Rolling body assembling device for automobile bearing machining
By designing a rolling element assembly device for automotive bearing processing that combines a motor-driven roller conveyor belt with an infrared detection module and a photoelectric counting module, the problem of accurately controlling the number of rolling elements during manual assembly was solved, thus achieving precise control of rolling element assembly and improving bearing quality.
Patent Information
- Application Number
- CN202512011561.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-29
- Publication Date
- 2026-02-03
AI Technical Summary
In the existing technology, the assembly of rolling elements in automotive bearings mainly relies on manual labor, which makes it difficult to accurately control the number of rolling elements and affects the quality of the bearing.
A rolling element assembly device for automotive bearing processing was designed. It utilizes a motor-driven roller conveyor belt and an infrared detection module in conjunction with a photoelectric counting module to achieve precise counting and assembly of rolling elements. The device uses limiting components to ensure accurate positioning of the outer and inner rings of the bearing and controls the number of rolling elements in real time during the assembly process.
It enables precise control of the number of rolling elements assembled, improves the assembly accuracy and quality of bearings, reduces reliance on manual intervention, and ensures bearing quality and production efficiency.
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Figure CN121452269A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of automobile bearing manufacturing, in particular to a rolling element assembling device for automobile bearing machining. BACKGROUND
[0002] Bearing is a key component in the automobile industry, and its quality directly affects the running performance and safety of the automobile. As one of the core components of the bearing, the rolling element is responsible for transmitting load between the inner and outer rings and reducing friction. The assembly quality of the rolling element has an important influence on the precision, service life and reliability of the bearing.
[0003] At present, when the rolling element of the automobile bearing is assembled, it is mainly relied on manual operation. In order to ensure the quality of the automobile bearing, the number of rolling elements is fixed. Too many or too few rolling elements will affect the quality of the automobile bearing. When the rolling element is assembled manually, the number of rolling elements cannot be accurately grasped, which may result in too many or too few rolling elements, thereby affecting the quality of the automobile bearing.
[0004] Therefore, a rolling element assembling device for automobile bearing machining is provided. SUMMARY
[0005] The application aims to provide a rolling element assembling device for automobile bearing machining.
[0006] To achieve the above-mentioned purpose, the application provides the following technical scheme: A rolling element assembling device for automobile bearing machining, comprising: a base; a first mounting plate and a second mounting plate are fixed on the top of the base, and a first roller and a second roller are movably mounted between the first mounting plate and the second mounting plate; a conveying belt is sleeved outside the first roller and the second roller; the first roller is driven by a first motor mounted on the outer wall of the first mounting plate; a limiting piece is arranged on the surface of the conveying belt; the limiting piece comprises four limiting blocks fixed on the surface of the conveying belt and a limiting strip located between the four limiting blocks; a bearing outer ring is placed between the four limiting blocks, a bearing inner ring is placed inside the bearing outer ring, and the bearing inner ring is arranged outside the limiting strip; a first mounting strip and a second mounting strip are fixed on the top of the base, a material barrel is fixed between the first mounting strip and the second mounting strip, and a material pipe is fixed at the bottom of the material barrel; a detection hole is formed in the outer wall of the material pipe; a photoelectric counting module is mounted on the outer wall of the material pipe, and the detection end of the photoelectric counting module is located inside the detection hole. The bucket is provided with a movable groove in the bottom; The first mounting strip is fixed with a supporting strip on the inner side, and a second motor is mounted on the bottom of the supporting strip, and the output end of the second motor penetrates through the supporting strip and is fixed with a movable baffle arranged in the movable groove; The baffle is provided with a leakage groove on the top; An infrared detection module is mounted on the inner side of the second mounting strip; A control module is mounted on the outer side of the second mounting plate.
[0007] Preferably, the control module is connected with the first motor and the second motor, and the infrared detection module and the photoelectric counting module are connected with the control module.
