Cleaning mechanism for bearing production and machining
By designing a cleaning mechanism for bearing production and processing, including a spacer feeding mechanism, an integral cleaning mechanism, an internal and external cleaning mechanism and adaptive cleaning components, the problem of all-round cleaning of bearing workpieces in the existing technology is solved, and an efficient and automated cleaning process is achieved, meeting the cleaning needs of workpieces of different specifications and sizes.
Patent Information
- Application Number
- CN202510133074.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2045-02-06
AI Technical Summary
During the production and processing of bearings, it is difficult for the prior art to achieve comprehensive cleaning of bearing workpieces of different specifications and sizes, resulting in poor cleaning results, limited processing process, and high labor intensity.
A cleaning mechanism for bearing production and processing is designed, including a spacer feeding mechanism, an integral cleaning mechanism, an inner and outer cleaning mechanism and an adaptive cleaning component. Through the cooperation of these mechanisms, the workpiece is cleaned in all aspects and adapted to workpieces of different specifications and sizes.
It realizes all-round cleaning of bearing workpieces, ensures cleaning effect, improves work process, reduces labor intensity, and meets the cleaning needs of workpieces of different specifications and sizes.
Smart Images

Figure CN119951784A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of bearing processing, and in particular relates to a cleaning mechanism for bearing production and processing. Background Art
[0002] Bearings are an important component in contemporary mechanical equipment. Their main function is to support the mechanical rotating body, reduce the friction coefficient during its movement, and ensure its rotation accuracy. Bearings can be divided into two categories: rolling bearings and sliding bearings according to the different friction properties of the moving elements. Rolling bearings have been standardized and serialized, but compared with sliding bearings, they have larger radial dimensions, greater vibration and noise, and higher prices. Bearings are widely used in various mechanical equipment, including metallurgy, wind power, mining machinery, aerospace, automotive parts and other fields.
[0003] At present, in the production and processing of bearings, it is necessary to clean the bearing rings to ensure the production quality of the bearing rings, especially for the situation that there are fine shavings on the bearing rings after processing, which will affect the molding quality of the bearings on the one hand, and bring inconvenience to the assembly process of the bearings on the other hand; the conventional processing method is: manually take the bearing rings or the assembled bearings, and manually wipe the workpieces. This method not only consumes a lot of manpower costs, but also is difficult to hold the workpieces of different specifications and sizes to be cleaned. If you are not careful, it will cause personal injury. Of course, there are also mechanical equipment such as grinders, which can replace manual labor to complete the above cleaning work, but they are generally semi-automatic and still require manual intervention. At the same time, whether it is the bearing ring or the assembled bearing, when cleaning, the existing mechanical equipment can only clean the periphery first and then clean the inside, and the working process is relatively limited. Especially for bearing rings or bearings of different sizes, the processing process is limited, and to a certain extent, it affects the cleaning effect of the bearing workpiece and cannot meet the use requirements. Summary of the invention
[0004] In response to the technical problems existing in the above-mentioned bearing workpiece processing process, the present invention proposes a cleaning mechanism for bearing production and processing which has a reasonable design, simple structure, convenient processing and can improve the degree of automation of the device and equipment, achieve all-round cleaning of the workpiece, ensure the cleaning effect, improve the work progress, reduce labor intensity, and effectively meet the use requirements.
[0005] To achieve the above object, the technical solution adopted by the present invention is a cleaning mechanism for bearing production and processing, including a cleaning mechanism body. The cleaning mechanism body includes a frame, and a protective cover is arranged on the outer side of the frame. A workbench is arranged above the frame. Along the workpiece traveling direction above the workbench, a spaced feeding mechanism, an overall cleaning mechanism, a guiding mechanism, an inner and outer side cleaning mechanism, and a discharging mechanism are sequentially arranged. The overall cleaning mechanism is located on one side of the spaced feeding mechanism. The overall cleaning mechanism includes a longitudinal slide bar assembly, a moving frame is arranged on the longitudinal slide bar assembly, a first motor is arranged on one side of the moving frame, a cleaning brush is arranged at the driving end of the first motor, and a limiting cover is arranged outside the cleaning brush. The guiding mechanism includes a support frame, a guiding plate designed in a shape of "几" is arranged above the support frame, a receiving plate is arranged between the guiding plate and the support frame and is承接 with the spaced feeding mechanism. An auxiliary mechanism for limiting the advancing direction of the workpiece and cleaning the overall cleaning mechanism is arranged on the workbench below the overall cleaning mechanism. A abutting mechanism for limiting the position of the workpiece is arranged on one side of the spaced feeding mechanism. A lifting mechanism is arranged at the rear side of the inner and outer side cleaning mechanism, a positioning mechanism is arranged on one side of the lifting mechanism and corresponds to the overall cleaning mechanism. A driving mechanism for facilitating the rotation of the workpiece to achieve cleaning is arranged on the lifting mechanism. The inner and outer side cleaning mechanism includes a longitudinal moving assembly, a self-adapting cleaning assembly is arranged at the moving end of the longitudinal moving assembly, a bearing mechanism is arranged on the workbench below the self-adapting cleaning assembly, and an ejecting mechanism for discharging the workpiece is arranged inside the bearing mechanism.
[0006] Preferably, the spaced feeding mechanism includes a first inclined frame, a first conveying plate is arranged above the first inclined frame, a vertical frame is arranged on the outer side of the first inclined frame, a horizontal frame is arranged above the vertical frame, an extending plate is arranged on the horizontal frame, a spaced driving cylinder is arranged on the extending plate, a spaced rod is arranged at the output end of the spaced driving cylinder, and a position detection sensor is arranged on one side of the spaced driving cylinder.
[0007] Preferably, the auxiliary mechanism includes a vertical driving cylinder, a carrier with a concave shape is provided at the output end of the vertical driving cylinder, a first gear and a second gear are provided at the front and rear of the inner end of the carrier, a first rotating frame is provided between the two first gears, a second rotating frame is provided between the two second gears, a driving plate is provided on the outer side of the second rotating frame on the side where the second rotating frame is connected to the second gear, a rotating driving cylinder is provided on the rear side of the second rotating frame, and its output end is connected to the driving plate, a clamping plate with a semicircular groove is provided on the upper outer side of the first rotating frame and the second rotating frame, a toggle plate is provided on the inner and lower sides of the first rotating frame and the second rotating frame, the toggle plate includes a supporting portion with a J-shape design and a toggle portion with a Z-shape design, and corresponds to the cleaning brush.
