Coding mechanism for post-welding detection and processing of new energy stator-driven motor core

CN224689849UActive Publication Date: 2026-08-28CHANGZHOU WON FOR AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202522026400.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2026-08-28
Estimated Expiration
2035-09-19

AI Technical Summary

Technical Problem

目前,现有打码及扫码工序分别由两个独立工位进行,导致整条产线的占地面积较大,集成度较低

Benefits of technology

[0013]本实用新型通过上打码组件、侧打码组件、上扫码组件、侧扫码组件和夹取翻转组件的设置,集成了打码与扫码功能,集成度高且实现了多面打码;同时配合升降旋转平台的设置,可以根据不同尺寸的定子调整与上打码组件之间的距离,保证打码效果稳定。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to motor stator processing technical field, especially in kind of new energy stator drive motor core welding post -route detection processing is used to code mechanism of striking, including bottom plate, stand and vertical board, the stand and vertical board all install on the bottom plate, and vertical board sets up in the stand side, still include installing the lifting rotary platform on the bottom plate, install the upper code striking subassembly on the upper portion of stand, install the upper scanning code subassembly in the middle part of stand, install the clamping turnover subassembly in the lower part of stand, install the side scanning code subassembly on the upper portion of vertical board, install the side code striking subassembly in the middle part of vertical board and install the light source subassembly in the lower part of vertical board, the lifting rotary platform sets up in the front of stand, the utility model provides a kind of structure design simple, integrated code scanning function can realize multi -faced code striking, and the new energy stator drive motor core welding post -route detection processing is used to code mechanism of striking of stable code striking effect.
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Claims

1. A marking mechanism for post-welding inspection and processing of the iron core of a new energy stator drive motor, comprising a base plate (100), a support frame (200), and a vertical plate (300), wherein the support frame (200) and the vertical plate (300) are both mounted on the base plate (100), and the vertical plate (300) is disposed beside the support frame (200), characterized in that: It also includes a lifting and rotating platform (400) mounted on the base plate (100), an upper coding assembly (500) mounted on the upper part of the upright (200), an upper scanning assembly (600) mounted in the middle of the upright (200), a gripping and flipping assembly (700) mounted on the lower part of the upright (200), a side scanning assembly (800) mounted on the upper part of the upright plate (300), a side coding assembly (900) mounted in the middle of the upright plate (300), and a light source assembly (1000) mounted on the lower part of the upright plate (300). The lifting and rotating platform (400) is located in front of the upright (200).

2. The marking mechanism for post-welding inspection and processing of the iron core of a new energy stator drive motor according to claim 1, characterized in that: The lifting and rotating platform (400) includes a mounting plate (410), a first lifting assembly, and a rotating platform (420). The mounting plate (410) is disposed above the base plate (100). The first lifting assembly is mounted on the base plate (100), and the driving end of the first lifting assembly is connected to the bottom end of the mounting plate (410). The rotating platform (420) is mounted on the mounting plate (410) and is used to drive the stator to rotate.

3. The marking mechanism for post-welding inspection and processing of the iron core of a new energy stator drive motor according to claim 2, characterized in that: The lifting and rotating platform (400) also includes a guide group (430), which includes a bushing and a guide shaft. The bushing is mounted on the base plate (100), and the guide shaft slides through the bushing. The top end of the guide shaft is connected to the mounting plate (410).

4. The marking mechanism for post-welding inspection and processing of the core of a new energy stator drive motor according to claim 1, characterized in that: The upper barcode scanning assembly (600) includes an advance / reverse cylinder, an upper connecting plate, and an upper barcode scanner. The advance / reverse cylinder is installed in the middle of the upright frame (200). One end of the upper connecting plate is connected to the drive end of the advance / reverse cylinder, and the other end of the upper connecting plate passes through the upper through hole in the middle of the upright frame (200) and is connected to the upper barcode scanner.

5. The marking mechanism for post-welding inspection and processing of the iron core of a new energy stator drive motor according to claim 1, characterized in that: The gripping and flipping assembly (700) includes a slide plate (710), a second lifting group (720), a flipping motor (730), and a gripping group. The slide plate (710) is slidably mounted on the lower part of the upright (200). The second lifting group (720) is mounted on the bottom end of the upright (200), and the driving end of the second lifting group (720) is connected to the slide plate (710). The flipping motor (730) is mounted on the middle part of the slide plate (710), and the output end of the flipping motor (730) is connected to the gripping group.

6. The marking mechanism for post-welding inspection and processing of the iron core of a new energy stator drive motor according to claim 5, characterized in that: The gripping assembly includes a gripping cylinder, grippers, and gripping blocks. The gripping cylinder is installed at the output end of the flipping motor (730), the grippers are installed at the drive end of the gripping cylinder, and the gripping blocks are installed on the inner side of the grippers.

7. The marking mechanism for post-welding inspection and processing of the iron core of a new energy stator drive motor according to claim 1, characterized in that: The side scanning assembly (800) includes a lifting cylinder, a side connecting plate, and a side scanner. The lifting cylinder is installed on the upper part of the upright plate (300). The top end of the side connecting plate is connected to the driving end of the lifting cylinder, and the bottom end of the side connecting plate is connected to the side scanner.

8. The marking mechanism for post-welding inspection and processing of the iron core of a new energy stator drive motor according to claim 1, characterized in that: The light source assembly (1000) includes a cross arm and a light source. One end of the cross arm is connected to the lower part of the upright plate (300), and the other end of the cross arm is connected to the light source.