a base (11), which is installed in the working area and has a sliding groove (12).
3. A bearing anti-rust oil spraying and atomizing device according to claim 2, characterized in that, The limiting device (02) includes a motor (21), a two-way lead screw (22), a slider (23) and a slider (24). The motor (21) is installed on the side of the base (11). The output end of the motor (21) is rotatably connected to the input end of the two-way lead screw (22). The slider (23) and the slider (24) are both installed on the two-way lead screw (22) by threaded connection. The slider (23) and the slider (24) are both slidably installed in the slide groove (12).
4. A bearing anti-rust oil spraying and atomizing device according to claim 3, characterized in that, The rotating device (03) includes a bearing seat one (31), a mold plate one (32), a bearing seat two (33), a motor two (34), and a mold plate two (35). The bearing seat one (31) is installed on the top of the slider one (23), the mold plate one (32) is installed on the bearing seat one (31), the bearing seat two (33) and the motor two (34) are both installed on the top of the slider two (24), the motor two (34) is provided with an output shaft, the output shaft of the motor two (34) passes through the bearing seat two (33), and the mold plate two (35) is installed on the side end of the output shaft of the motor two (34).
5. A bearing anti-rust oil spraying and atomizing device according to claim 2, characterized in that, The moving device (04) includes two sets of linear motors (41) and a moving bracket (43). The two sets of linear motors (41) are symmetrically installed on the top of the base (11). Each set of linear motors (41) is provided with a set of sliders (42). The moving bracket (43) is installed on the top of the two sets of sliders (42).
6. A bearing anti-rust oil spraying and atomizing device according to claim 5, characterized in that, The adjustment device (05) includes a third motor (51), a lead screw (52), a moving block (53), a first guide shaft (54), and a first guide sleeve (55). The third motor (51) is installed on the side of the moving bracket (43). The output end of the third motor (51) is rotatably connected to the input end of the lead screw (52). The moving block (53) is installed on the lead screw (52) by a threaded connection. The first guide shaft (54) is installed on the moving bracket (43). The first guide sleeve (55) is installed on the moving block (53) and is fitted onto the first guide shaft (54).
7. A bearing anti-rust oil spraying and atomizing device according to claim 6, characterized in that, The lifting device (06) includes an electric telescopic rod (61), a lifting seat (62), a second guide shaft (63), and a second guide sleeve (64). The electric telescopic rod (61) is installed on the top of the moving block (53). An output shaft is provided on the electric telescopic rod (61). The lifting seat (62) is installed at the bottom of the output shaft of the electric telescopic rod (61). The second guide shaft (63) is installed on the top of the lifting seat (62). The second guide sleeve (64) is installed on the moving block (53). The electric telescopic rod (61) is fitted onto the second guide shaft (63).
8. A bearing anti-rust oil spraying and atomizing device according to claim 7, characterized in that, The angle adjustment device (07) includes a dual-output shaft motor (71) and a swing arm (72). The dual-output shaft motor (71) is installed at the bottom of the lifting seat (62). The dual-output shaft motor (71) has two sets of output shafts. The two sets of output shafts of the dual-output shaft motor (71) pass through the lifting seat (62), and the swing arm (72) is fitted on the two sets of output shafts of the dual-output shaft motor (71).
9. A bearing anti-rust oil spraying and atomizing device according to claim 8, characterized in that, The spraying device (08) includes a paint pump (81), a feed pipe (82) and an atomizing nozzle (83). The paint pump (81) is installed at the top of the swing arm (72). The input end of the paint pump (81) is connected to the output end of the feed pipe (82), and the output end of the paint pump (81) is connected to the input end of the atomizing nozzle (83).
Citation Information
Patent Citations
Electrostatic spraying atomization device
CN217910985U