[0008] Preferably, a lubricating assembly is arranged on the top of the bucket, which comprises a horizontal strip fixed on the top of the bucket, and a lubricating pipe is mounted in the horizontal strip; A lubricating piece is arranged in the lubricating pipe; The lubricating piece comprises a lubricating sponge arranged in the lubricating pipe, and a clamping strip is fixed on the outer side of the lubricating sponge and clamped in the clamping groove in the inner wall of the lubricating pipe; An oil hole is arranged on the top of the lubricating sponge; A tapered opening is arranged on the top of the lubricating sponge.
[0009] Preferably, a fixed frame is fixed on the top of the horizontal strip, a container is arranged in the fixed frame, and lubricating oil is filled in the container; An oil pump is mounted on the inner bottom of the container, and an oil pipe is arranged on the outlet end of the oil pump, penetrates through the container and is located in the oil hole;
[0010] Preferably, a fixing assembly is arranged on the outer wall of the fixed frame, which comprises a channel arranged on the outer wall of the fixed frame, a movable hole arranged in the inner wall of the channel, and a fixed hole arranged on the outer wall of the container; A fixed rod is movably arranged in the channel, and one end of the fixed rod penetrates through the movable hole and is located in the fixed hole; A pull strip is fixed on one end of the fixed rod; A spring is arranged on the outer side of the fixed rod, and the two ends of the spring are respectively fixed with the pull strip and the inner wall of the channel.
[0011] Preferably, a blockage prevention assembly is arranged on the outer wall of the lubricating pipe, which comprises a blockage prevention groove arranged on the outer wall of the lubricating pipe, and a blockage prevention wheel movably connected with the blockage prevention groove by a movable pin; A pushing groove is arranged on the outer wall of the blockage prevention wheel; A first connecting wheel is fixed on the outer wall of the movable pin; The connecting strip is externally provided with a third motor, and the output end of the third motor penetrates through the connecting strip and is fixed with a second connecting wheel. The first connecting wheel and the second connecting wheel are externally sleeved with a first belt.
[0012] Preferably, one end of the second connecting wheel is fixed with a third connecting wheel, and the inner wall of the barrel is movably connected with a fourth connecting wheel through a movable rod. The third connecting wheel and the fourth connecting wheel are externally sleeved with a second belt.
[0013] Compared with the prior art, the present application has the following advantages: The first motor drives the first roller to work, and under the cooperation of the first roller and the second roller, the conveyor belt drives the bearing outer ring and the bearing inner ring to move. When the infrared detection module detects the bearing outer ring and the bearing inner ring, the infrared detection module sends a signal to the control module, and the control module then closes the first motor and starts the second motor. At this time, the bearing outer ring and the bearing inner ring on the surface of the conveyor belt will stay at the preset position, and the second motor drives the baffle to rotate in the movable groove at the bottom of the barrel. When the leakage groove of the baffle coincides with the leakage hole of the barrel, the rolling body in the barrel will fall into the middle of the bearing outer ring and the bearing inner ring through the pipe, achieving the purpose of assembling the rolling body. In the process of falling of the rolling body, the photoelectric counting module counts the number of falling rolling bodies. If the number of falling rolling bodies is consistent with the preset number of the photoelectric counting module, the photoelectric counting module sends a signal to the control module, and the control module starts the second motor and the first motor. The second motor drives the baffle to rotate, and the baffle blocks the leakage hole of the barrel. At this time, the rolling body will not fall again, and the first motor drives the first roller to work. Under the cooperation of the first roller and the second roller, the conveyor belt drives the bearing outer ring and the bearing inner ring with assembled rolling bodies to move and move out of the production line for subsequent processing. The bearing outer ring and the bearing inner ring that need to be assembled with rolling bodies are moved to the designated area, and the above work is repeated to continuously assemble the rolling bodies. Compared with the prior art, the present application replaces the existing rolling body assembly method and counts and counts the rolling bodies, which can accurately control the assembly quantity of the rolling bodies, thereby ensuring the quality of the automobile bearing. