A rapid conveying device for hub bearings
By designing the positioning conductive structure and buffer control structure in the hub bearing conveying device, the problem of positioning conductive and buffer height adjustment in the prior art is solved, and efficient bearing conveying and quality improvement is achieved.
Patent Information
- Application Number
- CN202410678683.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2044-05-29
AI Technical Summary
The existing hub bearing conveyor cannot realize the positioning and conduction function and buffering height adjustment function, which affects its efficiency and production cost in cooperating operation.
A fast hub bearing conveying device including a positioning conductive structure and a buffer control structure is designed. The positioning conductive structure realizes the positioning and transmission of the bearing through the positioning mating parts and the transmission connecting members, and the buffer control structure realizes the buffering connection and height adjustment through the connecting shaft, protection plate, support plate and transverse transmission roller.
It realizes the positioning transmission and buffering adjustment of bearings, improves the conveying efficiency and quality, is suitable for coordinated operation, and reduces production costs.
Smart Images

Figure CN118458304B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of hub bearing conveying equipment, and particularly to a rapid conveying device for hub bearings. Background Art
[0002] The hub bearing conveying device can be used for the conveying work of hub bearings, facilitating efficient mechanized transmission work. The main functions of hub bearings are to bear the load and provide precise guidance for the rotation of the hub. It bears both axial load and radial load and is a very important component. Traditional automotive wheel bearings are composed of two sets of tapered roller bearings or ball bearings combined. The installation, greasing, sealing, and clearance adjustment of the bearings are all carried out on the automotive production line.
[0003] According to Chinese Patent Publication No. CN212557913U, the present utility model discloses a hub conveying device, including a supporting device, a conveying mechanism for conveying the hub arranged on the supporting device, and a guiding and positioning mechanism for guiding and positioning the hub arranged on the conveying mechanism. The guiding and positioning mechanism is connected to the conveying mechanism, and the conveying mechanism is connected to the supporting device. By setting the conveying mechanism and the guiding and positioning mechanism, the present utility model prevents the hub from rubbing against and jamming with the side wall during the transfer process, and when the hub moves to the end, the hub is located at the center position of the conveying mechanism, facilitating the manipulator to grasp it, improving the grasping efficiency and quality. However, this patent cannot achieve the positioning and conduction function.
[0004] According to Chinese Patent Publication No. CN213264233U, the present utility model discloses an automotive hub conveying device, including an overall frame and a speed regulating motor. A first rotating shaft is arranged on the overall frame. A first belt pulley is installed at the shaft end of the speed regulating motor. The first belt pulley is connected to a second belt pulley installed on the first rotating shaft through a belt. First driving sprockets and second driving sprockets are respectively arranged at both ends of the first rotating shaft. One end of the first driving sprocket is connected to one end of a first chain, and the corresponding other end of the first chain is connected to a first driven sprocket. One end of the second driving sprocket is connected to one end of a second chain, and the corresponding other end of the second chain is connected to a second driven sprocket. The first chain and the second chain are parallel. A third rotating shaft and a second rotating shaft with the axes located on the same straight line and both ends connected to the overall frame are respectively embedded in the first driven sprocket and the second driven sprocket. The structure of the present utility model is simple, which can improve the operation efficiency and reduce the production cost. However, this patent is not convenient for buffer type height adjustment function.
[0005] However, the existing hub bearing conveying device cannot achieve the positioning and conduction function during use, which is not conducive to cooperative operation. At the same time, the hub bearing conveying device also lacks the convenient buffer height adjustment function. Therefore, there is an urgent need for a device to solve the above problems. Summary of the Invention
[0006] The purpose of the present invention is to provide a rapid conveying device for hub bearings to solve the problems raised in the above background technology.
[0007] To achieve the above purpose, the present invention provides the following technical solution: A rapid conveying device for hub bearings includes a positioning and conduction structure and a buffer control structure. The positioning and conduction structure is fixedly connected to the upper end of the buffer control structure. The positioning and conduction structure includes a positioning cooperation component and a transmission connection component. The transmission connection component is arranged at the center position inside the positioning and conduction structure. The upper end of the transmission connection component is rotatably connected to the positioning cooperation component. The buffer control structure includes a connecting shaft rod, a protection plate, a support plate, and a transverse transmission roller. The support plate is fixedly connected to the upper end of the protection plate. The connecting shaft rod is arranged at the center position of the protection plate. The transverse transmission roller is installed at the bottom end of the support plate.