[0008] Preferably, the abutment mechanism comprises an abutment driving cylinder connected to the cross frame, abutment rod is provided at the output end of the abutment driving cylinder, the positioning mechanism comprises a positioning driving cylinder connected to the top of the lifting mechanism, and a positioning block is provided at the output end of the positioning driving cylinder.
[0009] Preferably, the lifting mechanism includes four vertical slide bars designed in a rectangular arrangement, a connecting plate is provided above the vertical slide bars, a lifting drive cylinder is provided on the connecting plate, a slider is sleeved on the vertical slide bar, the driving mechanism includes a lifting plate connected to the slider, three rollers arranged in a triangular shape are provided on the front side of the lifting plate, a synchronous belt is provided on the outer side of the roller, a telescopic component for adjusting the position of the synchronous belt is provided on the lifting plate located on the inner side of the roller, the telescopic component includes a positioning plate, an adjusting rod is provided on the positioning plate, and the adjusting rod A telescopic driving cylinder is arranged above the section rod, a telescopic wheel is arranged below the adjusting rod, a self-adaptive tensioning assembly is arranged on one side of the lifting plate, the self-adaptive tensioning assembly includes a shell, a tensioning rod with an I-shaped cross-section is arranged in the shell, a tensioning wheel is arranged on the outside of the tensioning rod, a telescopic spring is arranged on the other side of the tensioning rod, a transverse driving cylinder is arranged on the rear side of the lifting plate, a moving rod is arranged at the output end of the transverse driving cylinder, a support plate with an obtuse angle design is arranged on the moving rod, and a cleaning strip is arranged at the lower end of the support plate.
[0010] Preferably, the longitudinal moving component includes a moving plate which is mounted under the vertical sliding rod and is designed in a cross shape, a lifting cylinder is arranged under the moving plate, a longitudinally arranged sliding bar is arranged on the moving plate, a moving block is arranged on the sliding bar, an L-shaped plate is arranged on the moving block to provide an installation position for the self-adaptive cleaning component, a longitudinal driving cylinder is arranged on the upper side of the moving plate, and its output end is connected to the L-shaped plate.
[0011] Preferably, the self-adaptive cleaning assembly includes a mounting ring, a hollow rotating platform is provided on one side of the mounting ring and is connected to the L-shaped plate, a first triangular plate is provided on the other side of the mounting ring, a support rod is provided on the first triangular plate, two equidistantly arranged fixing plates are provided on the support rod, a screw is provided at the geometric center of the first triangular plate, a first screw nut and a second screw nut are provided on the screw on both sides of the fixing plate in the middle, a second triangular plate and a third triangular plate are provided on one side of the first screw nut and the second screw nut, respectively, a first rotating rod is provided at the corner of the first triangular plate, and the third rotating rod is provided at the corner of the third triangular plate. A connecting rod is provided at the corner of the angle plate and is connected to the inner geometric center of the first rotating rod. A second rotating rod designed in a Y shape is provided at the corner of the second triangular plate, and its end is connected to the end of the first rotating rod. An axle rod is provided at the connection between the first rotating rod and the second rotating rod, the axle rod is fixedly connected to the second rotating rod and is rotatably connected to the first rotating rod. An air suction pipe is provided between the two axles, and a cleaning module is provided on the upper outer side of the air suction pipe. A rotating disk is provided on one side of the L-shaped plate, and a second motor is provided on the rotating disk, and an output end of the second motor is connected to the screw rod and passes through the geometric center of the hollow rotating platform.
[0012] Preferably, the cleaning module includes a cover body with a fan-shaped design, a plurality of collector strips with an arc-shaped design are evenly distributed inside the cover body, an air suction head is provided on one side of the outside of the cover body, a brush strip is provided on the other side of the outside of the cover body, and an air suction port with a wedge-shaped design is opened on one side of the cover body below the brush strip.
[0013] Preferably, the supporting mechanism includes a T-shaped block, vertical plates are provided on both sides of the T-shaped block, and supporting wheels are provided on the vertical plates at the rear side. An adapter plate with an L-shaped design is provided on the upper rear side of the vertical plate, and a C-shaped hole is provided in the adapter plate, which corresponds to the self-adaptive cleaning component. The ejection mechanism includes a lifting rod that passes through the T-shaped block, and a ejection block is provided above the lifting rod and is located between the left and right supporting wheels. The upper end surface of the ejection block is designed to be inclined from right to left.
[0014] Preferably, the export mechanism includes a second inclined frame, on which a second conveying plate designed in a "X" shape is provided, a wedge block is provided on the upper inner side of the second conveying plate, and a support plate is provided on the other side of the second conveying plate corresponding to the wedge block.
