ASTM C 518 : 2017 : REDLINE
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Test Method for Steady-State Thermal Transmission Properties by Means of the Heat Flow Meter Apparatus
12-10-2021
English
01-05-2017
CONTAINED IN VOL. 04.06, 2017 Defines the measurement of steady state thermal transmission through flat slab specimens using a heat flow meter apparatus.
Committee |
C 16
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DocumentType |
Redline
|
Pages |
21
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PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
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SupersededBy |
1.1This test method covers the measurement of steady state thermal transmission through flat slab specimens using a heat flow meter apparatus.
1.2The heat flow meter apparatus is used widely because it is relatively simple in concept, rapid, and applicable to a wide range of test specimens. The precision and bias of the heat flow meter apparatus can be excellent provided calibration is carried out within the range of heat flows expected. This means calibration shall be carried out with similar types of materials, of similar thermal conductances, at similar thicknesses, mean temperatures, and temperature gradients, as expected for the test specimens.
1.3This a comparative, or secondary, method of measurement since specimens of known thermal transmission properties shall be used to calibrate the apparatus. Properties of the calibration specimens must be traceable to an absolute measurement method. The calibration specimens should be obtained from a recognized national standards laboratory.
1.4The heat flow meter apparatus establishes steady state one-dimensional heat flux through a test specimen between two parallel plates at constant but different temperatures. By appropriate calibration of the heat flux transducer(s) with calibration standards and by measurement of the plate temperatures and plate separation. Fourier’s law of heat conduction is used to calculate thermal conductivity, and thermal resistivity or thermal resistance and thermal conductance.
1.5This test method shall be used in conjunction with Practice C1045. Many advances have been made in thermal technology, both in measurement techniques and in improved understanding of the principles of heat flow through materials. These advances have prompted revisions in the conceptual approaches to the measurement of the thermal transmission properties (1-4).2 All users of this test method should be aware of these concepts.
1.6This test method is applicable to the measurement of thermal transmission through a wide range of specimen properties and environmental conditions. The method has been used at ambient conditions of 10 to 40°C with thicknesses up to approximately 250 mm, and with plate temperatures from –195°C to 540°C at 25-mm thickness (5, 6).
1.7This test method may be used to characterize material properties, which may or may not be representative of actual conditions of use. Other test methods, such as Test Methods C236 or C976 should be used if needed.
1.8To meet the requirements of this test method the thermal resistance of the test specimen shall be greater than 0.10 m2·K/W in the direction of the heat flow and edge heat losses shall be controlled, using edge insulation, or a guard heater, or both.
1.9It is not practical in a test method of this type to try to establish details of construction and procedures to cover all contingencies that might offer difficulties to a person without pertinent technical knowledge. Thus users of this test method shall have sufficient knowledge to satisfactorily fulfill their needs. For example, knowledge of heat transfer principles, low level electrical measurements, and general test procedures is required.
1.10The user of this method must be familiar with and understand the Annex. The Annex is critically important in addressing equipment design and error analysis.
1.11Standardization of this test method is not intended to restrict in any way the future development of improved or new methods or procedures by research workers.
1.12Since the design of a heat flow meter apparatus is not a simple matter, a procedure for proving the performance of an apparatus is given in Appendix X3.
1.13The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.
1.14This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to consult and establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
1.15This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
Standards | Relationship |
UNE 92202:1989 | Identical |
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MIL-P-15280 Revision J:1988 | PLASTIC MATERIAL, UNICELLULAR (SHEETS AND TUBES) |
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ASTM D 2341 : 1981 | Specification for Rigid Urethane Foam (Withdrawn 1988) |
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ASTM D 4098 : 1982 : R1987 : EDT 1 | Practice for Evaluating High-Density Rigid Cellular Thermosets (Withdrawn 1994) |
HH-I-1972-6 Base Document:1981 | INSULATION BOARD, THERMAL, POLYURETHANE OR POLYISOCYANURATE FACED WITH MINERAL FIBERBOARD ON ONE SIDE OF THE FOAM AND GLASS MAT ON THE OTHER SIDE OF THE FOAM |
ASTM C 976 : 1990 : R1996 : EDT 1 | Standard Test Method for Thermal Performance of Building Assemblies by Means of a Calibrated Hot Box (Withdrawn 2002) |
MIL-PRF-32514 Base Document:2015 | INSULATION, ANTI-SWEAT, REFRIGERANT, AND THERMAL FOAM |
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ASTM C 1013 : 1994 | Specification for Faced Rigid Cellular Polyisocyanurate Roof Insulation (Withdrawn 1997) |
