• ASTM E 1582 : 2017 : REDLINE

    Superseded A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

    Standard Test Method for Temperature Calibration of Thermogravimetric Analyzers

    Available format(s):  PDF

    Superseded date:  13-08-2021

    Language(s):  English

    Published date:  11-10-2017

    Publisher:  American Society for Testing and Materials

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    Abstract - (Show below) - (Hide below)

    CONTAINED IN VOL. 14.05, 2017 Defines the temperature calibration of thermogravimetric analyzers over the temperature range from 25 to 1500 degrees C and is applicable to commercial and custom-built apparatus.

    Scope - (Show below) - (Hide below)

    1.1This test method describe the temperature calibration of thermogravimetric analyzers over the temperature range from 25 to 1500 °C and is applicable to commercial and custom-built apparatus. This calibration may be accomplished by the use of either melting point standards or magnetic transition standards.

    1.2The weight change curve in thermogravimetry results from a number of influences, some of which are characteristic of the specimen holder assembly and atmosphere rather than the specimen. The variations from instrument to instrument occur in the point of measurement of the temperature, the nature of the material, its size and packing, the geometry and composition of the specimen container, the geometry and design of the furnace, and the accuracy and sensitivity of the temperature sensor and displaying scales. These all contribute to differences in measured temperatures, which may exceed 20 °C. In addition, some sample holder assemblies will show variations of measured temperature with sample size or heating/cooling rate, or both. Since it is neither practical nor advisable to standardize sample holders or thermobalance geometries, instruments may be calibrated by measurement of the deviation of a melting or magnetic (Curie Point) transition temperature from the standard reference temperature. This deviation can be applied as a correction term to subsequent measurements.

    1.3This test method assumes that the indicated temperature of the instrument is linear over the range defined by a two-point calibration and that this linearity has been verified. These two calibration temperatures should be as close to the experimental measurements to be made as possible.

    1.4This test method describes two procedures for temperature calibration of thermogravimetric analyzers using any type balance. Procedure A uses melting point standards for calibration. Procedure B uses magnetic transition standards for calibration.

    1.5The data generated by these procedures can be used to correct the temperature scale of the instrument by either a positive or negative amount using either a one- or two-point temperature calibration procedure.

    1.6The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

    1.7This 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.

    1.8This 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.

    General Product Information - (Show below) - (Hide below)

    Committee E 37
    Development Note Supersedes ASTM E 914 (12/2001)
    Document Type Redline
    Publisher American Society for Testing and Materials
    Status Superseded
    Superseded By
    Supersedes

    Standards Referenced By This Book - (Show below) - (Hide below)

    ASTM E 2403 : 2006 : R2012 Standard Test Method for Sulfated Ash of Organic Materials by Thermogravimetry
    ASTM D 6375 : 2009 : R2014 Standard Test Method for Evaporation Loss of Lubricating Oils by Thermogravimetric Analyzer (TGA) Noack Method
    ASTM E 1868 : 2010 Standard Test Method for Loss-On-Drying by Thermogravimetry
    ASTM E 1131 : 2008 : R2014 Standard Test Method for Compositional Analysis by Thermogravimetry
    ASTM E 2402 : 2011 Standard Test Method for Mass Loss and Residue Measurement Validation of Thermogravimetric Analyzers
    SAE AS 6171/10 : 2016 TECHNIQUES FOR SUSPECT/COUNTERFEIT EEE PARTS DETECTION BY THERMOGRAVIMETRIC ANALYSIS (TGA) TEST METHODS
    ASTM E 1868 : 2010 : R2015 Standard Test Methods for Loss-On-Drying by Thermogravimetry
    ASTM E 2550 : 2017 : REDLINE Standard Test Method for Thermal Stability by Thermogravimetry
    ASTM E 2402 : 2011 : R2017 Standard Test Method for Mass Loss and Residue Measurement Validation of Thermogravimetric Analyzers
    ASTM E 2403 : 2006 Standard Test Method for Sulfated Ash of Organic Materials by Thermogravimetry
    ASTM E 3142 : 2018 Standard Test Method for Thermal Lag of Thermal Analysis Apparatus
    ASTM E 2958 : 2014 Standard Test Methods for Kinetic Parameters by Factor Jump/Modulated Thermogravimetry
    ASTM E 1131 : 2008 Standard Test Method for Compositional Analysis by Thermogravimetry
    ASTM D 7542 : 2015 : REDLINE Standard Test Method for Air Oxidation of Carbon and Graphite in the Kinetic Regime
    ASTM C 1872 : 2018 Standard Test Method for Thermogravimetric Analysis of Hydraulic Cement
    ASTM E 2008 : 2017 : REDLINE Standard Test Methods for Volatility Rate by Thermogravimetry
    ASTM D 6375 : 2009 Standard Test Method for Evaporation Loss of Lubricating Oils by Thermogravimetric Analyzer (TGA) Noack Method

    Standards Referencing This Book - (Show below) - (Hide below)

    ASTM E 1142 : 2015 : REDLINE Standard Terminology Relating to Thermophysical Properties
    ASTM E 473 : 2016-05 TERMINOLOGY RELATING TO THERMAL ANALYSIS AND RHEOLOGY
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