[0015] Compared with the prior art, the advantages and positive effects of the present invention are:
[0016] 1. The present invention provides a cleaning mechanism for bearing production and processing. By utilizing the interval feeding mechanism, workpieces can be fed one by one, ensuring the continuity of workpiece cleaning and avoiding accumulation. The overall cleaning mechanism can clean both sides of the workpiece, and the inner and outer cleaning mechanism can clean the inner and outer sides of the workpiece. The cooperation between the two mechanisms can achieve all-round cleaning of the workpiece, ensure the cleaning effect, and improve the work progress. The self-adaptive cleaning component can adapt to workpieces of different specifications and sizes, improve the work progress, and improve the functionality of the device. The device has a reasonable design, a simple structure, and is easy to process. It can also improve the degree of automation of the device, achieve all-round cleaning of the workpiece, ensure the cleaning effect, improve the work progress, reduce labor intensity, and effectively meet the use requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0018] Figure 1 It is a structural schematic diagram of a cleaning mechanism for bearing production and processing;
[0019] Figure 2 A schematic diagram of the internal structure of a cleaning mechanism for bearing production and processing;
[0020] Figure 3 A schematic diagram of the internal structure of a cleaning mechanism for bearing production and processing from another perspective;
[0021] Figure 4 This is a front view of the internal structure of a cleaning mechanism used in bearing production and processing;
[0022] Figure 5 It is a partial structural schematic diagram of the interval feeding mechanism;
[0023] Figure 6 It is a front view of part of the internal structure of the driving mechanism;
[0024] Figure 7 It is a schematic rear view of the structure of the longitudinal moving component;
[0025] Figure 8 It is a schematic diagram of part of the internal structure of the limiting cover;
[0026] Fig. 9 It is a schematic diagram of the structure of the self-adaptive cleaning component;
[0027] Fig.10It is a schematic diagram of some structures of the cleaning module;
[0028] Fig.11 is a schematic diagram of the internal structure of the cleaning module;
[0029] Fig.12 It is a structural diagram of the auxiliary mechanism (merged state);
[0030] Fig.13 It is a structural schematic diagram of the auxiliary mechanism (open state);
[0031] Fig.14 It is a schematic diagram of the internal structure of the self-adaptive tensioning assembly;
[0032] In the above figures, 1, frame; 2, protective cover; 3, workbench; 4, interval feeding mechanism; 41, first tilting frame; 42, first conveying plate; 43, vertical frame; 44, horizontal frame; 45, extension plate; 46, interval driving cylinder; 47, interval rod; 48, position detection sensor; 5, overall cleaning mechanism; 51, longitudinal slide assembly; 52, moving frame; 53, first motor; 54, cleaning brush; 55, limit cover; 6, guide mechanism; 61, support frame; 62, guide plate; 63, receiving plate; 7, inner and outer cleaning mechanism; 8, lead-out mechanism; 81, second tilting frame; 82, second conveying plate; 83, wedge block; 84, support plate; 9, auxiliary mechanism; 91 , vertical drive cylinder; 92, carrier; 93, first gear; 94, second gear; 95, first rotating frame; 96, second rotating frame; 961, drive plate; 97, rotating drive cylinder; 98, clamping plate; 99, toggle plate; 10, abutment mechanism; 101, abutment drive cylinder; 102, abutment rod; 11, lifting mechanism; 111, vertical slide bar; 112, connecting plate; 113, lifting drive cylinder; 114, slider; 12, positioning mechanism; 121, positioning drive cylinder; 122, positioning block; 13, drive mechanism; 131, lifting plate; 132, roller; 133, synchronous belt; 134, telescopic component; 1341, positioning plate; 1342 , adjusting rod; 1343, telescopic drive cylinder; 1344, telescopic wheel; 135, self-adaptive tensioning assembly; 1351, shell; 1352, tensioning rod; 1353, tensioning wheel; 1354, telescopic spring; 136, lateral drive cylinder; 137, moving rod; 138, support plate; 139, cleaning bar; 14, longitudinal moving assembly; 141, moving plate; 142, lifting cylinder; 143, slide bar; 144, moving block; 145, L-shaped plate; 146, longitudinal drive cylinder; 15, self-adaptive cleaning assembly; 151, mounting ring; 152, hollow rotating platform; 153, first triangle plate; 154, support rod; 155, fixed plate; 156, Screw rod; 157, first screw rod nut; 158, second screw rod nut; 159, second triangular plate; 1510, third triangular plate; 1511, first rotating rod; 1512, connecting rod; 1513, second rotating rod; 1514, shaft rod; 1515, suction pipe; 1516, rotating disk; 1517, second motor; 16, bearing mechanism; 161, T-block; 162, vertical plate; 163, bearing wheel; 164, adapter plate; 1641, C-shaped hole; 17, ejection mechanism; 171, lifting rod; 172, ejector block; 18, cleaning module; 181, cover body; 1811, suction port; 182, collector strip; 183, suction head; 184, brush strip. DETAILED DESCRIPTION
[0033] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below in conjunction with the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0034] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments of the following disclosure.
[0035] Examples, such as Figure 1 to Figure 14As shown in the figure, a cleaning mechanism for bearing production and processing includes a cleaning mechanism body. The cleaning mechanism body provided in this embodiment can clean the inner ring of the bearing, the outer ring of the bearing, and the assembled bearing workpiece, with a wide range of applications and can meet different production and processing conditions. Specifically: The cleaning mechanism body includes a frame 1 to ensure the stability of the equipment. A protective cover 2 is provided on the outside of the frame 1, which can protect the various equipment components and reduce the possibility of damage. Above the frame 1, a workbench 3 is provided, which can provide a convenient installation position for the establishment of each mechanism and ensure the effective placement of the workpiece. Further, above the workbench 3, a spaced feeding mechanism 4, an overall cleaning mechanism 5, a guiding mechanism 6, an inner and outer side cleaning mechanism 7, and a discharging mechanism 8 are sequentially arranged along the workpiece traveling direction. The overall cleaning mechanism 5 is located on one side of the spaced feeding mechanism 4. The overall cleaning mechanism 5 includes a longitudinal slide bar assembly 51. The longitudinal slide bar assembly 51 generally includes a longitudinal slide rail and a guide block sleeved thereon, and is connected to a moving frame 52 to ensure the smoothness of its longitudinal movement adjustment. A moving frame 52 is provided on the longitudinal slide bar assembly 51. Of course, a driving cylinder is also provided outside the longitudinal slide bar assembly 51 to provide driving power for the moving frame 52 to drive the cleaning brush 54 to reliably move towards the workpiece and ensure the smooth progress of the cleaning work. On one side of the moving frame 52, a first motor 53 is provided. The driving end of the first motor 53 is provided with a cleaning brush 54. A limiting cover 55 is provided outside the cleaning brush 54. The cross-section of the provided limiting cover 55 is designed in a shape like the Chinese character "7". The protruding part can be used to承接毛屑 (collect debris), and at its position close to the cleaning brush 54, it is designed to be constricted from the protruding part outwards. The purpose of this design is to collect and guide the debris cleaned by the auxiliary mechanism 9, providing convenience for subsequent centralized collection. Of course, an air suction pipe 1515 can also be provided below the outside of the limiting cover 55. As the cleaning brush 54 rotates, it can realize the real-time suction of the cleaned debris, improving the use functionality of the device. Specifically described as: For the provided limiting cover 55, it is connected to the moving frame 52. Of course, a through hole is opened at its geometric center to facilitate the rotation of the driving end of the first motor 53. That is to say, when the first motor 53 operates, it can drive the cleaning brush 54 to rotate and fit on both sides of the workpiece to complete the cleaning work. Further, the guiding mechanism 6 includes a support frame 61. Above the support frame 61, a guiding plate 62 designed in a shape like the Chinese character "J" is provided. A receiving plate 63 is provided between the guiding plate 62 and the support frame 61 and is connected to the spaced feeding mechanism 4. The above-mentioned guiding plate 62 and receiving plate 63 are both inclined from right to left, so that the workpiece can slide down by relying on its own gravity; It should be noted that there is an unclear expression "承接毛屑" in the original text. I have translated it as "collect debris" for the time being. If there is a more accurate expression, it can be adjusted accordingly.The workbench 3 located below the overall cleaning mechanism 5 is provided with an auxiliary mechanism 9 for limiting the forward direction of the workpiece and integrating the overall cleaning mechanism 5 to clean the overall cleaning mechanism. The establishment of this equipment can realize one machine with multiple uses, greatly improve the functionality of the device and meet different usage requirements. One side of the interval feeding mechanism 4 