[0008] Preferably, the positioning cooperation component includes a connection cooperation mechanism, a side protection plate frame, a cooperative guide ring, a conduction steel belt, a positioning protection frame, and a support bottom plate frame. The support bottom plate frame is arranged at the bottom end inside the positioning cooperation component. The upper end of the support bottom plate frame is fixedly connected to the positioning protection frame. The center of the positioning protection frame is rotatably inserted with the cooperative guide ring. The upper end of the cooperative guide ring is rotatably connected to the conduction steel belt. The upper end of the conduction steel belt is fixedly connected to the side protection plate frame. The connection cooperation mechanism is fixedly connected to the center position of the side protection plate frame.
[0009] Preferably, the connection cooperation mechanism includes a driving gear disc, a limiting shaft frame, a connection cooperation tooth plate, a derivation connecting seat, a spring shaft frame, a positioning connection plate, a support connection plate, a telescopic rod, a stable platform plate, and a lifting motor. The upper end of the lifting motor is fixedly connected to the stable platform plate. The lifting motor penetrates through the stable platform plate and is telescopically connected to the telescopic rod. The top of the telescopic rod is fixedly connected to the support connection plate. The driving gear disc is rotatably connected to the center position of the support connection plate. The upper end of the driving gear disc is meshed with the connection cooperation tooth plate. The upper end of the connection cooperation tooth plate is limited by the limiting shaft frame. The side end of the connection cooperation tooth plate is fixedly connected to the positioning connection plate. The middle of the positioning connection plate is elastically connected to the spring shaft frame. The side end of the spring shaft frame is fixedly connected to the derivation connecting seat.
[0010] Preferably, there are two connecting and mating toothed plates, which are symmetrically arranged with respect to the driving toothed disc, and the symmetrically arranged connecting and mating toothed plates are both meshed and connected with the driving toothed disc.
[0011] Preferably, there are four connecting and mating mechanisms and side guard plate frames. The connecting and mating mechanisms and side guard plate frames are both connected to the upper end of the conduction steel belt, and the conduction steel belt is rotationally connected in cooperation with the cooperation guide ring.
[0012] Preferably, the transmission and connection component includes a positioning frame plate, a conduction wheel, a support top plate, a cooperation gear, a cooperation toothed belt and a mounting support seat. The positioning frame plate is arranged at the center position of the inner end of the transmission and connection component. The conduction wheel is rotationally connected at the center position of the positioning frame plate. The side end of the conduction wheel is fixedly connected with the cooperation gear. The upper end of the cooperation gear is meshed and connected with a cooperation toothed belt. The center positions of the conduction wheel and the cooperation gear are communicated with the mounting support seat. The top position of the mounting support seat is fixedly connected with a support top plate.
[0013] Preferably, the buffer control structure further includes a buffer pad, a cooperation partition plate and a support cone plate. The cooperation partition plate is connected to the upper end position of the connecting shaft rod. The upper end position of the cooperation partition plate is fixedly connected with a support cone plate. The lower end position of the cooperation partition plate is fixedly connected with a buffer pad. The transverse transmission roller is arranged at the lower end position of the buffer pad. The buffer pad is buffer-connected through the cooperation partition plate. The buffer pad is in contact and pressed with the connecting and mating mechanism and the side guard plate frame. The transverse transmission roller and the conduction wheel are arranged in a staggered structure, and the conduction wheel is located at the upper position of the transverse transmission roller.
[0014] Preferably, the conduction wheel is rotationally connected through the cooperation gear and the cooperation toothed belt, and a motor is arranged at the inner end of the mounting support seat.
[0015] Preferably, a blocking support plate is fixedly connected to the top position of the buffer control structure, and a blocking top plate is fixedly connected to the upper end position of the blocking support plate.
[0016] A usage method of a hub bearing rapid conveying device includes the following steps:
[0017] S. Combine the positioning conduction structure and the buffer control structure. The user places the bearing on the upper end of the conduction wheel, drives the motor inside the mounting support seat to work, drives the cooperation gear and the cooperation toothed belt to rotate, realizes the rotation work of the conduction wheel, and the side end of the cooperation gear is connected with the cooperation guide ring;
[0018] S can also drive the cooperative guide ring to rotate. Acting on the conduction steel belt, it can drive the conduction steel belt to rotate accordingly. The rotation of the conduction steel belt can drive the connection and cooperation mechanism, the side guard plate frame, and the cooperative guide ring to rotate together to achieve the purpose of transmission adjustment. The connection and cooperation mechanism starts the lifting motor, and the lifting motor drives the telescopic rod to expand and contract, so that the bottom position of the connection and cooperation mechanism contacts the bearing, driving the driving gear disk. The driving gear disk can drive the connection and cooperation tooth plate to displace, changing the positions of the derivation connecting seat, the spring shaft frame, and the positioning connecting plate, realizing the limit work of the bearing. While realizing the pressing, it cooperates with the conduction wheel to carry out the transmission work;
[0019] S then reaches the bottom position of the conduction wheel. At this time, through the buffering and support of the buffer pad, the bearing reaches the position of the horizontal transmission roller, driving the horizontal transmission roller to rotate, realizing the commutation transmission task of the bearing. Moreover, the rotation of the connection and cooperation mechanism and the side guard plate frame will also contact the buffer pad, and the buffer pad can cooperate through deformation to prevent the occurrence of movement obstruction.
