应用光学, 2018, 39 (1): 112, 网络出版: 2018-03-15  

基于MCP的玻璃纤维制作系统设计与分析

Design and research of glass fiber making system based on MCP
作者单位
南京理工大学 机械工程学院,江苏 南京 210094
摘要
根据微通道板(MCP)制作的需要,设计了一套高精度玻璃纤维的制作系统。为了保证玻璃纤维制作系统工作时伺服电机产生的振动在拉丝精度要求范围内,利用UG软件对玻璃纤维制作系统进行了建模,并利用有限元仿真软件对相关结构进行了振动模态有限元仿真分析,保证了该系统设计的可靠性。系统设计完成后,进行了玻璃纤维的拉制实验,验证了该系统的设计达到MCP制作所需要的玻璃纤维精度,并给出了在技术指标下系统的最佳工作温度和拉丝速度分别为751℃和4 m/min。
Abstract
In order to meet the needs of making microchannel plate(MCP),a high-precision glass fiber production system was designed. For ensuring the test accuracy which caused by the servo motor vibration at working station within the allowable range,the three-dimensional model of the glass fiber production system was established by UG software,and the vibration modal finite element simulation analysis was carried out by finite element analysis software,so as to assure the reliability of the system.Experiments of glass fiber drawing were carried out after the system was completed.Experiments show that design fully meets the glass fiber accuracy required for making MCP needed,and it is find out that the best operating temperature and drawing speed of the system under the technical index are 751℃ and 4 m/min,respectively.
参考文献

[1] 向世明,倪国强.光电子成像器件原理[M].北京:国防工业出版社,1999:5-18.

    XIANG Shiming,NI Guoqiang.The principle of photoelectronic imaging devices[M].Beijing:National Defence Industry Press,1999:5-18.

[2] SOMMER A H.Brief history of photoemissive materials[J].SPIE,1993,2022:3-15.

[3] 艾克聪.微光夜视技术的进展与展望[J].应用光学,2006,27(4):303-307.

    AI Kecong.Development and prospect of low-light-level(LLL) night vision technology[J].Journal of Applied Optics,2006,27(4):303-307.

[4] LAPRADE B N,REINHART S T,WHEELER M.A low noise figure microchannel plate for gen Ⅲ image intensification systems[J].SPIE,2003,5071:397-404.

[5] JIANG C,KUZYK M G,DING J L.,et al.Fabrication and mechanical behavior of dye-doped polymer optical fiber[J].J.Appl.Phys.,2002,92(1):4-12.

[6] 袁安富,陈俊.Ansys 在模态分析中的应用[J].设计与研究,2007(8):79-82.

    YUAN Anfu,Chen Jun.Application of ansys in modal analysis[J].Design and Study,2007(8):79-82.

[7] LEE S H K,JALURIA Y.The effects of geometry and temperature variations on the radiative transport during optical fiber drawing[J].J.Mater.Process Manuf.Sci.,1995(3):317-331.

[8] YIN Z,JALURIA Y.Zonal method to model radiative transport in an optical fiber drawing furnace[J].ASME J.Heat Transfer,1997,119:597-603.

[9] LIU J,ZHANG S J,CHEN Y S.Advanced simulation of optical fiber drawing process[J].Numer Heat Transfer:Part A,2001, 40:473-496.

李杰, 邱亚峰, 钱芸生, 钱鑫. 基于MCP的玻璃纤维制作系统设计与分析[J]. 应用光学, 2018, 39(1): 112. Li Jie, Qiu Yafeng, Qian Yunsheng, Qian Xin. Design and research of glass fiber making system based on MCP[J]. Journal of Applied Optics, 2018, 39(1): 112.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!