is provided with a support mechanism 10 for limiting the position of the workpiece, which realizes the limitation of the position of the workpiece exported through the interval feeding mechanism 4, so that it can stably carry out the cleaning work. The rear side of the inner and outer cleaning mechanism 7 is provided with a lifting mechanism 11, which can control the driving mechanism 13 to adjust the position of the workpiece in the vertical direction according to different specifications and sizes, so as to ensure the effective implementation of the cleaning work; one side of the lifting mechanism 11 is provided with a positioning mechanism 12, which corresponds to the overall cleaning mechanism 5, and can position the position of the workpiece after being limited by the support mechanism 10, so as to wait for the overall cleaning mechanism 5 to carry out all-round cleaning work on its front and rear sides, thereby reducing the possibility of the workpiece being offset and improving the working process; the lifting mechanism 11 is provided with A driving mechanism 13 is provided to facilitate the rotation of the workpiece to achieve cleaning, which can drive the workpiece to rotate and ensure the comprehensiveness of the internal and external cleaning work. The internal and external cleaning mechanism 7 includes a longitudinal moving component 14, which can drive the self-adaptive cleaning component 15 to move and adjust in the horizontal direction to ensure that the self-adaptive cleaning component 15 can enter the inside of the workpiece. The moving end of the longitudinal moving component 14 is provided with a self-adaptive cleaning component 15, which can adapt to workpieces of different specifications and sizes, improve the working process, and improve the functionality of the device. A bearing mechanism 16 is provided on the workbench 3 below the self-adaptive cleaning component 15, which is used to receive the workpiece transported by the guiding mechanism 6, and the adapter plate 164 has a limiting effect on its position to prevent it from tilting in the longitudinal direction and affecting the subsequent cleaning work. An ejection mechanism 17 for exporting the workpiece is provided on the inner side of the bearing mechanism 16, which can lift the workpiece upward and make it have a tendency to move to the left, especially to make it fall into the export mechanism 8, which provides convenient conditions for the export of the workpiece and meets the use requirements;
[0036] In the above process: by utilizing the established interval feeding mechanism 4, the workpieces can be fed one by one, ensuring the continuity of the workpiece cleaning work and avoiding accumulation; by utilizing the established overall cleaning mechanism 5, both sides of the workpiece can be cleaned; by utilizing the established inner and outer cleaning mechanism 7, the inner and outer sides of the workpiece can be cleaned; the cooperation between the above two mechanisms can realize all-round cleaning of the workpiece, ensure the cleaning effect, and improve the work progress; by utilizing the established self-adaptive cleaning component 15, it can adapt to workpieces of different specifications and sizes, improve the work progress, and improve the functionality of the device; the device has a reasonable design, a simple structure, and is easy to process, and can improve the degree of automation of the device, realize all-round cleaning of the workpiece, ensure the cleaning effect, improve the work progress, reduce labor intensity, and effectively meet the use requirements.
[0037] In order to realize the one-by-one loading of the workpieces to be cleaned and ensure the orderly development of the cleaning work, the interval loading mechanism 4 includes a first inclined frame 41, a first conveying plate 42 is arranged above the first inclined frame 41, a vertical frame 43 is arranged on the outer side of the first inclined frame 41, a horizontal frame 44 is arranged above the vertical frame 43, an extension plate 45 is arranged on the horizontal frame 44, an interval driving cylinder 46 is arranged on the extension plate 45, a spacing rod 47 is arranged at the output end of the interval driving cylinder 46, and a position detection sensor 48 is arranged on one side of the interval driving cylinder 46. The specific description is: for the number of interval driving cylinders 46 established, there are at least two groups, and for the position detection sensor 48 established, its function is to detect the position of the workpiece when it moves along the first conveying plate 42. The position is detected, and a signal is transmitted to the external control component, and the feedback is fed back to the interval driving cylinder 46 to realize operation, that is to say: multiple workpieces to be processed are placed on the first conveying plate 42 as needed, and the interval driving cylinder 46 on the right side is operated first, so that a workpiece moves to the left. After the workpiece moves over, the interval driving cylinder 46 in front is operated again to block the workpiece behind, and then the interval driving cylinder 46 on the left side is operated to move the workpiece through the first conveying plate 42 to the overall cleaning mechanism 5. When the workpiece moves over, the interval driving cylinder 46 is reset and waits for the operation of the interval driving cylinder 46 on the right side to realize the loading of the workpieces one by one. This loading method is simple and convenient, and the cleaning work of the workpiece can also be carried out in sequence, with strong functionality.
[0038] In order to make the conveying process of the workpiece to be cleaned smoother, especially to prevent it from being offset, the auxiliary mechanism 9 includes a vertical driving cylinder 91, whose operation can drive the auxiliary mechanism 9 to adjust its vertical position, and the output end of the vertical driving cylinder 91 is provided with a carrier 92 designed in a concave shape, and the inner end of the carrier 92 is provided with a first gear 93 and a second gear 94 at the front and rear, a first rotating frame 95 is provided between the two first gears 93, and a second rotating frame 96 is provided between the two second gears 94. A driving plate 961 is provided on the outer side of the second rotating frame 96 on the side where the second rotating frame 96 is connected to the second gear 94, and a rotating driving cylinder 97 is provided on the rear side of the second rotating frame 96, and its output end is connected to the driving plate 961. A clamping plate 98 with a semicircular groove is provided on the upper outer side of the first rotating frame 95 and the second rotating frame 96, and a toggle plate 99 is provided on the inner lower side of the first rotating frame 95 and the second rotating frame 96. The toggle plate 99 includes a support portion designed in a J shape and a toggle portion designed in a Z shape, and corresponds to the cleaning brush 54. The specific description is as follows: when it is necessary to limit the conveying process of the workpiece, the rotation drive cylinder 97 is controlled to contract, so that the second rotating frame 96 rotates from a horizontal to a vertical state, and drives the second gear 94 to rotate, which meshes with the first gear 93. In this way, the first rotating frame 95 and the second rotating frame 96 are both rotated from a horizontal direction to a vertical state until the clamping plate 98 is in a vertical state. At the same time, the vertical drive cylinder 91 is controlled to rise Under the premise of not affecting the position of the receiving plate 63, it is necessary to ensure that the clamping plate 98 can limit the workpiece being conveyed, especially to prevent it from tipping forward and backward, and ensure that it always remains in a vertical state. After the workpiece is positioned by the positioning mechanism 12, the vertical driving cylinder 91 is controlled to operate and drive the clamping plate 98 away from the overall cleaning mechanism 5. In this state, the vertical state of the clamping plate 98 can always be maintained. When it is necessary to clean the cleaning brush 54, the vertical driving cylinder 91 is controlled to extend to reach the highest extension position, and then the rotation driving cylinder 97 is controlled to extend, so that the first rotating frame 95 and the second rotating frame 96 are transformed from a vertical position to a horizontal position, that is, the toggle plate 99 can rotate into the limiting cover 55, and the clamping plate The semicircular groove 98 can be smoothly rotated out from the outside of the limiting cover 55. At this time, the position of the overall cleaning mechanism 5 is adjusted to ensure that the toggle plate 99 can extend to the inside. Of course, the toggle plate 99 can be set up as a strip. In this way, the overall cleaning mechanism 5 is controlled to rotate slowly, so that the cleaning brush 54 can be used to move the hair debris remaining on the cleaning brush 54 under the action of the toggle plate 99, and enter the rear side of the limiting cover 55 to wait for subsequent centralized processing. The operation is simple and convenient, and the device has strong functionality. Moreover, it can relatively guarantee the cleanliness of the cleaning brush 54 and ensure the cleaning effect of the workpiece. When the workpiece needs to be limited again, repeat the first part of the description. The auxiliary mechanism 9 established can achieve multi-purpose use of one machine and is highly practical.
