Multi-performance bearing integrated detection device
By designing a multi-performance bearing integrated detection device and adopting a cross-shaped mounting sleeve and driving structure, the problem of narrow detection range in the prior art is solved, and simultaneous detection of the inner and outer rings of the bearing are realized, thereby improving the detection efficiency.
Patent Information
- Application Number
- CN202422792404.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-11-15
AI Technical Summary
The existing bearing detection device has a narrow detection range and cannot effectively detect the inner and outer rings of the bearings at the same time, which affects the detection efficiency.
A multi-performance bearing integrated detection device is designed, using cross-shaped first and second mounting sleeves, combining a drive structure, clamping wheel, detection wheel and telescopic electric cylinder to achieve simultaneous detection of the inner and outer rings of the bearing.
It realizes simultaneous detection of the flatness of the bearing inner ring and the defects of the outer ring, improves the detection efficiency and has multi-performance integrated detection effect.
Smart Images

Figure CN223243545U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bearing detection, in particular to a multi-performance integrated bearing detection device. Background Art
[0002] Bearings, as a crucial component supporting rotating mechanical bodies, are widely used in mechanical equipment. Bearing machines assemble and process bearings. If the ball bearings are not properly assembled during use, subsequent workstations will be unable to proceed, leading to frequent machine downtime. Therefore, proper ball bearing assembly is crucial during the operation of the bearing machine.
[0003] After searching, announcement number CN218155950U discloses a bearing detection device, including a work table, and a bearing sleeve is arranged on the surface of a fixed column. The utility model fixes the bearing through an inner ring fixing device, so that the translation drive device drives the rotating wheel to move, and the movement of the rotating wheel will contact the outer ring of the bearing. The rotation of the output end of the rotation drive device will drive the fixed column to rotate, and the rotation of the fixed column will drive the bearing to rotate. If the surface of the bearing is flat, the rotation of the bearing will drive the rotating wheel to rotate. If the bearing is uneven, the rotation of the bearing will not drive one of the rotating wheels to rotate. It is also possible to rotate the three rotating wheels. If the rotation of the rotating wheel drives the bearing to rotate, the bearing is flat. If the rotation of the rotating wheel cannot mobilize the bearing to rotate, the bearing is uneven, thereby realizing bearing detection.
[0004] However, the detection range of the bearing detection device of the utility model is relatively narrow. For example, it is not convenient to detect defects on the outer side of the bearing. Therefore, after the inner ring of the bearing is inspected, it is necessary to disassemble it to other detection equipment for appearance inspection, which seriously affects the detection efficiency of the bearing and cannot meet the detection requirements. Therefore, a multi-performance integrated bearing detection device is proposed to solve the above-mentioned problems. Utility Model Content
[0005] In view of the shortcomings of the existing technology, the utility model provides a multi-performance integrated bearing detection device with the advantages of strong practicality and good detection effect, which solves the problem of narrow detection range of bearing detection devices.
[0006] To achieve the above objectives, the present invention provides the following technical solutions: a multi-functional integrated bearing detection device, comprising a bearing disposed above a base plate and an L-shaped mounting bracket welded to one side of the base plate, wherein an integrated detection device for detecting the bearing is disposed between the base plate and the L-shaped mounting bracket;
[0007] The integrated detection device includes a first mounting sleeve and a second mounting sleeve arranged in a cross shape, a driving structure of the first mounting sleeve and the second mounting sleeve installed on the base plate and the L-shaped mounting frame for driving, a first connecting rod slidably arranged in the first mounting sleeve, a clamping wheel rotatably installed at the end of the first connecting rod, a dual-axis electric cylinder fixedly installed inside the first mounting sleeve, a second connecting rod slidably arranged inside the second mounting sleeve, a detection wheel rotatably installed at the end of the second connecting rod, a second telescopic electric cylinder fixedly arranged inside the second mounting sleeve, and a telescopic structure installed on the output end of the second telescopic electric cylinder and connected to the other end of the second connecting rod.
[0008] Furthermore, the driving structure includes a first driving motor and a second driving motor arranged upper and lower, and a first telescopic electric cylinder fixedly mounted on an L-shaped mounting frame, a motor frame for fixing the first driving motor being fixedly mounted on the output end of the first telescopic electric cylinder, an output shaft of the first driving motor being connected and fixed to the upper surface of the first mounting sleeve, and an output shaft of the second driving motor being connected and fixed to the lower surface of the second mounting sleeve, and the second driving motor being fixedly mounted on the upper surface of the base plate.
