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Finite Element Thermal Analysis of Multispectral Coatings for the ABL

机译:用于ABL的多光谱涂层的有限元热分析

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The thermal response of a coated optical surface is an important consideration in the design of any high average power system. Finite element temperature distributions were calculated for both coating witness samples and calorimetry wafers and were compared to actual measured data under tightly controlled conditions. Coatings for ABL were deposited on various substrates including fused silica, ULE, Zerodur, and silicon. The witness samples were irradiated at high power levels at 1.315μm to evaluate laser damage thresholds and study absorption levels. Excellent agreement was obtained between temperature predictions and measured thermal response curves. When measured absorption values were not available, the code was used to predict coating absorption based on the measured temperature rise on the back surface. Using the finite element model, the damaging temperature rise can be predicted for a coating with known absorption based on run time, flux, and substrate material.
机译:涂覆光学表面的热响应是任何高平均电力系统的设计中的重要考虑因素。计算有限元温度分布,用于涂层证人样品和量热晶片,并与在紧密控制的条件下的实际测量数据进行比较。 Abl的涂层沉积在各种底物上,包括熔融二氧化硅,ULe,Zerodur和硅。在1.315μm处以高功率水平照射证人样品,以评估激光损伤阈值并研究吸收水平。在温度预测和测量的热响应曲线之间获得了优秀的一致性。当不可用测量的吸收值时,代码用于预测基于后表面上的测量温度升高的涂布吸收。使用有限元模型,可以基于运行时,助焊剂和基材材料预测具有已知吸收的涂层的损伤温度升高。

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