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a schematic diagram of the overall structure of the present application. Figure 2 It is a schematic diagram of the photoelectric counting module installation structure in the present application. Figure 3 It is a schematic diagram of the vertical cross-sectional structure of the barrel in the present application. Figure 4 It is a schematic diagram of the lubricating pipe structure in the present application. Figure 5 Enlarged structural diagram of A in the application Figure 4 Enlarged structural diagram of A in the application Figure 6 Enlarged structural diagram of the third connecting wheel, the fourth connecting wheel and the second belt structure in the application Figure 7 Enlarged structural diagram of the vertical section of the container in the application Figure 8 Enlarged structural diagram of B in the application Figure 7 Enlarged structural diagram of B in the application Figure 9 Enlarged structural diagram of the horizontal section of the fixed frame in the application Figure 10 Control logic diagram of the application
[0015] In the figure: 1, base; 2, first mounting plate; 3, second mounting plate; 4, first roller; 5, second roller; 6, conveyor belt; 7, first motor; 8, limiting block; 9, limiting strip; 10, bearing outer ring; 11, bearing inner ring; 12, first mounting strip; 13, second mounting strip; 14, control module; 15, material bucket; 16, material pipe; 17, detection hole; 18, photoelectric counting module; 19, support strip; 20, second motor; 21, baffle; 22, movable groove; 23, leakage groove; 24, cross strip; 25, lubricating pipe; 26, second belt; 27, clamping groove; 28, clamping strip; 29, lubricating sponge; 30, oil hole; 31, fixed frame; 32, container; 33, oil pump; 34, oil pipe; 35, passage; 36, movable hole; 37, fixed hole; 38, fixed rod; 39, pull strip; 40, spring; 41, anti-blocking groove; 42, anti-blocking wheel; 43, pushing groove; 44, first connecting wheel; 45, connecting strip; 46, third motor; 47, second connecting wheel; 48, first belt; 49, third connecting wheel; 50, fourth connecting wheel; 51, movable rod. DETAILED DESCRIPTION
[0016] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.
[0017] In order to better understand the above technical solutions, the above technical solutions will be described in detail below with reference to the drawings in the description and specific embodiments.
[0018] Embodiment 1 Please refer to Figures 1-3The application provides a technical scheme: in order to realize the above object, the application provides the following technical scheme: a rolling body assembling device for automobile bearing machining, which comprises a base 1, a first mounting plate 2 and a second mounting plate 3 are fixed on the top of the base 1, a first roller 4 and a second roller 5 are movably mounted between the first mounting plate 2 and the second mounting plate 3, a conveying belt 6 is sleeved outside the first roller 4 and the second roller 5, the first roller 4 is driven by a first motor 7 mounted on the outer wall of the first mounting plate 2, a limiting piece is arranged on the surface of the conveying belt 6, the limiting piece comprises four limiting blocks 8 fixed on the surface of the conveying belt 6 and a limiting strip 9 located between the four limiting blocks 8, a bearing outer ring 10 is placed between the four limiting blocks 8, a bearing inner ring 11 is placed in the bearing outer ring 10, and the bearing inner ring 11 is arranged outside the limiting strip 9, a first mounting strip 12 and a second mounting strip 13 are fixed on the top of the base 1, a material barrel 15 is fixed between the first mounting strip 12 and the second mounting strip 13, a material pipe 16 is fixed at the bottom of the material barrel 15, a detection hole 17 is formed in the outer wall of the material pipe 16, a photoelectric counting module 18 is mounted on the outer wall of the material pipe 16, the detection end of the photoelectric counting module 18 is located in the detection hole 17, a movable groove 22 is formed at the bottom of the material barrel 15, a branch 19 is fixed on the inner side of the first mounting strip 12, a second motor 20 is mounted at the bottom of the branch 19, the output end of the second motor 20 penetrates through the branch 19 and is fixed with a baffle 21 movably arranged in the movable groove 22, a leakage groove 23 is formed at the top of the baffle 21, an infrared detection module is mounted on the inner side of the second mounting strip 13, a control module 14 is mounted on the outer side of the second mounting plate 3, the control module 14 is connected with the first motor 7 and the second motor 20, and the infrared detection module and the photoelectric counting module 18 are connected with the control module 14.
