New energy automobile motor production device

By designing the magnetic wheel and suction port system on the new energy vehicle motor production line, the product is stopped and fixed at any time, solving the problem of unsmooth transfer between workstations, and improving the smoothness and efficiency of the production line.

CN120262824APending Publication Date: 2025-07-04NANTONG INST OF TECH
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Patent Information

Application Number
CN202510364731.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

In the existing new energy vehicle motor production line, the product transfer between stations is not smooth, affecting the efficiency of the entire production line.

Method used

Design a complete conveyor line, directly integrate the processing station into the production line, and use the magnetic wheel and suction port system to stop and fix the product at any time, and process it anytime, anytime, anywhere.

Benefits of technology

It realizes that the product does not affect the work of the entire production line during the processing process, and the conveying and processing of other products are not affected, which improves the smoothness and efficiency of the production line.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a new energy automobile motor production device, which comprises two opposite base stations, magnetic wheels and air suction ports, and is characterized in that the base stations are fixedly connected to a base, the base stations are also provided with a plurality of uniformly distributed magnetic wheels and air suction ports, and the air suction ports are located at the inner sides of the magnetic wheels; a complete conveying line is designed, and machining stations are directly integrated on a production line. Product conveying can be stopped at any time, meanwhile, products are fixed, stopping and moving are achieved at any time, and machining can be conducted anytime and anywhere. And stopping and fixing of one product do not affect work of the whole production line, and conveying and machining of other products are not affected.
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Description

Technical Field

[0001] The present invention relates to the field of processing and production of automotive motor accessories, and particularly to a production device for new energy vehicle motors. Background Art

[0002] During the production process of new energy vehicle motors, different accessories often need to be assembled in sequence for different processing operations. In current motor assembly line production, generally multiple different processing stations are set up, and different stations are connected by conveyor belts. After the motor is transported to each processing station, the motor is processed by humans and machines. After processing, the finished product is placed on the conveyor belt and transferred to the next station.

[0003] This conveyor belt-based transportation method with stations as the main part makes the entire assembly line production not smooth. Especially when transferring products from the conveyor belt to the station and from the station to the conveyor belt, it is not only troublesome but also affects the efficiency of the entire production line. Summary of the Invention

[0004] The purpose of the present invention is to provide a production device for new energy vehicle motors. By designing a complete conveyor line, the processing stations are directly integrated into the production line. It can stop the product transportation at any time and fix the product, achieving the ability to stop and go at any time, and perform processing at any time and place. Moreover, the stop and fixation of one product do not affect the operation of the entire production line and do not affect the transportation and processing of other products.

[0005] A production device for new energy vehicle motors, including a base, magnetic wheels, and suction ports. There are two sets of opposite bases, which are fixedly connected to the base, and there are also several evenly arranged magnetic wheels and suction ports on the base. The suction ports are located inside the magnetic wheels;

[0006] There are also magnetic wheel grooves and air extraction channels inside the base. The left and right ends of each magnetic wheel are rotatably connected to the magnetic wheel grooves through a rotating shaft. The upper end of the air extraction channel is connected to the suction port, and its lower end is connected to an external fan;

[0007] The lower end of the rotating shaft is fixedly connected with a telescopic rod. The telescopic rod is slidably connected to a telescopic rod groove provided inside the base. There is also a branch pipe two inside the base. The lower end of the telescopic rod groove is also communicated with the branch pipe two through a solenoid valve two. The branch pipe two is also communicated with the air extraction channel.

[0008] Preferably, the outer end of the rotating shaft is fixedly connected with a slider, and the slider is slidably connected to a chute provided inside the base.

[0009] Preferably, there is also a solenoid valve one inside the air extraction channel.

[0010] Preferably, a stop post is provided below the telescopic rod. The inner end of the stop post is slidably connected to the telescopic rod groove, and the outer end of the stop post is slidably connected to the stop post groove provided in the base. The outer end of the left stop post groove is directly communicated with the air extraction channel, while the outer end of the right stop post groove is communicated with the first branch pipe. The first branch pipe is located in the base and is communicated with the second branch pipe.

[0011] Preferably, an inner hoop is fixedly connected to the outer end of the stop post groove, and a spring is further provided in the stop post groove. The two ends of the spring are respectively connected to the outer end of the stop post and the inner hoop.

[0012] Preferably, a baffle is further fixedly connected to the upper end of the base, and the baffle is located outside the magnetic wheel.