[0039] In order to limit the position of the workpiece guided out through the interval feeding mechanism 4 so that it can carry out cleaning work stably, the abutment mechanism 10 includes an abutment driving cylinder 101 connected to the cross frame 44, and an abutment rod 102 is provided at the output end of the abutment driving cylinder 101. For the established abutment mechanism 10, the extension of the abutment driving cylinder 101 drives the abutment rod 102 to be on the path of the workpiece from the guide mechanism 6 to the inner and outer cleaning mechanisms 7. When a workpiece is conveyed, the abutment mechanism 10 blocks its path of travel so that it is in contact with the workpiece. At the corresponding position of the overall cleaning mechanism 5, at the same time, the positioning mechanism 12 is connected to the positioning drive cylinder 121 above the lifting mechanism 11, and the output end of the positioning drive cylinder 121 is provided with a positioning block 122. The positioning mechanism 12 runs together with the workpiece in the process of sliding downward, until the workpiece is supported by the supporting mechanism 10, and the positioning block 122 also supports the top of the workpiece to complete the positioning of the workpiece, waiting for the overall cleaning mechanism 5 to carry out all-round cleaning work on its front and back sides, reducing the possibility of workpiece deviation and improving the work progress.
[0040] In order to realize the driven rotation of the workpiece to be cleaned so that the outer periphery can complete the corresponding cleaning work, the lifting mechanism 11 includes four vertical slide bars 111 designed in a rectangular arrangement, and a connecting plate 112 is arranged above the vertical slide bar 111. A lifting drive cylinder 113 is arranged on the connecting plate 112. The lifting drive cylinder 113 is controlled to extend and retract to drive the driving mechanism 13 to freely fall or rise in the vertical direction, which can be especially adapted to workpieces of different specifications and sizes, ensure the smooth rotation of the workpiece, and provide convenient conditions for the cleaning work; further, a slider 114 is sleeved on the vertical slide bar 111, which is slidably connected with the vertical slide bar 111 to ensure the smoothness of the lifting process; In order to ensure the smooth operation of the driving mechanism 13, the driving mechanism 13 includes a lifting plate 131 connected to the slider 114, and three rollers 132 arranged in a triangular shape are arranged on the front side of the lifting plate 131. A synchronous belt 133 is arranged on the outer side of the roller 132, wherein a motor is arranged on one side of the roller located at the top to provide driving power, and a telescopic component 134 for adjusting the position of the synchronous belt 133 is arranged on the lifting plate 131 located on the inner side of the roller 132. The telescopic component 134 includes a positioning plate 1341, and an adjusting rod 1342 is arranged on the positioning plate 1341. A telescopic driving cylinder 1343 is arranged above the adjusting rod 1342, and a telescopic wheel 133 is arranged below the adjusting rod 1342. 44. For the telescopic assembly 134 established, the telescopic drive cylinder 1343 is used to drive the telescopic wheel 1344 to move vertically and act on the synchronous belt 133, so that the synchronous belt 133 can fully fit the periphery of the workpiece to ensure the effective transmission of the driving power. A self-adaptive tensioning assembly 135 is provided on one side of the lifting plate 131. The self-adaptive tensioning assembly 135 includes a shell 1351. A tensioning rod 1352 with an I-shaped cross section is provided in the shell 1351. A tensioning wheel 1353 is provided on the outer side of the tensioning rod 1352. A telescopic spring 1354 is provided on the other side of the tensioning rod 1352. For the self-adaptive tensioning assembly 135 established, it is stationary. In the state, the tension rod 1352, under the action of the telescopic spring 1354, causes the tension wheel 1353 to press against the synchronous belt 133, so that the synchronous belt 133 can be partially tightened inwardly. In this process, the telescopic component 134 does not participate in the ejection of the synchronous belt 133. At this time, the synchronous belt 133 of the lower roller 132 is horizontal. When it is necessary to drive according to workpieces of different specifications and sizes, the telescopic component 134 can be controlled to operate so that the synchronous belt 133 fits the outer periphery of the workpiece. In this process, the tension rod 1352 in the self-adaptive tensioning component 135 will press the telescopic spring 1354 outwardly, and put the synchronous belt 133 at this location into use, ensuring the application of the synchronous belt 133 in different scenarios.In order to realize convenient cleaning of the periphery of the workpiece, a transverse driving cylinder 136 is arranged on the rear side of the lifting plate 131, and a moving rod 137 is arranged on the output end of the transverse driving cylinder 136. A supporting plate 138 with a blunt-angle design is arranged on the moving rod 137, and a cleaning strip 139 is arranged at the lower end of the supporting plate 138. Specifically, according to the workpieces of different specifications and sizes, the transverse driving cylinder 136 is controlled to drive the cleaning strip 139 to adjust the position in the horizontal direction, especially to ensure that the cleaning strip 139 can be against the periphery of the workpiece, so that the periphery of the workpiece can be cleaned as the workpiece rotates. Further description is: first, the lifting mechanism 11 is controlled to be in a suitable position in the vertical direction, and when the horizontal synchronous belt 133 below can be with When the workpieces are in contact, the driving mechanism 13 can be controlled to operate, and the contact between the synchronous belt 133 and the workpiece is used to drive the workpiece to rotate in a circumferential direction. Of course, the position of the cleaning strip 139 needs to be adjusted in advance before this. In this way, when the workpiece rotates, the cleaning strip 139 can clean the periphery of the workpiece. At the same time, the self-adaptive cleaning component 15 can also clean the inside of the workpiece. Combined with the overall cleaning mechanism 5, all-round cleaning of the workpiece is achieved, and the working process is improved. When the horizontal synchronous belt 133 below cannot contact the workpiece, the telescopic component 134 is controlled to operate, driving the synchronous belt 133 to stop running after contacting the periphery of the workpiece, and then repeating the above work, the drive of workpieces of different specifications and sizes can be achieved. The operation is simple and convenient, and the use functionality is strong. ;
