Motor assembly feeding tool

By employing the eccentric shaft lifting and conveying principle and multi-stage conveyor design, the problems of inaccurate positioning and insufficient clearance in motor assembly and feeding tooling were solved, enabling accurate positioning and automated feeding of motor components and improving assembly efficiency.

CN223659201UActive Publication Date: 2025-12-12DEXINLONG (SUZHOU) INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202520027145.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-12-12
Estimated Expiration
2035-01-07

AI Technical Summary

Technical Problem

Traditional motor assembly and loading fixtures cannot accurately position the spacing between motor components, leading to positional deviations and assembly errors. Furthermore, the gaps between adjacent components are too narrow, leaving insufficient time for assembly.

Method used

Employing the principle of eccentric shaft lifting and conveying, the motor assembly is separated by an eccentric rotary disc and a circulating push plate. Combined with multi-stage conveyors and guide tables, accurate positioning and automatic feeding of the motor assembly are achieved.

Benefits of technology

Ensure accurate placement of each component during loading, increase the spacing between components, allow sufficient assembly time, improve assembly efficiency, reduce manpower, and achieve automated loading.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a motor assembly feeding tool which comprises a motor assembly feeding machine, a first conveyor and a second conveyor are sequentially arranged at the front end and the rear end of the motor assembly feeding machine, a first conveying belt is arranged in the first conveyor, a supporting frame is arranged at the bottom of the first conveyor, and a second conveying belt is arranged at the bottom of the second conveyor. And a second conveying belt is arranged in the second conveyor. According to the motor assembly feeding machine, the principle that an eccentric shaft lifts and conveys is adopted, motor assemblies stacked together side by side are separated, the distance between every two connected motor assemblies is equal, the accuracy of the feeding position of each time is guaranteed, meanwhile, every two adjacent motor assemblies are separated by a certain distance, and the feeding efficiency of the motor assemblies is improved. According to the motor assembling device, sufficient assembling time can be reserved for the assembling device, the two conveyors of different structures are arranged at the two ends, the automatic feeding effect can be achieved when the two conveyors and the conveyor structures are used, and therefore manpower is saved, and the motor assembling efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of motor assembly, specifically a motor assembly loading tool. Background Technology

[0002] An electric motor is an electromagnetic device that converts or transmits electrical energy based on the law of electromagnetic induction. It is represented by the letter M (D in the old standard) in circuits. Its main function is to generate driving torque and serve as a power source for electrical appliances or various machines. A generator is represented by the letter G in circuits. Its main function is to convert mechanical energy into electrical energy. Currently, the most common method is to use heat energy, water energy, etc. to drive the generator rotor to generate electricity.

[0003] Existing motor assembly and feeding fixtures still have certain shortcomings in use. Traditional motor assembly and feeding fixtures cannot position the spacing between motor components during feeding, resulting in deviations in the feeding position each time, leading to incorrect assembly positions. Furthermore, the gap between two adjacent motor components is too narrow, which does not allow sufficient time for assembly. Utility Model Content

[0004] The purpose of this utility model is to provide a motor assembly feeding fixture to solve the problems mentioned in the background art, such as the inability to position the spacing of motor components during feeding, resulting in deviations in the feeding position each time, leading to incorrect assembly position of the equipment, and the narrow gap between two adjacent motor components, which cannot allow time for assembly.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a motor assembly feeding fixture, comprising a motor assembly feeding machine, wherein a first conveyor and a second conveyor are sequentially arranged at the front and rear ends of the motor assembly feeding machine; a first conveyor belt is provided inside the first conveyor, and a support frame is provided at the bottom of the first conveyor; a second conveyor belt is provided inside the second conveyor, and a second feeding port is provided at the inner end of the second conveyor belt; rollers are provided on both sides of the second feeding port; a guide platform is provided between the first conveyor and the motor assembly feeding machine; a first feeding port is provided at the lower end of the guide platform; eccentric rotating disks are provided on both sides of the inner ends of the motor assembly feeding machine; circulating push plates are provided on both sides above the eccentric rotating disks; a support platform is provided at the top of the circulating push plate; a motor assembly support seat is provided above the support platform; an eccentric shaft is provided at the lower part of the inner interior of the eccentric rotating disk; a connecting shaft is provided at the upper part of the inner interior of the eccentric rotating disk aligned with the eccentric shaft; and a drive motor is provided at the middle of the bottom end of the inner interior of the motor assembly feeding machine.

[0006] In a further embodiment, fixed protective plates are provided on both sides of the guide platform, and a guide plate is provided at the lower end of the inner side of the fixed protective plate. The two sides of the guide platform are fixedly connected to the first conveyor through connecting plates.

[0007] In a further embodiment, the cross-section of the guide platform is designed as a downwardly inclined structure, and the guide platform is connected to the motor assembly feeder by an embedded connection.

