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Influence of core and hexapod geometry, and local reinforcement on the performance of ultra-lightweight ULE mirror

机译:核心和六脚踏地几何的影响,以及局部加固对超轻型ULE镜的性能

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The Habitable Exoplanet Observatory (HabEx) mission has unique optical performance requirements which drive the mirror design process beyond the traditional criteria. While mass and stiffness are still important, the response to inertia loading (expressed in terms of Zernike coefficients) to omni-directional excitation dominates the effort. While a Zerodur mirror is the current baseline, as mass budgets change, a ULE design is being studied as a potential alternative. This trade study looked at over 264 design variations using the Arnold Mirror Modeler and ANSYS? to investigate the influence of various design elements, including: substrate thickness, core cell size, hexapod geometry and local reinforcement. Design 'goodness' was evaluated based on the mirror's inertial deformation response to omni-directional input. This response was calculated via RSSing Zernike polynomial responses to (XYZ) accelerations.
机译:可居住的外延天文台(Habex)特派团具有独特的光学性能要求,推动镜子设计过程超出了传统标准。虽然质量和刚度仍然很重要,但对全向激励的惯性加载(以Zernike系数表示的响应)主导努力。虽然Zerodur镜像是当前基线,但随着大规模预算的变化,正在研究ULE设计作为潜在的替代方案。这种贸易研究使用Arnold Mirror Modeler和Ansys进行了超过264多种设计变化?探讨各种设计元素的影响,包括:基板厚度,核心电池尺寸,六足几何和局部增强。基于镜像对全方位输入的镜子的惯性变形响应来评估设计“良好”。通过RSSing Zernike多项式响应对(XYZ)加速来计算此响应。

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