[0041] In order to transport the self-adaptive cleaning component 15 to the carrying mechanism 16 and pass through the workpiece, the longitudinal moving component 14 includes a moving plate 141 which is sleeved under the vertical slide bar 111 and is designed in a cross shape. A lifting cylinder 142 is arranged below the moving plate 141, wherein the lifting cylinder 142 is located below the workbench 3 in the frame 1 and is controlled to control the horizontal position of the longitudinal moving component 14, especially to ensure that the self-adaptive cleaning component 15 can correspond to the geometric center position of the workpiece to be processed. The moving plate 141 is provided with a lifting cylinder 142 which is arranged in a cross shape. A slide bar 143 is arranged longitudinally, and a moving block 144 is provided on the slide bar 143. An L-shaped plate 145 is provided on the moving block 144 to provide an installation position for the self-adaptive cleaning component 15. A longitudinal driving cylinder 146 is provided on the upper side of the moving plate 141, and its output end is connected to the L-shaped plate 145. The specific description is: first, according to the geometric center of the workpiece of different specifications and sizes, the height thereof is adjusted by using the lifting cylinder 142, and then the longitudinal driving cylinder 146 is controlled to operate to move the self-adaptive cleaning component 15 to the inside of the workpiece, waiting for the subsequent cleaning work to be carried out.
[0042] In order to effectively adapt to workpieces of different specifications and sizes for cleaning the inside, the self-adaptive cleaning component 15 includes a mounting ring 151, a hollow rotating platform 152 is provided on one side of the mounting ring 151, and is connected to the L-shaped plate 145. The operation of the hollow rotating platform 152 can drive the self-adaptive cleaning component 15 to rotate to complete the cleaning of the inside of the workpiece, and a first triangular plate 153 is provided on the other side of the mounting ring 151, and a support rod 154 is provided on the first triangular plate 153. Two equidistantly arranged fixed plates 155 are provided on the support rod 154. A screw 156 is provided at the geometric center of the first triangular plate 153, and a first screw nut 157 and a second screw nut 157 are provided on the front and back of the screw 156 located on both sides of the middle fixed plate 155. The second triangular plate 159 and the third triangular plate 1510 are respectively arranged on one side of the screw nut 158, the first screw nut 157 and the second screw nut 158, the first triangular plate 153 is provided with a first rotating rod 1511 at the corner, the third triangular plate 1510 is provided with a connecting rod 1512 at the corner and connected to the inner geometric center of the first rotating rod 1511, and the second triangular plate 159 is provided with a second rotating rod 1513 designed in a Y shape at the corner, and its end is connected to the end of the first rotating rod 1511. For the establishment of the above-mentioned device components: when the established screw 156 is rotated, it will first make the third triangular plate 1510 and the second screw nut 158 move relative to the screw 156, and then move to the connecting rod 1512 at the corner. Under the action of 12, the first rotating rod 1511 is driven to rotate. At the same time, the second triangular plate 159 and the first screw nut 157 move together with the former, and the moving direction is the same, that is, the second rotating rod 1513 can be rotated. It is necessary to consider that the equipment can adapt to workpieces of different specifications and sizes, and it is also necessary to consider the cleaning components during cleaning, that is, the cleaning module 18 can always remain in a vertical state to ensure the cleaning effect. A shaft rod 1514 is provided at the connection between the first rotating rod 1511 and the second rotating rod 1513. The shaft rod 1514 is fixedly connected to the second rotating rod 1513 and is rotatably connected to the first rotating rod 1511. In other words: a bearing is provided at the connection between the shaft rod 1514 and the first rotating rod 1511 to ensure its The rotation is smooth, and the fixed connection between the shaft 1514 and the second rotating rod 1513 can facilitate the adjustment of the cleaning module 18 to always be in a vertical state. That is to say, when the screw 156 rotates, the third triangular plate 1510, the second screw nut 158 and the second triangular plate 159 run together with the first screw nut 157. The rotation of the former can make the cleaning module 18 be located on a circular path of different diameters centered on the screw 156, so that it can adapt to the inner side of workpieces of different specifications and sizes. The rotation of the latter is to adjust the position of the cleaning module 18 while making the second rotating rod 1513 rotate with the former, even if it is always kept in a vertical state, which provides convenience for the subsequent cleaning work.Furthermore, in order to improve the cleaning effect, an air suction pipe 1515 is provided between the two shafts 1514, which can be connected to an external air suction source component to provide an air suction source for the cleaning module 18 to clean impurities. A cleaning module 18 is provided on the upper outer side of the air suction pipe 1515, which can not only clean the inner periphery of the workpiece, but also absorb some of the hair scraps cleaned off to ensure the cleanliness of the processing area. A rotating disk 1516 is provided on one side of the L-shaped plate 145, and a second motor 1517 is provided on the rotating disk 1516, and its output end is connected to the screw 156 and passes through the geometric center of the hollow rotating platform 152. For the establishment of the above components: the second motor 1517 provides driving power for the screw 156 to adapt to workpieces of different specifications and sizes, and the second motor 1517 is set on the rotating disk 1516. In this way, when the hollow rotating platform 152 is running, not only can the second motor 1517 be stably placed, but also the cleaning work can be smoothly carried out. The further description is: when the self-adaptive cleaning component 15 is adjusted to a suitable position, the workpiece rotates, and the self-adaptive cleaning component 15 can remain stationary or rotate in the opposite direction of its rotation direction. During this process, the cleaning module 18 can clean the inner circumference of the workpiece to ensure the smooth progress of production and processing. ;
[0043] In order to ensure the cleaning effect, the cleaning module 18 includes a cover body 181 with a fan-shaped design, and a plurality of arc-shaped collector strips 182 are evenly distributed in the cover body 181, which can make the suction air source converge into the suction pipe 1515 to ensure the working process. A suction head 183 is arranged on the outer side of the cover body 181, and a brush strip 184 is arranged on the other side of the outer side of the cover body 181. A suction port 1811 with a wedge-shaped design is provided on one side of the cover body 181 below the brush strip 184. Specifically described as follows: the cleaning module 18 is stationary or rotated according to the state of the self-adaptive cleaning component 15, and the brush strip 184 can move relative to the workpiece to complete the cleaning of the inner hair debris, and the suction pipe 1515 and the suction port 1811 can absorb the hair debris cleaned by the brush strip 184 according to the rotation direction, and discharge it to the outside, thereby ensuring the cleanliness of the inside of the workpiece, simple and convenient operation, and strong functionality.