[0019] Specifically, the first motor 7 will drive the first roller 4 to work, and the first roller 4 and the second roller 5 will drive the bearing outer ring 10 and the bearing inner ring 11 to move. When the infrared detection module detects the bearing outer ring 10 and the bearing inner ring 11, the infrared detection module will send a signal to the control module 14, and the control module 14 will turn off the first motor 7 and start the second motor 20. At this time, the bearing outer ring 10 and the bearing inner ring 11 on the surface of the conveyor belt 6 will stop at the preset position, and the second motor 20 will drive the baffle 21 to rotate in the movable slot 22 at the bottom of the barrel 15. When the leakage slot 23 of the baffle 21 coincides with the leakage hole of the barrel 15, the rolling body in the barrel 15 will fall into the middle of the bearing outer ring 10 and the bearing inner ring 11 through the material pipe 16, achieving the purpose of assembling the rolling body. In the process of falling of the rolling body, the photoelectric counting module 18 will count the number of falling rolling bodies. If the number of falling rolling bodies is consistent with the preset number of the photoelectric counting module 18, the photoelectric counting module 18 will send a signal to the control module 14, and the control module 14 will start the second motor 20 and the first motor 7. The second motor 20 will drive the baffle 21 to rotate, and the baffle 21 will shield the leakage hole of the barrel 15. At this time, the rolling body will not fall again, and the first motor 7 will drive the first roller 4 to work. The first roller 4 and the second roller 5 will drive the bearing outer ring 10 and the bearing inner ring 11, which have been assembled with the rolling body, to move and move out of the production line for subsequent processing. The bearing outer ring 10 and the bearing inner ring 11, which need to be assembled with the rolling body, will be moved to the designated area. Repeating the above work can continuously assemble the rolling body. Compared with the prior art, the present application replaces the existing rolling body assembly method and can accurately control the assembly quantity of the rolling body by counting and counting the rolling body, thereby ensuring the quality of the automobile bearing. Due to the limiting piece arranged on the surface of the conveyor belt 6, the limiting piece includes four limiting blocks 8 fixed on the surface of the conveyor belt 6 and a limiting strip 9 located between the four limiting blocks 8. By placing the bearing outer ring 10 into the four limiting blocks 8, the four limiting blocks 8 will limit the bearing outer ring 10. By placing the bearing inner ring 11 into the bearing outer ring 10, the limiting strip 9 will limit the bearing outer ring 10. By limiting the bearing outer ring 10 and the bearing inner ring 11, the bearing outer ring 10 and the bearing inner ring 11 will not be offset during the conveying process, thereby ensuring the assembly accuracy of the rolling body and indirectly ensuring the quality of the automobile bearing.
[0020] Example 2: Please refer to Figure 1 , 47、8, The application provides a rolling element assembling device for automobile bearing machining, a lubricating assembly is arranged on the top of the barrel 15, the lubricating assembly comprises a horizontal strip 24 fixed on the top of the barrel 15, a lubricating pipe 25 is arranged in the horizontal strip 24, a lubricating piece is arranged in the lubricating pipe 25, the lubricating piece comprises a lubricating sponge 29 arranged in the lubricating pipe 25, a clamping groove 27 is formed in the inner wall of the lubricating pipe 25, the lubricating sponge 29 is fixed with a clamping strip 28 clamped in the clamping groove 27, an oil hole 30 is formed in the top of the lubricating sponge 29, a taper hole is formed in the top of the lubricating sponge 29, a fixed frame 31 is fixed on the top of the horizontal strip 24, a container 32 is arranged in the fixed frame 31, and lubricating oil is arranged in the container 32, an oil pump 33 is arranged on the inner bottom of the container 32, and an oil pipe 34 penetrating through the container 32 and located in the oil hole 30 is arranged on the outlet end of the oil pump 33.
