ASTM C1303 C1303M-2010 Standard Test Method for Predicting Long-Term Thermal Resistance of Closed-Cell Foam Insulation《预测闭孔绝缘泡沫的长期热电阻的标准试验方法》.pdf
《ASTM C1303 C1303M-2010 Standard Test Method for Predicting Long-Term Thermal Resistance of Closed-Cell Foam Insulation《预测闭孔绝缘泡沫的长期热电阻的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM C1303 C1303M-2010 Standard Test Method for Predicting Long-Term Thermal Resistance of Closed-Cell Foam Insulation《预测闭孔绝缘泡沫的长期热电阻的标准试验方法》.pdf(21页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C1303/C1303M 10Standard Test Method forPredicting Long-Term Thermal Resistance of Closed-CellFoam Insulation1This standard is issued under the fixed designation C1303/C1303M; the number immediately following the designation indicates theyear of original adoption or, in the case of revis
2、ion, the year of last revision. A number in parentheses indicates the year of lastreapproval. A superscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers a procedure for predicting thelong-term thermal resistance (LTTR) of unfaced
3、or permeablyfaced rigid gas-filled closed-cell foam insulations by reducingthe specimen thickness to accelerate aging under controlledlaboratory conditions (1-5) .21.2 Rigid gas-filled closed-cell foam insulation includes allcellular plastic insulations manufactured with the intent toretain a blowin
4、g agent other than air.1.3 This test method is limited to unfaced or permeablyfaced, homogeneous materials. This method is applied to awide range of rigid closed-cell foam insulation types, includingbut not limited to: extruded polystyrene, polyurethane, poly-isocyanurate, and phenolic. This test me
5、thod does not apply toimpermeably faced rigid closed-cell foams or to rigid closed-cell bun stock foams.NOTE 1See Note 7 for more details regarding the applicability of thistest method to rigid closed-cell bun stock foams.1.4 This test method utilizes referenced standard test proce-dures for measuri
6、ng thermal resistance. Periodic measurementsare performed on specimens to observe the effects of aging.Specimens of reduced thickness (that is, thin slices) are used toshorten the time required for these observations. The results ofthese measurements are used to predict the long-term thermalresistan
7、ce of the material.1.5 The test method is given in two parts. The PrescriptiveMethod in Part A provides long-term thermal resistance valueson a consistent basis that can be used for a variety of purposes,including product evaluation, specifications, or product com-parisons. The Research Method in pa
8、rt B provides a generalrelationship between thermal conductivity, age, and productthickness.1.5.1 To use the Prescriptive Method, the date of manufac-ture must be known, which usually involves the cooperation ofthe manufacturer.1.6 The values stated in either SI units or inch-pound unitsare to be re
9、garded separately as standard. The values stated ineach system may not be exact equivalents; therefore, eachsystem shall be used independently of the other. Combiningvalues from the two systems may result in non-conformancewith the standard.1.7 This standard does not purport to address all of thesaf
10、ety concerns, if any, associated with 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.1.8 Table of Contents:SectionScope 1Reference Documents 2Terminology 3Summ
11、ary of Test Method 4Significance and Use 5Part A: The Prescriptive Method 6Applicability 6.1Qualification Requirements 6.1.1Facing Permeability 6.1.2Apparatus 6.2Sampling 6.3Schedule 6.3.1Representative Replicate Product Sheets 6.3.2Replicate Test Specimen Sets 6.3.3Specimen Preparation 6.4Goal 6.4.
12、1Schedule 6.4.2Specimen Extraction 6.4.3Slice Flatness 6.4.4Slice Thickness 6.4.5Stack Composition 6.4.6Storage Conditioning 6.5Test Procedure 6.6Thermal Resistance Measurement Schedule 6.6.1Thermal Resistance Measurements 6.6.2Product Density 6.6.3Calculations 6.7Part B: The Research Method 7Backgr
13、ound 7.1TDSL Apparatus 7.2Sampling Schedule 7.3Specimen Preparation 7.4Storage Conditioning 7.5Test Procedure 7.6Calculations 7.7Reporting 8Reporting for Part A, the Prescriptive Method 8.1Reporting for Part B, the Research Method 8.2Precision and Bias 9Keywords 101This test method is under the juri
14、sdiction ofASTM Committee C16 on ThermalInsulation and is the direct responsibility of Subcommittee C16.30 on ThermalMeasurement.Current edition approved June 1, 2010. Published July 2010. Originally approvedin 1995. Last previous edition approved in 2009 as C1303 09a. DOI: 10.1520/C1303-10.2The bol
15、dface numbers in parentheses refer to the list of references at the end ofthis standard.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.Mandatory Information Qualification AnnexA1Specimen Preparation A1.1Homogeneity Qualification A1.
16、2Aging Equivalence Test Procedure A1.3Alternate Product Thickness Qualification A1.4Example Calculations A1.5Mandatory Information-Preparation of TestSpecimens for Spray-Foam ProductsAnnexA2Effect Of TDSL Appen-dix X1History of the Standard Appen-dix X2Theory of Foam Aging Appen-dix X3References2. R
17、eferenced Documents2.1 ASTM Standards:3C168 Terminology Relating to Thermal InsulationC177 Test Method for Steady-State Heat Flux Measure-ments and Thermal Transmission Properties by Means ofthe Guarded-Hot-Plate ApparatusC518 Test Method for Steady-State Thermal TransmissionProperties by Means of t
18、he Heat Flow Meter ApparatusC578 Specification for Rigid, Cellular Polystyrene ThermalInsulationC591 Specification for Unfaced Preformed Rigid CellularPolyisocyanurate Thermal InsulationC1029 Specification for Spray-Applied Rigid Cellular Poly-urethane Thermal InsulationC1045 Practice for Calculatin
19、g Thermal Transmission Prop-erties Under Steady-State ConditionsC1126 Specification for Faced or Unfaced Rigid CellularPhenolic Thermal InsulationC1289 Specification for Faced Rigid Cellular Polyisocya-nurate Thermal Insulation BoardD1622 Test Method for Apparent Density of Rigid CellularPlasticsD62
20、26 Test Method for Open Cell Content of Rigid CellularPlasticsE122 Practice for Calculating Sample Size to Estimate,With Specified Precision, the Average for a Characteristicof a Lot or Process2.2 Other Standards:CAN/ULC S770 Standard Test Method for Determinationof Long-Term Thermal Resistance of C
21、losed-Cell Ther-mal Insulation Foams42.3 ASTM Adjuncts:Test Method for Predicting Long-Term Thermal Resistanceof Closed-Cell Foam Insulation53. Terminology3.1 DefinitionsFor definitions of terms and symbols usedin this test method, refer to Terminology C168.3.2 Definitions of Terms Specific to This
22、Standard:3.2.1 aging, vthe change in thermophysical properties ofrigid closedcell plastic foam with time, primarily due tochanges in the composition of the gas contained within theclosed cells.3.2.2 bias, na generic concept related to a consistent orsystematic difference between a set of test result
23、s from theprocess (that is, the predicted thermal conductivity at 5 years)and an accepted reference value of the property being mea-sured (that is, the actual thermal resistance after 5 years offull-thickness products taken from the same lot as the source ofthe thin slices).3.2.3 core slice, na thin
24、-slice foam specimen that wastaken at least 5 mm 0.2 in. or 25 % of the product thickness,whichever is greater, away from the surface of the full-thickness product.3.2.4 effective diffusion thickness, none-half of the geo-metric thickness minus the total thickness of damaged surfacelayer(s) (TDSL).3
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