[0020] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0021] By installing the positioning and conduction structure, the structural setting of the positioning and conduction structure facilitates the positioning and transmission work of the hub bearing, realizes the fitting transmission task, and helps with the pressing work. During transmission, it can press the bearing to achieve the combined flattening work. The combined connection of the positioning and conduction structure and the buffer regulation structure can realize the positioning and conduction function work, facilitating the cooperative operation work in a coordinated manner. At the same time, the cooperation between the positioning and conduction structure and the buffer regulation structure facilitates the buffer-type height adjustment function, and better carries out the cooperative production work.
[0022] By installing the buffer regulation structure, the structural setting of the buffer regulation structure facilitates the buffer connection work, improves the three-dimensional transmission ability. The buffer pad can be deformed by extrusion through contact, facilitating the load-bearing. At the same time, it can be cooperatively set with the positioning and conduction structure. Through deformation, it prevents the occurrence of movement obstruction to the positioning and conduction structure, and better realizes the cooperative connection work between the positioning and conduction structure and the buffer regulation structure.
[0023] By installing the barrier top plate and the barrier support plate, the barrier top plate and the barrier support plate are fixedly arranged to realize the support work at the top, achieve the protective support work at the top position, help protect the upper ends of the positioning and conduction structure and the buffer regulation structure, and improve the overall combined protection performance. Description of the Drawings
[0024] To more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0025] Figure 1 Structural schematic diagram of the main body of the present invention;
[0026] Figure 2 Side view of the main body of the present invention;
[0027] Figure 3 Structural schematic diagram of the positioning and conduction structure of the present invention;
[0028] Figure 4 Side view of the positioning and conduction structure of the present invention;
[0029] Figure 5 Structural schematic diagram of the positioning and mating component of the present invention;
[0030] Figure 6 Structural schematic diagram of the connection and mating mechanism of the present invention;
[0031] Figure 7 Structural schematic diagram of the transmission and connection component of the present invention;
[0032] Figure 8 Structural schematic diagram of the buffer and regulation structure of the present invention;
[0033] Figure 9 Side view of the buffer and regulation structure of the present invention;
[0034] Figure 10 Structural schematic diagram of the second embodiment of the main body of the present invention.
[0035] In the figure: 1 - positioning and conduction structure, 2 - buffer and regulation structure, 3 - positioning and mating component, 4 - transmission and connection component, 5 - connection and mating mechanism, 6 - side guard plate frame, 7 - cooperation guide ring, 8 - conduction steel belt, 9 - positioning protection frame, 10 - support bottom plate frame, 11 - drive gear disk, 12 - limit shaft frame, 13 - connection and mating tooth plate, 14 - derivation connecting seat, 15 - spring shaft frame, 16 - positioning connection plate, 17 - support connection plate, 18 - telescopic rod, 19 - stable platform plate, 20 - lifting motor, 21 - positioning frame plate, 22 - conduction wheel, 23 - support top plate, 24 - cooperation gear, 25 - cooperation tooth belt, 26 - installation support seat, 27 - connection shaft rod, 28 - protection plate, 29 - support plate, 30 - horizontal transmission roller, 31 - buffer pad, 32 - cooperation partition plate, 33 - support cone plate, 34 - barrier top plate, 35 - barrier support plate. Detailed implementation manners
[0036] To enable those skilled in the art to better understand the solution of this application, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of this application.
[0037] It should be noted that the terms "first", "second", etc. in the specification and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily need to be used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances for the embodiments of this application described here. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device including a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0038] The present invention will be further described below in conjunction with the accompanying drawings.
[0039] Embodiment 1
[0040] Please refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 8 A hub bearing rapid conveying device provided by the present invention includes a positioning and conduction structure 1 and a buffer regulation structure 2. The positioning and conduction structure 1 is fixedly connected to the upper end of the buffer regulation structure 2. The positioning and conduction structure 1 includes a positioning and mating component 3 and a transmission and connection component 4. The transmission and connection component 4 is arranged at the inner center position of the positioning and conduction structure 1. The upper end of the transmission and connection component 4 is rotatably connected to the positioning and mating component 3. The buffer regulation structure 2 includes a connecting shaft rod 27, a protection plate 28, a support plate 29 and a transverse transmission roller 30. The upper end of the support plate 29 is fixedly connected to the protection plate 28. The connecting shaft rod 27 is provided at the center position of the protection plate 28. The transverse transmission roller 30 is installed at the bottom end of the support plate 29. The combined connection of the connecting shaft rod 27, the protection plate 28, the support plate 29 and the transverse transmission roller 30 realizes the buffer transmission task.