[0009] Furthermore, the number of the first connecting rod, clamping wheel, second connecting rod and detection wheel are two each, a first mounting seat is fixedly installed in the middle of the first mounting sleeve, and the dual-axis electric cylinder is fixedly installed in the first mounting sleeve through the first mounting seat.
[0010] Furthermore, the telescopic structure consists of a sleeve and an elastic member fixedly installed in the sleeve, the two second connecting rods both extend into the second mounting sleeve, and one of the second connecting rods extends into the sleeve and is connected and fixed to the other side of the elastic member.
[0011] Furthermore, a connecting plate connected to the output end of the second telescopic electric cylinder is welded to the side of the sleeve away from the second connecting rod, a second mounting seat is fixedly installed in the middle of the second mounting sleeve, and a guide rod penetrating the interior of the connecting plate is fixedly installed between the second mounting seat and the inner wall of the second mounting sleeve;
[0012] The second telescopic electric cylinder is fixedly mounted on one side of the second mounting seat close to the sleeve, and another second connecting rod is fixed to the other side of the second mounting seat.
[0013] Furthermore, a slider is installed on the outer wall of the second connecting rod connected to the sleeve, and a sliding groove adapted to the slider is opened inside the opposite side of the sleeve, and a scale is installed on the upper surface of the second connecting rod connected to the sleeve.
[0014] Furthermore, a high-speed camera is installed on one side of the L-shaped mounting frame close to the bearing, the two clamping wheels are against the outer wall of the bearing, and the two detection wheels are against the inner side of the bearing.
[0015] Compared with the existing technology, the present invention provides a multi-functional integrated bearing detection device with the following beneficial effects:
[0016] 1. This multi-performance integrated bearing detection device can simultaneously detect the flatness of the inner ring and the defects of the outer ring of the bearing, which can improve the detection efficiency of the bearing and realize the multi-performance integrated bearing detection effect of the detection equipment, thereby achieving the advantages of strong practicality and good detection effect, and solving the problem of the narrow detection range of the bearing detection device.
[0017] 2. This multi-performance integrated bearing detection device, through the first telescopic electric cylinder, the first drive motor, two clamping wheels, the dual-axis electric cylinder, the detection wheel, the second drive motor and the second telescopic electric cylinder, can not only fix the bearing, but also detect the bearing. When the second telescopic electric cylinder causes the two detection wheels to abut against the inner ring of the bearing, the bearing is fixed. Then, the second drive motor rotates the bearing, and the two clamping wheels roll on the outer ring of the bearing to detect the flatness of the outer ring of the bearing. At the same time, combined with a high-speed camera, the bearing detection effect can be further improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a three-dimensional diagram of the structure of the utility model;
[0019] Figure 2 This is a structural cross-sectional view of the first mounting sleeve of the utility model;
[0020] Figure 3 This is a structural cross-sectional view of the second mounting sleeve of the utility model;
[0021] Figure 4 For this utility model Figure 3 Schematic diagram of the enlarged structure of A shown.
[0022] In the figure: 1. Base plate; 2. L-shaped mounting frame; 3. Bearing; 4. First telescopic electric cylinder; 5. Motor frame; 6. First drive motor; 7. First mounting sleeve; 8. First connecting rod; 9. Clamping wheel; 10. First mounting seat; 11. Dual-axis electric cylinder; 12. Second drive motor; 13. Second mounting sleeve; 14. Second connecting rod; 15. Detection wheel; 16. Scale; 17. Second mounting seat; 18. Second telescopic electric cylinder; 19. Connecting plate; 20. Sleeve; 21. Elastic member; 22. Guide rod; 23. Slider; 24. Slide groove; 25. High-speed camera. DETAILED DESCRIPTION
[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0024] Example 1:
[0025] See also Figures 1 to 3 , a multi-performance integrated bearing detection device, including a bearing 3 arranged above a base plate 1 and an L-shaped mounting frame 2 welded to one side of the base plate 1, an integrated detection device for detecting the bearing 3 is arranged between the base plate 1 and the L-shaped mounting frame 2; the integrated detection device includes a first mounting sleeve 7 and a second mounting sleeve 13 arranged in a cross shape, a driving structure of the first mounting sleeve 7 and the second mounting sleeve 13 installed on the base plate 1 and the L-shaped mounting frame 2 for driving, a first connecting rod 8 slidingly arranged in the first mounting sleeve 7, a clamping wheel 9 rotatably mounted on the end of the first connecting rod 8, a dual-axis electric cylinder 11 fixedly mounted inside the first mounting sleeve 7, a second connecting rod 14 slidingly arranged inside the second mounting sleeve 13, a detection wheel 15 rotatably mounted on the end of the second connecting rod 14, a second telescopic electric cylinder 18 fixedly arranged inside the second mounting sleeve 13 and a telescopic structure installed on the output end of the second telescopic electric cylinder 18 and connected to the other end of the second connecting rod 14. A high-speed camera 25 is installed on one side of the L-shaped mounting frame 2 close to the bearing 3 . The two clamping wheels 9 abut against the outer wall of the bearing 3 , and the two detection wheels 15 abut against the inner side of the bearing 3 .
