ASTM C177-2010 Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus《使用单面护热板设备测量稳态热通量和热传导特性的标.pdf
《ASTM C177-2010 Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus《使用单面护热板设备测量稳态热通量和热传导特性的标.pdf》由会员分享,可在线阅读,更多相关《ASTM C177-2010 Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus《使用单面护热板设备测量稳态热通量和热传导特性的标.pdf(23页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C177 10Standard Test Method forSteady-State Heat Flux Measurements and ThermalTransmission Properties by Means of the Guarded-Hot-PlateApparatus1This standard is issued under the fixed designation C177; the number immediately following the designation indicates the year oforiginal adopt
2、ion 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. S
3、cope1.1 This test method establishes the criteria for the labora-tory measurement of the steady-state heat flux through flat,homogeneous specimen(s) when their surfaces are in contactwith solid, parallel boundaries held at constant temperaturesusing the guarded-hot-plate apparatus.1.2 The test appar
4、atus designed for this purpose is known asa guarded-hot-plate apparatus and is a primary (or absolute)method. This test method is comparable, but not identical, toISO 8302.1.3 This test method sets forth the general design require-ments necessary to construct and operate a satisfactoryguarded-hot-pl
5、ate apparatus. It covers a wide variety of appa-ratus constructions, test conditions, and operating conditions.Detailed designs conforming to this test method are not givenbut must be developed within the constraints of the generalrequirements. Examples of analysis tools, concepts and proce-dures us
6、ed in the design, construction, calibration and opera-tion of a guarded-hot-plate apparatus are given in Refs (1-41).21.4 This test method encompasses both the single-sided andthe double-sided modes of measurement. Both distributed andline source guarded heating plate designs are permitted. Theuser
7、should consult the standard practices on the single-sidedmode of operation, Practice C1044, and on the line sourceapparatus, Practice C1043, for further details on these heaterdesigns.1.5 The guarded-hot-plate apparatus can be operated witheither vertical or horizontal heat flow. The user is caution
8、edhowever, since the test results from the two orientations may bedifferent if convective heat flow occurs within the specimens.1.6 Although no definitive upper limit can be given for themagnitude of specimen conductance that is measurable on aguarded-hot-plate, for practical reasons the specimen co
9、nduc-tance should be less than 16 W/(m2K).1.7 This test method is applicable to the measurement of awide variety of specimens, ranging from opaque solids toporous or transparent materials, and a wide range of environ-mental conditions including measurements conducted at ex-tremes of temperature and
10、with various gases and pressures.1.8 Inhomogeneities normal to the heat flux direction, suchas layered structures, can be successfully evaluated using thistest method. However, testing specimens with inhomogeneitiesin the heat flux direction, such as an insulation system withthermal bridges, can yie
11、ld results that are location specific andshall not be attempted with this type of apparatus. See TestMethod C1363 for guidance in testing these systems.1.9 Calculations of thermal transmission properties basedupon measurements using this method shall be performed inconformance with Practice C1045.1.
12、10 In order to ensure the level of precision and accuracyexpected, persons applying this standard must possess aknowledge of the requirements of thermal measurements andtesting practice and of the practical application of heat transfertheory relating to thermal insulation materials and systems.Detai
13、led operating procedures, including design schematicsand electrical drawings, should be available for each apparatusto ensure that tests are in accordance with this test method. Inaddition, automated data collecting and handling systemsconnected to the apparatus must be verified as to theiraccuracy.
14、 This can be done by calibration and inputting datasets, which have known results associated with them, intocomputer programs.1.11 It is not practical for a test method of this type toestablish details of design and construction and the proceduresto cover all contingencies that might offer difficult
15、ies to aperson without technical knowledge concerning theory of heatflow, temperature measurements and general testing practices.The user may also find it necessary, when repairing ormodifying the apparatus, to become a designer or builder, or1This test method is under the jurisdiction ofASTM Commit
16、tee C16 on ThermalInsulation and is the direct responsibility of Subcommittee C16.30 on ThermalMeasurement.Current edition approved June 1, 2010. Published August 2010. Originallyapproved in 1942. Last previous edition approved in 2004 as C177 04 . DOI:10.1520/C0177-10.2The boldface numbers given in
17、 parentheses refer to the list of references at theend of this standard.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.both, on whom the demands for fundamental understandingand careful experimental technique are even greater. Stand
18、ard-ization of this test method is not intended to restrict in any waythe future development of new or improved apparatus orprocedures.1.12 This test method does not specify all details necessaryfor the operation of the apparatus. Decisions on sampling,specimen selection, preconditioning, specimen m
19、ounting andpositioning, the choice of test conditions, and the evaluation oftest data shall follow applicable ASTM Test Methods, Guides,Practices or Product Specifications or governmental regula-tions. If no applicable standard exists, sound engineeringjudgment that reflects accepted heat transfer p
20、rinciples must beused and documented.1.13 This test method allows a wide range of apparatusdesign and design accuracy to be used in order to satisfy therequirements of specific measurement problems. Compliancewith this test method requires a statement of the uncertainty ofeach reported variable in t
21、he report. A discussion of thesignificant error factors involved is included.1.14 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.15 This standard does not purport to address all of thesafety concerns, if any, associated with
22、its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. Specific precau-tionary statements are given in Note 21.1.16 Major sections within this test method are arrange
23、d asfollows:Section SectionScope 1Referenced Documents 2Terminology 3Summary of Test Method 4Significance and Use 5Apparatus 6Specimen Preparation and Conditioning 7Procedure 8Calculation of Results 9Report 10Precision and Bias 11Keywords 12FiguresGeneral Arrangement of the Mechanical Components of
24、the Guarded-Hot-Plate ApparatusFig. 1Illustration of Heat Flow in the Guarded-Hot-Plate Apparatus Fig.2Example Report Form Fig. 3AnnexesImportance of Thickness A1.1Measuring Thickness A1.2Limitations Due to Apparatus A1.3Limitations Due to Temperature A1.4Limitations Due to Specimen A1.5Random and S
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