[0044] In order to ensure the stability of the position of the workpiece, the carrying mechanism 16 includes a T-shaped T-block 161, vertical plates 162 are arranged on both sides of the T-block 161, and a carrying wheel 163 is arranged on the rear vertical plate 162. An adapter plate 164 designed in an L shape is arranged on the upper rear side of the vertical plate 162. A C-shaped hole 1641 is opened in the adapter plate 164, and corresponds to the self-adaptive cleaning component 15. The specific description is as follows: the carrying wheel 163 is set up to receive the workpiece transported by the guide mechanism 6, and the adapter plate 164 limits its position to prevent it from tilting in the longitudinal direction and affecting the subsequent cleaning work. Of course, the established carrying wheel 163 has its own self-rotation performance. When the driving mechanism 13 is running, it can ensure that the workpiece rotates relative to the carrying wheel 163. During this process, the carrying wheel 163 will also rotate with it to ensure the smoothness of the rotation process and improve the work progress; the ejection mechanism 17 includes a through-T The block 161 is provided with a lifting rod 171, wherein a cylinder is provided under the workbench 3 corresponding to the lifting rod 171, and the extension or shortening of the cylinder is used to drive the lifting rod 171 to descend or rise, and a top block 172 is provided above the lifting rod 171 and is located between the left and right bearing wheels 163, and the upper end surface of the top block 172 is designed to be inclined from right to left, specifically described as: when the workpiece needs to be undertaken by the bearing mechanism 16, the cylinder is extended so that the lifting rod 171 is in a low position and ensures that the top block 172 is away from the workpiece, and when the workpiece needs to be exported, the cylinder is controlled to shorten so that the lifting rod 171 is vertically raised relative to the T-block 161, and at the same time drives the top block 172 to rise, at this time, with the help of the inclined design of the upper end surface of the top block 172, while the workpiece is lifted upward, it can also have a tendency to move to the left, especially to make it fall on the second conveying plate 82 of the export mechanism 8, which provides convenient conditions for the export of the workpiece and meets the use requirements.
[0045] In order to realize the convenient export of the cleaned workpiece, the export mechanism 8 includes a second inclined frame 81, on which a second conveying plate 82 with a "" shape is arranged, a wedge block 83 is arranged on the inner upper side of the second conveying plate 82, and a support plate 84 is arranged on the other side of the second conveying plate 82 corresponding to the wedge block 83. Specifically, the workpiece after cleaning is exported from the carrying mechanism 16 by the ejection mechanism 17, and under the action of the vertical plate 162 and the adapter plate 164, its vertical lifting direction is limited to prevent it from deflecting. When the workpiece is lifted up and located on the upper right side of the second conveying plate 82, it rolls under its own weight and is exported downward and outward along the inner side of the second conveying plate 82. When the workpiece passes through the wedge block 83, the workpiece is guided to the support plate 84 under its action until it is flat on the support plate 84, which is convenient for the subsequent removal of the workpiece and provides convenient conditions for the subsequent stacking of the workpiece. The export process is simple and convenient, and the use functionality is strong.
[0046] The above description is only a preferred embodiment of the present invention and does not limit the present invention in other forms. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes and apply it to other fields. However, any simple modification, equivalent change and modification made to the above embodiment based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still falls within the protection scope of the technical solution of the present invention.
Claims
1. A cleaning mechanism for bearing production and processing, comprising a cleaning mechanism body, the cleaning mechanism body comprising a frame, a protective cover is arranged on the outer side of the frame, and a workbench is arranged above the frame, characterized in that: Above the workbench, a spaced feeding mechanism, an overall cleaning mechanism, a guiding mechanism, an inner and outer side cleaning mechanism, and an exporting mechanism are sequentially arranged along the workpiece traveling direction. The overall cleaning mechanism is located on one side of the spaced feeding mechanism. The overall cleaning mechanism includes a longitudinal slide bar assembly. A moving frame is arranged on the longitudinal slide bar assembly. A first motor is arranged on one side of the moving frame. A cleaning brush is arranged at the driving end of the first motor. A limiting cover is arranged outside the cleaning brush. The guiding mechanism includes a supporting frame. A guiding plate designed in a shape of "J" is arranged above the supporting frame. A receiving plate is arranged between the guiding plate and the supporting frame and is connected to the spaced feeding mechanism. An auxiliary mechanism for limiting the advancing direction of the workpiece and cleaning the overall cleaning mechanism is arranged on the workbench below the overall cleaning mechanism. An abutting mechanism for limiting the position of the workpiece is arranged on one side of the spaced feeding mechanism. A lifting mechanism is arranged at the rear side of the inner and outer side cleaning mechanism. A positioning mechanism is arranged on one side of the lifting mechanism and corresponds to the overall cleaning mechanism. A driving mechanism for facilitating the rotation of the workpiece to achieve cleaning is arranged on the lifting mechanism. The inner and outer side cleaning mechanism includes a longitudinal moving assembly. A self-adaptive cleaning assembly is arranged at the moving end of the longitudinal moving assembly. A bearing mechanism is arranged on the workbench below the self-adaptive cleaning assembly. An ejecting mechanism for exporting the workpiece is arranged inside the bearing mechanism.
