Visual detection of constant feed drive mechanism

By combining an inertial flywheel with a friction clutch, along with a special profile cam and a pressure adjustment device, the problem of unstable feed mechanism speed in the vision inspection system was solved, achieving precise and uniform speed control through pure mechanical means, thus improving inspection accuracy and equipment adaptability.

CN122403012APending Publication Date: 2026-07-17SUZHOU DIYAN INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SUZHOU DIYAN INTELLIGENT TECHNOLOGY CO LTD
Filing Date
2026-04-21
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing vision inspection systems, the speed stability of the feeding mechanism is poor, resulting in low detection accuracy. In particular, the speed fluctuates significantly when the load changes, and traditional mechanical feeding mechanisms cannot achieve precise and uniform motion.

Method used

The system employs an inertial flywheel in conjunction with a friction clutch, along with a specially contoured cam and a pressure regulating device. The inertial flywheel absorbs speed fluctuations, the friction clutch provides stable torque transmission, and the pressure regulating device adjusts the clamping force of the friction clutch in real time to ensure that the transmission system maintains a constant speed under varying loads.

Benefits of technology

It achieves precise and uniform speed control through pure mechanical means, reducing equipment costs and maintenance difficulty, improving detection accuracy and image quality, and significantly enhancing adaptability and reliability.

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Abstract

本发明公开了一种视觉检测匀速进给传动机构,涉及视觉检测设备技术领域,包括机架,所述机架内转动设有主动轴和稳进轴,所述主动轴和稳进轴外侧壁贴合设有传送带。本发明提供的通过惯性飞轮与摩擦离合器的配合,有效吸收传动过程中的速度波动,特别是启动、停止阶段和负载突变时的冲击,确保输出轴在整个工作周期内保持稳定的转速,解决了传统机械进给机构速度波动大的问题,提高了视觉检测的图像质量和检测精度,惯性飞轮的转动惯量经过精确计算,能够在电机转速变化时提供稳定的能量输出,而摩擦离合器则通过适当的摩擦力传递扭矩,避免刚性连接带来的冲击,这种机械缓冲方式比电子控制更加可靠和经济。
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