Bearing seat machining device
By designing a bearing seat processing device that automatically fixes and quantitatively discharges, the problem of time-consuming and labor-intensive fixing of bearing seats and cumbersome ball installation in the prior art is solved, and the processing efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202421824671.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The existing method of fixing bearing seats on the deep-sea cable tray is time-consuming and labor-intensive, and when processing the balls on the bearings, manual gripping cannot guarantee the quantity, resulting in cumbersome and inaccurateness.
A bearing seat processing device is designed, using a clamp and a connecting rod to automatically fix the bearing seat, and the ball is quantitatively discharged through the unloading belt and unloading block.
Automatic fixation of bearing seats is achieved, and processing efficiency is improved. Through quantitative cutting, the installation process of balls is simplified, avoiding inaccurate manual operation.
Smart Images

Figure CN222890915U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of processing devices, in particular to a bearing seat processing device. Background Art
[0002] The bearing seat is a large and extra-large bearing seat with special structure that can bear comprehensive loads. It has the characteristics of compact structure, flexible rotation, easy installation and maintenance, etc. Where there is a bearing, there must be a support point. The inner support point of the bearing is the shaft, and the outer support is the so-called bearing seat.
[0003] When the bearing seat on the deep-sea cable pay-off drum needs to be processed, a bearing seat processing device is needed to process the bearing seat on the deep-sea cable pay-off drum and the bearing on the bearing seat.
[0004] The existing bearing seat on the deep-sea cable pay-off drum has an irregular shape. Before processing it, the bearing seat on the deep-sea cable pay-off drum needs to be fixed on the processing device. The existing fixing method is to fix it with multiple fasteners. Fixing with fasteners is time-consuming and labor-intensive, which reduces work efficiency.
[0005] And when processing the bearing seat, the bearing on the bearing seat also needs to be processed. When processing the bearing, the bearing ball needs to be placed between the inner ring and the outer ring of the bearing. The existing method is that the staff manually grabs the balls and places them, but manual grabbing cannot guarantee the number of balls. Too many need to be taken out and too few need to be taken again, which is troublesome and cumbersome. Utility Model Content
[0006] The purpose of the utility model is to provide a bearing seat processing device to solve the problems raised in the above background technology.
[0007] In order to solve the above technical problems, the utility model provides the following technical solutions: a bearing seat processing device, comprising:
[0008] Base;
[0009] A clamping plate located on the top of the base, the clamping plate is used to automatically fix the bearing seat;
[0010] The top of the base is provided with a workbench, and the base is connected to the bottom of the workbench by rotating inside the base, and the top of the workbench is connected to the fixing plate by a fastener, and the rotating shaft inside the fixing plate is connected to one end of the two-way threaded column, and the two-way threaded column is threadedly connected to one end of the threaded block, and the fastener at the other end of the threaded block is connected to a connecting rod, and the connecting rod is connected to the supporting column through a rotating shaft, and the supporting column is connected to one end of the telescopic column by a thread, and the other end of the telescopic column is connected to the splint by a fastener. The bearing seat is provided on one side of the splint, and a sliding groove is provided on one side of the base, and a sliding block is provided inside the sliding groove and slidably connected to the sliding block, and one side of the sliding block is connected to the fixing column by a fastener, and the top of the fixing column moves the column in an embedded manner, and the moving column is slidably connected to the moving rod, and a blanking belt is provided at one end of the moving rod, and the blanking belt fastener is connected to the blanking block.
[0011] Preferably, the end of the bidirectional threaded column away from the fixed plate is connected to the output shaft of the second motor through a fastener, the second motor is connected to the fixed plate through a fastener, a processing device is provided on one side of the workbench, and the processing device fastener is connected to the base.
[0012] Preferably, the outer wall of the fixed column is connected to the first cylinder through a fastener, the output end of the first cylinder is connected to the moving column through a fastener, the top of the moving column is connected to the second cylinder through a fastener, and the output end of the second cylinder is connected to the moving rod through a fastener.
[0013] Preferably, the fastener on the outer wall of the support column is connected to the driven gear, the driven gear meshes with the driving gear, the fastener on one side of the driving gear is connected to the output shaft of the first motor, the fastener of the first motor is connected to the connecting rod, the fastener on the bottom of the splint is connected to one end of the sliding rod, and the other end of the sliding rod is connected to the connecting rod by penetrating.