[0041] Please refer to Figure 5, the positioning and fitting component 3 includes a connection and fitting mechanism 5, a side guard plate frame 6, a cooperative guide ring 7, a conduction steel belt 8, a positioning protection frame 9, and a support bottom plate frame 10. The support bottom plate frame 10 is provided at the bottom position of the inner end of the positioning and fitting component 3. The upper end of the support bottom plate frame 10 is fixedly connected to the positioning protection frame 9. The center of the positioning protection frame 9 is rotatably inserted with the cooperative guide ring 7. The upper end of the cooperative guide ring 7 is rotatably connected to the conduction steel belt 8. The upper end of the conduction steel belt 8 is fixedly connected to the side guard plate frame 6. The center position of the side guard plate frame 6 is fixedly connected to the connection and fitting mechanism 5. The combined setting of the connection and fitting mechanism 5, the side guard plate frame 6, the cooperative guide ring 7, the conduction steel belt 8, the positioning protection frame 9, and the support bottom plate frame 10 facilitates the positioning and transmission task of the bearing and realizes the cooperative conduction task.
[0042] Please refer to Figure 6 , the connection and fitting mechanism 5 includes a driving gear disc 11, a limiting shaft frame 12, a connection and fitting tooth plate 13, a derivation connecting seat 14, a spring shaft frame 15, a positioning connecting plate 16, a support connecting plate 17, a telescopic rod 18, a stabilizing table plate 19, and a lifting motor 20. The upper end of the lifting motor 20 is fixedly connected to the stabilizing table plate 19. The lifting motor 20 penetrates through the stabilizing table plate 19 and is telescopically connected to the telescopic rod 18. The top position of the telescopic rod 18 is fixedly connected to the support connecting plate 17. The center position of the support connecting plate 17 is rotatably connected to the driving gear disc 11. The upper end of the driving gear disc 11 is meshed with the connection and fitting tooth plate 13. The upper end of the connection and fitting tooth plate 13 is limited by the limiting shaft frame 12. The side end position of the connection and fitting tooth plate 13 is fixedly connected to the positioning connecting plate 16. The middle position of the positioning connecting plate 16 is elastically connected to the spring shaft frame 15. The side end of the spring shaft frame 15 is fixedly connected to the derivation connecting seat 14. The combined connection of the driving gear disc 11, the limiting shaft frame 12, the connection and fitting tooth plate 13, the derivation connecting seat 14, the spring shaft frame 15, the positioning connecting plate 16, the support connecting plate 17, the telescopic rod 18, the stabilizing table plate 19, and the lifting motor 20 realizes the specific bearing contact work and can achieve the purpose of pressing and fixing.
[0043] There are two connection and fitting tooth plates 13, which are symmetrically arranged with respect to the driving gear disc 11. The symmetrically arranged connection and fitting tooth plates 13 are both meshed with the driving gear disc 11. There are four connection and fitting mechanisms 5 and side guard plate frames 6. The connection and fitting mechanisms 5 and side guard plate frames 6 are both connected to the upper end of the conduction steel belt 8. The conduction steel belt 8 is rotatably connected in cooperation with the cooperative guide ring 7.
[0044] Please refer to Figure 7, the transmission and connection component 4 includes a positioning frame plate 21, a conduction wheel 22, a support top plate 23, a cooperative gear 24, a cooperative toothed belt 25 and a mounting support base 26. The positioning frame plate 21 is arranged at the center position of the inner end of the transmission and connection component 4. The conduction wheel 22 is rotatably connected to the center position of the positioning frame plate 21. The side end of the conduction wheel 22 is fixedly connected to the cooperative gear 24. The upper end of the cooperative gear 24 is meshed with the cooperative toothed belt 25. The center positions of the conduction wheel 22 and the cooperative gear 24 are communicated with the mounting support base 26. A support top plate 23 is fixedly connected to the top position of the mounting support base 26. The combined setting of the positioning frame plate 21, the conduction wheel 22, the support top plate 23, the cooperative gear 24, the cooperative toothed belt 25 and the mounting support base 26 facilitates the transmission connection task of the bearing.