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API 17J REDLINE : 2008 | SPECIFICATION FOR UNBONDED FLEXIBLE PIPE |
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ASTM C 335/C335M : 2017 : REDLINE | Standard Test Method for Steady-State Heat Transfer Properties of Pipe Insulation |
ASTM C 1594 : 2011 : R2017 | Standard Specification for Polyimide Rigid Cellular Thermal Insulation |
ASTM C 1046 : 1995 : R2007 | Standard Practice for In-Situ Measurement of Heat Flux and Temperature on Building Envelope Components |
ASTM E 936 : 1998 | Standard Practice for Roof System Assemblies Employing Steel Deck, Preformed Roof Insulation, and Bituminous Built-Up Roofing |
ASTM C 1029 : 2015 : REDLINE | Standard Specification for Spray-Applied Rigid Cellular Polyurethane Thermal Insulation |
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ASTM C 1470 : 2006 : R2013 | Standard Guide for Testing the Thermal Properties of Advanced Ceramics |
ASTM C 1512 : 2010 | Standard Test Method for Characterizing the Effect of Exposure to Environmental Cycling on Thermal Performance of Insulation Products |
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ASTM C 1696 : 2016 : REDLINE | Standard Guide for Industrial Thermal Insulation Systems |
ASTM E 1591 : 2013 | Standard Guide for Obtaining Data for Fire Growth Models |
ASTM C 1393 : 2014-02 | SPECIFICATION FOR PERPENDICULARLY ORIENTED MINERAL FIBER ROLL AND SHEET THERMAL INSULATION FOR PIPES AND TANKS |
BS EN ISO 12567-1:2010 | Thermal performance of windows and doors. Determination of thermal transmittance by the hot-box method Complete windows and doors |
ISO 13628-2:2006 | Petroleum and natural gas industries Design and operation of subsea production systems Part 2: Unbonded flexible pipe systems for subsea and marine applications |
MIL-I-742 Revision F:1980 | INSULATION BOARD, THERMAL, FIBROUS GLASS |
CGSB 4.2-70.1 : 1994 | TEXTILE TEST METHODS - THERMAL INSULATION PERFORMANCE OF TEXTILE MATERIALS |
AASHTO M 230 : 2007 | SPECIFICATION FOR EXPANDED AND EXTRUDED FOAM BOARD (POLYSTYRENE) |
CSA S500 : 2014 | THERMOSYPHON FOUNDATIONS FOR BUILDINGS IN PERMAFROST REGIONS |
ASTM C 516 : 2008 | Standard Specification for Vermiculite Loose Fill Thermal Insulation |
CSA Z245.20 SERIES : 2014 | PLANT-APPLIED EXTERNAL COATINGS FOR STEEL PIPE |
MIL-DTL-24688 Revision A:2011 | INSULATION, THERMAL AND ACOUSTIC ABSORPTIVE, CELLULAR POLYIMIDE FOAM |
ASTM C 195 : 2007 : R2019 | Standard Specification for Mineral Fiber Thermal Insulating Cement |
MIL-PRF-2819 Revision H:2013 | INSULATION BLOCK, THERMAL |
ASTM C 1086 : 2009 : R2016 | Standard Specification for Glass Fiber Mechanically Bonded Felt Thermal Insulation |
SAE J 1324 : 2016 | ACOUSTICAL AND THERMAL MATERIALS TEST PROCEDURE |
API 17L1 : 2013 | SPECIFICATION FOR FLEXIBLE PIPE ANCILLARY EQUIPMENT |
ASTM C 1044 : 2016 : REDLINE | Standard Practice for Using a Guarded-Hot-Plate Apparatus or Thin-Heater Apparatus in the Single-Sided Mode |
SAE AMS 7510C:2006(S2017) | Magnets, Rare-Earth/Cobalt, Permanent Powder-Metallurgy Product |
ASTM D 4060 : 2014 : REDLINE | Standard Test Method for Abrasion Resistance of Organic Coatings by the Taber Abraser |
ASTM C 1373/C1373M : 2011 : R2017 | Standard Practice for Determination of Thermal Resistance of Attic Insulation Systems Under Simulated Winter Conditions |
ASTM C 1676 : 2008 | Standard Specification for Microporous Thermal Insulation |
ASTM C 449 : 2007 : R2019 | Standard Specification for Mineral Fiber Hydraulic-Setting Thermal Insulating and Finishing Cement |
ASTM C 1470 : 2006 | Standard Guide for Testing the Thermal Properties of Advanced Ceramics |
ASTM D 6744 : 2006 | Standard Test Method for Determination of the Thermal Conductivity of Anode Carbons by the Guarded Heat Flow Meter Technique |
ASTM C 449 : 2007 : R2013 | Standard Specification for Mineral Fiber Hydraulic-Setting Thermal Insulating and Finishing Cement |
ASTM E 2816 : 2018 : REDLINE | Standard Test Methods for Fire Resistive Metallic HVAC Duct Systems |
ASTM C 549 : 2006 : R2012 | Standard Specification for Perlite Loose Fill Insulation |
ASTM E 1530 : 2011 : R2016 | Standard Test Method for Evaluating the Resistance to Thermal Transmission of Materials by the Guarded Heat Flow Meter Technique |
ASTM D 6744 : 2006 : R2011 | Standard Test Method for Determination of the Thermal Conductivity of Anode Carbons by the Guarded Heat Flow Meter Technique |
ASTM F 433 : 2002 : R2014 : EDT 1 | Standard Practice for Evaluating Thermal Conductivity of Gasket Materials |
ASTM F 433 : 2002 : R2009 | Standard Practice for Evaluating Thermal Conductivity of Gasket Materials |
NBR 11358 : 2013 | THERMAL INSULATION PANELS BASED ON GLASS WOOL |
NBR 11363 : 2014 | PIPE THERMAL INSULATION BASED OF ROCK (STONE) WOOL |
NBR 11722 : 2014 | FELT-BASED THERMAL INSULATION STONE WOOL |
NBR 11361 : 2014 | BASED THERMAL INSULATION BLANKETS OF ROCK (STONE) WOOL |
NBR 15575-1 : 2013 | RESIDENTIAL BUILDINGS - PERFORMANCE - PART 1: GENERAL REQUIREMENTS |
NBR 11364 : 2014 | THERMAL INSULATION PANELS BASED ON ROCK (STONE) WOOL - SPECIFICATION |
NBR 11752 : 2016 | POLYSTYRENE CELLULAR MATERIALS FOR THERMAL INSULATION IN CIVIL CONSTRUCTION AND COLD STORAGE - SPECIFICATION |
ISO 8301:1991 | Thermal insulation — Determination of steady-state thermal resistance and related properties — Heat flow meter apparatus |
ASTM C 168 : 2017-06 | TERMINOLOGY RELATING TO THERMAL INSULATION |
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