[0014] Preferably, a fastener at one end of the moving rod is connected to the bottom of the bracket, the top of the bracket is connected to the two ends of the blanking belt through a rotating shaft, the outer wall fastener of the blanking belt is connected to the bottom of the blanking block, and a paddle piece is provided on the top of the blanking block, and the blanking blocks are distributed at equal intervals on the blanking belt.
[0015] Preferably, one side of the bracket is connected to the third motor through a fastener, the output shaft of the third motor is connected to the unloading belt through a fastener, a hopper is provided on the top of the unloading belt, and the hopper fastener is connected to the moving rod.
[0016] Preferably, one end of the bracket is connected to the material tray by a fastener, and one side of the material tray is connected to the laser sensor by a fastener.
[0017] Compared with the prior art, the beneficial effects achieved by the utility model are:
[0018] The first embodiment of the present invention can automatically fix the bearing seat by providing a clamping plate and a connecting rod. When the bearing seat needs to be processed, the bearing seat is moved to one side of the fixed plate on the workbench, and the second motor drives the bidirectional threaded column to rotate through the output shaft. The bidirectional threaded column drives the two threaded blocks to move relatively through the forward thread and the reverse thread. The movement of the threaded block drives the connecting rod to move, and the connecting rod drives the clamping plate to move to one side of the bearing seat through the support column and the telescopic column. The first motor drives the driving gear to rotate through the output shaft, and the driving gear drives the supporting column to rotate through the driven gear. The supporting column drives the telescopic column to move through the sliding rod through the thread, and the telescopic column drives the clamping plate to move to the bearing seat to clamp and position the bearing seat. By providing clamping plates at the upper and lower ends of each connecting rod, it is convenient to fix the four sides of the bearing seat at the same time, so as to achieve the effect of automatically fixing the bearing seat, without the need to use fasteners for manual fixation, which saves time and effort and effectively improves work efficiency.
[0019] Second, the utility model can quantitatively discharge the ball bearings by setting a feeding belt and a feeding block. When the bearing on the bearing seat needs to be processed, the ball bearings are placed inside the hopper. When the ball bearings need to be installed, the fixed column moves in the slide groove through the slider, and the fixed column drives the material tray to move to one side of the bearing through the moving column. The first cylinder drives the moving column to adjust the height, the second cylinder drives the moving rod to move back and forth, and the third motor drives the feeding belt to rotate through the output shaft. The rotation of the feeding belt drives the feeding block to move, and the movement of the feeding block drives the toggle piece to move to the material In the opening at the bottom of the hopper, the moving piece moves the balls inside the hopper, and the balls fall into the grooves of the unloading block. The unloading belt drives the balls to move to one end of the unloading belt through the unloading block, and the balls slide into the inside of the material tray through the unloading belt. The falling balls block the laser emitted by the laser sensor, and the laser sensor senses the falling balls. When the balls are unloaded to the appropriate number, the laser sensor turns off the third motor, thereby achieving quantitative unloading of the bearing balls on the bearing seat, preventing the need to manually grab the balls and put them back if there are too many, or to take them again if there are too few. This is simple and quick, which reflects the practicality of this device. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a three-dimensional diagram of the utility model;
[0021] Figure 2 This is a schematic diagram of the structure of the fixing plate and the bearing seat of the utility model;
[0022] Figure 3 This is a schematic diagram of the connecting rod and the splint structure of the utility model;
[0023] Figure 4 It is a schematic diagram of the structure of the moving rod and the moving column of the utility model;
[0024] Figure 5 It is a schematic diagram of the structure of the blanking belt and blanking block of the utility model.
