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Top 5 Hot Disk參考文獻(xiàn)

 發(fā)表時間:2019-09-08

 

在這五篇基本的Hot Disk文獻(xiàn)中,描述了其基本思想、各向同性、各向異性、平板、薄膜和比熱測量方法。文中還討論了計算方法和小探頭的使用方法。ISO 22007-2標(biāo)準(zhǔn)是基于參考文獻(xiàn)14。

1. ”Transient plane source techniques for thermal conductivity and thermal diffusivity measurements of solid materials
Gustafsson, S.E.
Rev. Sci. Instrum., 62 (3), 797-804 (1991).
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2. ”Thermal conductivity, thermal diffusivity and specific heat of thin samples from transient measurement with Hot Disk sensors
Gustavsson, M., Karawacki, E., and Gustafsson, S.E.
Rev. Sci. Instrum. 65 (12), 3856 (1994).
Link

3. ”On the Use of Transient Plane Source Sensors for Studying Materials with Direction Dependent Properties
Gustavsson, M. and Gustafsson, S.E.
Proceedings of the 26th International Thermal Conductivity Conference, Massachusetts, Cambridge, 6–8 August 2005, edited by R. Dinwiddie (Oak Ridge National Laboratory, Oak Ridge, Tennessee, 2004), p. 367–377.
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4. ”On the Use of the Hot Disk Thermal Constants Analyser for Measuring the Thermal Conductivity of Thin Samples of Electrically Insulating Materials
Gustavsson, J.S., Gustavsson, M., and Gustafsson, S.E.
Thermal Conductivity 24, Eds. P.S. Gaal, D.E. Apostolescu (Lancaster, MA: Technomic), p. 116-122 (1997).
Link

5. ”Specific heat measurements with the Hot Disk thermal constants analyser
Gustavsson, M., Saxena, N.S., Karawacki, E, and Gustafsson, S.E.
Thermal Conductivity 23, Eds. K.E. Wilkes, R.B. Dinwiddie, R.S. Graves (Lancaster, MA: Technomic) p. 56-65 (1995).
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深入閱讀

令我們感到自豪的是,有1000種出版文獻(xiàn)以Hot Disk方法和測量為特色。我們的合作伙伴在Thermtest Inc.提供的優(yōu)秀論文數(shù)據(jù)庫中可以瀏覽其中的大量文章。您可以在這里訪問數(shù)據(jù)庫 here

在下面的一節(jié)中,將介紹對Hot Disk方法進(jìn)行深入理解的推薦文獻(xiàn)。

 

在這篇新穎的革新的文章中采用Hot Disk TPS系統(tǒng)研究了窄至150nm空隙的近場輻射換熱。有關(guān)如何進(jìn)行這類測量的詳細(xì)說明載于該刊物:

“Dynamic measurement of near-field radiative heat transfer”
S. Lang, G. Sharma, S. Molesky, P. U. Kränzien, T. Jalas, Z. Jacob, A. Yu. Petrov and M. Eich
Nature Scientific Reports, Volume 7, 13916 (2017)

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描述了在測量過程中熱如何從傳感器上傳播的Hot Disk傳感器的熱模擬過程,可以在這篇實(shí)用的文章中找到:

“Finite element modeling of the Hot Disc method”
B.M. Mihiretie, D. Cederkrantz, A. Rosén, H. Otterberg, M. Sundin, S.E. Gustafsson and M. Karlsteen
International Journal of Heat and Mass Transfer, Volume 115, Part B, December 2017, Pages 216–223.
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Hot Disk結(jié)構(gòu)探的新功能解于此文章中:

“Thermal conductivity versus depth profiling of inhomogeneous materials using the hot disc technique”
A. Sizov, D. Cederkrantz, L. Salmi, A. Rosén, L. Jacobson, S. E. Gustafsson, and M. Gustavsson
Review of Scientific Instruments 87, 074901 (2016)
Link 

 

這篇文章討論并評價了Hot Disk結(jié)構(gòu)探頭的實(shí)際應(yīng)用:
“Thermal depth profiling of materials for defect detection using hot disk technique”
B. M. Mihiretie, D. Cederkrantz, a), M. Sundin, A. Rosén, H. Otterberg, Å. Hinton, B. Berg, and M. Karlsteen
AIP Advances 6, 085217 (2016)
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本文介紹了fine-tuned計算方案和探頭自身的比熱補(bǔ)償方法。它還包括對低密度/高絕熱測量模塊的介紹:
On Power Variation in Self-Heated Thermal Sensors
Gustavsson, M., and Gustafsson, S.E.
Thermal Conductivity 27, pp. 338-346 (2005)

Link

2008年首次發(fā)布并于2015年更新的國際標(biāo)準(zhǔn)ISO 22007-2中,您可以找到關(guān)于如何選擇計算點(diǎn)的詳細(xì)描述。在附錄中包含了低密度/高絕熱測量模塊的完整描述:
ISO 22007-2
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這篇文章描述了一維測試模塊和計算方法:
“Dynamic plane-source technique for the study of the thermal transport properties of solids”
Karawacki, E., and Suleiman, B.M.
High Temp.-High Press. 23, 215- 223 (1991)

Link

下方的文章給出了時間窗口的理論解釋:
“Parameter estimations for measurements of thermal transport properties with the hot disk thermal constants analyzer”
Bohac, V., Gustavsson, M.K., Kubicar, L., and Gustafsson, S.E.
Rev. Sci. Instrum. 71 (6), 2452-2455 (2000)

Link

如何通過鎖定單位體積的比熱來穩(wěn)定計算的方法在這有所解釋:
“Thermal properties of lithium sulphate”
Suleiman, B.M., Gustavsson, M., Karawacki, E., and Lundén, A.
J. Phys. D: Appl. Phys. 30, 2553 (1997)

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在這篇文獻(xiàn)中Hot Disk技術(shù)被用于研究木材的熱傳導(dǎo)性質(zhì):
“Thermal conductivity and diffusivity of wood”
B. M. Suleiman, J. Larfeldt, B. Leckner and M. Gustavsson
Wood Science and Technology (1999) 33: 465

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本文介紹了利用Hot Disk系統(tǒng)分析液體的方法。本文還討論了該方法如何用于監(jiān)測化合物的微小結(jié)構(gòu)變化:
“Thermal conductivity as an indicator of fat content in milk”
M. Gustavsson and Gustafsson, S.E.
Thermochimica Acta, Volume 442, Issues 1–2, 15 March 2006, Pages 1-5

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