ASTM E1225-2013 Standard Test Method for Thermal Conductivity of Solids Using the Guarded-Comparative-Longitudinal Heat Flow Technique《采用隔绝-比较-轴向热流技术测定固体导热性的标准试验方法》.pdf
《ASTM E1225-2013 Standard Test Method for Thermal Conductivity of Solids Using the Guarded-Comparative-Longitudinal Heat Flow Technique《采用隔绝-比较-轴向热流技术测定固体导热性的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1225-2013 Standard Test Method for Thermal Conductivity of Solids Using the Guarded-Comparative-Longitudinal Heat Flow Technique《采用隔绝-比较-轴向热流技术测定固体导热性的标准试验方法》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E1225 09E1225 13Standard Test Method forThermal Conductivity of Solids by Means of Using theGuarded-Comparative-Longitudinal Heat Flow Technique1This standard is issued under the fixed designation E1225; the number immediately following the designation indicates the year oforiginal adop
2、tion or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.This standard has been approved for use by agencies of the Department of Defense.1.
3、Scope1.1 This test method describes a steady state technique for the determination of the thermal conductivity, , of homogeneous-opaque solids (see Notes 1 and 2). This test method is for applicable to materials with effective thermal conductivities in theapproximate range 0.2 200022 to 55 to 8M Dep
4、endent on TA NISTAAustenitic StainlessSRM 735200 to 1200 300 KF = 2.331 + 515.2 T14 for T 300 KG = 3.65367 6.64042 10-4T 218.937T1 + 116163 T2 GFused SilicaH 1300 200 KKE,K = 1.1036 + 1.659 x 10-3 (T-273.15) 3.982x 10-6 (T-273.15)2 + 6.746 x 10-9 (T-273.15)3KKIRMM,Belgium3 for T from 140 K to 200KK3
5、10 Stainless Steel 300 to 1000 4 = 12.338 + 1.781 x 10-2 (T-273.15)L NPL430 Stainless Steel 300 to 1070 4 = 20.159 + 1.589 x 10-2 (T-273.15) -1.283 x10-5 (T-273.15)2LNPLInconel 600 300 to 1000 4 = 12.479 + 1.648 x 10-2 (T-273.15) + 3.741x 10-6 (T-273.15)2 LNPLNimonic 75 300 to 1000 4 = 11.958 + 1.65
6、7 x 10-2 (T-273.15) + 3.252x 10-6 (T-273.15)2LNPLTABLE 1 Reference Materials For Use as Meter BarsMaterial TemperatureRange (K)PercentageUncertainty( %)Thermal Conductivity(W/mK)Electrolytic IronA,B 2 to 1000 2 See Table 3.TungstenC 4 to 300300 to 2000200022 to 55 to 8See Table 4.Austenitic Stainles
7、sD200 to 1200 300 K = 3.65367 6.64042 10-4T 218.937T1 + 116163 T2Fused SilicaL,M 1300 200 K = 1.1036 + 1.659 x 10-3 (T-273.15) 3.982x 10-6 (T-273.15)2 + 6.746 x 10-9 (T-273.15)3K310 Stainless SteelK,R 300 to 1020 4 = 12.338 + 1.781 x 10-2 (T-273.15)430 Stainless SteelK,R 300 to 770 4 = 20.159 + 1.58
8、9 x 10-2 (T-273.15) -1.283 x10-5 (T-273.15)2Inconel 600S,K,R 300 to 1020 4 = 12.479 + 1.648 x 10-2 (T-273.15) + 3.741x 10-6 (T-273.15)2Nimonic 75T,K,R 300 to 1020 4 = 11.958 + 1.657 x 10-2 (T-273.15) + 3.252x 10-6 (T-273.15)2A National SRM 8420 is available from National Institute of Standards and T
9、echnology, Washington, D.C. 20234. Technology (NIST), Gaithersburg, MD.USee SpecialPublications 260-52 and 260-46.B Fulkerson W., et al., Hurst, J. G., Physics Reviewand Lankford, 167, p. 765, (1968).A. B., “Report of Investigation, Research Materials 8420 and 8421, Electrolytic Iron,Thermal Conduct
10、ivity and Electrical Resistivity as a Function of Temperature from 2 to 1000K,” National Institutes of Standards and Technology (nee National Bureau ofStandards), Gaithersburg, MD, 1984.C Lucks C. F., Journal Hurst, J. G., and Giarratano, P. J., Certificate, Standard Reference Material 730, Thermal
11、Conductivity Tungsten, National Institutes of Testing andEvaluation, ASTM 1 (5), 422 (1973).Standards and Technology (nee National Bureau of Standards), Gaithersburg, MD, 1976.D Hurst, J. G., Sparks, L. L., and Giaarratano, P. J., Certificate, Standard Reference Material 735, Thermal Conductivity Au
