首页> 外文会议>Cryogenic Engineering Conference >Repeatability Measurements of Apparent Thermal Conductivity of Multilayer Insulation (MLI)
【24h】

Repeatability Measurements of Apparent Thermal Conductivity of Multilayer Insulation (MLI)

机译:多层绝缘(MLI)表观导热系数的可重复性测量

获取原文

摘要

This report presents and discusses the results of repeatability experiments gathered from the multi-layer insulation thermal conductivity experiment (MIKE) for the measurement of the apparent thermal conductivity of multi-layer insulation (MLI) at variable boundary temperatures. Our apparatus uses a calibrated thermal link between the lower temperature shield of a concentric cylinder insulation assembly and the cold head of a cryocooler to measure the heat leak. In addition, thermocouple readings are taken in-between the MLI layers. These measurements are part of a multi-phase NASA-Yetispace-FSU collaboration to better understand the repeatability of thermal conductivity measurements of MLI. NASA provided five 25 layer coupons and requested boundary temperatures of 20 K and 300 K. Yetispace provided ten 12-layer coupons and requested boundary temperatures of 77 K and 293 K. Test conditions must be met for a duration of four hours at a steady state variance of less than 0.1 K/hr on both cylinders. Temperatures from three Cernox~R temperature sensors on each of the two cylinders are averaged to determine the boundary temperatures. A high vacuum, less than 10~(-5) torr, is maintained for the duration of testing. Layer density varied from 17.98 - 26.36 layers/cm for Yetispace coupons and 13.05 - 17.45 layers/cm for the NASA coupons. The average measured heat load for the Yetispace coupons was 2.40 W for phase-one and 2.92 W for phase-two. The average measured heat load for the NASA coupons was 1.10 W. This suggests there is still unknown variance of MLI performance. It has been concluded, variations in the insulation installation heavy effect the apparent thermal conductivity and are not solely dependent on layer density.
机译:本报告介绍并讨论了从多层绝缘导热率实验(MIKE)聚集的可重复性实验的结果,以测量可变边界温度下的多层绝缘(MLI)的表观导热率。我们的装置在同心圆筒绝缘组件的下部温度屏蔽和低温冷却器的冷头之间使用校准的热链路来测量热泄漏。此外,在MLI层之间采用热电偶读数。这些测量是多相NASA-yetispace-FSU合作的一部分,以更好地理解MLI的热导率测量的可重复性。 NASA提供了五个25层优惠券,并且要求的边界温度为20 k和300k。DiStispace提供了10个12层优惠券,并且要求的边界温度为77 k和293 K.必须在稳定状态下持续四小时的测试条件两个汽缸上的差异小于0.1 k / hr。平均来自三个Cernox〜R温度传感器的温度,以确定边界温度。在测试期间保持高真空,小于10〜(-5)托,持续时间。层密度从17.98 - 26.36层/厘米变化,用于螺旋空间优惠券和NASA优惠券的13.05 - 17.45层/厘米。对于相位2的相位为-2和2.92W,脱离杯优惠券的平均测量热负荷为2.40W。 NASA优惠券的平均测量热负荷为1.10W。这表明MLI性能仍然存在未知的变化。已经得出结论,绝缘安装的变化重效应表观导热率,并不完全取决于层密度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号