[0008] In a further embodiment, the eccentric shaft is connected to the drive motor via a transmission belt, the transmission belt is connected to the drive motor via a pulley, and positioning wheels are provided on both sides above the pulley, with the positioning wheels and the pulley being slidably connected.

[0009] In a further embodiment, the circulating push plate is connected to the eccentric rotating disk by a connecting rod, and the connecting rod is rotatably connected to the connecting shaft by a bearing.

[0010] In a further embodiment, the support platform and the circulating push plate are fixedly connected by bolts, and the motor assembly support base is fixedly connected to the support platform by insertion, and the cross-section of the motor assembly support base is set as a circular structure.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] 1. The motor component feeding machine in this utility model adopts the principle of eccentric shaft lifting and conveying to separate the motor components stacked side by side, so that there is an equal distance between two connected motor components and to ensure the accuracy of the feeding position each time. At the same time, it also increases the distance between two adjacent motor components, which can reserve sufficient assembly time for the assembly equipment. Two conveyors with different structures are provided at both ends. When used with the conveyor structure, the automatic feeding effect can be achieved, thereby saving manpower and improving the efficiency of motor assembly. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of a motor assembly and feeding fixture according to the present invention;

[0014] Figure 2 This is a schematic diagram of the structure of the circulating push plate of this utility model;

[0015] Figure 3 This is a top view of a motor assembly and loading fixture according to the present invention;

[0016] Figure 4 This is a top view of the guide platform of this utility model;

[0017] Figure 5 This is a front view of the support platform of this utility model;

[0018] Figure 6 This is a top view of the second conveyor of this utility model.

[0019] In the diagram: 1. First conveyor; 2. First conveyor belt; 3. Support frame; 4. Guide platform; 5. Fixed protective plate; 6. Motor assembly feeder; 7. Eccentric rotary disk; 8. Circulating push plate; 9. Support platform; 10. Motor assembly support seat; 11. Transmission belt; 12. Pulley; 13. Drive motor; 14. Positioning wheel; 15. Second conveyor; 16. Eccentric shaft; 17. Connecting rod; 18. Guide plate; 19. Second conveyor belt; 20. Roller; 21. Connecting plate; 22. First feed port; 23. Bearing; 24. Connecting shaft; 25. Second feed port. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0021] Please see Figure 1-6This utility model provides an embodiment of a motor assembly feeding fixture, comprising a motor assembly feeding machine 6. A first conveyor 1 and a second conveyor 15 are sequentially arranged at the front and rear ends of the motor assembly feeding machine 6. The first conveyor 1 has a first conveyor belt 2 inside and a support frame 3 at its bottom. The second conveyor 15 has a second conveyor belt 19 inside, with a second feeding port 25 at its inner end. Rollers 20 are arranged on both sides of the second feeding port 25. A guide platform 4 is provided between the first conveyor 1 and the motor assembly feeding machine 6. A first feeding port 22 is located at the lower end of the guide platform 4. Eccentric rotating disks 7 are arranged on both sides of both ends of the motor assembly feeding machine 6. Circulating push plates 8 are arranged on both sides above the eccentric rotating disks 7. A support platform 9 is located at the top of the circulating push plate 8. A motor assembly support is located above the support platform 9. An eccentric shaft 16 is located at the lower part of the interior of the eccentric rotating disk 7, and a connecting shaft 24 is located at the upper part of the interior of the eccentric rotating disk 7, aligned with the eccentric shaft 16. A drive motor 13 is located at the middle of the bottom end of the interior of the motor assembly feeder 6. The motor assembly is conveyed to the motor assembly feeder 6 by the first conveyor belt 2, and the motor assembly is positioned and conveyed by the motor assembly feeder 6. The motor assembly is conveyed to the assembly equipment by the second conveyor belt 19, and the motor assembly is conveyed out from the second feeding port 25 by the roller shaft 20. The eccentric rotating disk 7 drives the circulating push plate 8 to perform lifting motion. The guide table 4 guides and positions the conveyed motor assembly. The first feeding port 22 facilitates the motor assembly support seat 10 to lift and convey the motor assembly. The support table 9 is used to install and fix the motor assembly support seat 10.

[0022] The guide platform 4 is provided with fixed protective plates 5 on both sides. The lower inner side of the fixed protective plate 5 is provided with a guide plate 18. The two sides of the guide platform 4 are fixedly connected to the first conveyor 1 through the connecting plate 21. The fixed protective plates 5 are used to seal and protect the two sides of the guide platform 4. The guide plate 18 is used to guide and position the motor assembly conveying position. The cross section of the guide platform 4 is designed as a downward inclined structure. The guide platform 4 and the motor assembly feeder 6 are connected by embedding. The embedding connection facilitates the combination of the guide platform 4 and the motor assembly feeder 6.