[0021] Specifically, the oil pump 33 is started, under the action of the oil pump 33, the lubricating oil in the container 32 enters the oil hole 30 in the lubricating sponge 29 through the oil pipe 34, under the capillary action, the lubricating oil penetrates into every corner of the lubricating sponge 29, in the preliminary preparation work, the rolling element is poured into the barrel 15 through the lubricating pipe 25, and the rolling element sequentially passes through the lubricating sponge 29, the lubricating sponge 29 can smear the lubricating oil to the outer wall of the rolling element, so that the friction between the rolling elements is reduced, and the quality of the rolling elements is guaranteed, and the quality of the automobile bearing is indirectly guaranteed. The taper hole is arranged on the top of the lubricating sponge 29, the taper hole can guarantee that the rolling element does not contact and collide with the top of the lubricating sponge 29 when entering the lubricating sponge 29, so that the top of the lubricating sponge 29 is prevented from being deformed and the “inlet” of the lubricating sponge 29 is prevented from being blocked, on the one hand, the service life of the lubricating sponge 29 is prolonged, and on the other hand, the lubricating efficiency of the rolling element is guaranteed.
[0022] Embodiment 3 Please refer to Figure 1 , 4 7、9, The application provides a rolling element assembling device for automobile bearing machining, a fixed assembly is arranged on the outer wall of the fixed frame 31, the fixed assembly comprises a channel 35 formed in the outer wall of the fixed frame 31, a movable hole 36 is formed in the inner wall of the channel 35, and a fixed hole 37 is formed in the outer wall of the container 32, a fixed rod 38 is movably arranged in the channel 35, one end of the fixed rod 38 penetrates through the movable hole 36 and is located in the fixed hole 37, a pull strip 39 is fixed to one end of the fixed rod 38, springs 40 are arranged on the outer sides of the fixed rod 38, and the two ends of each spring 40 are fixed to the inner wall of the channel 35 and the pull strip 39 respectively.
[0023] Specifically, please refer to example 2, by pulling the fixed rod 38 in the channel 35, the movable hole 36 moves by the pull strip 39, at this time the spring 40 will stretch, when the fixed rod 38 is separated from the fixed hole 37, the container 32 can be separated from the fixed frame 31, when the oil pipe 34 is separated from the oil hole 30, the container 32 and the oil pipe 34 can be disassembled, and then the clamping strip 28 is pulled out from the clamping groove 27 on the inner wall of the lubricating pipe 25, when the lubricating sponge 29 is separated from the inside of the lubricating pipe 25, the lubricating sponge 29 can be disassembled, so the lubricating sponge 29 can be disassembled and replaced, and the lubricating effect of the lubricating sponge 29 on the rolling body is ensured.
[0024] Example 4: Please refer to Figure 1 、 4 -6, the present application provides a technical scheme: a kind of rolling body assembling device for automobile bearing machining, lubricating pipe 25 outer wall is provided with anti-blocking component, anti-blocking component includes being opened in the anti-blocking groove 41 of lubricating pipe 25 outer wall, anti-blocking groove 41 is connected with anti-blocking wheel 42 using movable pin inside;Anti-blocking wheel 42 outer wall is provided with push groove 43;Movable pin outer wall is fixed with first connecting wheel 44;Cross strip 24 outer wall is fixed with connecting strip 45, connecting strip 45 outer wall is installed with third motor 46, the output end of third motor 46 penetrates connecting strip 45, and is fixed with second connecting wheel 47;First connecting wheel 44, second connecting wheel 47 outside is sleeved with first belt 48, one end of second connecting wheel 47 is fixed with third connecting wheel 49, the inner wall of material bucket 15 is movably connected with fourth connecting wheel 50 by movable rod 51;Third connecting wheel 49, fourth connecting wheel 50 outside is sleeved with second belt 26.
