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The thermal conductivity of high modulus Zylon fibers between 400 mK and 4 K

机译:高模量Zylon纤维的热导率在400 mK和4 K之间

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摘要

Zylon is a synthetic polyurethane polymer fiber featuring very high mechanical strength. Measurements of the thermal conductivity lambda_z(T) of high modulus Zylon fibers at temperatures between 400 mK and 4 K were performed to assess if they can be successfully employed in the design of high performance suspension systems for cold stages of adiabatic demagnetization refrigerators. The linear mass density of the yarn used in these measurements amounts to 3270 dtex, which is also a measure for the yarn's cross section. The experimental data for the thermal conductivity was fitted to a function of the form lambda_z = (1010 +- 30) centre dot T~(1.30+-0.03) pW mm dtex~(-1) K~(-2.3). This result was normalized to the breaking strength of the fibers and compared with Kevlar. It shows that Kevlar outperforms Zylon in the investigated temperature range. At 1.5 K, the thermal conductivity integral of Zylon yarn is twice as high as the thermal conductivity integral of Kevlar yarn with the same breaking strength.
机译:Zylon是具有很高机械强度的合成聚氨酯聚合物纤维。在400 mK和4 K之间的温度下对高模量Zylon纤维的导热系数lambda_z(T)进行了测量,以评估它们是否可以成功地用于绝热消磁冰箱冷段的高性能悬挂系统的设计中。这些测量中使用的纱线的线性质量密度总计为3270 dtex,这也是纱线横截面的度量。将导热率的实验数据拟合为以下形式的函数:lambda_z =(1010 + -30)中心点T〜(1.30 + -0.03)pW mm dtex〜(-1)K〜(-2.3)。将该结果归一化为纤维的断裂强度,并与Kevlar进行比较。结果表明,在研究的温度范围内,凯夫拉尔的性能优于Zylon。在1.5 K下,具有相同断裂强度的Zylon纱线的热导率积分是Kevlar纱线的热导率积分的两倍。

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