[0026] In this embodiment, the driving structure includes a first driving motor 6, a second driving motor 12, and a first telescopic electric cylinder 4 fixedly mounted on an L-shaped mounting frame 2. A motor frame 5 for fixing the first driving motor 6 is fixedly mounted on the output end of the first telescopic electric cylinder 4. The output shaft of the first driving motor 6 is connected and fixed to the upper surface of the first mounting sleeve 7, and the output shaft of the second driving motor 12 is connected and fixed to the lower surface of the second mounting sleeve 13. The second driving motor 12 is fixedly mounted on the upper surface of the base plate 1.
[0027] Specifically, there are two first connecting rods 8, clamping wheels 9, second connecting rods 14 and detection wheels 15. A first mounting seat 10 is fixedly installed in the middle of the first mounting sleeve 7, and the dual-axis electric cylinder 11 is fixedly installed in the first mounting sleeve 7 through the first mounting seat 10.
[0028] The telescopic structure consists of a sleeve 20 and an elastic member 21 fixedly mounted in the sleeve 20. Both second connecting rods 14 extend into the second mounting sleeve 13, and one of the second connecting rods 14 extends into the sleeve 20 and is fixedly connected to the other side of the elastic member 21. A scale 16 is mounted on the upper surface of the second connecting rod 14 connected to the sleeve 20. The two clamping wheels 9 are driven closer by the dual-axis electric cylinder 11 to fix the bearing 3. Then, the second telescopic electric cylinder 18 drives the other detection wheel 15 to move against the inner ring of the bearing 3. The first drive motor 6 is started to rotate to rotate the bearing 3. The flatness of the inner ring of the bearing 3 is inspected by the two detection wheels 15 and the scale 16. At the same time, the outer ring of the bearing 3 is inspected with the high-speed camera 25. This improves the inspection efficiency of the bearing 3 and achieves the multi-performance bearing integrated inspection effect of the inspection equipment.
[0029] Example 2:
[0030] Refer to Figure 4. Based on the first embodiment, a connecting plate 19, connected to the output end of the second telescopic cylinder 18, is welded to the side of the sleeve 20 away from the second connecting rod 14. A second mounting base 17 is fixedly mounted in the middle of the second mounting sleeve 13. A guide rod 22, extending through the interior of the connecting plate 19, is fixedly mounted between the second mounting base 17 and the inner wall of the second mounting sleeve 13 to ensure linear displacement of the second telescopic cylinder 18. Battery modules are installed in both the second mounting sleeve 13 and the first mounting sleeve 7. The first and second drive motors 6 and 12 rotate back and forth to prevent entanglement of the power cords.
[0031] The second telescopic cylinder 18 is fixedly mounted on the side of the second mounting base 17 near the sleeve 20, and the second connecting rod 14 is fixed to the other side of the second mounting base 17. A slider 23 is mounted on the outer wall of the second connecting rod 14 opposite the sleeve 20, and a slot 24 is provided inside the sleeve 20 opposite the slider 23.
[0032] By adopting the above technical solution, it is possible to guide one of the second connecting rods 14 so that it can move linearly, thereby improving the detection of the inner side of the bearing 3.
[0033] The working principle of the above embodiment is:
[0034] During use, the inner ring of the bearing 3 is offset against one of the detection wheels 15, and then the two clamping wheels 9 are driven closer by the dual-axis electric cylinder 11 to fix the bearing 3. Then, the other detection wheel 15 is driven to move and offset against the inner ring of the bearing 3 by the second telescopic electric cylinder 18. The first drive motor 6 is started to rotate to rotate the bearing 3. The flatness of the inner ring of the bearing 3 is detected by the two detection wheels 15 and the scale 16, and the outer ring of the bearing 3 is detected with the high-speed camera 25. This can improve the detection efficiency of the bearing 3 and achieve the multi-performance bearing integrated detection effect of the detection equipment.
