ASTM D5372-2004 Standard Guide for Evaluation of Hydrocarbon Heat Transfer Fluids《烃类热传导液体评价的标准指南》.pdf
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1、Designation: D 5372 04An American National StandardStandard Guide forEvaluation of Hydrocarbon Heat Transfer Fluids1This standard is issued under the fixed designation D 5372; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the yea
2、r of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope21.1 This guide provides information, without specific limits,for selecting standard test methods for testing heat t
3、ransferfluids for quality and aging. These test methods are consideredparticularly useful in characterizing hydrocarbon heat transferfluids in closed systems.2. Referenced Documents2.1 ASTM Standards:3D 86 Test Method for Distillation of Petroleum ProductsD 91 Test Method for Precipitation Number of
4、 LubricatingOilsD 92 Test Method for Flash and Fire Points by ClevelandOpen Cup TesterD 93 Test Methods for Flash Point by Pensky-MartensClosed Cup TesterD 95 Test Method for Water in Petroleum Products andBituminous Materials by DistillationD 97 Test Methods for Pour Point of Petroleum OilsD 189 Te
5、st Method for Conradson Carbon Residue ofPetroleum ProductsD 445 Test Method for Kinematic Viscosity of Transparentand Opaque Liquids (and the Calculation of DynamicViscosity)D 471 Test Method for Rubber Property-Effect of LiquidsD 524 Test Method for Ramsbottom Carbon Residue ofPetroleum ProductsD
6、664 Test Method for Acid Number of Petroleum Productsby Potentiometric TitrationD 893 Test Method for Insolubles in Used Lubricating OilsD 1160 Test Method for Distillation of Petroleum Productsat Reduced PressureD 1298 Test Method for Density, Relative Density (SpecificGravity), or API Gravity of C
7、rude Petroleum and LiquidPetroleum Products by Hydrometer MethodD 1500 Test Method for ASTM Color of Petroleum Prod-ucts (ASTM Color Scale)D 2160 Test Method for Thermal Stability of HydraulicFluids4D 2270 Practice for Calculating Viscosity Index from Kine-matic Viscosity at 40 and 100CD 2717 Test M
8、ethod for Thermal Conductivity of LiquidsD 2766 Test Method for Specific Heat of Liquids and SolidsD 2887 Test Method for Boiling Range Distribution ofPetroleum Fractions by Gas ChromatographyD 3241 Test Method for Thermal Oxidation Stability ofAviation Turbine Fuels (JFTOT Procedure)D 4530 Test Met
9、hod for Carbon Residue (Micro Method)D 6743 Test Method for Thermal Stability of Organic HeatTransfer FluidsE 659 Test Method for Autoignition Temperature of LiquidChemicalsG 4 Guide for Conducting Corrosion Tests in Field Appli-cations3. Terminology3.1 Description of Term Specific to This Standard:
10、3.1.1 heat transfer fluida petroleum oil or related hydro-carbon material which remains essentially a liquid whiletransferring heat to or from an apparatus or process. Smallpercentages of nonhydrocarbon components such as antioxi-dants and dispersants can be present.4. Significance and Use4.1 The si
11、gnificance of each test method will depend uponthe system in use and the purpose of the test method as listedunder Section 5. Use the most recent editions of ASTM testmethods.5. Recommended Test Procedures5.1 Pumpability of the Fluid:5.1.1 Flash Point, closed cup (Test Method D 93)Thistest method wi
12、ll detect low flash ends which are one cause ofcavitation during pumping. In closed systems, especially whenfluids are exposed to temperatures of 225C (approximately1This guide is under the jurisdiction of ASTM Committee D02 on PetroleumProducts and Lubricants and is the direct responsibility of Sub
13、committee D02.L0 onIndustrial Lubricants.Current edition approved May 1, 2004. Published June 2004. Originallyapproved in 1993. Last previous edition approved in 1998 as D 537293 (1998).2The background for this standard was developed by a questionnaire circulatedby ASTM-ASLE technical division L-VI-
14、2 and reported in Lubrication Engineer-ing, Vol 32, No. 8, August 1976, pp. 411416.3For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary pa
15、ge onthe ASTM website.4Withdrawn.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.400F) or higher, the formation of volatile hydrocarbons bybreakdown of the oil may require venting through a pressurerelief system to prevent dangerous
16、pressure build-up.5.1.2 Pour Point (Test Method D 97)The pour point canbe used as an approximate guide to the minimum temperaturefor normal pumping and as a general indication of fluid typeand low temperature properties. Should a heat transfer systembe likely to be subjected to low temperatures when
17、 not in use,the system should be trace heated to warm the fluid aboveminimum pumping temperature before start-up.5.1.3 Viscosity (Test Method D 445)Fluid viscosity is ofimportance in the determination of Reynolds and Prandtlnumbers for heat transfer systems, to estimate fluid turbulence,heat transfe
18、r coefficient, and heat flow. Generally, a fluid that isabove approximately 200 centistokes is difficult to pump. Thepump and system design will determine the viscosity limitrequired for pumping. The construction of a viscosity/temperature curve using determined viscosities can be used toestimate mi
19、nimum pumping temperature.5.1.4 Specific Gravity (Test Method D 1298)Hydraulicshock during pumping has been predicted via the use of acombination of density and compressibility data.5.1.5 Water Content (Test Method D 95)The water con-tent of a fresh heat transfer fluid can be used to indicate howlon
20、g the heat transfer system must be dried out duringcommissioning, while raising the bulk oil temperature throughthe 100C plus region, with venting, before the system can besafely used at higher temperatures. The expansion tank shouldbe full during the operations to ensure that moisture is safelyvent
21、ed in the lowest pressure part of the systems. Positivenitrogen pressure on the heat exchange systems will minimizeentry of air or moisture. Heat transfer systems operating attemperatures of 120 or greater must, for reasons of safety, bedry, because destructive high pressures are generated whenwater
22、 enters the high temperature sections of the system.Heating the oil before it is placed in service also removes mostof the dissolved air in the oil. If not removed, the air can causepump cavitation. The air can also accumulate in stagnant partsof the system at high pressure and could cause an explos
23、ion.5.2 Safety in Use:5.2.1 Autoignition Temperature (Test Method E 659)Theabove test relates to the autoignition temperature of a bulkfluid. Hydrocarbon fluids absorbed on porous inert surfaces canignite at temperatures more than 50C (approximately 100F)lower than indicated by Test Method E 659. An
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