[0013] The advantages of the present invention are as follows: By designing a complete conveyor line, the processing stations are directly integrated into the production line. It is possible to stop the product conveyance at any time and fix the product, achieving stop-and-go at any time, and processing at any time and place. Moreover, the stop and fixation of one product do not affect the operation of the entire production line, nor the conveyance and processing of other products. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic diagram of the overall structure of the device of the present invention;

[0015] Figure 2 is a top view of the device of the present invention;

[0016] Figure 3 is a schematic diagram of the internal structure of the base in the device of the present invention;

[0017] Figure 4 is Figure 3 an enlarged view of part A in

[0018] Among them, 11, base; 12, base; 13, magnetic wheel; 14, air suction port; 15, baffle; 101, magnetic wheel groove; 102, air extraction channel; 103, rotating shaft; 104, slider; 105, chute; 106, telescopic rod; 107, telescopic rod groove; 108, stop post; 109, stop post groove; 110, spring; 111, inner hoop; 112, first branch pipe; 113, second branch pipe; 114, solenoid valve 1; 115, solenoid valve 2 DETAILED DESCRIPTION OF THE INVENTION

[0019] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.

[0020] As Figures 1 to 4As shown in the figure, the present invention includes a base 12, a magnetic wheel 13, and a suction port 14. There are two sets of opposite bases 12, which are fixedly connected to the base 11, and there are also several uniformly arranged magnetic wheels 13 and suction ports 14 on the base 12. The suction port 14 is located inside the magnetic wheel 13;

[0021] A magnetic wheel groove 101 and an air extraction channel 102 are further provided inside the base 12. The left and right ends of the magnetic wheel 13 are each rotatably connected to the magnetic wheel groove 101 through a rotating shaft 103. The upper end of the air extraction channel 102 is connected to the suction port 14, and its lower end is connected to an external fan;

[0022] The lower end of the rotating shaft 103 is fixedly connected with a telescopic rod 106. The telescopic rod 106 is slidably connected in a telescopic rod groove 107 provided inside the base 12. A second branch pipe 113 is further provided inside the base 12. The lower end of the telescopic rod groove 107 is also communicated with the second branch pipe 113 through a second solenoid valve 115. The second branch pipe 113 is also communicated with the air extraction channel 102.

[0023] The outer end of the rotating shaft 103 is fixedly connected with a slider 104. The slider 104 is slidably connected in a chute 105 provided inside the base 12.

[0024] A first solenoid valve 114 is further provided inside the air extraction channel 102.

[0025] A stop post 108 is provided below the telescopic rod 106. The inner end of the stop post 108 is slidably connected in the telescopic rod groove 107, and the outer end of the stop post 108 is slidably connected in a stop post groove 109 provided inside the base 12. The outer end of the left stop post groove 109 is directly communicated with the air extraction channel 102, while the outer end of the right stop post groove 109 is communicated with a first branch pipe 112. The first branch pipe 112 is located inside the base 12 and is communicated with the second branch pipe 113.

[0026] The outer end of the stop post groove 109 is fixedly connected with an inner hoop 111, and a spring 110 is further provided inside the stop post groove 109. The two ends of the spring 110 are respectively connected to the outer end of the stop post 108 and the inner hoop 111.

[0027] A baffle 15 is further fixedly connected to the upper end of the base 12. The baffle 15 is located outside the magnetic wheel 13.

[0028] Specific implementation method and principle:

[0029] During production, the product is placed on the base 12, and the product is supported between two opposite groups of bases 12. There is not only space above, but also a hollow below to facilitate processing from below. The product placed on the base 12 is driven to move by the rotation of the magnetic wheels 13. An active magnetic wheel 13 is set at a certain distance, and the other magnetic wheels 13 are driven. The stopping of some driven magnetic wheels 13 will not affect the operation of the whole line.

[0030] After the product reaches the processing point, first, the solenoid valve 114 in the air extraction channel 102 below the air suction port 14 at the processing point is opened, and the fan starts to extract air (the fan is a centrifugal fan and an axial flow fan, which can be used for air extraction and exhaust). Therefore, a negative pressure is generated in the air extraction channel 102, causing negative pressure in both the branch pipe 112 and the branch pipe 113. Since the air extraction channel 102 and the branch pipe 112 are respectively connected to the retaining column grooves 109 on the left and right sides, a negative pressure is also generated in the retaining column grooves 109. The solenoid valve 115 is opened with a delay, so the telescopic rod groove 107 is not temporarily connected to the branch pipe 113, and no negative pressure is generated therein. Therefore, the negative pressure in the retaining column groove 109 drives the retaining column 108 in the retaining column groove 109 to move outward, releasing the telescopic rod 106.

