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Emissivity of silver and stainless steel from 80 K to 300 K: Application to ITER thermal shields

机译:银和不锈钢的发射率从80 K到300 K:应用于ITER隔热屏

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The emissivities of thermal shield mock-up samples for ITER have been measured at sample temperatures between 80 K and 300 K using an optical method employing a primary standard broadband detector. These thermal shields, made from SS304L stainless steel coated with silver, are designed to operate at 80 K, protecting the superconducting magnet system of the ITER reactor from higher temperature regions. Our results show that the silver coating of the thermal shields can have an emissivity as low as 0.0035 at 80 K, approximately ten times lower than the emissivity of the bare polished stainless steel plate. We demonstrate that the emissivity of different regions of a thermal shield assembly can be determined in a single measurement cycle, providing further emissivity data on the insulating spacer used to separate shield plates as well as emissivity data on a silver coating repair method. The temperature dependence of the emissivity for the silver coating agrees well with a theoretical estimate based on the Drude model including phonon and surface-assisted scattering.
机译:ITER的热屏蔽样机样品的发射率已通过采用主要标准宽带检测器的光学方法在80 K至300 K的样品温度下进行了测量。这些热屏蔽罩由涂有银的SS304L不锈钢制成,设计可在80 K下运行,从而保护ITER反应堆的超导磁体系统免受高温影响。我们的结果表明,热屏蔽层的银涂层在80 K时的发射率可低至0.0035,约为裸露抛光不锈钢板的发射率的十倍。我们证明,可以在单个测量周期中确定热屏蔽组件不同区域的发射率,从而提供用于分隔屏蔽板的绝缘垫片上的进一步发射率数据,以及在银涂层修复方法上提供的发射率数据。银涂层的发射率对温度的依赖性与基于包括声子和表面辅助散射在内的Drude模型的理论估计非常吻合。

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