[0045] Please refer to Figure 9 , the buffer control structure 2 further includes a buffer pad 31, a matching partition plate 32 and a support cone plate 33. The matching partition plate 32 is connected to the upper end position of the connecting shaft rod 27. A support cone plate 33 is fixedly connected to the upper end position of the matching partition plate 32. A buffer pad 31 is fixedly connected to the lower end position of the matching partition plate 32. The horizontal transmission roller 30 is arranged at the lower end position of the buffer pad 31. The buffer pad 31 is buffer-connected through the matching partition plate 32. The buffer pad 31 is in contact and pressed with the connection and cooperation mechanism 5 and the side protection plate frame 6. The horizontal transmission roller 30 and the conduction wheel 22 are arranged in a staggered structure, and the conduction wheel 22 is located at the upper position of the horizontal transmission roller 30. The combined setting of the buffer pad 31, the matching partition plate 32 and the support cone plate 33 can perform buffer adjustment work.
[0046] The conduction wheel 22 is rotatably connected through the cooperative gear 24 and the cooperative toothed belt 25. A motor is provided at the inner end of the mounting support base 26.
[0047] A usage method of a hub bearing rapid conveying device includes the following steps:
[0048] S1. Combine the positioning and conduction structure 1 and the buffer control structure 2. The user places the bearing on the upper end of the conduction wheel 22, drives the motor inside the mounting support base 26 to work, drives the cooperative gear 24 and the cooperative toothed belt 25 to rotate, realizes the rotation work of the conduction wheel 22, and the side end of the cooperative gear 24 is connected to the cooperative guide ring 7;
[0049] S2. At the same time, it can drive the cooperative guide ring 7 to rotate. Acting on the conduction steel belt 8, it can drive the conduction steel belt 8 to rotate accordingly. The rotation of the conduction steel belt 8 can drive the connection and cooperation mechanism 5, the side guard plate frame 6, and the cooperative guide ring 7 to rotate in cooperation to achieve the purpose of transmission adjustment. The connection and cooperation mechanism 5 starts the lifting motor 20. The lifting motor 20 drives the telescopic rod 18 to expand and contract, so that the bottom position of the connection and cooperation mechanism 5 contacts the bearing, drives the driving gear disk 11, and the driving gear disk 11 can drive the connection and cooperation tooth plate 13 to displace, changing the positions of the derivation connecting seat 14, the spring shaft frame 15, and the positioning connection plate 16, realizing the limiting work of the bearing. While realizing pressing, it cooperates with the conduction wheel 22 to carry out the transmission work;
[0050] S3. Then it reaches the bottom position of the conduction wheel 22. At this time, through the buffering support of the buffer pad 31, the bearing reaches the position of the horizontal transmission roller 30, driving the horizontal transmission roller 30 to rotate, realizing the commutation transmission task of the bearing. Moreover, the rotation of the connection and cooperation mechanism 5 and the side guard plate frame 6 will also contact the buffer pad 31, and the buffer pad 31 can cooperate through deformation to prevent the occurrence of movement hindrance phenomena.
[0051] During the implementation of this embodiment, the user can perform transmission connection tasks through the transmission connection component 4. The positioning and mating component 3 cooperates with the transmission connection component 4 to rotate, realizing the mating movement function, facilitating the positioning and transmission work of the bearing. The support bottom plate frame 10 realizes the bottom support work. The support bottom plate frame 10 is fixed to the positioning and protection frame 9 to support the cooperative guide ring 7. The cooperative guide ring 7 can drive the conduction steel belt 8 to rotate by rotation. The upper end of the conduction steel belt 8 is fixed to the side protection plate frame 6 to cooperate with the conduction steel belt 8 for rotation adjustment work. The cooperative guide ring 7 is fixed to the connection and cooperation mechanism 5 through the side protection plate frame 6, facilitating the positioning and installation work of the connection and cooperation mechanism 5. The structural setting of the connection and cooperation mechanism 5 can be in direct contact connection with the bearing to complete the mating connection task. The lifting motor 20 can control the telescopic rod 18 for telescopic connection. The telescopic rod 18 is fixed to the support connection plate 17 to adjust the position of the support connection plate 17. A driving gear disk 11 is rotatably connected to the center of the support connection plate 17 to realize the central rotation function of the driving gear disk 11. The rotation of the driving gear disk 11 cooperates with the connection and cooperation tooth plate 13, enabling the connection and cooperation tooth plate 13 to slide and adjust on the limit shaft frame 12. The side of the connection and cooperation tooth plate 13 is connected to the derivation connection seat 14 and the spring shaft frame 15 through the positioning connection plate 16. The derivation connection seat 14 realizes the specific structural work to complete the connection and fixation work with the bearing. The spring shaft frame 15 facilitates the buffer connection work. A motor is provided at the center of the installation support seat 26 to drive the cooperative gear 24 to rotate. The cooperative gear 24 is meshed and connected through the cooperative tooth belt 25 to achieve the purpose of cooperative rotation and drive the conduction wheel 22 for rotational cooperation. The positioning frame plate 21 facilitates the positioning and installation work of the conduction wheel 22. The support top plate 23 helps with the top protection work. The support plate 29 and the protection plate 28 perform the support work to complete the central positioning and installation of the connection shaft rod 27. The horizontal transmission roller 30 is supported and connected at the bottom of the buffer control structure 2 to realize the reversing transmission work and cooperate with the partition plate 32 to support the center of the partition plate 32. The buffer pad 31 can be flipped and deformed to complete the buffer connection task, facilitating the transfer work of the bearing.
