Method for Increasing of Lens Gluing Technological Process Efficiency and a Reliable Evaluation of Output Controlled Parameters

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION
R. V. Fiodоrtsev, E. Metelskaya, V. A. Marchik, A. Kuznetsov, A. E. Makarevich
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Abstract

The use of glued lens components in optical devices improves the image quality of telescopic and photographic lenses or inverting systems by eliminating a number of aberrations, and also reduces light losses in the optical system of the device. The traditional production process of lenses gluing involves the sequential execution of a set of technological operations and takes a significant period of time. The purpose of the research was to improve the accuracy and productivity of the technological process of lenses gluing by improving the optical system of the control and measuring device and automating the operation of lenses optical axes combining by introducing an electronic reference system and mechanisms for micro-movements of optical parts.A technique is proposed for centering of two and three-component optical blocks by an autocollimation flare which provides a matching accuracy of less than 0.5 μm. The possibility of constructive modernization of the classic ST-41 autocollimation microscope with parallel separation of the displayed output information in the visual and television channels is shown. An automated system for controlling of the process of convergence of autocollimation points in the device is proposed. Using software methods an electronic grid template is formed on the monitor screen, onto which images of autocollimation points are projected. The decentering value 2Δe is determined and a corrective control voltage is applied to three stepper motors and pushers for transverse movement of the glued optical part.Specialized software has been developed for automatically bringing the position of the autocollimating crosshair to the center of the measuring scale of the grid based on a combination of two methods of “least squares” and “successive approximation”. Compliance with a number of technological transitions and the accompanying control of geometric parameters make it possible to achieve greater accuracy in determining the eccentricity of the crosshairs of the aligned optical axes of the glued lenses. 
提高镜片粘接工艺效率的方法及输出控制参数的可靠评定
在光学设备中使用胶合透镜组件,通过消除一些像差,提高了望远和摄影透镜或反相系统的图像质量,也减少了设备光学系统中的光损失。传统的镜片粘合生产过程包括一系列技术操作的连续执行,需要相当长的时间。本研究的目的是通过改进控制测量装置的光学系统,通过引入电子参考系统和光学部件的微运动机构,结合镜头光轴的自动化操作,提高镜头粘接工艺过程的精度和生产率。提出了一种利用自准直耀斑对两分量和三分量光学块定心的方法,其匹配精度小于0.5 μm。建设性现代化的可能性,经典ST-41自准直显微镜与平行分离的显示输出信息在视觉和电视频道显示。提出了一种控制装置中自准直点收敛过程的自动化系统。采用软件方法在显示器屏幕上形成电子网格模板,将自动准直点的图像投影到该模板上。确定偏心值2Δe,并对三个步进电机和推杆施加校正控制电压,用于粘合光学部件的横向运动。采用“最小二乘”和“逐次逼近”两种方法相结合的方法,开发了将自准直准星位置自动移至网格测量尺度中心的专用软件。符合一些技术转变和伴随的几何参数的控制,使得有可能在确定胶合透镜的对准光轴的十字准星的偏心率方面达到更高的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
自引率
25.00%
发文量
18
审稿时长
8 weeks
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