Low Temperature Thermal Conductivity of PVC

被引:0
作者
L. Risegari
M. Barucci
E. Olivieri
G. Ventura
机构
[1] INFN,Section of Florence
[2] INFN,Department of Mechanics
[3] University of Florence,Department of Physics
[4] INFN,undefined
[5] University of Florence,undefined
来源
Journal of Low Temperature Physics | 2006年 / 144卷
关键词
polymers; thermal conductivity; very low temperature;
D O I
暂无
中图分类号
学科分类号
摘要
At very low temperatures, the tunnelling theory for amorphous solids predicts a thermal conductivity κ α Tm, with m = 2. However, most of the data in the literature in the temperature range 0.1–1 K report an m <  2. We want to show that this discrepancy often disappears for T→ 0 K. Here we report the case of Polyvinyl Chloride (PVC) whose thermal conductivity is known in the 0.2–100 K temperature range. A new technique is described which makes the measurement of the exponent m of the thermal conductivity independent of the spurious thermal power. Such technique is particularly useful for measurements of κ when working with a low power refrigerator. We carried out measurements down to 50 mK, obtaining a thermal conductivity \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\kappa = (1.8 \pm 0.1) \times 10^{-4} T^{(2.05\pm 0.05)}}$$\end{document} W/cm K for our PVC sample below 120 mK.
引用
收藏
页码:49 / 59
页数:10
相关论文
共 50 条
[31]   Non-phonon low-temperature thermal conductivity in clathrate semiconductors [J].
Parshin, DA ;
Laermans, C ;
Parshin, MA .
PHYSICA B-CONDENSED MATTER, 2003, 329 :1296-1297
[32]   Low-temperature specific heat and thermal conductivity of ternary chalcogenide glasses [J].
Vateva, E. ;
Terziyska, B. ;
Arsova, D. .
JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 2007, 9 (07) :1965-1973
[33]   Thermal Conductivity Enhancement of Phase Change Materials for Low-Temperature Thermal Energy Storage Applications [J].
Singh, Randeep ;
Sadeghi, Sadegh ;
Shabani, Bahman .
ENERGIES, 2019, 12 (01)
[34]   Enhancing thermal transport in ABS polymer with graphene oxide: Insights into low-temperature thermal conductivity behavior and correlation with Boson peak anomaly [J].
Krivchikov, A. I. ;
Jezowski, A. ;
Konstantinov, V. A. ;
Sagan, V. V. ;
Korolyuk, O. A. ;
Szewczyk, D. .
THERMOCHIMICA ACTA, 2024, 733
[35]   Dependence of the Thermal Conductivity of PMMA, PS and PE on Temperature and Crystallinity [J].
Salameh, B. ;
Yasin, S. ;
Abu Fara, D. ;
Zihlif, A. M. .
POLYMER-KOREA, 2021, 45 (02) :281-285
[36]   Temperature effect on thermal conductivity of bentonites [J].
Xu Yun-shan ;
Sun De-an ;
Zeng Zhao-tian ;
Lu Hai-bo .
ROCK AND SOIL MECHANICS, 2020, 41 (01) :39-+
[37]   Influence of Temperature on the Thermal Properties of the Core Material - the Coefficient of Temperature Conductivity, Specific Heat Capacity, and Thermal Conductivity [J].
Burlutsky, Efim ;
Balzamov, Denis ;
Bronskaya, Veronika ;
Bashkirov, Dmitriy ;
Kharitonova, Olga ;
Khairullina, Liliya ;
Solovyeva, Olga .
INTERNATIONAL JOURNAL OF TECHNOLOGY, 2023, 14 (02) :443-454
[38]   Low temperature thermal conductivity of Ti6Al4V alloy [J].
Risegari, L. ;
Barucci, M. ;
Lolli, L. ;
Ventura, G. .
JOURNAL OF LOW TEMPERATURE PHYSICS, 2008, 151 (3-4) :645-649
[39]   Low-temperature anomalies in the specific heat and thermal conductivity of MgB2 [J].
N. V. Anshukova ;
B. M. Bulychev ;
A. I. Golovashkin ;
L. I. Ivanova ;
A. A. Minakov ;
A. P. Rusakov .
Physics of the Solid State, 2003, 45 :1207-1212
[40]   Low Temperature Thermal Conductivity of Ti6Al4V Alloy [J].
L. Risegari ;
M. Barucci ;
L. Lolli ;
G. Ventura .
Journal of Low Temperature Physics, 2008, 151 :645-649