Positioning and overturning device for assembling throttling device taper pin plug sleeve
By combining a worm gear self-locking structure with an electromagnet attracting the iron core, the assembly accuracy and safety issues caused by the movement of the rotating shaft in the flipping device are solved, thereby improving positioning accuracy and stability and automating the production process.
Patent Information
- Application Number
- CN202520635340.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-07
AI Technical Summary
The existing flipping device lacks a fixing mechanism, which may cause the rotating shaft to move after flipping, affecting the assembly accuracy and posing a safety hazard.
The combination of a worm gear self-locking structure and an electromagnet attracting the iron core ensures the positioning accuracy and stability of the shaft during the flipping process, and prevents accidental rotation through the cooperation of an electric clamp and a clamping block.
It improved the positioning accuracy and stability of the assembly process, reduced safety hazards, and enabled automated feeding and unloading, thereby increasing production efficiency.
Smart Images

Figure CN223947240U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a turnover device technical field especially relates to a positioning turnover device for throttle cone pin plug sleeve assembly. BACKGROUND
[0002] The turnover device is a kind of equipment or mechanism that can perform turnover action, is usually used to turn over workpiece, equipment or other objects from one state to another state, it is mainly composed of driving part, turnover part and support component etc., and is widely used in mechanical manufacturing, industrial automation etc. by accurate control to realize the turnover, positioning etc. of object, is widely used in mechanical manufacturing, industrial automation etc.
[0003] The existing turnover device lacks the fixing mechanism of rotating shaft, which can cause the slight movement of rotating shaft due to motor damage, external force or self gravity after turnover, cause the deviation of originally accurate assembly position, affect the precision of subsequent assembly, also make assembly components collide or fall off, constitute safety hazard to operator. UTILITY MODEL CONTENTS
[0004] The utility model aims at solving the problem that the above-mentioned equipment is prone to move after turnover due to lacking fixing mechanism, and provides a positioning turnover device for throttle cone pin plug sleeve assembly.
[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: a positioning turnover device for throttle cone pin plug sleeve assembly, including bottom plate, the bottom of bottom plate is fixedly installed motor one, the output end of motor one is fixedly installed rotating shaft one, the bottom of bottom plate is opened the shaft hole one, and the inner surface wall of shaft hole one and the outer surface wall of rotating shaft one are movably inserted, the top of rotating shaft one is fixedly installed shell, the outer surface wall of shell is opened a group of shaft hole two, the outer surface wall of shell is opened a group of shaft hole three, the inner surface wall between a group of shaft hole three is movably inserted with rotating shaft two, the outer surface wall of rotating shaft two is fixedly sleeved with worm gear, the outer wall one side of rotating shaft two is fixedly installed electric clamp, the outer wall one side of shell is fixedly installed motor two.
[0006] Preferably, the output end of motor two is fixedly installed worm, and the outer surface wall of worm is movably inserted between the inner surface wall of a group of shaft hole two, and the outer surface wall of worm is meshed with the inner surface wall of worm gear, the inner surface wall of shell is fixedly installed two cylinders.
[0007] Preferably, the inner wall one side of two cylinders is fixedly installed electromagnet, and the inner wall one side of two cylinders is fixedly installed spring.
[0008] Preferably, the inner surface wall of two cylinders is movably inserted with moving rod, and the outer wall one side of two moving rods is fixedly connected with the outer wall one side of spring.
[0009] Preferably, an iron core is fixedly installed on one side of the outer wall of each of the two movable rods, and a clamping block is fixedly installed on one side of the outer wall of each of the two movable rods.
[0010] Preferably, a set of electric telescopic rods is fixedly installed at the bottom of the outer casing, and a base is fixedly installed between the bottoms of the set of electric telescopic rods.
[0011] Preferably, a set of casters is fixedly installed at the bottom of the base, and a conveyor belt is fixedly installed at the top of the base.
