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Metrology and surface adjustment of primary reflector panels on the LMT

机译:LMT上主反射板的计量和表面调整

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The primary reflector of the Large Millimeter Telescope (LMT) Alfonso Serrano is presently composed of 84 surface panels arranged in three concentric rings, providing a 32.5 meter collecting area. Each panel comprises 8 precision composite subpanels having electro-formed nickel skins bonded to an aluminum honeycomb core. Differential thread adjusters beneath each subpanel allow for the manual removal of tip/tilt and piston errors, in addition to facilitating some fine tuning of the surface shape. An assembled panel provides a surface area of approximately 8-12 square meters. Preparation of surface panels in 2012 and 2013 for Early Science observations made use of a Leica laser tracker. Measurement and adjustment of panels was carried out off the antenna, achieving a mean panel RMS surface error of 29.5μm for the 67 panels processed to date, with a spread of 23-37μm. A panel stability check consisting of surface walk-on tests and repeat metrology resulted in an increase in the mean surface error to 31.0μm. Following installation, in situ tracker measurements of 19 panels showed a final mean error of 45.3 μm. Panels are adjusted by hand using an iterative process. In-house data processing uses fiducial marks scribed onto the subpanel molds and replicated during manufacture, to achieve accurate registration of the surface point cloud during data fitting. The number of iterations varies, depending mainly on the behavior of the differential adjusters. A well-behaved panel may be set within around 7 hours. In this paper we describe the iterative panel surface adjustment process used to date. We focus on metrology technique and data processing using the laser tracker, and present comparisons with trial photogrammetry measurements.
机译:大毫米波望远镜(LMT)阿方索·塞拉诺(Alfonso Serrano)的主反射镜目前由84个面板组成,这些面板排列在三个同心环中,提供32.5米的收集面积。每个面板包括8个精密复合子面板,这些子面板具有与铝蜂窝芯相连的电铸镍皮。每个子面板下方的差动螺纹调节器,除了可以方便地微调表面形状外,还可以手动消除倾斜/倾斜和活塞误差。组装好的面板的表面积约为8-12平方米。 2012年和2013年使用Leica激光跟踪仪为早期科学观测准备了面板。面板的测量和调整是在天线之外进行的,到目前为止,已处理的67块面板的平均RMS均方根表面误差为29.5μm,分布范围为23-37μm。由表面走动测试和重复计量组成的面板稳定性检查导致平均表面误差增加到31.0μm。安装后,对19个面板的原位跟踪器测量结果显示最终平均误差为45.3μm。使用迭代过程手动调整面板。内部数据处理使用刻在子面板模具上并在制造过程中复制的基准标记,以在数据拟合过程中实现表面点云的精确配准。迭代次数会有所不同,这主要取决于差分调节器的行为。行为良好的面板可能会在大约7小时内设置好。在本文中,我们描述了迄今为止使用的迭代面板表面调整过程。我们专注于使用激光跟踪仪的计量技术和数据处理,并提供与试验摄影测量的比较。

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