ASTM E452-2002(2013) 5625 Standard Test Method for Calibration of Refractory Metal Thermocouples Using a Radiation Thermometer《用辐射高温计校准耐火金属热电偶的标准试验方法》.pdf
《ASTM E452-2002(2013) 5625 Standard Test Method for Calibration of Refractory Metal Thermocouples Using a Radiation Thermometer《用辐射高温计校准耐火金属热电偶的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E452-2002(2013) 5625 Standard Test Method for Calibration of Refractory Metal Thermocouples Using a Radiation Thermometer《用辐射高温计校准耐火金属热电偶的标准试验方法》.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E452 02 (Reapproved 2013)Standard Test Method forCalibration of Refractory Metal Thermocouples Using aRadiation Thermometer1This standard is issued under the fixed designation E452; the number immediately following the designation indicates the year oforiginal adoption or, in the case o
2、f revision, the year of last 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 covers the calibration of refractorymetal thermocouples using a radiation the
3、rmometer as thestandard instrument. This test method is intended for use withtypes of thermocouples that cannot be exposed to an oxidizingatmosphere. These procedures are appropriate for thermo-couple calibrations at temperatures above 800 C (1472 F).1.2 The calibration method is applicable to the f
4、ollowingthermocouple assemblies:1.2.1 Type 1Bare-wire thermocouple assemblies in whichvacuum or an inert or reducing gas is the only electricalinsulating medium between the thermoelements.1.2.2 Type 2Assemblies in which loose fitting ceramicinsulating pieces, such as single-bore or double-bore tubes
5、, areplaced over the thermoelements.1.2.3 Type 2AAssemblies in which loose fitting ceramicinsulating pieces, such as single-bore or double-bore tubes, areplaced over the thermoelements, permanently enclosed andsealed in a loose fitting metal or ceramic tube.1.2.4 Type 3Swaged assemblies in which a r
6、efractoryinsulating powder is compressed around the thermoelementsand encased in a thin-walled tube or sheath made of a highmelting point metal or alloy.1.2.5 Type 4Thermocouple assemblies in which one ther-moelement is in the shape of a closed-end protection tube andthe other thermoelement is a sol
7、id wire or rod that is coaxiallysupported inside the closed-end tube. The space between thetwo thermoelements can be filled with an inert or reducing gas,or with ceramic insulating materials, or kept under vacuum.1.3 This standard does not purport to address all of thesafety concerns, if any, associ
8、ated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E344 Terminology Relating to Thermometry and Hydrom-etryE56
9、3 Practice for Preparation and Use of an Ice-Point Bathas a Reference TemperatureE988 Temperature-Electromotive Force (EMF) Tables forTungsten-Rhenium Thermocouples (Withdrawn 2011)3E1256 Test Methods for Radiation Thermometers (SingleWaveband Type)E1751 Guide for Temperature Electromotive Force (EM
10、F)Tables for Non-Letter Designated Thermocouple Combi-nations (Withdrawn 2009)33. Terminology3.1 Definitions:3.1.1 For definitions of terms used in this test method seeTerminology E344.3.1.2 radiation thermometer, nradiometer calibrated toindicate the temperature of a blackbody.3.1.2.1 DiscussionRad
11、iation thermometers include instru-ments having the following or similar names: (1) opticalradiation thermometer, (2) photoelectric pyrometer, ( 3) singlewavelength automatic thermometer, (4) disappearing filamentpyrometer, (5) dual wavelength pyrometer or ratio radiationthermometer, (6) visual opti
12、cal thermometer, (7) infraredthermometer, (8) infrared pyrometer, and permutations on theterms above as well as some manufacturer-specific names.3.2 Definitions of Terms Specific to This Standard:3.2.1 automatic radiation thermometer, n radiation ther-mometer whose temperature reading is determined
13、by elec-tronic means.3.2.2 disappearing filament pyrometer, n radiation ther-mometer that requires an observer to match visually thebrightness of a heated filament mounted inside the radiationthermometer to that of the measured object.1This test method is under the jurisdiction of ASTM Committee E20
14、 onTemperature Measurementand is the direct responsibility of Subcommittee E20.04on Thermocouples.Current edition approved May 1, 2013. Published May 2013. Originallyapproved in 1972. Last previous edition approved in 2007 as E452 02 (2007).DOI: 10.1520/E0452-02R13.2For referenced ASTM standards, vi
15、sit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3The last approved version of this historical standard is referenced onwww.astm.org.Copyright A
16、STM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13.2.3 equalizing block, nobject, usually metal, that whenplaced in a nonuniform temperature region, has greater tem-perature uniformity (due to its relatively high thermoconduc-tivity and mass) tha
17、n the medium surrounding the object.3.2.4 spectral emissivity, nratio of the spectral radiance ata point on a particular specimen and in a particular directionfrom that point to that emitted by a blackbody at the sametemperature.3.2.5 spectral radiance, npower radiated by a specimen ina particular d
18、irection, per unit wavelength, per unit projectedarea of the specimen, and per unit solid angle.3.2.6 spectral response, nsignal detected by a radiometerat a particular wavelength of incident radiation, per unit powerof incident radiation.3.2.7 test thermocouple, nthermocouple that is to have itstem
19、perature-emf relationship determined by reference to atemperature standard.3.2.8 thermocouple calibration point, n temperature, es-tablished by a standard, at which the emf developed by athermocouple is determined.4. Summary of Test Method4.1 The thermocouple is calibrated by determining thetemperat
20、ure of its measuring junction with a radiation ther-mometer and recording the emf of the thermocouple at thattemperature. The measuring junction of the thermocouple isplaced in an equalizing block containing a cavity whichapproximates blackbody conditions. The radiation thermom-eter is sighted on th
21、e cavity in the equalizing block and theblackbody temperature or true temperature of the block,including the measuring junction, is determined.4.2 Since the spectral emissivity of the radiation emanatingfrom a properly designed blackbody is considered unity (one)for all practical purposes, no spectr
22、al emissivity correctionsneed be applied to optical pyrometer determinations of theblackbody temperature.4.3 Although the use of a radiation thermometer (Note 1)isless may require more effort and more complex apparatus toachieve a sensitivity equivalent to that of commonly usedthermocouples, a radia
23、tion thermometer has the advantage ofbeing physically separated from the test assembly; thus, itscalibration is not influenced by the temperatures and atmo-spheres in the test chamber. By comparison, a standardthermocouple that is used to calibrate another thermocouplemust be subjected to the temper
24、atures at which the calibrationsare performed and in some cases must be exposed to theenvironment that is common to the test thermocouple. If astandard thermocouple is exposed to high temperatures orcontaminating environments, or both, for long periods of time,its calibration becomes questionable an
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