[0025] Among them: 1. base; 2. processing device; 3. workbench; 4. fixed plate; 5. bearing seat; 6. hopper; 7. first cylinder; 8. second cylinder; 9. moving column; 10. slide; 11. two-way threaded column; 12. threaded block; 13. connecting rod; 14. clamping plate; 15. supporting column; 16. telescopic column; 17. sliding rod; 18. driving gear; 19. driven gear; 20. first motor; 21. second motor; 22. fixed column; 23. sliding block; 24. moving rod; 25. unloading belt; 26. tray; 27. laser sensor; 28. third motor; 29. unloading block; 30. toggle piece; 31. bracket. DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0027] See also Figure 1-5 , a bearing seat processing device, comprising:
[0028] Base 1;
[0029] A clamping plate 14 is located on the top of the base 1, and the clamping plate 14 is used to automatically fix the bearing seat 5;
[0030] A workbench 3 is provided on the top of the base 1, and the bottom of the workbench 3 is connected to the inside of the base 1 by rotation. The top of the workbench 3 is connected to the fixed plate 4 by fasteners. The internal shaft of the fixed plate 4 is connected to one end of the two-way threaded column 11, and the two-way threaded column 11 is threadedly connected to one end of the threaded block 12. The other end of the threaded block 12 is connected with a connecting rod 13 by a fastener. The connecting rod 13 is connected to the supporting column 15 through a rotating shaft. The supporting column 15 is connected to one end of a telescopic column 16 by a thread. The other end of the telescopic column 16 is connected to a clamping plate 14 by a fastener. A bearing seat 5 is provided on one side of the clamping plate 14. A slide groove 10 is provided on one side of the base 1. A slider 23 is provided inside the slide groove 10 and is slidably connected to the slider 23. One side of the slider 23 is connected to a fixed column 22 by a fastener. The top of the fixed column 22 is moved by an embedded movable column 9. The movable column 9 is slidably connected to the movable rod 24. A blanking belt 25 is provided at one end of the movable rod 24. The blanking belt 25 fasteners are connected to the blanking block 29. When the bearing seat 5 needs to be processed, the bearing seat 5 is moved to the workbench 3 On one side of the upper fixed plate 4, the second motor 21 is turned on, and the second motor 21 drives the bidirectional threaded column 11 to rotate through the output shaft, and the bidirectional threaded column 11 drives the two threaded blocks 12 to move relatively through the forward thread and the reverse thread, and the threaded block 12 moves to drive the connecting rod 13 to move, and the connecting rod 13 drives the clamping plate 14 to move to one side of the bearing seat 5 through the support column 15 and the telescopic column 16, and the first motor 20 is turned on, and the first motor 20 drives the driving gear 18 to rotate through the output shaft, and the driving gear 18 drives the support column 15 to rotate through the driven gear 19, and the support column 15 drives the telescopic column 16 to move through the slide rod 17 through the thread, and the telescopic column 16 drives the clamping plate 14 to move to the bearing seat 5 to clamp and position the bearing seat 5. By arranging the clamping plates 14 at the upper and lower ends of each connecting rod 13, it is convenient to fix the four sides of the bearing seat 5 at the same time, so as to achieve the effect of automatically fixing the bearing seat 5, without the need to use fasteners for manual fixation, which saves time and effort and effectively improves work efficiency.
[0031] Specifically, one end of the bidirectional threaded column 11 away from the fixed plate 4 is connected to the output shaft of the second motor 21 through a fastener, and the second motor 21 is connected to the fixed plate 4 through a fastener. A processing device 2 is provided on one side of the workbench 3, and the processing device 2 is connected to the base 1 through a fastener.
[0032] Through the above technical solution, the fixing plate 4 is used to support and fix the bearing seat 5, and the forward thread and the reverse thread are respectively arranged on the bidirectional thread column 11, and the forward thread and the reverse thread are respectively arranged on the thread block 12. When the bidirectional thread column 11 rotates, the two thread blocks 12 will be driven to move in relative or opposite directions.
[0033] Specifically, the outer wall of the fixed column 22 is connected to the first cylinder 7 through fasteners, the output end of the first cylinder 7 is connected to the moving column 9 through fasteners, the top of the moving column 9 is connected to the second cylinder 8 through fasteners, and the output end of the second cylinder 8 is connected to the moving rod 24 through fasteners.
[0034] Through the above technical solution, the first cylinder 7 and the second cylinder 8 are used to drive one end of the material tray 26 to move to the gap between the inner ring and the outer ring of the bearing to be processed to feed the balls, and the moving rod 24 can slide inside the moving column 9.