[0052] Embodiment 2
[0053] Based on Embodiment 1, please refer to Figure 10 , a barrier support plate 35 is fixedly connected to the top position of the buffer control structure 2, and a barrier top plate 34 is fixedly connected to the upper end position of the barrier support plate 35.
[0054] When implementing this embodiment, the barrier top plate 34 and the barrier support plate 35 are combined and fixed to close the top position, complete the mating connection task, and assist with the top protection task.
[0055] Working principle: First, the positioning and conduction structure 1 and the buffer regulation structure 2 are combined. The positioning and conduction structure 1 is combined and set through the positioning and matching component 3 and the transmission and connection component 4. The transmission and connection component 4 can perform the transmission connection task. The positioning and matching component 3 can rotate in cooperation with the transmission and connection component 4 to achieve the cooperative movement function, facilitating the positioning and transmission work of the bearing. The positioning and matching component 3 is combined and set through the connection and cooperation mechanism 5, the side protection plate frame 6, the cooperative guide ring 7, the conduction steel belt 8, the positioning protection frame 9, and the support bottom plate frame 10. The support bottom plate frame 10 realizes the bottom support work. The support bottom plate frame 10 is fixed to the positioning protection frame 9 to support the cooperative guide ring 7. The cooperative guide ring 7 can drive the conduction steel belt 8 to rotate through rotation. The upper end of the conduction steel belt 8 is fixed to the side protection plate frame 6 to cooperate with the conduction steel belt 8 for rotation adjustment work. The cooperative guide ring 7 is fixed to the connection and cooperation mechanism 5 through the side protection plate frame 6, facilitating the positioning and installation work of the connection and cooperation mechanism 5. The structural setting of the connection and cooperation mechanism 5 can be in direct contact connection with the bearing to achieve the cooperative connection task. The connection and cooperation mechanism 5 is combined and set through the drive gear disc 11, the limit shaft frame 12, the connection and cooperation tooth plate 13, the derivation connecting seat 14, the spring shaft frame 15, the positioning connection plate 16, the support connection plate 17, the telescopic rod 18, the stable platform plate 19, and the lifting motor 20. The lifting motor 20 can control the telescopic connection of the telescopic rod 18. The telescopic rod 18 is fixed to the support connection plate 17 to adjust the position of the support connection plate 17. The drive gear disc 11 is rotatably connected to the center of the support connection plate 17 to achieve the central rotation function of the drive gear disc 11. The rotation of the drive gear disc 11 can cooperate with the connection and cooperation tooth plate 13 to enable the connection and cooperation tooth plate 13 to slide and adjust on the limit shaft frame 12. The side part of the connection and cooperation tooth plate 13 is connected to the derivation connecting seat 14 and the spring shaft frame 15 through the positioning connection plate 16. The derivation connecting seat 14 realizes the specific structural work to achieve the connection and fixation work with the bearing. The spring shaft frame 15 facilitates the buffer connection work. The transmission and connection component 4 is combined and set through the positioning frame plate 21, the conduction wheel 22, the support top plate 23, the cooperative gear 24, the cooperative tooth belt 25, and the installation support seat 26. A motor is provided at the center of the installation support seat 26 to drive the cooperative gear 24 to rotate. The cooperative gear 24 is meshed and connected through the cooperative tooth belt 25 to achieve the purpose of cooperative rotation, driving the conduction wheel 22 to perform rotational cooperation. The positioning frame plate 21 facilitates the positioning and installation work of the conduction wheel 22. The support top plate 23 helps with the top protection work. The buffer regulation structure 2 is combined and set through the connection shaft rod 27, the protection plate 28, the support plate 29, and the horizontal transmission roller 30. The support plate 29 and the protection plate 28 perform the support work to realize the central positioning and installation of the connection shaft rod 27. The horizontal transmission roller 30 is supported and connected at the bottom of the buffer regulation structure 2 to achieve the commutation transmission work. The buffer regulation structure 2 is also combined and set through the buffer pad 31, the cooperation partition plate 32, and the support cone plate 33.Cooperate with the partition plate 32 to achieve the central support work of the partition plate 32. The buffer pad 31 can be flipped and deformed to achieve the buffer connection task, facilitating the bearing transfer work. When the user needs to use it, combine the positioning conduction structure 1 and the buffer regulation structure 2. The user places the bearing on the upper end of the conduction