[0023] The eccentric shaft 16 is connected to the drive motor 13 via a transmission belt 11. The transmission belt 11 is connected to the drive motor 13 via a pulley 12. Positioning wheels 14 are provided on both sides above the pulley 12, and the positioning wheels 14 are slidably connected to the pulley 12. The transmission belt 11 is used to drive the eccentric shaft 16 to rotate, so that the eccentric rotating disk 7 moves.

[0024] The circulating push plate 8 is connected to the eccentric rotating disk 7 via a connecting rod 17, and the connecting rod 17 is rotatably connected to the connecting shaft 24 via a bearing 23. The connecting rod 17 is used to connect and install the circulating push plate 8 and the eccentric rotating disk 7, and the bearing 23 allows the circulating push plate 8 to move cyclically.

[0025] The support platform 9 and the circulating push plate 8 are fixedly connected by bolts, and the motor assembly support seat 10 is fixedly connected to the support platform 9 by insertion. The cross-section of the motor assembly support seat 10 is designed as a circular structure. The bolts facilitate the installation and fixing of the support platform 9 and the circulating push plate 8, and the insertion connection facilitates the installation or removal of the motor assembly support seat 10.

[0026] Working principle: In use, the motor assembly to be assembled is placed above the first conveyor belt 2. The first conveyor belt 2 transports the motor assembly to the other end. After passing through the guide table 4, the motor assembly slides down to the first loading port 22. The drive motor 13 converts electrical energy into mechanical energy, which drives the pulley 12 to rotate, causing the transmission belt 11 to rotate. At the same time, it drives the eccentric shaft 16 to rotate, causing the eccentric rotating disk 7 to rotate. The circulating push plate 8 is pushed to one end, causing the support table 9 to move up and down. The motor assembly is lifted by the motor assembly support seat 10 and transported to the other end to the second loading port 25. The motor assembly is then transported to the second conveyor belt 19 by the roller 20 and transported to the assembly equipment for assembly.

[0027] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A motor assembly feeding fixture, comprising a motor assembly feeding machine (6), characterized in that: The motor assembly feeder (6) is provided with a first conveyor (1) and a second conveyor (15) at its front and rear ends respectively. The first conveyor (1) is provided with a first conveyor belt (2) inside and a support frame (3) at the bottom of the first conveyor (1). The second conveyor (15) is provided with a second conveyor belt (19) inside. The inner end of the second conveyor belt (19) is provided with a second feeding port (25). Rollers (20) are provided on both sides of the second feeding port (25). A guide platform (4) is provided between the first conveyor (1) and the motor assembly feeder (6). The lower end of the guide platform (4) is provided with a first feed... The feed inlet (22) is provided with eccentric rotating disks (7) on both sides of the inside of the motor assembly feeder (6). The upper sides of the eccentric rotating disks (7) are provided with circulating push plates (8). The top of the circulating push plates (8) is provided with a support platform (9). The upper part of the support platform (9) is provided with a motor assembly support seat (10). The lower part of the inside of the eccentric rotating disks (7) is provided with an eccentric shaft (16). The upper part of the inside of the eccentric rotating disks (7) is provided with a connecting shaft (24) aligned with the eccentric shaft (16). The middle part of the bottom of the inside of the motor assembly feeder (6) is provided with a drive motor (13).

2. The motor assembly and feeding fixture according to claim 1, characterized in that: The guide platform (4) is provided with fixed protective plates (5) on both sides. The lower end of the inner side of the fixed protective plate (5) is provided with a guide plate (18). The two sides of the guide platform (4) are fixedly connected to the first conveyor (1) through a connecting plate (21).

3. The motor assembly and feeding fixture according to claim 1, characterized in that: The cross section of the guide platform (4) is designed to be inclined downwards, and the guide platform (4) is connected to the motor assembly feeder (6) by embedding.

4. The motor assembly and feeding fixture according to claim 1, characterized in that: The eccentric shaft (16) is connected to the drive motor (13) via a transmission belt (11). The transmission belt (11) is connected to the drive motor (13) via a pulley (12). Positioning wheels (14) are provided on both sides above the pulley (12), and the positioning wheels (14) are slidably connected to the pulley (12).

5. The motor assembly and feeding fixture according to claim 1, characterized in that: The circulating push plate (8) is connected to the eccentric rotating disk (7) by a connecting rod (17), and the connecting rod (17) is rotatably connected to the connecting shaft (24) by a bearing (23).

6. The motor assembly and feeding fixture according to claim 1, characterized in that: The support platform (9) and the circulating push plate (8) are fixedly connected by bolts, and the motor assembly support seat (10) and the support platform (9) are fixedly connected by insertion, and the cross section of the motor assembly support seat (10) is set as a circular structure.