一种连续变焦防辐射镜头设计

Design of Continuous Zoom Radiation-Proof Lens

  • 摘要: 为了确保核设施的安全使用,往往需要对覆盖在核辐射环境下的某些场所进行监控,因此本文设计了一款5倍连续变焦防辐射镜头,与传统的定焦镜头相比,它能够同时观测各种距离的目标,不但能够在短焦距大观测场下对目标实施距离检测,也同时能够在长焦距小观测场下对目标实施位置分析。设计中系统采用机械补偿正组补偿结构形式,所有光学组件均采用防辐射玻璃,且为分离组件,结构件组件选用防辐射性能较强的钨。所设计的连续变焦防辐射镜头通过计算初始结构参数、校正像差,最终设计的镜头具有成像质量良好、结构合理、加工装调的工艺性好等优点。该防辐射镜头耐辐射,与国外同类产品相比,具有更强的防辐射性能,为连续变焦镜头填补了国内相关产品的空白,为耐辐射摄像系统大幅度降低成本、实现国产化提供了工程参考。

     

    Abstract: To ensure safe operation of nuclear facilities, monitoring areas exposed to nuclear radiation is essential. This study presents a 5× continuous-zoom radiation-proof lens. Unlike conventional fixed-focus lenses, the proposed system enables simultaneous observation of targets at varying distances, providing both short-focal-length monitoring and long-focal-length positioning analysis. The optimal design employs a mechanically compensated structure with positive group compensation. Lens elements are fabricated from radiation-resistant glass with separation components, whereas the structural housing is composed of tungsten to provide superior radiation protection shielding. To achieve high image quality, reasonable structure, and reliable manufacturability, the continuous-zoom radiation-proof lens was developed through calculation of initial structural parameters, aberration correction, and evaluation of final image performance. The proposed lens not only demonstrates radiation resistance but also provides enhanced anti-radiation functionality. Compared with similar foreign products, it exhibits superior radiation shielding while incorporating a continuous-zoom system, thereby addressing a critical gap in domestic technologies. This development offers significant engineering reference value for radiation-resistant camera systems and contributes to cost reduction and enhanced localization.

     

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