[0012] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0013] 1. In this utility model, after the second motor starts, it drives the electric clamp and the throttle to rotate with the help of the second rotating shaft. At this time, the application of the worm gear self-locking structure effectively prevents the rotating shaft from rotating accidentally due to external force, ensuring the positioning accuracy and stability of the throttle during the assembly process. When the second rotating shaft rotates, the electromagnet is energized, attracting the iron core to approach, causing the moving rod to squeeze the spring and drive the clamping block away from the second rotating shaft. After the rotation is completed, the clamping block will be pushed by the squeezed spring to clamp the second rotating shaft, thereby firmly fixing the throttle and further preventing its accidental rotation, ensuring the safety of the staff.
[0014] 2. In this utility model, the device reduces the waiting time for manual operation by automating feeding and unloading, significantly speeding up the production pace. The electric telescopic rod can adjust the height of the throttle to meet the needs of different workers and improve the flexibility of work. Attached Figure Description
[0015] Figure 1 This utility model provides a perspective view of the main structure of a positioning and flipping device for a throttle cone pin plug assembly.
[0016] Figure 2 A bottom-view exploded view of a portion of the structure of a throttle cone pin plug assembly with a positioning and flipping device is provided for this utility model.
[0017] Figure 3 This utility model provides a partial sectional perspective view of the positioning and flipping device used in the throttle cone pin plug assembly.
[0018] Figure 4 This utility model provides a partial structural cross-sectional view of a positioning and flipping device for a throttle cone pin plug assembly.
[0019] Figure 5 This utility model provides a partial structural side view of a positioning and flipping device for a throttle cone pin plug assembly.
[0020] Legend:
[0021] 1. Base plate; 2. Motor 1; 3. Shaft 1; 4. Shaft hole 1; 5. Housing; 6. Shaft hole 2; 7. Shaft hole 3; 8. Shaft 2; 9. Worm gear; 10. Electric clamp; 11. Motor 2; 12. Worm; 13. Cylinder; 14. Electromagnet; 15. Spring; 16. Moving rod; 17. Iron core; 18. Clamping block; 19. Electric telescopic rod; 20. Base; 21. Casters; 22. Conveyor belt. Detailed Implementation
[0022] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0023] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.
[0024] Example 1, such as Figures 1-5 As shown, this utility model provides a positioning and flipping device for a throttle cone pin plug assembly, including a base plate 1. A motor 2 is fixedly installed at the bottom of the base plate 1, and a rotating shaft 3 is fixedly installed at the output end of the motor 2. A shaft hole 4 is opened at the bottom of the base plate 1, and the inner wall of the shaft hole 4 is movably inserted into the outer wall of the rotating shaft 3. A housing 5 is fixedly installed at the top of the rotating shaft 3. A set of shaft holes 6 and a set of shaft holes 7 are opened on the outer wall of the housing 5. A rotating shaft 8 is movably inserted between the inner walls of the set of shaft holes 7. A worm gear 9 is fixedly sleeved on the outer wall of the rotating shaft 8. An electric clamp 10 is fixedly installed on one side of the outer wall of the rotating shaft 8, and a motor is fixedly installed on one side of the outer wall of the housing 5. Motor 211 has a worm gear 12 fixedly installed at its output end, and a set of shaft holes 26 are movably inserted between the inner surface of the shaft hole 6 and the outer surface of the worm gear 12. The outer surface of the worm gear 12 is meshed with the inner surface of the worm wheel 9. Two cylinders 13 are fixedly installed on the inner surface of the outer casing 5. An electromagnet 14 is fixedly installed on one side of the inner wall of each of the two cylinders 13. A spring 15 is fixedly installed on one side of the inner wall of each of the two cylinders 13. A moving rod 16 is movably inserted into the inner surface of each of the two cylinders 13. One side of the outer wall of each of the two moving rods 16 is fixedly connected to one side of the outer wall of each of the springs 15. An iron core 17 is fixedly installed on one side of the outer wall of each of the two moving rods 16. A clamping block 18 is fixedly installed on one side of the outer wall of each of the two moving rods 16.