[0025] Specifically, by starting third motor 46, third motor 46 drives second connecting wheel 47 to rotate, second connecting wheel 47 will drive first connecting wheel 44 to rotate in cooperation with first belt 48, under the drive of first connecting wheel 44, anti-blocking wheel 42 will rotate in anti-blocking groove 41, anti-blocking wheel 42 will push the rolling body inside lubricating pipe 25 in cooperation with push groove 43, by external force intervention, push the rolling body, avoid rolling body to block lubricating pipe 25, ensure the feeding efficiency of material bucket 15; Second connecting wheel 47 rotates and drives third connecting wheel 49 to rotate, at this time third connecting wheel 49, fourth connecting wheel 50 and second belt 26 work simultaneously, since fourth connecting wheel 50 and second belt 26 are arranged inside material bucket 15, fourth connecting wheel 50 and second belt 26 work and drive the rolling body inside material bucket 15, thereby avoiding the rolling body from blocking material bucket 15, and ensuring the assembling efficiency of the rolling body; Since second connecting wheel 47 and third connecting wheel 49 are driven by the same third motor 46, the power loss is reduced, thereby reducing the production cost of automobile bearing.
[0026] Working principle: The whole is installed to the designated processing area by the base 1, the oil pump 33 is started, under the action of the oil pump 33, the lubricating oil in the container 32 will enter the oil hole 30 inside the lubricating sponge 29 through the oil pipe 34, under the capillary action, the lubricating oil will penetrate into every corner of the lubricating sponge 29, the rolling body is poured into the barrel 15 through the lubricating pipe 25, in this process, the lubricating sponge 29 will smear the lubricating oil on the outer wall of the rolling body, because the tapered port is set at the top of the lubricating sponge 29, the tapered port can ensure that the rolling body does not contact and collide with the top of the lubricating sponge 29 when entering the inside of the lubricating sponge 29, so as to avoid the deformation of the top of the lubricating sponge 29 and avoid the blockage of the 'inlet' of the lubricating sponge 29, the third motor 46 on the connecting strip 45 is started, the third motor 46 drives the second connecting wheel 47 to rotate, the second connecting wheel 47 will drive the first connecting wheel 44 to rotate by cooperating with the first belt 48, under the drive of the first connecting wheel 44, the anti-blocking wheel 42 will rotate in the anti-blocking groove 41, the anti-blocking wheel 42 will push the rolling body in the lubricating pipe 25 by cooperating with the pushing groove 43, through the external force intervention and pushing the rolling body, the rolling body is prevented from blocking the lubricating pipe 25, the feeding efficiency of the barrel 15 is ensured, the third connecting wheel 49 will rotate when the second connecting wheel 47 rotates, at this time, the third connecting wheel 49, the fourth connecting wheel 50 and the second belt 26 will work at the same time, because the fourth connecting wheel 50 and the second belt 26 are arranged in the barrel 15, so the rolling body in the barrel 15 will be driven when the fourth connecting wheel 50 and the second belt 26 work, thereby avoiding the rolling body from blocking the barrel 15, and ensuring the assembly efficiency of the rolling body; The first motor 7 on the first mounting plate 2 is started, the first motor 7 drives the first roller 4 to work, the first roller 4 and the second roller 5 cooperate, the conveyor belt 6 drives the bearing outer ring 10 and the bearing inner ring 11 to move, when the bearing outer ring 10 and the bearing inner ring 11 are detected by the infrared detection module, the infrared detection module sends a signal to the control module 14 on the second mounting plate 3, the control module 14 closes the first motor 7 and starts the second motor 20 on the support 19, at this time the bearing outer ring 10 and the bearing inner ring 11 on the surface of the conveyor belt 6 are stopped at the preset position, the second motor 20 drives the baffle 21 to rotate in the movable groove 22 at the bottom of the barrel 15, when the leakage groove 23 of the baffle 21 coincides with the leakage hole of the barrel 15, at this time the rolling element in the barrel 15 falls into the middle of the bearing outer ring 10 and the bearing inner ring 11 through the material pipe 16, achieving the purpose of assembling the rolling element, in the process of falling of the rolling element, the detection hole 17 cooperates with the photoelectric counting module 18 to count the number of falling rolling elements, if the number of falling rolling elements is consistent with the preset number of the photoelectric counting module 18, the photoelectric counting module 18 sends a signal to the control module 14, the control module 14 starts the second motor 20 and the first motor 7, the