[0035] Specifically, the fasteners on the outer wall of the support column 15 are connected to the driven gear 19, the driven gear 19 engages with the driving gear 18, the fasteners on one side of the driving gear 18 are connected to the output shaft of the first motor 20, the fasteners of the first motor 20 are connected to the connecting rod 13, the fasteners on the bottom of the splint 14 are connected to one end of the sliding rod 17, and the other end of the sliding rod 17 is connected to the connecting rod 13 by a through-hole.
[0036] Through the above technical solution, the slide bar 17 is used to limit the clamping plate 14 to prevent the support column 15 from driving the telescopic column 16 to rotate together when rotating, making it difficult for the telescopic column 16 to move effectively.
[0037] Specifically, a fastener at one end of the moving rod 24 is connected to the bottom of the bracket 31, and the top of the bracket 31 is connected to the two ends of the blanking belt 25 through a rotating shaft. The outer wall fastener of the blanking belt 25 is connected to the bottom of the blanking block 29. A paddle plate 30 is provided on the top of the blanking block 29, and the blanking blocks 29 are distributed at equal intervals on the blanking belt 25.
[0038] Through the above technical solution, the moving rod 24 is used to drive the unloading belt 25 to move back and forth on the base 1, which is convenient for processing bearings at different positions on the bearing seat 5. The bearing seat 5 is provided with bearings. The unloading block 20 and the paddle plate 30 are both made of rubber material. The top of the unloading block 29 fits the bottom of the hopper, and the paddle plate 20 is used to paddle the ball inside the hopper to prevent it from being stuck inside the hopper 6.
[0039] Specifically, one side of the bracket 31 is connected to the third motor 28 through a fastener, and the output shaft of the third motor 28 is connected to the unloading belt 25 through a fastener. A hopper 6 is provided on the top of the unloading belt 25, and the hopper 6 is connected to the moving rod 24 through a fastener.
[0040] Through the above technical solution, the motor and the output shaft are integrated, the motor rotates through the output shaft, the motor is a servo motor, and a locking assembly is provided inside the motor to prevent the motor from still rotating after being turned off.
[0041] Specifically, one end of the bracket 31 is connected to the material tray 26 by a fastener, and one side of the material tray 26 is connected to the laser sensor 27 by a fastener.
[0042] Through the above technical solution, the laser sensor 27 is used to count the number of balls falling. After the balls fall to a suitable number, the laser sensor 27 can close the feeding belt 25. The model of the laser sensor 27 is FS00213.
[0043] When in use, first, when the bearing seat 5 needs to be processed, the bearing seat 5 is moved to one side of the fixed plate 4 on the workbench 3, and the second motor 21 is turned on. The second motor 21 drives the bidirectional threaded column 11 to rotate through the output shaft, and the bidirectional threaded column 11 drives the two threaded blocks 12 to move relatively through the forward thread and the reverse thread. The threaded block 12 moves and drives the connecting rod 13 to move. The connecting rod 13 drives the clamping plate 14 to move to one side of the bearing seat 5 through the support column 15 and the telescopic column 16. Turn on the first motor 20, the first motor 20 drives the driving gear 18 to rotate through the output shaft, and the driving gear 18 drives the support column 15 to rotate through the driven gear 19. The support column 15 drives the telescopic column 16 to move through the slide rod 17 through the thread, and the telescopic column 16 drives the clamping plate 14 to move to the bearing seat 5 to clamp and position the bearing seat 5. When the bearing on the bearing seat 5 needs to be processed, the ball is placed inside the hopper 6. When the ball of the bearing needs to be installed, the fixed column 22 is pushed, and the fixed column 22 is in the slide groove 10 through the slider 23. The fixed column 22 drives the material tray 26 to move to one side of the bearing through the moving column 9, and then the first cylinder 7 is turned on, and the first cylinder 7 drives the moving column 9 to adjust the height, and the second cylinder 8 is turned on, and the second cylinder 8 drives the moving rod 24 to move back and forth until one end of the material tray 26 is located inside the gap between the inner ring and the outer ring of the bearing, and the third motor 28 is turned on, and the third motor 28 drives the unloading belt 25 to rotate through the output shaft, and the rotation of the unloading belt 25 drives the unloading block 29 to move, and the movement of the unloading block 29 drives the dial The movable plate 30 moves to the opening at the bottom of the hopper 6, and the moving plate 30 moves the balls inside the hopper 6. The balls fall into the grooves of the unloading block 29. The unloading belt 25 drives the balls to move to one end of the unloading belt 25 through the unloading block 29. The balls slide through the unloading belt 25 to the inside of the tray 26. The falling balls block the laser emitted by the laser sensor 27. The laser sensor 27 senses the falling of the balls until the appropriate number of balls are unloaded. The laser sensor 27 turns off the third motor 28 to complete the work.
