双筒棱镜望远镜的物镜和目镜的选型和设计毕业设计

2019-06-11 00:12

毕业论文(设计)

课题名称:

双筒棱镜望远镜的物镜和目镜的

选型和设计

题目类型: 毕业设计

毕业设计(论文)原创性声明和使用授权说明

原创性声明

本人郑重承诺:所呈交的毕业设计(论文),是我个人在指导教师的指导下进行的研究工作及取得的成果。尽我所知,除文中特别加以标注和致谢的地方外,不包含其他人或组织已经发表或公布过的研究成果,也不包含我为获得 及其它教育机构的学位或学历而使用过的材料。对本研究提供过帮助和做出过贡献的个人或集体,均已在文中作了明确的说明并表示了谢意。

作 者 签 名: 日 期: 指导教师签名: 日 期:

使用授权说明

本人完全了解 大学关于收集、保存、使用毕业设计(论文)的规定,即:按照学校要求提交毕业设计(论文)的印刷本和电子版本;学校有权保存毕业设计(论文)的印刷本和电子版,并提供目录检索与阅览服务;学校可以采用影印、缩印、数字化或其它复制手段保存论文;在不以赢利为目的前提下,学校可以公布论文的部分或全部内容。

作者签名: 日 期:

目 录

毕业设计(论文)任务书 ············································································ I 毕业设计(论文)开题报告 ······································································· Ⅳ 毕业设计(论文)指导教师审查意见 ··························································· Ⅺ 毕业设计(论文)评阅教师评语 ································································· Ⅻ 毕业设计(论文)答辩会议记录 ······························································ ⅩⅢ 中文摘要 ···························································································· ⅩⅣ Abstract ····························································································· ⅩⅤ 1 引言 ···································································································· 1 2 目视光学系统成像原理 ············································································ 1 2.1 目视光学系统的特点 ······································································ 1 2.2 望远镜系统成像原理 ······································································ 1 2.3 显微镜系统成像原理 ······································································ 2 3 光学自动设计方法 ·················································································· 3

3.1光学设计基本步骤 ·········································································· 3 3.2光学自动设计概述 ·········································································· 4

4 望远镜系统的选型与设计 ········································································ 5

4.1 设计技术要求 ··············································································· 5 4.2 系统外型结构参数的理论计算 ·························································· 6 4.3 望远镜结构元件的选型 ··································································· 9

4.3.1 望远镜物镜的选型 ································································· 9 4.3.2 望远镜目镜的选型 ································································· 9 4.3.3 转向棱镜的选型 ··································································· 10 4.4 应用TCOS光学设计软件对结构元件进行设计 ··································· 12 4.4.1 物镜设计过程 ······································································· 12 4.4.2 目镜设计过程 ······································································· 15 4.5 设计图纸 ···················································································· 18

4.5.1 系统结构图纸 ······································································ 18 4.5.2 系统元件设计图纸 ································································ 18

5 显微镜系统的选型和设计 ······································································· 18

5.1 设计技术要求 ·············································································· 18

5.2 系统外型结构参数的理论计算 ························································· 19 5.3 显微镜结构元件的选型 ·································································· 20 5.3.1 显微镜物镜的选型 ······························································· 20

5.3.2 显微镜目镜的选型 ······························································· 20 5.4 应用TCOS光学设计软件对结构元件进行设计 ··································· 21 5.4.1 物镜设计过程 ······································································ 21 5.4.2 目镜设计过程 ······································································ 24 5.5 设计图纸 ···················································································· 28 5.5.1 系统结构图纸 ······································································ 28 5.5.2 系统元件设计图纸 ······························································· 28 6 设计体会 ···························································································· 28 参考文献 ······························································································· 30 致谢 ····································································································· 31 附录 ····································································································· 32

长江大学毕业设计(论文)任务书

学院(系) 物理科学与技术学院 专业 应用物理学 班级 应物2042 学生姓名 李璞 指导教师/职称 程庆华/教授 ⒈毕业设计(论文)题目

双筒棱镜望远镜的物镜和目镜的选型和设计 ⒉毕业设计(论文)起止时间:2008年1月~2008年6月 ⒊毕业设计(论文)所需资料及原始数据(指定教师选定部分) 参考文献:

[1] 康玉思, 刘伟奇, 冯睿. Cook 结构补偿镜的球面折反型望远系统[J]. 光学 精密工程,

2007,3(15):303~307

[2] 杨荣仙. 变倍目镜的设计[J] . 光学技术 , 1992,6:19~30

[3] 常军, 翁志成, 姜会林等. 长焦距空间三反光学系统设计[J]. 光学精密工程, 2001,9(4):315~318 [4] 潘君骅. 成像光学工程面临的光学问题[J]. 中国工程科学. 2000,2(3): 32~35

[5] 姜守信,郭霞, 闫惠民.非共轴反光镜程序的设计[J]. 黑龙江电子技术, 1996,2:7~8

[6] 赵延仲,宋丰华,孙华燕.高斯光束的激光变焦扩束光学系统设计[J]. 装备指挥技术学院学报,

2007,18(5):85~89

[7] 涂德华. 共轴光学系统镜框结构设计[J]. 光学仪器, 2007,29(1):52~56 [8] 袁旭沧. 光学设计[M]. 北京: 科学出版社,1980

[9] 张楠, 卢振武, 李凤有. 衍射望远镜光学系统设计[J]. 红外与激光工程, 2007.2 36(1):106-108 [10] 尚华, 刘钧, 高明等. 头盔式单目微光夜视仪中的光学系统设计[J]. 应用光学, 2007.5 28(3):

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[11] 安连生. 应用光学[M]. 北京: 北京理工大学出版社, 1998

[12] 姚多舜, 梁宏君. 一个可完全自动绘图的光学设计软件——OCAD光学设计软件包[J]. 应用光学,

2004.3 25(2):28-35

[13] 石顺祥, 张海兴, 刘劲松. 物理光学与应用光学[M]. 西安: 西安电子科技大学出版社,1999 [14] 杨近松. 光学镜头机械结构参数化设计系统的开发[J] . 光学精密工程, 1999,127(6):6-9 [15] 高晓斌, 余晓芬. 一种并行共焦显微镜的设计与研制[J]. 光学仪器, 2005.12 27(6):72-76 [16] 赵丽萍, 赵子英, 邬敏贤等. 折射混合望远镜的设计制作及实验[J]. 光学技术, 1999.5 3:28-31 [17] 郁道银, 谈恒英. 工程光学[M]. 北京: 机械工业出版社, 1999

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