wheel 22 and drives the motor inside the drive mounting support 26 to work, driving the cooperative gear 24 and the cooperative toothed belt 25 to rotate, achieving the rotation work of the conduction wheel 22. The side end of the cooperative gear 24 is connected to the cooperative guide ring 7 and can drive the cooperative guide ring 7 to rotate, acting on the conduction steel belt 8, driving the conduction steel belt 8 to rotate accordingly. The rotation of the conduction steel belt 8 drives the connection and cooperation mechanism 5, the side guard plate frame 6, and the cooperative guide ring 7 to rotate in cooperation to achieve the transmission adjustment purpose. The connection and cooperation mechanism 5 starts the lifting motor 20, and the lifting motor 20 drives the telescopic rod 18 to extend and retract, making the bottom position of the connection and cooperation mechanism 5 contact the bearing, driving the driving gear disk 11, and the driving gear disk 11 can drive the connection and cooperation toothed plate 13 to displace, changing the positions of the derivation connecting seat 14, the spring shaft frame 15, and the positioning connection plate 16, achieving the limit work of the bearing. While achieving pressing, it cooperates with the conduction wheel 22 for transmission work. Then it reaches the bottom position of the conduction wheel 22. At this time, through the buffer support of the buffer pad 31, the bearing reaches the position of the horizontal transmission roller 30, driving the horizontal transmission roller 30 to rotate, achieving the reverse transmission task of the bearing. Moreover, the rotation of the connection and cooperation mechanism 5 and the side guard plate frame 6 will also contact the buffer pad 31, and the buffer pad 31 can cooperate through deformation to prevent the occurrence of movement obstacles and complete the work.
[0056] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A wheel hub bearing rapid conveying device, comprising a positioning transmission structure (1) and a buffer regulating structure (2), wherein the positioning transmission structure (1) is fixedly connected to the upper end of the buffer regulating structure (2), characterized in that: The positioning conduction structure (1) comprises a positioning matching component (3) and a transmission connecting component (4), wherein the transmission connecting component (4) is arranged at the center position of the inner end of the positioning conduction structure (1), and the upper end of the transmission connecting component (4) is rotatably connected to the positioning matching component (3), and the buffer control structure (2) comprises a connecting shaft (27), a protective plate (28), a support plate (29) and a transverse transmission roller (30), wherein the upper end of the support plate (29) is fixedly connected to the protective plate (28), the center position of the protective plate (28) is provided with a connecting shaft (27), and the bottom end position of the support plate (29) is provided with a transverse transmission roller (30); The buffer control structure (2) further comprises a buffer pad (31), a matching partition plate (32) and a supporting cone plate (33); the matching partition plate (32) is connected to the upper end of the connecting shaft (27); the supporting cone plate (33) is fixedly connected to the upper end of the matching partition plate (32); the buffer pad (31) is fixedly connected to the lower end of the matching partition plate (32); the transverse transmission roller (30) is arranged at the lower end of the buffer pad (31); the buffer pad (31) is buffer-connected via the matching partition plate (32); the buffer pad (31) is contact-pressed with the connecting matching mechanism (5) and the side guard plate frame (6); the transverse transmission roller (30) and the transmission wheel (22) are arranged in a staggered structure, and the transmission wheel (22) is located at the upper part of the transverse transmission roller (30); The positioning matching component (3) comprises a connection matching mechanism (5), a side guard plate frame (6), a cooperative guide ring (7), a conductive steel belt (8), a positioning protection frame (9) and a supporting base frame (10); the supporting base frame (10) is arranged at the bottom position of the inner end of the positioning matching component (3); the upper end position of the supporting base frame (10) is fixedly connected to the positioning protection frame (9); the center of the positioning protection frame (9) is rotatably plugged with the cooperative guide ring (7); the upper end position of the cooperative guide ring (7) is rotatably connected to the conductive steel belt (8); the upper end position of the conductive steel belt (8) is fixedly connected to the side guard plate frame (6); and the center position of the side guard plate frame (6) is fixedly connected to the connection matching mechanism (5); The connecting and matching mechanism (5) comprises a driving toothed disc (11), a limiting shaft frame (12), a connecting and matching toothed plate (13), a derivation connecting seat (14), a spring shaft frame (15), a positioning connecting plate (16), a supporting connecting plate (17), a telescopic rod (18), a stabilizing plate (19) and a lifting motor (20), wherein the upper