ASTM E2113-2013 Standard Test Method for Length Change Calibration of Thermomechanical Analyzers《热机械分析仪长度变化校准的标准试验方法》.pdf
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1、Designation: E2113 09E2113 13Standard Test Method forLength Change Calibration of Thermomechanical Analyzers1This standard is issued under the fixed designation E2113; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of las
2、t revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method describes calibration of the length change (deflection) measurement or thermal expansion ofthermomechani
3、cal analyzers (TMA)(TMAs) within the temperature range from -150150 to 1000 C 1000C using the thermalexpansion of a suitable reference material.1.2 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.1.3 This test method differs f
4、rom ISO 11359-1 by providing an alternative calibration procedure.1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibilityof whoever uses this standard to consult and establish appropriate safety and health practices and dete
5、rmine the applicability ofregulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E473 Terminology Relating to Thermal Analysis and RheologyE831 Test Method for Linear Thermal Expansion of Solid Materials by Thermomechanical AnalysisE1142 Terminology Relating to Thermophysical
6、 PropertiesE1363 Test Method for Temperature Calibration of Thermomechanical AnalyzersE2161 Terminology Relating to Performance Validation in Thermal Analysis2.2 Other Standards:ISO 11359-1 PlasticsThermomechanical analysis (TMA)Part 1: General principles33. Terminology3.1 Specific technical terms u
7、sed in this test method are described in Terminologies E473, E1142, and E2161 includecalibration, Celsius, coefficient of linear thermal expansion, Kelvin, reference material, repeatability, reproducibility andthermomechanical analysis.4. Summary of Test Method4.1 Thermomechanical analyzers (TMAs) o
8、r related devices are commonly used to determine coefficient of linear thermalexpansion of solid materials (for example, Test Method E831). The test specimen is heated at a linear rate over the temperaturerange of interest and the change in length (dimension) is electronically recorded.4.2 Performan
9、ce verification or calibration of the length change measurement is needed to obtain accurate coefficient of thermalexpansion data.4.3 The thermal expansion of a reference material is recorded using a thermomechanical analyzer. The recorded thermalexpansion is compared to the known value of the refer
10、ence material. The resultant ratio, a calibration coefficient, may then beapplied to the determination of unknown specimens to obtain accurate results.1 This test method is under the jurisdiction ofASTM Committee E37 on Thermal Measurements and is the direct responsibility of Subcommittee E37.10 on
11、Fundamental,Statistical and Mechanical Properties.Current edition approved Sept. 1, 2009Aug. 1, 2013. Published October 2009August 2013. Originally approved in 2000. Last previous edition approved in 20042009 asE2113 04.E2113 09. DOI: 10.1520/E2113-09.10.1520/E2113-13.2 For referencedASTM standards,
12、 visit theASTM website, www.astm.org, or contactASTM Customer Service at serviceastm.org. For Annual Book of ASTM Standardsvolume information, refer to the standards Document Summary page on the ASTM website.3 Available from American National Standards Institute (ANSI), 25 W. 43rd St., 4th Floor, Ne
13、w York, NY 10036, http:/www.ansi.org.This document is not an ASTM standard and is intended only to provide the user of an ASTM standard an indication of what changes have been made to the previous version. Becauseit may not be technically possible to adequately depict all changes accurately, ASTM re
14、commends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is to be considered the official document.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States15. Signific
15、ance and Use5.1 Performance verification or calibration is essential to the accurate determination of quantitative dimension changemeasurements.5.2 This test method may be used for instrument performance validation, regulatory compliance, research and development andquality assurance purposes.6. App
16、aratus6.1 Thermomechanical Analyzer (TMA)The essential instrumentation required to provide the minimum thermomechanicalanalytical or thermodilatometric capability for this test method includes:6.1.1 A Rigid Specimen Holder, of inert, low expansivity material 0.5 m m-1 K-1 to center the specimen in t
17、he furnace andto fix the specimen to mechanical ground.6.1.2 A Rigid Expansion Probe, of inert, low expansivity material 0.5 m m-1 K1-1 which contacts the specimen with anapplicable compressive or tensile force.6.1.3 A Sensing Element, linear over a minimum of 2 mm, to measure the displacement of th
18、e rigid probe to within 6 10 610nm resulting from changes in length/height of the specimen.6.1.4 A Weight or Force Transducer , to generate a constant force between 1 and 100 mN (0.1 and 10 g) applied through therigid probe to the specimen.6.1.5 A Furnace, capable of providing uniform controlled hea
19、ting (cooling) of a specimen to a constant temperature or at aconstant rate within the applicable temperature range of this test method.6.1.6 A Temperature Controller, capable of executing a specific temperature program by operating the furnace over any suitabletemperature range between -150150 and
20、1000 C 1000C at a rate of temperature change of 5 K/min constant to within 6 0.160.1 K/min.6.1.7 A Temperature Sensor, that can be attached to, in contact with, or reproducibly positioned in close proximity to thespecimen to provide an indication of the specimen/furnace temperature to within 6 0.1 6
21、0.1 K.6.1.8 A means of sustaining an environment around the specimen of an inert purge gas at a rate of 10 to 50 6 5 mL/min.NOTE 1Typically, 99.9+% 99.9+ % pure nitrogen, helium or argon is employed, when oxidation in air is a concern. Unless effects of moisture areto be studied, use of dry purge ga
22、s is recommended and is essential for operation at subambient temperatures.6.1.9 A Data Collection Device, to provide a means of acquiring, storing, and displaying measured or calculated signals, or both.The minimum output signals required are dimension (length) change, temperature, and time.6.2 Mic
23、rometer, calipers or other length measurement device capable of measuring linear dimensions up to 10 mm withreadability of 6 25 625 m.6.3 While not required, the user may find useful software that performs the calculations described in this test method.6.4 Thermal expansion reference material of 8 6
24、 2 mm length, the linear coefficient of expansion of which is known to 6 0.160.1 m m-1 K-1. The coefficient of thermal expansion should be between 9 and 40 m m-1 K-1.6.4.1 Reference materials of known value traceable to a National Reference laboratory are available from a number of suppliers.Contact
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