ASTM E2153-2001(2011) Standard Practice for Obtaining Bispectral Photometric Data for Evaluation of Fluorescent Color《获取评价荧光颜色所用双谱光度学数据的标准操作规程》.pdf
《ASTM E2153-2001(2011) Standard Practice for Obtaining Bispectral Photometric Data for Evaluation of Fluorescent Color《获取评价荧光颜色所用双谱光度学数据的标准操作规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E2153-2001(2011) Standard Practice for Obtaining Bispectral Photometric Data for Evaluation of Fluorescent Color《获取评价荧光颜色所用双谱光度学数据的标准操作规程》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E2153 01 (Reapproved 2011)Standard Practice forObtaining Bispectral Photometric Data for Evaluation ofFluorescent Color1This standard is issued under the fixed designation E2153; the number immediately following the designation indicates the year oforiginal adoption or, in the case of r
2、evision, 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.INTRODUCTIONThe fundamental procedure for evaluating the color of a fluorescent specimen is to obtain bispect
3、ralphotometric data for specified irradiating and viewing geometries, and from these data to computetristimulus values based on a CIE (International Commission on Illumination) standard observer anda CIE standard illuminant. The considerations involved and the procedures used to obtain precisebispec
4、tral photometric data are contained in this practice. Values and procedures for computing CIEtristimulus values from bispectral photometric data are contained in Practice E2152. Generalconsiderations regarding the selection of appropriate irradiating and viewing geometries are containedin Guide E179
5、; further specific considerations applicable to fluorescent specimens are contained in thispractice.1. Scope1.1 This practice addresses the instrumental measurementrequirements, calibration procedures, and material standardsneeded for obtaining precise bispectral photometric data forcomputing the co
6、lors of fluorescent specimens.1.2 This practice lists the parameters that must be specifiedwhen bispectral photometric measurements are required inspecific methods, practices, or specifications.1.3 This practice applies specifically to bispectrometers,which produce photometrically quantitative bispe
7、ctral data asoutput, useful for the characterization of appearance, as op-posed to spectrofluorimeters, which produce instrument-dependent bispectral photometric data as output, useful for thepurpose of chemical analysis.1.4 The scope of this practice is limited to the discussion ofobject-color meas
8、urement under reflection geometries; it doesnot include provisions for the analogous characterization ofspecimens under transmission geometries.1.5 This standard may involve hazardous materials, opera-tions, and equipment. This standard does not purport toaddress all of the safety concerns, if any,
9、associated with itsuse. It is the responsibility of the user of this standard toestablish appropriate safety and health practices and deter-mine the applicability of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E179 Guide for Selection of Geometric Conditions forMea
10、surement of Reflection and Transmission Properties ofMaterialsE284 Terminology of AppearanceE925 Practice for Monitoring the Calibration of Ultraviolet-Visible Spectrophotometers whose Spectral Bandwidthdoes not Exceed 2 nmE958 Practice for Measuring Practical Spectral Bandwidthof Ultraviolet-Visibl
11、e SpectrophotometersE1164 Practice for Obtaining Spectrometric Data forObject-Color EvaluationE1341 Practice for Obtaining Spectroradiometric Data fromRadiant Sources for ColorimetryE2152 Practice for Computing the Colors of FluorescentObjects from Bispectral Photometric Data2.2 NPL Publications:1Th
12、is practice is under the jurisdiction of ASTM Committee E12 on Color andAppearance and is the direct responsibility of Subcommittee E12.05 on Fluores-cence.Current edition approved Nov. 1, 2011. Published November 2011. Originallyapproved in 2001. Last previous edition approved in 2006 as E2153 - 01
13、 (2006).DOI: 10.1520/E2153-01R11.2For referenced ASTM standards, visit 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.1Copyright ASTM Internationa
14、l, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.NPL Report MOM 12 Problems of spectrofluorimetric stan-dards for reflection and colorimetric use32.3 CIE Publications:CIE No. 38 Radiometric and Photometric Characteristics ofMaterials and Their Measurement4CIE No
15、.15.2 Colorimetry, 2nd Edition4CIE Report of TC-2.25: Calibration Methods and Photolu-minescent Standards for Total Radiance Factor Measure-ment42.4 NIST Publications:NBS No. 260-66 Didymium Glass Filters for Calibratingthe Wavelength Scale of Spectrophotometers53. Terminology3.1 DefinitionsThe defi
16、nitions contained in TerminologyE284 are applicable to this practice.3.2 Definitions of Terms Specific to This Standard:3.2.1 bispectral fluorescence radiance factor, bFl(), ntheratio of the spectral radiance at wavelength l due to fluores-cence from a point on the specimen when irradiated atwavelen
17、gth to the total radiance of the perfectly reflectingdiffuser similarly irradiated and viewed (see NPL ReportMOM 12).3.2.2 bispectral radiance factor, bl() , nthe ratio of thespectral radiance (radiance per unit waveband) at wavelength lfrom a point on a specimen when irradiated at wavelength tothe
18、total (integrated spectral) radiance of the perfectly reflect-ing diffuser similarly irradiated and viewed.bl! Ll!/L!d(1)3.2.3 bispectral reflection radiance factor, bRl() , ntheratio of the spectral radiance at wavelength l due to reflectionfrom a point on the specimen when irradiated at wavelength
19、 to the total radiance of the perfectly reflecting diffuser similarlyirradiated and viewed.3.2.4 bispectrometer, nan optical instrument equippedwith a source of irradiation, two monochromators, and adetection system, such that a specimen can be measured atindependently-controlled irradiation and vie
20、wing wavelengths.The bispectrometer is designed to allow for calibration toprovide quantitative determination of the bispectral radiation-transfer properties of the specimen. (6)NOTE 1Typically, a reference detection system monitors the radiationincident on the specimen. This reference detection sys
21、tem serves tocompensate for both temporal and spectral variations in the flux incidentupon the specimen, by normalization of readings from the instrumentsemission detection system.3.2.5 diagonal elements, nelements of a bispectral matrixfor which irradiation and viewing wavelengths are equal.3.2.6 d
22、iagonal fluorescence, nthe contribution of fluores-cence to diagonal values of a bispectral radiance factor matrix,due to the finite range of actual irradiation and viewingwavelengths when nominal irradiation and viewing wave-lengths are equal ( = l).3.2.7 discrete bispectral radiance factor, B(,l),
23、 nthematrix defined for specified irradiation and viewing bandpassfunctions, and viewing-wavelength sampling interval (Dl) asfollows:B,l! bl! Dl (2)where:bl()= the average bispectral radiance factor of the speci-men, as weighted by the specified irradiation andviewing bandpass functions.3.2.8 Donald
24、son radiance factor, D(,l), na special caseof the discrete bispectral radiance factor, for which the speci-fied irradiation and viewing bandpass functions are perfectlyrectangular, with bandwidth equal to irradiation and viewing-wavelength sampling interval.NOTE 2The Donaldson radiance factor is app
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