[0025] The overall effect of Embodiment 1 is that, when using the device, the electric clamp 10 first clamps and fixes the throttle, then the motor 11 starts, driving the worm 12 to rotate inside the housing 5. At this time, the worm 12 drives the worm wheel 9, which is meshed with it, to start rotating. The worm wheel 9 then drives the internal shaft 8 to start rotating. At this time, the electric clamp 10 connected to the shaft 8 also drives the clamped and fixed throttle to rotate, thus facilitating its assembly. The worm wheel 9 and the worm 12 form a self-locking structure, which can prevent the shaft 8 from being accidentally dislodged by external force. The external rotation ensures the positioning accuracy and stability of the throttle cone pin plug assembly. When the rotating shaft 8 rotates, the electromagnet 14 starts to activate. The magnetic force generated after being energized will attract the iron core 17 closer. At this time, the iron core 17 drives the moving rod 16 on the outer wall to move, squeezing the spring 15 and driving the clamping block 18 away from the rotating shaft 8. After the rotation is completed, the electromagnet 14 is de-energized and shut off. The squeezed spring 15 extends and drives the clamping block 18 to fit against the rotating shaft 8, further preventing the electric clamp 10 and the fixed throttle from rotating accidentally, ensuring the safety of the staff.
[0026] Example 2, as Figures 2-5 As shown, the device includes a base plate 1, a motor 2 fixedly mounted on the bottom of the base plate 1, a rotating shaft 3 fixedly mounted on the output end of the motor 2, a shaft hole 4 opened at the bottom of the base plate 1, and the inner surface of the shaft hole 4 is movably inserted into the outer surface of the rotating shaft 3, a housing 5 fixedly mounted on the top of the rotating shaft 3, a set of electric telescopic rods 19 fixedly mounted on the bottom of the housing 5, a base 20 fixedly mounted between the bottoms of the set of electric telescopic rods 19, a set of universal wheels 21 fixedly mounted on the bottom of the base 20, and a conveyor belt 22 fixedly mounted on the top of the base 20.
[0027] The overall effect of Embodiment 2 is that the user can move the device freely with the help of the casters 21. When the assembly work begins, the conveyor belt 22 will move a large number of throttles to be assembled forward to achieve automatic feeding. Then, the electric telescopic rod 19 will drive the electric clamp 10 at the top to descend to the same height as the throttles. The electric clamp 10 will hold the throttles, and the motor 2 will start. The rotating shaft 3 will drive the outer shell 5 at the top to rotate 180 degrees. The outer shell 5 will drive the electric clamp 10 and the throttles to the side of the workers. The height of the throttles can be adjusted by the electric telescopic rod 19 to accommodate different workers. After the assembly is completed, the electric telescopic rod 19 and the motor 2 will cooperate to put the assembled throttles back on the conveyor belt 22, thereby achieving automatic unloading, reducing the waiting time of manual operation, and improving the efficiency of the entire production process.
[0028] Working principle: the user can easily move the device through the universal wheel 21, the assembly work starts, the conveyor belt 22 automatically advances, carries a large number of throttles to be assembled to the working area, realizes automatic feeding, then the electric telescopic rod 19 drives the electric clamp 10 on the top to descend, keeps the same height with the throttle, and clamps the throttle stably by the electric clamp 10, at this time, the motor 2 is started, the outer shell 5 is rotated by 180 degrees through the rotating shaft 3, so that the electric clamp 10 and the clamped throttle are rotated to the side of the worker, the electric telescopic rod 19 can also adjust the height of the throttle according to the needs of different workers, in the assembly process, the electric clamp 10 first fixes the throttle, then the motor 11 is started, the worm 12 is driven to rotate in the outer shell 5, the worm 12 is engaged with the worm gear 9, drives the worm gear 9 to rotate, and then drives the rotating shaft 8 to rotate, the rotation of the rotating shaft 8 makes the electric clamp 10 connected with the rotating shaft 8 and the clamped throttle overturn together, which is convenient for the worker to assemble, the worm gear 9 and the worm 12 constitute a self-locking structure, which effectively prevents the rotating shaft 8 from rotating accidentally due to external force, and ensures the positioning accuracy and stability of the throttle taper pin sleeve assembly, when the rotating shaft 8 rotates, the electromagnet 14 is started, the magnetic force generated after electrification attracts the iron core 17 close, drives the moving rod 16 to move, compresses the spring 15 and makes the clamping block 18 away from the rotating shaft 8, after overturning, the electromagnet 14 is de-energized, the compressed spring 15 expands, drives the clamping block 18 to tightly adhere to the rotating shaft 8, further prevents the electric clamp 10 and the fixed throttle from rotating accidentally, and ensures the safety of the worker, after assembly, the electric telescopic rod 19 and the motor 2 work together to put the assembled throttle back to the conveyor belt 22, realize automatic unloading, reduce the waiting time of manual operation, and significantly improve the efficiency of the whole production process.