[0031] Since the branch pipe 113 is also connected to the telescopic rod groove 107, after the retaining column 108 moves outward to release the telescopic rod 106, the solenoid valve 115 is opened. Therefore, a negative pressure will also be generated in the telescopic rod groove 107. After the telescopic rod 106 is released, the negative pressure in the telescopic rod groove 107 will drive the telescopic rod 106 to move downward, and then drive the magnetic wheel 13 to move downward (only the magnetic wheel 13 at the processing point will move downward). After the rotating shaft 103 and the magnetic wheel 13 slide downward to the lowest point through the slider 104 and the chute 105, the distance between this magnetic wheel 13 and the other magnetic wheels 13 is increased. Coupled with the frictional force generated by the contact between the magnetic wheel groove 101 and the magnetic wheel 13, this magnetic wheel 13 will stop rotating.

[0032] Since the magnetic wheel 13 at the processing point moves downward, the product will also move downward accordingly. When the product moves downward to cover the air suction port 14, the air suction port 14 will adsorb the product like a suction cup, keeping it fixed.

[0033] After the processing is completed, the fan starts to blow air, generating a high pressure in the air extraction channel 102. This air pressure is finally transmitted to the telescopic rod groove 107, pushing the telescopic rod 106 to move upward, causing the magnetic wheel 13 at the processing point and the workpiece to be processed to move upward and reset. Then, the solenoid valve 14 and the solenoid valve 115 are closed again.

[0034] Based on the above, the present invention integrates the processing stations directly into the production line by designing a complete conveyor line. It can stop the product conveyance at any time and fix the product simultaneously, achieving the functions of stopping and starting at will, as well as performing processing at any time and place. Moreover, the stop and fixation of one product do not affect the operation of the entire production line, nor the conveyance and processing of other products.

[0035] As is known by common technical knowledge, the present invention can be implemented by other embodiments that do not deviate from its spiritual essence or essential features. Therefore, the above-disclosed embodiments are illustrative in all aspects and not exclusive. All changes within the scope of the present invention or within the scope equivalent to the present invention are encompassed by the present invention.

Claims

1. A production device for a new energy vehicle motor, characterized in that, It includes a base (12), a magnetic wheel (13) and an air suction port (14). There are two opposite groups of the base (12) which are fixedly connected to the base (11), and there are also several uniformly arranged magnetic wheels (13) and air suction ports (14) on the base (12). The air suction port (14) is located inside the magnetic wheel (13). There is also a magnetic wheel groove (101) and an air extraction channel (102) inside the base (12). The left and right ends of the magnetic wheel (13) are respectively rotatably connected to the magnetic wheel groove (101) through a rotating shaft (103). The upper end of the air extraction channel (102) is connected to the air suction port (14), and its lower end is connected to an external fan. The lower end of the rotating shaft (103) is fixedly connected with a telescopic rod (106). The telescopic rod (106) is slidably connected in a telescopic rod groove (107) provided inside the base (12). There is also a second branch pipe (113) inside the base (12). The lower end of the telescopic rod groove (107) is also communicated with the second branch pipe (113) through a second solenoid valve (115). The second branch pipe (113) is also communicated with the air extraction channel (102).

2. The production device for a new energy vehicle motor according to claim 1, wherein: The outer end of the rotating shaft (103) is fixedly connected with a slider (104). The slider (104) is slidably connected in a chute (105) provided inside the base (12).

3. A production device for a new energy vehicle motor according to claim 1, characterized in that: There is also a first solenoid valve (114) inside the air extraction channel (102).

4. A production device for a new energy vehicle motor according to claim 1, characterized in that: There is a stop post (108) below the telescopic rod (106). The inner end of the stop post (108) is slidably connected in the telescopic rod groove (107), and the outer end of the stop post (108) is slidably connected in a stop post groove (109) provided inside the base (12). The outer end of the left stop post groove (109) is directly communicated with the air extraction channel (102), and the outer end of the right stop post groove (109) is communicated with a first branch pipe (112). The first branch pipe (112) is located inside the base (12) and is communicated with the second branch pipe (113).

5. An electric motor production device for a new energy vehicle according to claim 4, characterized in that: The outer end of the stop post groove (109) is fixedly connected with an inner hoop (111), and there is also a spring (110) inside the stop post groove (109). The two ends of the spring (110) are respectively connected to the outer end of the stop post (108) and the inner hoop (111).

6. The production device of a new energy vehicle motor according to claim 1, characterized in that: The upper end of the base (12) is also fixedly connected with a baffle (15). The baffle (15) is located outside the magnetic wheel (13).