2. A cleaning mechanism for bearing production and processing according to claim 1, characterized in that: The spaced feeding mechanism includes a first inclined frame. A first conveying plate is arranged above the first inclined frame. A vertical frame is arranged outside the first inclined frame. A cross frame is arranged above the vertical frame. An extending plate is arranged on the cross frame. A spaced driving cylinder is arranged on the extending plate. A spaced rod is arranged at the output end of the spaced driving cylinder. A position detection sensor is arranged on one side of the spaced driving cylinder.
3. A cleaning mechanism for bearing production and processing according to claim 2, characterized in that: The auxiliary mechanism includes a vertical driving cylinder. A carrier frame designed in a concave shape is arranged at the output end of the vertical driving cylinder. A first gear and a second gear are arranged at the front and rear of the inner end of the carrier frame. A first rotating frame is arranged between the two first gears. A second rotating frame is arranged between the two second gears. A driving plate is arranged outside the second rotating frame on the side where the second rotating frame is connected to the second gear. A rotating driving cylinder is arranged at the rear side of the second rotating frame, and its output end is connected to the driving plate. A clamping plate with a semi-circular groove is arranged outside the upper sides of the first rotating frame and the second rotating frame. A拨动 plate is arranged below the inner sides of the first rotating frame and the second rotating frame. The拨动 plate includes a supporting part designed in a "J" shape and a拨动 part designed in a "Z" shape and corresponds to the cleaning brush.
4. A cleaning mechanism for bearing production and processing according to claim 3, characterized in that: The abutting mechanism includes an abutting driving cylinder connected to the cross frame. An abutting rod is arranged at the output end of the abutting driving cylinder. The positioning mechanism is a positioning driving cylinder connected to the upper part of the lifting mechanism. A positioning block is arranged at the output end of the positioning driving cylinder.
5. A cleaning mechanism for bearing production and processing according to claim 4, characterized in that: The lifting mechanism includes four vertical slide bars arranged in a rectangular shape, a connecting plate is arranged above the vertical slide bars, a lifting drive cylinder is arranged on the connecting plate, a slider is sleeved on the vertical slide bar, the driving mechanism includes a lifting plate connected to the slider, three rollers arranged in a triangular shape are arranged on the front side of the lifting plate, a synchronous belt is arranged on the outside of the roller, a telescopic component for adjusting the position of the synchronous belt is arranged on the lifting plate located on the inner side of the roller, the telescopic component includes a positioning plate, an adjusting rod is arranged on the positioning plate, and the adjusting rod A telescopic driving cylinder is arranged above the said lifting plate, a telescopic wheel is arranged below the said adjusting rod, a self-adaptive tensioning assembly is arranged on one side of the said lifting plate, the said self-adaptive tensioning assembly comprises a shell, a tensioning rod with an I-shaped cross section is arranged in the said shell, a tensioning wheel is arranged on the outer side of the said tensioning rod, a telescopic spring is arranged on the other side of the said tensioning rod, a transverse driving cylinder is arranged on the rear side of the said lifting plate, a moving rod is arranged at the output end of the said transverse driving cylinder, a support plate with an obtuse angle design is arranged on the said moving rod, and a cleaning strip is arranged at the lower end of the said support plate.
6. A cleaning mechanism for bearing production and processing according to claim 5, characterized in that: The longitudinal moving component includes a moving plate that is mounted under the vertical sliding rod and is designed in a cross shape. A lifting cylinder is arranged below the moving plate. A longitudinally arranged sliding bar is arranged on the moving plate. A moving block is arranged on the sliding bar. An L-shaped plate that provides an installation position for the self-adaptive cleaning component is arranged on the moving block. A longitudinal driving cylinder is arranged on one side above the moving plate, and its output end is connected to the L-shaped plate.
7. A cleaning mechanism for bearing production and processing according to claim 6, characterized in that: The self-adaptive cleaning assembly includes a mounting ring, a hollow rotating platform is provided on one side of the mounting ring and is connected to the L-shaped plate, a first triangular plate is provided on the other side of the mounting ring, a support rod is provided on the first triangular plate, two equidistantly arranged fixing plates are provided on the support rod, a screw is provided at the geometric center of the first triangular plate, a first screw nut and a second screw nut are provided on the screw on both sides of the fixing plate in the middle, a second triangular plate and a third triangular plate are provided on one side of the first screw nut and the second screw nut respectively, a first rotating rod is provided at the corner of the first triangular plate, and the third triangular plate A connecting rod is provided at the corner and is connected to the inner geometric center of the first rotating rod. A second rotating rod designed in a Y shape is provided at the corner of the second triangular plate, and its end is connected to the end of the first rotating rod. An axle rod is provided at the connection between the first rotating rod and the second rotating rod, the axle rod is fixedly connected to the second rotating rod and is rotatably connected to the first rotating rod. An air suction pipe is provided between the two axles, and a cleaning module is provided on the upper outer side of the air suction pipe. A rotating disk is provided on one side of the L-shaped plate, and a second motor is provided on the rotating disk, and an output end of the second motor is connected to the screw and passes through the geometric center of the hollow rotating platform.
8. A cleaning mechanism for bearing production and processing according to claim 7, characterized in that: The cleaning module includes a cover body with a fan-shaped design, a plurality of collector strips with an arc shape are evenly distributed inside the cover body, an air suction head is provided on one side of the outside of the cover body, a brush strip is provided on the other side of the outside of the cover body, and an air suction port with a wedge shape is opened on one side of the cover body below the brush strip.
9. A cleaning mechanism for bearing production and processing according to claim 8, characterized in that: The bearing mechanism includes a T-shaped block, vertical plates are provided on both sides of the T-shaped block, and bearing wheels are provided on the vertical plates at the rear side. An adapter plate designed in an L-shape is provided on the upper rear side of the vertical plate, and a C-shaped hole is provided in the adapter plate, which corresponds to the self-adaptive cleaning component. The ejection mechanism includes a lifting rod that passes through the T-shaped block, and an ejection block is provided above the lifting rod and is located between the left and right bearing wheels. The upper end surface of the ejection block is designed to be inclined from right to left.
10. A cleaning mechanism for bearing production and processing according to claim 9, characterized in that: The export mechanism comprises a second inclined frame, on which a second conveying plate in the shape of a Chinese character "X" is arranged, a wedge block is arranged on the upper inner side of the second conveying plate, and a support plate is arranged on the other side of the second conveying plate corresponding to the wedge block.
Citation Information
Patent Citations
Ball double-cleaning type bearing detection processing device
CN112657892A
Cleaning equipment for bearing machining and cleaning method thereof
CN119368462A
Automatic bearing production line
CN210769879U
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Equipment for cleaning external surface of cables
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