论文标题
Simons天文台:设计和测量的碳纤维支柱的性能
The Simons Observatory: Design and Measured Performance of a Carbon Fiber Strut for a Cryogenic Truss
论文作者
论文摘要
我们介绍了新的碳纤维支撑杆设计的设计和测量性能,该设计用于西蒙斯天文台小孔望远镜(SAT)中的低温桁架中。桁架由两个铝制6061环组成,分别由24支支撑。每个支撑杆由配备两个铝制端盖的中央碳纤维管组成。我们通过(i)低温循环和破坏性拉动测试的支撑杆样品测试了支柱和桁架的性能,(ii)非破坏性的最终桁架,以及(iii)测量碳纤维管的导热率。我们发现,支柱强度受到安装紧固件和支撑杆端盖的限制,而不是环氧粘合剂或碳纤维管。该结果与我们的数值预测一致。我们的热测量结果表明,通过支撑杆(从4 K到1 K)的导电热载荷小于1 MW。这种支柱设计可能是在其他低温支撑结构中使用的有前途的候选人。
We present the design and measured performance of a new carbon fiber strut design that is used in a cryogenically cooled truss for the Simons Observatory Small Aperture Telescope (SAT). The truss consists of two aluminum 6061 rings separated by 24 struts. Each strut consists of a central carbon fiber tube fitted with two aluminum end caps. We tested the performance of the strut and truss by (i) cryogenically cycling and destructively pull-testing strut samples, (ii) non-destructively pull-testing the final truss, and (iii) measuring the thermal conductivity of the carbon fiber tubes. We found that the strut strength is limited by the mounting fasteners and the strut end caps, not the epoxy adhesive or the carbon fiber tube. This result is consistent with our numerical predictions. Our thermal measurements suggest that the conductive heat load through the struts (from 4 K to 1 K) will be less than 1 mW. This strut design may be a promising candidate for use in other cryogenic support structures.