12、stenitic Stainless Steel, National Institutesof Standards and technology (nee National Bureau of Standards), Gaithersburg, MD,USA, 1975.E Moore, J. P., Graves, R. S.S., and McElroy, D. L., “Thermal Conductivity and Electrical Resistivity of High-Purity Copper from 78 to 400 K,” Canadian Journal of P
13、hysics,45, 3849 (1967).Vol 45, 1967, pp. 38493865.F “Thermal Conductivity of Selected Materials,” Report NSRDS-NBS 8, National Bureau of Standards, 1966.Pyroceram is a trademark by Corning Incorporated, Corning,NY.E1225 135G D. R. Salmon, G. Roebben, R. Brandt, 2007. Salmon, D. R., Roebben, G., and
14、Brandt,R., “Certification of Thermal Conductivity and Thermal Diffusivity up to 1025 Kof Glass-Ceramic Reference Material BCR-720,” EUR Report 21764, IRMM, Geel, Belgium.Institute for Reference Materials and Measurements (IRMM), Geel, Belgium,2007.H D. E. Stroe, M.A.Thermitus, R.A. Stroe, D. E.,Ther
15、mitus, M.A., and Jacobs Fedore, in R.A., “Thermophysical Properties of Pyroceram 9606,” Thermal Conductivity27 / Thermal Expansion 15, H. H. Wang, W. Porter, eds., DEStech Publications, Inc., Lancaster, PA, USA, 2004, 2005, pp. 382-390.382390.I Hust J. G., Cryogenics Division; NBS, Boulder, Colorado
16、 80302. BCR-2013 is available from the Institute for Reference Materials and Measurements (IRMM), Geel,Belgium.UJ BCR-724 is available from the Laboratory of the Government Chemists (LGC), Teddington, Middlesex, UK.UKTye, R. P., and Salmon, D. R., “Development of New Thermal Conductivity Reference M
17、aterials: A Summary of Recent Contributions by National Physical Laboratory,”Thermal Conductivity 27/ Thermal Expansion 15, H. Wang (ed.), DEStech Publications, Lancaster PA, 2005, pp. 372381.L Above 700 K a large fraction of heat conduction in fused silica will be by radiation and the actual effect
18、ive values may depend on the emittances of bounding surfacesand meter bar size.M Recommended values from Table 3017A-R-2 of the Thermophysical Properties Research Center Data Book, Vol. 3, “Nonmetallic Elements, Compounds, and Mixtures,”Purdue University, Lafayette, Indiana.NPyrex is a trademark by
19、Corning Incorporated, Corning, NY.O R. P. Tye, D. R. Salmon, in Tye, R. P., and Salmon, D. R., “Thermal Conductivity Certified Reference Materials: Pyrex 7740 and Polymethylmethacrylate,” ThermalConductivity 26 / Thermal Expansion 14, 14, Ralph Dinwiddie R. Dinwiddie, ed., DEStech Publications, Inc.
20、, Lancaster, PA, USA, 2005, pp. 437-451 437451.P BCR-39 is available from the Institute for Reference Materials and Measurements (IRMM), Geel, Belgium.UQ Salmon, D., “Thermal Conductivity of Insulations Using Guarded Hot Plates, including Recent Developments and Sources of Reference Materials,” Meas
21、urementScience and Technology, Vol 12, 2001, pp. R89R98.R J. Clark, R.Tye, Clark, J., andTye, R., “Thermophysical Properties Reference Data for Some Key EngineeringAlloy,” High Temperatures High Pressures, 2003 / 2004,volume 35/36, pp. 1-14.Vols 35/36, 2003/2004, pp. 114.SInconel is a trademark by S
22、pecial Metals Corporation, Huntington WV.TNimonic is a trademark by Special Metals Corporation, Huntington WV.U This is the sole source of supply of this material known to the committee at this time. If you are aware of alternative suppliers, please provide this information to ASTMInternational Head
23、quarters. Your comments will receive careful consideration at a meeting of the responsible technical committee,1 which you may attend.TABLE 3 Thermal Conductivity of Electrolytic IronATemperature,KThermal Conductivity,(W/mK)2 12.323 18.484 24.625 30.766 36.887 42.978 49.09 55.010 61.012 72.814 84.21
24、6 95.218 105.720 115.725 137.430 153.935 164.540 169.145 168.350 163.660 149.170 134.980 123.890 115.4100 108.9150 92.7200 86.7250 81.5300 76.4400 67.5500 60.2600 53.6700 47.49800 41.96900 37.121000 32.98A Hurst, J. G., and Lankford, A. B., Report of Investigation, Research Materials8420 and 8421, E
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