end of the lifting motor (20) is fixedly connected to the stabilizing plate (19), the lifting motor (20) passes through the stabilizing plate (19) and is telescopically connected to the telescopic rod (18), and the top of the telescopic rod (18) is fixedly connected to the A support connecting plate (17), wherein a driving toothed disc (11) is rotatably connected to the center of the support connecting plate (17), an upper end of the driving toothed disc (11) is meshingly connected to a connecting matching toothed plate (13), an upper end of the connecting matching toothed plate (13) is limitedly arranged with a limiting shaft frame (12), a positioning connecting plate (16) is fixedly connected to a side end of the connecting matching toothed plate (13), a spring shaft frame (15) is elastically connected to a middle portion of the positioning connecting plate (16), and a derivation connecting seat (14) is fixedly connected to a side end of the spring shaft frame (15); The two connecting and matching toothed plates (13) are provided and are symmetrically arranged with respect to the driving toothed disc (11), and the symmetrically arranged connecting and matching toothed plates (13) are both meshingly connected with the driving toothed disc (11); The connecting and matching mechanisms (5) and the side guard plate frames (6) are provided in four numbers, and the connecting and matching mechanisms (5) and the side guard plate frames (6) are all connected to the upper end of the conductive steel belt (8), and the conductive steel belt (8) is rotatably connected with the cooperative guide ring (7); The transmission link component (4) comprises a positioning frame plate (21), a transmission wheel (22), a support top plate (23), a cooperative gear (24), a cooperative toothed belt (25) and a mounting support seat (26); the positioning frame plate (21) is arranged at the center position of the inner end of the transmission link component (4); the transmission wheel (22) is rotatably connected to the center position of the positioning frame plate (21); the side end of the transmission wheel (22) is fixedly connected to the cooperative gear (24); the upper end of the cooperative gear (24) is meshedly connected to the cooperative toothed belt (25); the center positions of the transmission wheel (22) and the cooperative gear (24) are connected to the mounting support seat (26); and the top position of the mounting support seat (26) is fixedly connected to the support top plate (23); A method for using a wheel hub bearing rapid conveying device comprises the following steps: S1. The positioning transmission structure (1) and the buffer control structure (2) are combined. The user places the bearing on the upper end of the transmission wheel (22), drives the motor inside the mounting support seat (26) to work, drives the coordinated gear (24) and the coordinated toothed belt (25) to rotate, realizes the rotation of the transmission wheel (22), and connects the side end of the coordinated gear (24) to the coordinated guide ring (7); S2, at the same time, the coordinated guide ring (7) can be driven to rotate, acting on the conductive steel belt (8), and the conductive steel belt (8) can be driven to follow the rotation purpose. The rotation of the conductive steel belt (8) can drive the connection matching mechanism (5), the side guard plate frame (6), and the coordinated guide ring (7) to rotate in coordination, so as to achieve the purpose of transmission adjustment. The connection matching mechanism (5) starts the lifting motor (20), and the lifting motor (20) drives the telescopic rod (18) to extend and retract, so that the bottom position of the connection matching mechanism (5) contacts the bearing, drives the driving toothed disc (11), and the driving toothed disc (11) can drive the connection matching toothed plate (13) to move, change the position of the derivation seat (14), the spring shaft frame (15), and the positioning connection plate (16), realize the limit work of the bearing, and realize the transmission work in coordination with the conductive wheel (22) while pressing; S3, then reaches the bottom position of the transmission wheel (22), at this time, through the buffer support of the buffer pad (31), the bearing reaches the position of the transverse transmission roller (30), drives the transverse transmission roller (30) to rotate, and realizes the reversing transmission task of the bearing, and the rotation of the connecting matching mechanism (5) and the side guard plate frame (6) will also contact the buffer pad (31), and the buffer pad (31) can be matched by deformation to prevent the occurrence of movement obstruction.
2. A wheel hub bearing rapid conveying device according to claim 1, characterized in that: The transmission wheel (22) is rotationally connected via a cooperative gear (24) and a cooperative toothed belt (25), and a motor is provided at the inner end of the mounting support seat (26).
3. A wheel hub bearing rapid conveying device according to claim 2, characterized in that: A blocking support plate (35) is fixedly connected to the top position of the buffer control structure (2), and a blocking top plate (34) is fixedly connected to the upper end position of the blocking support plate (35).
Citation Information
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