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Thermal diffusivity measurement of materials using photoacoustic two-beam phase lag method

机译:采用光声双梁相滞法测量材料的热扩散测量

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Ultra low expansion (ULE) material of Corning Glass Work was chosen for the Gemini primary mirrors. The ULE mirror blank becomes monolithic by a fusion process which seals together 55 piece parts from a total of 44 hexagonal segments (hexes). As a consequence of this fusion process, an optical surface distortion due to inhomogeneity in the coefficient of thermal expansion (CTE) is induced. The precise location of the individual hexes in the blank was determined by a detailed analysis in the optimization process. This analysis accommodates two thermal environments, thermal soak of $MIN@25' C and thermal gradient of 3' C from the top to bottom surfaces. A parametric design study was conducted to determine an optimized pattern of the hex placements for the Gemini primary mirrors. Active optics corrections were performed to determine the optimum hex patterns. The results indicated that the optical surface distortion due to the CTE deviations was minimized based on the optimized location of the individual hexes. The thermal surface distortion and the optical image quality as well as the plate scale error of the primary mirrors met the design and the scientific requirements. The effect of random errors of the CTE measurements was within the tolerance error budget.
机译:为Gemini初级镜选择了康宁玻璃工作的超低膨胀(ULE)材料。 ULE镜坯通过熔融过程变得单片,该方法将55件部件密封在一起,总共45个六边形段(六边形)。由于这种融合过程,诱导了在热膨胀系数(CTE)中引起的光学表面失真(CTE)。通过优化过程中的详细分析确定空白中单个Hexes的精确位置。该分析可容纳两个热环境,从顶部到底部表面的热量浸泡35'C和3'C的热梯度。进行参数化设计研究以确定Gemini初级镜子的Hex展示的优化模式。执行主动光学校正以确定最佳六角模式。结果表明,基于各个十六进制的优化位置,最小化了由CTE偏差引起的光学表面失真。热表面失真和光学图像质量以及主镜的板秤误差符合设计和科学要求。 CTE测量的随机误差的影响在公差错误预算范围内。

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