Standards Worldwide
Standards Worldwide
Phone +49 30 58885700-07

Standard [CURRENT]

ASTM C 1043:2024

Standard Practice for Guarded-Hot-Plate Design Using Circular Line-Heat Sources

German title
Bestimmung der Temperaturverteilung durch Linienstrahler im Plattengerät zur Messung der stabilen Wärmeübertragung
Publication date
2024
Original language
English
Pages
16

from 73.80 EUR VAT included

from 68.97 EUR VAT excluded

Format and language options

PDF download
  • 73.80 EUR

  • 88.60 EUR

Shipment (3-5 working days)
  • 82.10 EUR

Monitor with the Standards Ticker

This option is only available after login.
Easily subscribe: Save time and money now!

You can also subscribe to this document - together with other important standards in your industry. This makes your work easier and pays for itself after a short time.

Sparschwein_data
Subscription advantages
Sparschwein Vorteil 1_data

Important standards for your industry, regularly updated

Sparschwein Vorteil 2_data

Much cheaper than buying individually

Sparschwein Vorteil 3_data

Useful functions: Filters, version comparison and more

Publication date
2024
Original language
English
Pages
16
DOI
https://dx.doi.org/10.1520/C1043-24

Quick delivery via download or delivery service

Buy securely with a credit card or pay upon receipt of invoice

All transactions are encrypted

Short description
1.1 This practice covers the design of a circular line-heat-source guarded hot plate for use in accordance with Test Method C177 . Note 1: Test Method C177 describes the guarded-hot-plate apparatus and the application of such equipment for determining thermal transmission properties of flat-slab specimens. In principle, the test method includes apparatus designed with guarded hot plates having either distributed- or line-heat sources. 1.2 The guarded hot plate with circular line-heat sources is a design in which the meter and guard plates are circular plates having a relatively small number of heaters, each embedded along a circular path at a fixed radius. In operation, the heat from each line-heat source flows radially into the plate and is transmitted axially through the test specimens. 1.3 The meter and guard plates are fabricated from a continuous piece of thermally conductive material. The plates are made sufficiently thick that, for typical specimen thermal conductances, the radial and axial temperature variations in the guarded hot plate are quite small. By proper location of the line-heat source(s), the temperature at the edge of the meter plate is made equal to the mean temperature of the meter plate, thus facilitating temperature measurements and thermal guarding. 1.4 The line-heat-source guarded hot plate has been used successfully over a mean temperature range from − 10 to + 65°C, with circular metal plates and a single line-heat source in the meter plate. The chronological development of the design for circular line-heat-source guarded hot plates having a single line-heat source in the meter plate is given in Refs ( 1- 9 ) . 2 1.5 For high-temperature applications, the line-heat-source guarded hot plate has been used successfully over a mean temperature from 7 to 160°C, with circular metal plates and multiple line-heat sources in the meter plate. The chronological development for circular line-heat-source guarded hot plates having multiple line-heat sources in the meter plate is given in Refs ( 10- 14 ) . Note 2: Detailed drawings and descriptions for the construction of two line-heat-source guarded-hot-plate apparatuses are available in the adjunct. 3 1.6 This practice does not preclude ( 1 ) lower or higher temperatures; ( 2 ) plate geometries other than circular; ( 3 ) line-heat-source geometries other than circular; or ( 4 ) the use of plates fabricated from ceramics, composites, or other materials. 1.7 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.8 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. 1.9 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.
ICS
17.200.10
DOI
https://dx.doi.org/10.1520/C1043-24
Loading recommended items...
Loading recommended items...
Loading recommended items...