An in-line lens assembly apparatus

By using a conveyor belt, rollers, sprockets, and chain belt for synchronous transmission, and an eccentric pin shaft, gear meshing and turning mechanism, as well as an electric telescopic cylinder to drive the clamping mechanism, the problems of complex transmission structure and poor synchronization in existing equipment have been solved. This has enabled efficient and stable online continuous processing of lenses, improving processing efficiency and pass rate.

CN122401022APending Publication Date: 2026-07-17SUZHOU LANGDIAN ROBOT CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SUZHOU LANGDIAN ROBOT CO LTD
Filing Date
2026-05-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing online lens assembly equipment suffers from problems such as complex transmission structure, poor synchronization, large equipment size, high maintenance cost, and difficulty in balancing flipping accuracy and clamping stability. This results in low lens processing efficiency and pass rate, failing to meet the requirements of high precision and continuous production.

Method used

The conveyor structure, which uses conveyor belts, rollers, cylinders, and sprockets for synchronous transmission, combined with a flipping mechanism using eccentric pins and gear meshing, and a clamping mechanism driven by an electric telescopic cylinder, enables precise conveying, flexible flipping, and stable clamping of lenses, ensuring the continuity and stability of lenses during online processing.

Benefits of technology

It enables efficient, stable, and automated online continuous processing of both front and back lenses, improving processing efficiency and yield, and meeting the needs of large-scale production.

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Abstract

本发明公开了一种在线式镜片组装设备,涉及镜片组装技术领域,包括设备本体,设备本体的内部设置有底板,底板的顶面固定设置有一对侧板,一对侧板之间设置有一对输送带,输送带上放置有若干镜片,且一对输送带之间设置有矩形框,一对侧板通过往复机构与矩形框连接;矩形框的内部转动插设有若干对联动轴,联动轴的中部固定套设有缺口齿轮,相邻的一对缺口齿轮啮合,缺口齿轮的缺口部分固定设置有夹爪,相邻的一对夹爪呈对称分布在对应的镜片的两侧。本发明各部分协同运作,实现镜片正反面在线式连续加工,全程自动化程度高,操作精准稳定,既提升加工效率与合格率,又适配规模化生产需求,实用性极强。
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