Wir benötigen Ihre Einwilligung zur Verwendung der einzelnen Daten, damit Sie unter anderem Informationen zu Ihren Interessen einsehen können. Klicken Sie auf "OK", um Ihre Zustimmung zu erteilen.
Standard Practice for Using a Guarded-Hot-Plate Apparatus or Thin-Heater Apparatus in the Single-Sided Mode
Name übersetzen
NORM herausgegeben am 1.10.2020
Bezeichnung normen: ASTM C1044-16(2020)
Anmerkung: UNGÜLTIG
Ausgabedatum normen: 1.10.2020
SKU: NS-1006965
Zahl der Seiten: 9
Gewicht ca.: 27 g (0.06 Pfund)
Land: Amerikanische technische Norm
Kategorie: Technische Normen ASTM
Keywords:
guarded-hot-plate apparatus, heat flow, single-sided, steady state, thermal insulation, thin-heater apparatus,, ICS Number Code 17.200.10 (Heat. Calorimetry)
Significance and Use | ||||||||||
4.1 This practice provides a procedure for operating the apparatus so that the heat flow, Q′, through the meter section of the auxiliary insulation is small; determining 4.2 This practice requires that the apparatus have independent temperature controls in order to operate the cold plate and auxiliary cold plate at different temperatures. In the single-sides mode, the apparatus is operated with the temperature of the auxiliary cold plate maintained at the same temperature of the hot plate face adjacent to the auxiliary insulation. Note 4: In principle, if the temperature difference across the
auxiliary insulation is zero and there are no edge heat losses or
gains, all of the power input to the meter plate will flow through
the specimen. In practice, a small correction is made for heat
flow, 4.3 The thermal conductance, C’, of the auxiliary insulation shall be
determined from one or more separate tests using either Test Method
C177, C1114, or as indicated in 5.4. Values of C’ shall be checked periodically,
particularly when the temperature drop across the auxiliary
insulation less than 1 % of the temperature drop across the test
specimen.
4.4 This practice is used when it is desirable to determine the thermal properties of a single specimen. For example, the thermal properties of a single specimen are used to calibrate a heat-flow-meter apparatus for Test Method C518. |
||||||||||
1. Scope | ||||||||||
1.1 This practice covers the determination of the steady-state heat flow through the meter section of a specimen when a guarded-hot-plate apparatus or thin-heater apparatus is used in the single-sided mode of operation. 1.2 This practice provides a supplemental procedure for use in conjunction with either Test Method C177 or C1114 for testing a single specimen. This practice is limited to only the single-sided mode of operation, and, in all other particulars, the requirements of either Test Method C177 or C1114 apply. Note 1: Test Methods C177 and C1114 describe the use of the
guarded-hot-plate and thin-heater apparatus, respectively, for
determining steady-state heat flux and thermal transmission
properties of flat-slab specimens. In principle, these methods
cover both the double- and single-sided mode of operation, and at
present, do not distinguish between the accuracies for the two
modes of operation. When appropriate, thermal transmission
properties shall be calculated in accordance with Practice
C1045.
1.3 This practice requires that the cold plates of the apparatus have independent temperature controls. For the single-sided mode of operation, a (single) specimen is placed between the hot plate and the cold plate. Auxiliary thermal insulation, if needed, is placed between the hot plate and the auxiliary cold plate. The auxiliary cold plate and the hot plate are maintained at the same temperature. The heat flow from the meter plate is assumed to flow only through the specimen, so that the thermal transmission properties correspond only to the specimen. Note 2: The double-sided mode of operation requires similar
specimens placed on either side of the hot plate. The cold plates
that contact the outer surfaces of these specimens are maintained
at the same temperature. The electric power supplied to the meter
plate is assumed to result in equal heat flow through the meter
section of each specimen, so that the thermal transmission
properties correspond to an average for the two
specimens.
1.4 This practice does not preclude the use of a guarded-hot-plate apparatus in which the auxiliary cold plate is either larger or smaller in lateral dimensions than either the test specimen or the cold plate. Note 3: Most guarded-hot-plate apparatus are designed for the
double-sided mode of operation (1.5 This practice is suitable for use for
both low- and high-temperature conditions.
1.6 This practice shall not be used when operating an apparatus in a double-sided mode of operation with a known and unknown specimen, that is, with the two cold plates at similar temperatures so that the temperature differences across the known and unknown specimens are similar. 1.7 This 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 establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.8 This 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. |
||||||||||
2. Referenced Documents | ||||||||||
|
Bereitstellung von aktuellen Informationen über legislative Vorschriften in der Sammlung der Gesetze bis zum Jahr 1945.
Aktualisierung 2x pro Monat!
Brauchen Sie mehr Informationen? Sehen Sie sich diese Seite an.
Letzte Aktualisierung: 2024-11-22 (Zahl der Positionen: 2 206 568)
© Copyright 2024 NORMSERVIS s.r.o.