[0029] The wiring diagram of the motor 2, the electric clamp 10, the motor 11, the electromagnet 14 and the electric telescopic rod 19 in the utility model belongs to the common knowledge in the field, and the working principle is a known technology, and the model is selected according to actual use, so the control mode and wiring arrangement of the motor 2, the electric clamp 10, the motor 11, the electromagnet 14 and the electric telescopic rod 19 are not explained in detail.
[0030] The above is only a preferred embodiment of the utility model, not other forms of the utility model, any skilled person in the technical field can change or modify the above disclosed technical content into equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification made on the basis of the technical essence of the utility model to the above embodiments still belongs to the protection scope of the utility model technical scheme.
Claims
1. A positioning and overturning device for assembling a choke cone pin plug, comprising a base plate (1), characterized in that: The bottom of the bottom plate (1) is fixedly installed with a motor one (2), the output end of the motor one (2) is fixedly installed with a rotating shaft one (3), the bottom of the bottom plate (1) is provided with an axle hole one (4), and the inner wall of the axle hole one (4) is movably inserted with the outer wall of the rotating shaft one (3), the top of the rotating shaft one (3) is fixedly installed with an outer shell (5), the outer wall of the outer shell (5) is provided with a group of axle holes two (6), the outer wall of the outer shell (5) is provided with a group of axle holes three (7), the inner walls of a group of the axle holes three (7) are movably inserted with a rotating shaft two (8), the outer wall of the rotating shaft two (8) is fixedly sleeved with a worm wheel (9), the outer wall of the rotating shaft two (8) is fixedly installed with an electric clamp (10), and the outer wall of the outer shell (5) is fixedly installed with a motor two (11).
2. The positioning and overturning device for assembling the choke cone plug sleeve according to claim 1, characterized in that: The output end of the motor two (11) is fixedly installed with a worm (12), the inner walls of a group of the axle holes two (6) are movably inserted with the outer wall of the worm (12), the outer wall of the worm (12) is meshedly connected with the inner wall of the worm wheel (9), and the inner wall of the outer shell (5) is fixedly installed with two cylinders (13).
3. The positioning and overturning device for assembling the choke cone plug sleeve according to claim 2, characterized in that: The inner wall of the two cylinders (13) is fixedly installed with an electromagnet (14) on one side, and the inner wall of the two cylinders (13) is fixedly installed with a spring (15) on one side.
4. The positioning and overturning device for assembling the choke cone plug sleeve according to claim 3, characterized in that: The inner walls of the two cylinders (13) are movably inserted with a moving rod (16), and the outer wall of the two moving rods (16) is fixedly connected with the outer wall of the spring (15) on one side.
5. The positioning and overturning device for assembling the choke cone plug sleeve according to claim 4, characterized in that: The outer wall of the two moving rods (16) is fixedly installed with an iron core (17) on one side, and the outer wall of the two moving rods (16) is fixedly installed with a clamping block (18) on one side.
6. The positioning and overturning device for assembling the choke cone plug set according to claim 5, characterized in that: The bottom of the outer shell (5) is fixedly installed with a group of electric telescopic rods (19), and the bottom of a group of the electric telescopic rods (19) is fixedly installed with a base (20).
7. The positioning and overturning device for assembling the choke cone plug according to claim 6, characterized in that: The bottom of the base (20) is fixedly installed with a group of universal wheels (21), and the top of the base (20) is fixedly installed with a conveying belt (22).