ASTM E2301-2003 Standard Test Method for Daytime Colorimetric Properties of Fluorescent Retroreflective Sheeting and Marking Materials for High Visibility Traffic Control and Perso.pdf
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1、Designation: E 2301 03Standard Test Method forDaytime Colorimetric Properties of FluorescentRetroreflective Sheeting and Marking Materials for HighVisibility Traffic Control and Personal Safety ApplicationsUsing 45:Normal Geometry1This standard is issued under the fixed designation E 2301; the numbe
2、r immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1
3、.1 This test method describes the instrumental measure-ment of the colorimetric properties (CIE tristimulus values,luminance factors, and chromaticity coordinates) offluorescent-retroreflective sheeting and marking materialswhen illuminated by daylight.1.2 This test method is generally applicable to
4、 any sheetingor marking material having combined fluorescent and retrore-flective properties used for daytime high visibility trafficcontrol and personal safety applications.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibil
5、ity 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:D 2244 Practice for Calculation of Color Tolerances andColor Differences from Instrumentally Measur
6、ed ColorCoordinates2E 179 Guide for Selection of Geometric Conditions forMeasurement of Reflection and Transmission Properties ofMaterials3E 284 Terminology of Appearance3E 308 Practice for Computing the Colors of Objects byUsing the CIE System3E 691 Practice for Conducting an Interlaboratory Study
7、toDetermine the Precision of a Test Method4E 1164 Practice for Obtaining Spectrometric Data forObject-Color Evaluation4E 1767 Practice for Specifying the Geometry of Observa-tions and Measurements to Characterize the Appearance ofMaterials4E 2152 Practice for Computing the Colors of FluorescentObjec
8、ts from Bispectral Photometric Data4E 2153 Practice for Obtaining Bispectral Photometric Datafor Evaluation of Fluorescent Color42.2 CIE Document:CIE 15.2 Colorimetry53. Terminology3.1 DefinitionsThe definitions contained in Guide E 179,Terminology E 284, and Practice E 1164 are applicable to thiste
9、st method.4. Summary of Test Method4.1 This test method provides a procedure for measuring thecolorimetric properties of fluorescent-retroreflective sheetingand markings under simulated daylight illumination. Colori-metric properties are determined for CIE D65, which approxi-mates outdoor illuminati
10、on at midday, and Daylight 15 000 K,which is an alternate D illuminant chosen to represent lowambient light/dawn/dusk daylight illumination conditions (seeCIE 15.2).4.2 This test method requires the use of a calibrated bispec-trometer (two-monochromator spectrometer) with either 45:0or 0:45 geometry
11、 that can measure the specimens Donaldsonmatrix (see Practice E 2153).4.3 This test method provides for calculation and reportingof separated fluorescence, reflectance and total tristimulusvalues (XYZ) and luminance factors (Y, %), and total chroma-ticity coordinates (x,y) from the Donaldson matrix
12、for the CIE1931 Standard Colorimetric Observer.1This test method is under the jurisdiction of ASTM Committee E12 on Colorand Appearance and is the direct responsibility of Subcommittee E12.05 onFluorescence.Current edition approved July10, 2003. Published August 2003.2Annual Book of ASTM Standards,
13、Vol 04.03.3Annual Book of ASTM Standards, Vol 06.01.4Annual Book of ASTM Standards, Vol 14.02.5Available from the U.S. National Committee of the CIE (InternationalCommission on Illumination), c/o Thomas M. Lemons, TLA-Lighting Consultants,7 Pond St., Salem, NC 01970-4819.1Copyright ASTM Internationa
14、l, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5. Significance and Use5.1 This test method provides procedures for obtainingtristimulus values, luminance factors and chromaticity coordi-nates of fluorescent-retroreflective materials by bispectral colo-rimetry
15、using a 45:0 or 0:45 optical measuring system.5.2 The CIE 1931 (2) standard observer is used to calculatethe colorimetric properties of fluorescent-retroreflective sheet-ing and markings used in daytime high visibility traffic controland personal safety applications because in practice thesematerial
16、s are primarily viewed from a distance where theysubtend less than 4 of the visual field.5.3 This test method is applicable to object-color specimensof any gloss level.5.4 Due to the retroreflective properties of these materialsthe colorimetric data may not be suitable for use in computercolorant fo
17、rmulation.5.5 This test method is suitable for quality control testing offluorescent-retroreflective sheeting and marking materials.NOTE 1Separation of the fluorescence and reflectance componentsfrom the total colorimetric properties provides useful and meaningfulinformation to evaluate independentl
18、y the luminescent and diffuse reflec-tive efficiency and consistency of these materials.5.6 This test method is the referee method for determiningthe conformance of fluorescent-retroreflective sheeting andmarking materials to standard daytime colorimetric specifica-tions.6. Apparatus6.1 Bispectromet
19、er, with either 45:0 or 0:45 (illumina-tion:viewing) geometry.6.1.1 The tolerance on the inclination of the 45-degree axisshall be 2 degrees (45 6 2 degrees).6.1.2 The tolerance on the 0-degree axis shall be 2 degreesfrom the normal (0 6 2 degrees).NOTE 2For maximum reproducibility smaller tolerance
20、s on the axisangles are recommended.6.1.3 For the 45:0 condition, the illumination geometry maybe annular, circumferential or uniplanar and the viewing shallbe normal to the specimen. For the 0:45 condition, theillumination shall be normal to the specimen and the viewinggeometry may be annular, circ
21、umferential or uniplanar.6.1.4 The referee geometry shall be annular 45:0.NOTE 3Reciprocity between 45:0 and 0:45 geometry for commercialinstruments may not be observed in practice for retroreflective materialsbecause of the variation in axis angles and aperture sizes of instruments.6.1.4.1 Circumfe
22、rential instruments are acceptable providedthe procedure described in 9.3.1 is followed.6.1.4.2 Uniplanar instruments are acceptable provided theprocedure described in 9.3.2 is followed.6.1.5 The referee aperture sizes shall be 10 degrees forillumination and 10 degrees for viewing. Use of aperture s
23、izesdeviating from these may affect the measurement results. SeePractice E 1767 for fundamentals of specification of apertures.NOTE 4Fluorescent colorimetric properties (for example, Fluores-cence tristimulus values (XYZ)F) are not significantly influenced by theaperture sizes. Reflectance colorimet
24、ric properties (for example, Reflec-tance tristimulus values (XYZ)R) may be greatly affected by aperture sizes.Consequently total colorimetric properties (for example, Total tristimulusvalues (XYZ)T) may be greatly affected.6.1.6 The illumination monochromator shall illuminate thespecimen over the w
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