[0035] The electrical components mentioned in this article are all electrically connected to the main controller and the power supply. The main controller can be a conventional known device that controls a computer, etc., and the existing public power connection technology is not described in detail in this article.
[0036] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.
[0037] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A multi-functional integrated bearing detection device, comprising a bearing (3) disposed above a base plate (1) and an L-shaped mounting frame (2) welded to one side of the base plate (1), characterized in that: An integrated detection device for detecting the bearing (3) is provided between the base plate (1) and the L-shaped mounting frame (2); The integrated detection device comprises a first mounting sleeve (7) and a second mounting sleeve (13) arranged in a cross shape, a driving structure for the first mounting sleeve (7) and the second mounting sleeve (13) mounted on a base plate (1) and an L-shaped mounting frame (2) for driving, a first connecting rod (8) slidably arranged in the first mounting sleeve (7), a clamping wheel (9) rotatably mounted on the end of the first connecting rod (8), a double-axis electric cylinder (11) fixedly mounted inside the first mounting sleeve (7), a second connecting rod (14) slidably arranged in the second mounting sleeve (13), a detection wheel (15) rotatably mounted on the end of the second connecting rod (14), a second telescopic electric cylinder (18) fixedly arranged in the second mounting sleeve (13), and a telescopic structure mounted on the output end of the second telescopic electric cylinder (18) and connected to the other end of the second connecting rod (14).
2. The multi-functional integrated bearing detection device according to claim 1, characterized in that: The driving structure comprises a first driving motor (6), a second driving motor (12) arranged above and below, and a first telescopic electric cylinder (4) fixedly mounted on an L-shaped mounting frame (2); a motor frame (5) for fixing the first driving motor (6) is fixedly mounted on the output end of the first telescopic electric cylinder (4); the output shaft of the first driving motor (6) is connected and fixed to the upper surface of the first mounting sleeve (7), and the output shaft of the second driving motor (12) is connected and fixed to the lower surface of the second mounting sleeve (13); and the second driving motor (12) is fixedly mounted on the upper surface of the base plate (1).
3. The multi-functional integrated bearing detection device according to claim 1, characterized in that: The number of the first connecting rod (8), the clamping wheel (9), the second connecting rod (14) and the detection wheel (15) is two each; a first mounting seat (10) is fixedly installed in the middle of the first mounting sleeve (7), and the dual-axis electric cylinder (11) is fixedly installed in the first mounting sleeve (7) through the first mounting seat (10).
4. The multi-functional integrated bearing detection device according to claim 3, characterized in that: The telescopic structure is composed of a sleeve (20) and an elastic member (21) fixedly installed in the sleeve (20); the two second connecting rods (14) both extend into the second mounting sleeve (13), and one of the second connecting rods (14) extends into the sleeve (20) and is connected and fixed to the other side of the elastic member (21).
5. The multi-functional integrated bearing detection device according to claim 4, characterized in that: A connecting plate (19) connected to the output end of the second telescopic electric cylinder (18) is welded to the side of the sleeve (20) away from the second connecting rod (14); a second mounting seat (17) is fixedly installed in the middle of the second mounting sleeve (13); and a guide rod (22) penetrating the interior of the connecting plate (19) is fixedly installed between the second mounting seat (17) and the inner wall of the second mounting sleeve (13); The second telescopic electric cylinder (18) is fixedly mounted on one side of the second mounting seat (17) close to the sleeve (20), and another second connecting rod (14) is fixed to the other side of the second mounting seat (17).
6. The multi-functional integrated bearing detection device according to claim 3, characterized in that: A slider (23) is installed on the outer wall of the second connecting rod (14) connected to the sleeve (20) on the opposite side, and a sliding groove (24) adapted to the slider (23) is opened inside the opposite side of the sleeve (20), and a scale (16) is installed on the upper surface of the second connecting rod (14) connected to the sleeve (20).
7. The multi-functional integrated bearing detection device according to claim 3, characterized in that: A high-speed camera (25) is installed on one side of the L-shaped mounting frame (2) close to the bearing (3), the two clamping wheels (9) are against the outer wall of the bearing (3), and the two detection wheels (15) are against the inner side of the bearing (3).
Citation Information
Patent Citations
Bearing detection device
CN218155950U