[0044] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0045] Finally, it should be noted that the above description is only a preferred embodiment of the utility model and is not intended to limit the utility model. Although the utility model is described in detail with reference to the above embodiments, those skilled in the art can still modify the technical solutions recorded in the above embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A bearing seat processing device, characterized in that: include: Base (1); A clamping plate (14) located on the top of the base (1), the clamping plate (14) is used to automatically fix the bearing seat (5); A workbench (3) is provided on the top of the base (1), the inside of the base (1) is connected to the bottom of the workbench (3) by rotation, the top of the workbench (3) is connected to a fixed plate (4) by a fastener, the internal shaft of the fixed plate (4) is connected to one end of a bidirectional threaded column (11), the bidirectional threaded column (11) is threadedly connected to one end of a threaded block (12), the other end of the threaded block (12) is fastened with a connecting rod (13), the connecting rod (13) is connected to a support column (15) by a rotating shaft, the inside of the support column (15) is threadedly connected to one end of a telescopic column (16), the telescopic column ( 16) The other end is connected to the splint (14) through a fastener, the splint (14) is provided with the bearing seat (5) on one side, the base (1) is provided with a slide groove (10) on one side, a slider (23) is provided inside the slide groove (10) and is slidably connected to the slider (23), one side of the slider (23) is connected to the fixed column (22) through a fastener, the top of the fixed column (22) is embedded with a movable column (9), the movable column (9) is slidably connected to a movable rod (24), one end of the movable rod (24) is provided with a material removal belt (25), and the material removal belt (25) is fastened to a material removal block (29).
2. A bearing seat processing device according to claim 1, characterized in that: One end of the bidirectional threaded column (11) away from the fixed plate (4) is connected to the output shaft of the second motor (21) via a fastener, and the second motor (21) is connected to the fixed plate (4) via a fastener. A processing device (2) is provided on one side of the workbench (3), and the processing device (2) is connected to the base (1) via a fastener.
3. A bearing seat processing device according to claim 1, characterized in that: The outer wall of the fixed column (22) is connected to the first cylinder (7) via a fastener, the output end of the first cylinder (7) is connected to the moving column (9) via a fastener, the top of the moving column (9) is connected to the second cylinder (8) via a fastener, and the output end of the second cylinder (8) is connected to the moving rod (24) via a fastener.
4. A bearing seat processing device according to claim 1, characterized in that: The outer wall fastener of the support column (15) is connected to the driven gear (19), the driven gear (19) meshes with the driving gear (18), the fastener on one side of the driving gear (18) is connected to the output shaft of the first motor (20), the fastener of the first motor (20) is connected to the connecting rod (13), the bottom fastener of the clamping plate (14) is connected to one end of the sliding rod (17), and the other end of the sliding rod (17) is connected to the connecting rod (13) in a through-hole manner.
5. The bearing seat processing device according to claim 1, characterized in that: One end of the moving rod (24) is connected to the bottom of the bracket (31) by a fastener, the top of the bracket (31) is connected to the two ends of the blanking belt (25) through a rotating shaft, the outer wall fastener of the blanking belt (25) is connected to the bottom of the blanking block (29), and the top of the blanking block (29) is provided with a toggle piece (30), and the blanking blocks (29) are distributed at equal intervals on the blanking belt (25).
6. A bearing seat processing device according to claim 5, characterized in that: One side of the bracket (31) is connected to the third motor (28) via a fastener, and the output shaft of the third motor (28) is connected to the unloading belt (25) via a fastener. A hopper (6) is provided on the top of the unloading belt (25), and the hopper (6) is connected to the moving rod (24) via a fastener.
7. The bearing seat processing device according to claim 5, characterized in that: One end of the bracket (31) is connected to the material tray (26) by a fastener, and one side of the material tray (26) is connected to the laser sensor (27) by a fastener.