光学 精密工程, 2012, 20 (7): 1509, 网络出版: 2012-08-09   

大型地平式望远镜的方位轴系支撑结构

Azimuth shafting bearing structure in a large Alt-azimuth telescope
作者单位
中国科学院 长春光学精密机械与物理研究所, 吉林 长春 130033
摘要
设计了用于2 m口径望远镜的方位轴系支撑结构。通过对比大型地平式望远镜方位轴系的典型支撑结构, 拟定了由向心球轴承和大接触角推力球轴承集成的一体化轴系支撑方案以及相应的轴承结构参数。依据Hertz接触理论并采用AYSYS有限元软件对60~85°不同原始接触角下的静载荷特性参数进行了理论计算和非线性仿真分析验证, 结合加工工艺设计了85°接触角的推力球轴承结构。研制成功了直径为1 500 mm轴承样机, 其轴向跳动为0.009 mm, 径向跳动为0.006 mm, 最大空载启动摩擦力矩为30 N·m, 承载能力优于30 t。该项设计为大型望远镜高精度方位轴系的研制提供了可靠的设计依据和技术途径。
Abstract
An azimuth shafting bearing structure was designed for a 2 m telescope engineering project. The typical azimuth bearing structures in large Alt-azimuth telescopes were compared, and the shafting bearing scheme for integrating a high-angular contact thrust ball bearing with a radial ball bearing was put forward. The corresponding parameters of the high-angular contact thrust ball bearing were devised. Based on the Hertz contact theory and the Finite Element Method(FEM) software ANSYS, the static performance parameters within the range of 60-85° original contact angle were calculated and validated in nonlinear simulation. The 85° high-angular thrust ball bearing structure was designed with the processing technique. A prototyping bearing with a diameter of 1 500 mm was developed firstly at home and it shows good performance in a axial run-out of 0.009 mm, a radial run-out of 0.006 mm, the maximum starting torque without load of 30 N·m, and the load capacity more than 30 t. The design can offer a reliable guidance and advanced technique paths for developing the high precision azimuth shaftings of large telescope systems.
参考文献

[1] 周超, 杨洪波, 吴小霞, 等. 地基大口径望远镜结构的性能分析[J]. 光学 精密工程, 2011, 19(1):138-145.

    ZHOU CH, YANG H B, WU X X, et cl.. Structure analysis of ground-based large telescopes[J]. Opt. Precision Eng., 2011, 19(1):138-145.(in Chinese)

[2] 王帅, 李洪文, 孟浩然,等. 光电望远镜伺服系统速度环的自抗扰控制[J]. 光学 精密工程, 2011, 19(10):2442-2449.

    WANG SH, LI H W, MENG H R, et cl.. Active disturbance rejection controller for speed-loop in telescope servo system[J]. Opt. Precision Eng., 2011, 19(10):2442-2449.(in Chinese)

[3] BERTRAND K, CARLO F. VLTI auxiliary telescopes[J]. SPIE, 2000, 4006:13-25.

[4] STEELE I A, SMITH R J, REES P C. The liverpool telescope: performance and first results[J]. SPIE, 2004,5489: 679-693.

[5] TARENGHI M. European southern observatory (ESO) 3.5m new technology telescope[J]. SPIE, 1986, 628: 328-336.

[6] ROBERT Q F. The starfire optical range 3.5-m adaptive optical telescope[J]. SPIE, 2003, 4837: 934-943.

[7] BIRBERT C, BHATIA R, BONOLI C, et al.. Status of the Galileo national telescope[J]. SPIE, 1994, 2199: 10-21.

[8] PORTER D S, KERSTAN G H, JAMES J S. Final design, fabrication, factory integration, and test of a 4.2-meter telescope mount[J]. SPIE, 2003, 4837: 295-307.

[9] DAVID S P, THOMAS A S, BYRON S, et al.. The concept design of the discovery channel telescope mount[J]. SPIE, 2004, 5489: 950-961.

[10] 张景旭. 大型跟瞄架方位轴系的研制[J]. 光学 精密工程, 1996, 4(2):73-77.

    ZHANG J X. Development of vertical axial system for large tracking and pointing mount[J]. Opt. Precision Eng., 1996, 4(2):73-77.(in Chinese)

[11] 冯栋彦, 高云国, 张文豹. 采用标准轴承的光电经纬仪轴系误差修正[J]. 光学 精密工程, 2011, 19(3):605-611.

    FENG D Y, GAO Y G, ZHANG W B. Elimination of shafting errors in photoelectrical theodolites with standard-bearings[J]. Opt. Precision Eng., 2011, 19(3):605-611.(in Chinese)

[12] HERTZ H. On the contact of elastic solids[J]. J. Reine and Angew. Math, 1881, 92:100-111.

[13] ISO 76-2006: Rolling bearings-static load ratings[S]. 2006.

[14] TEDRIC A H. Rolling Bearing Analysis[M]. 4th Edition, New York: Taylor&Francis, 2001:185-189.

[15] ANSYS Contact Technology Guide Release 9.0 Documentation[EB/OL]. ANSYS, Inc. 2004.

[16] 王槐, 张景旭, 代霜. 基于ANSYS的平面止推轴承有限元分析[J]. 现代制造工程, 2011, 8:75-79.

    WANG H, ZHANG J X, DAI SH. Analysis of the finite element contact model in the plane thrust bearing using ANSYS[J]. J. Modern Manufacturing Engineering, 2011, 8:75-79.(in Chinese)

[17] JB/T 10471-2004 滚动轴承 转盘轴承[S]. 2004.

    JB/T 10471-2004 Rolling bearing-Slewing Bearings[S]. 2004.(in Chinese)

[18] 王志, 王槐. 大型精密转台用径向自定位双排异径球转盘轴承:中国, ZL 2009 10067381.4[P]. 2011.

    WANG ZH, WANG H. Radial self-aligning double row different ball diameter slewing bearing for large precision turntable: China, ZL 2009 10067381.4[P]. 2011.(in Chinese)

王槐, 代霜, 张景旭. 大型地平式望远镜的方位轴系支撑结构[J]. 光学 精密工程, 2012, 20(7): 1509. WANG Huai, DAI Shuang, ZHANG Jing-xu. Azimuth shafting bearing structure in a large Alt-azimuth telescope[J]. Optics and Precision Engineering, 2012, 20(7): 1509.

本文已被 5 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

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!