second motor 20 drives the baffle 21 to rotate, the baffle 21 blocks the leakage hole of the barrel 15 at this time, the rolling element will not fall again, and the first motor 7 drives the first roller 4 to work, the first roller 4 and the second roller 5 cooperate, the conveyor belt 6 drives the bearing outer ring 10 and the bearing inner ring 11 assembled with the rolling element to move, and moves them out of the production line for subsequent processing, the bearing outer ring 10 and the bearing inner ring 11 needing to be assembled with the rolling element are moved to the designated area, and the above work is repeated, so that the rolling element can be continuously assembled, it should be noted that since the limiting piece is arranged on the surface of the conveyor belt 6, the limiting piece includes four limiting blocks 8 fixed on the surface of the conveyor belt 6 and a limiting strip 9 between the four limiting blocks 8, the bearing outer ring 10 to be assembled is placed in the four limiting blocks 8 in advance, the four limiting blocks 8 limit the bearing outer ring 10, the bearing inner ring 11 to be assembled is placed in the bearing outer ring 10 in advance, and the limiting strip 9 limits the bearing outer ring 10, the bearing outer ring 10 and the bearing inner ring 11 are limited, so that the bearing outer ring 10 and the bearing inner ring 11 do not deviate during conveying, thereby ensuring the assembly accuracy of the rolling element; After the machine is stopped, the fixed rod 38 is pulled by the pull strip 39 to move in the channel 35 and the movable hole 36, at this time, the spring 40 is stretched, when the one end of the fixed rod 38 is separated from the fixed hole 37, the container 32 is separated from the fixed frame 31, when the oil pipe 34 is separated from the oil hole 30, the container 32 and the oil pipe 34 are disassembled, the clamping strip 28 is pulled out from the clamping groove 27 on the inner wall of the lubricating pipe 25, when the lubricating sponge 29 is separated from the lubricating pipe 25, the lubricating sponge 29 is disassembled, so that the lubricating sponge 29 can be disassembled and replaced, and the lubricating effect of the lubricating sponge 29 on the rolling body is ensured.
[0027] In the description of the present application, it should be understood that the terms "center", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore cannot be understood as a limitation on the scope of protection of the present application.
[0028] The basic principles, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above-mentioned embodiments, the above-mentioned embodiments and descriptions in the specification are only to illustrate the principles of the present application, and various changes and improvements can be made to the present application without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A rolling element assembly device for automotive bearing processing, characterized in that, Include: Base (1); The top of the base (1) is fixed with the first mounting plate (2), the second mounting plate (3), the first mounting plate (2), the second mounting plate (3) between the movable mounting of the first roller (4), the second roller (5); The first roller (4), the second roller (5) is sleeved with the conveyor belt (6) outside; The first roller (4) is driven by the first motor (7) mounted on the outer wall of the first mounting plate (2); The surface of the conveyor belt (6) is provided with a limiting piece; The limiting piece includes four limiting blocks (8) fixed on the surface of the conveyor belt (6), and a limiting strip (9) located between the four limiting blocks (8); The four limiting blocks (8) are placed between the outer ring (10) of the bearing, the inner ring (11) of the bearing is placed inside the outer ring (10), and the inner ring (11) of the bearing is arranged outside the limiting strip (9); The top of the base (1) is fixed with the first mounting strip (12), the second mounting strip (13), the first mounting strip (12), the second mounting strip (13) between the fixed barrel (15), the barrel (15) bottom fixed with the material pipe (16); The outer wall of the material pipe (16) is provided with a detection hole (17); The outer wall of the material pipe (16) is provided with a photoelectric counting module (18), and the detection end of the photoelectric counting module (18) is located in the detection hole (17); The bottom of the barrel (15) is provided with a movable groove (22); The inner side of the first mounting strip (12) is fixed with a branch (19), the second motor (20) is installed at the bottom of the branch (19), the output end of the second motor (20) penetrates the branch (19), and the baffle (21) movably arranged in the movable groove (22) is fixed; The top of the baffle (21) is provided with a leakage groove (23); The inner side of the second mounting strip (13) is provided with an infrared detection module; The outer side of the second mounting plate (3) is provided with a control module (14).
