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Infrared optical element mounting techniques for wide temperature ranges

机译:宽温度范围的红外光学元件安装技术

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We describe the optimization of a mounting system for the infrared (IR) optics of a spaceborne interferometer working in the temperature range between -120 deg C and +150 deg C. The concept is based on an aluminum alloy frame with designed mechanical compliance, which allows for compensation of the different coefficient of thermal expansion between the optics and the holder; at the same time, the system provides for the high stiffness required to reach natural frequencies above 200 Hz, which are mandatory in most space missions. Thermal adapters with properly chosen thermomechanical characteristics are interposed between the metallic structure and the lens, so as to reduce the interface stresses on the mechanically weak IR material, due to both the thermoelastic and acceleration loads. With the proposed mount, the competitive requirements of stiffness and stress-free mounting can be matched in wide temperature ranges. The case study of the interferometer of a miniaturized Fourier transform IR spectrometer is presented.
机译:我们描述了在-120摄氏度和+150摄氏度之间的温度范围内工作的星载干涉仪的红外(IR)光学系统的安装系统的优化。该概念基于具有设计机械柔韧性的铝合金框架,可以补偿光学器件和支架之间不同的热膨胀系数;同时,该系统提供了达到200 Hz以上自然频率所需的高刚度,这在大多数太空任务中都是必须的。用适当选择的热机械特性的热适配器金属结构和所述透镜之间,以减小界面应力的机械强度弱的IR材料,由于无论是热弹性和加速度载荷。使用建议的安装座,可以在较宽的温度范围内满足刚度和无应力安装的竞争要求。提出了一种小型傅里叶变换红外光谱仪干涉仪的案例研究。

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