首页> 外文会议>Aerospace mechanism symposium >Development of a miniature, two-axis, triple-Helmholtz-driven gimbal
【24h】

Development of a miniature, two-axis, triple-Helmholtz-driven gimbal

机译:开发微型,双轴,三重亥姆霍兹驱动的万向节

获取原文

摘要

This paper details the development of a Helmholtz-driven, 2-axis gimbal to position a flat mirror within 50 microradian (fine positioning) in a space environment. The gimbal is intended to travel on a deep space mission mounted on a miniature "rover" vehicle. The gimbal will perform both pointing and scanning functions. The goal for total mass of the gimbal was 25 grams. The primary challenge was to design and build a bearing system that would achieve the required accuracy in addition to supporting the relatively large mass of the mirror and the outer gimbal. The mechanism is subjected to 100-G loading without the aid of any additional caging mechanism. Additionally, it was desired to have the same level of accuracy during Earth-bound, 1-G testing. Due to the inherent lack of damping in a zero-G, vacuum environment; the ability of the gimbal to respond to very small amounts of input energy is paramount. Initial testing of the first prototype revealed exceedingly long damping times required even while exposed to the damping effects of air and 1-G friction. It is envisioned that fine positioning of the gimbal will be accomplished in very small steps to avoid large disturbances to the mirror. Various bearing designs, including materials, lubrication options and bearing geometry will be discussed. In addition various options for the Helmholtz coil design will be explored with specific test data given. Ground testing in the presence of 1-G was compounded by the local magnetic fields due to the "compass" effect on the gimbal. The test data will be presented and discussed. Additionally, rationale for estimating gimbal performance in a zero-G environment will be presented and discussed. Some of the physical and functional requirements are as follows: · A clear aperture of 17 mm and a field of regard of ±15° in both Elevation and Azimuth with a 50 microradian (fine positioning) positioning increment. · Unimpeded, full rotation in both elevation and azimuth. · A survival temperature range of 155 to +145°C. · An operational temperature range of -80 to +70°C. · A maximum mass of 25 grams with a maximum total power of 0.72 watt for simultaneous 3-axis operation. · Ability to withstand 100-G launch loading.
机译:本文详细介绍了Helmholtz驱动的2轴Gimbal的开发,可以在空间环境中定位50微radian(精细定位)的平面镜。万吉网旨在前往安装在微型“Rover”车辆上的深度空间任务。 GIMBAL将执行指向和扫描功能。 Gimbal总质量的目标是25克。主要挑战是设计和构建一个轴承系统,除了支持相对大的镜子和外汇上的镜子和外汇网外,还可以实现所需的精度。该机制受到100g加载的借助于任何额外的持续衰退机制。另外,期望在接地1g测试期间具有相同的精度水平。由于零克,真空环境中固有的缺乏阻尼; Gimbal响应非常少量的输入能量的能力至关重要。第一个原型的初始测试甚至在暴露于空气和1g摩擦的阻尼效果时所需的非常长的阻尼时间。设想,Gimbal的精细定位将以非常小的步骤完成,以避免对镜子的大扰动。将讨论各种轴承设计,包括材料,润滑选项和轴承几何形状。此外,将探索Helmholtz线圈设计的各种选项,具有特定的测试数据给出。由于对万向节的“罗盘”效应,局部磁场在1克存在下进行地面测试。将呈现和讨论测试数据。另外,将介绍并讨论用于估计零G环境中的万向节目的基本原理。一些物理和功能要求如下:·透明孔径为17毫米,升高和方位角的±15°,具有50微米(精细定位)定位增量。 ·在海拔和方位角都畅通无阻,全面旋转。 ·存活温度范围为155至+ 145°C。 ·操作温度范围为-80至+ 70°C。 ·最大质量为25克,最大总功率为0.72瓦,同时3轴操作。 ·能力承受100-g启动加载。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号