2. The rolling element assembly device for machining of an automotive bearing according to claim 1, wherein The control module (14) is connected with the first motor (7) and the second motor (20), and the infrared detection module and the photoelectric counting module (18) are connected with the control module (14).
3. The rolling element assembly device for machining of an automotive bearing according to claim 1, wherein The top of the barrel (15) is provided with a lubricating assembly, the lubricating assembly includes a horizontal strip (24) fixed on the top of the barrel (15), and a lubricating pipe (25) is installed in the horizontal strip (24); The lubricating pipe (25) is provided with a lubricating piece; The lubricating piece includes a lubricating sponge (29) arranged in the lubricating pipe (25), a clamping groove (27) is formed in the inner wall of the lubricating pipe (25), and a clamping strip (28) is fixed on the outer side of the lubricating sponge (29) and clamped in the clamping groove (27); The top of the lubricating sponge (29) is provided with an oil hole (30); The top of the lubricating sponge (29) is provided with a tapered port.
4. The rolling element assembly device for machining of an automotive bearing according to claim 3, wherein The top of the horizontal strip (24) is fixed with a fixed frame (31), the fixed frame (31) is provided with a container (32) inside, and the container (32) is filled with lubricating oil; The oil pump (33) is installed on the bottom of the container (32), and the outlet end of the oil pump (33) is provided with an oil pipe (34) penetrating through the container (32) and located in the oil hole (30).
5. The rolling element assembly device for machining of an automotive bearing according to claim 4, wherein The outer wall of the fixed frame (31) is provided with a fixing assembly, which comprises a channel (35) opened in the outer wall of the fixed frame (31), an active hole (36) opened in the inner wall of the channel (35), and a fixing hole (37) opened in the outer wall of the container (32); The inner part of the channel (35) is movably provided with a fixing rod (38), one end of the fixing rod (38) penetrates through the active hole (36) and is located in the fixing hole (37); One end of the fixing rod (38) is fixed with a tension strip (39); The outer part of the fixing rod (38) is provided with a spring (40), and the two ends of the spring (40) are respectively fixed with the tension strip (39) and the inner wall of the channel (35).
6. The rolling element assembly device for machining of an automotive bearing according to claim 3, wherein The outer wall of the lubricating pipe (25) is provided with an anti-blocking assembly, which comprises an anti-blocking groove (41) opened in the outer wall of the lubricating pipe (25), and an anti-blocking wheel (42) movably connected in the anti-blocking groove (41) by means of a movable pin; The outer wall of the anti-blocking wheel (42) is provided with a pushing groove (43); The outer wall of the movable pin is fixed with a first connecting wheel (44); The outer wall of the horizontal strip (24) is fixed with a connecting strip (45), the outer wall of the connecting strip (45) is provided with a third motor (46), the output end of the third motor (46) penetrates through the connecting strip (45) and is fixed with a second connecting wheel (47); The outer part of the first connecting wheel (44) and the second connecting wheel (47) is sleeved with a first belt (48).
7. The rolling element assembly device for machining of an automotive bearing according to claim 6, wherein One end of the second connecting wheel (47) is fixed with a third connecting wheel (49), and the inner wall of the material bucket (15) is movably connected with a fourth connecting wheel (50) through a movable rod (51); The outer part of the third connecting wheel (49) and the fourth connecting wheel (50) is sleeved with a second belt (26).