ASTM E811-1995(2001) Standard Practice for Measuring Colorimetric Characteristics of Retroreflectors Under Nighttime Conditions《测量夜间条件下反射镜比色性能的标准实施规范》.pdf
《ASTM E811-1995(2001) Standard Practice for Measuring Colorimetric Characteristics of Retroreflectors Under Nighttime Conditions《测量夜间条件下反射镜比色性能的标准实施规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM E811-1995(2001) Standard Practice for Measuring Colorimetric Characteristics of Retroreflectors Under Nighttime Conditions《测量夜间条件下反射镜比色性能的标准实施规范》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 811 95 (Reapproved 2001)Standard Practice forMeasuring Colorimetric Characteristics of RetroreflectorsUnder Nighttime Conditions1This standard is issued under the fixed designation E 811; the number immediately following the designation indicates the year oforiginal adoption or, in th
2、e 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. Scope1.1 This practice describes the instrumental determinationof retroreflected chromaticity
3、coordinates of retroreflectors. Itincludes the techniques used in a photometric range to measureretroreflected (nighttime) chromaticity with either a telecolo-rimeter or telespectroradiometer.1.2 This practice covers the general measurement proce-dures. Additional requirements for specific tests and
4、 specifica-tions are described in Section 7.1.3 The description of the geometry used in the nighttimecolorimetry of retroreflectors is described in Practice E 808 andthe methods for calculation of chromaticity are contained inPractice E 308.1.4 This standard does not purport to address all of thesaf
5、ety concerns, if any, associated 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:E 284 Terminology of Appearance2
6、E 308 Practice for Computing the Colors of Objects byUsing the CIE System2E 808 Practice for Describing Retroreflection2E 809 Practice for Measuring Photometric Characteristicsof Retroreflectors22.2 CIE Documents:CIE Publication No. 15.2 Colorimetry, 2d ed.3CIE Standard S 001/ISO IS 10526, Colorimet
7、ric Illumi-nants3CIE Standard S 002/ISO IS 10527, Colorimetric Observers33. Terminology3.1 The terms and definitions in Terminology E 284 apply tothis practice.3.2 Definitions:3.2.1 chromaticity coordinates, nthe ratios of each of thetristimulus values of a psychophysical color to the sum of thetris
8、timulus values.3.2.1.1 DiscussionChromaticity coordinates in the CIE1931 system of color specification are designated by x, y, z andin the CIE 1964 supplementary system by x10, y10, z10.3.2.2 CIE 1931 (x, y)-chromaticity diagramthe chroma-ticity diagram for the CIE 1931 standard observer, in which t
9、heCIE 1931 chromaticity coordinates are plotted with x as theabscissa and y as the ordinate.3.2.3 CIE 1931 standard observer, nideal colorimetricobserver with color matching functions x(l), y (l), z (l)corresponding to a field of view subtending a 2 angle on theretina; commonly called the “2 standar
10、d observer.” CIEB43.2.3.1 DiscussionThe color matching functions of theCIE 1931 standard observer are tabulated in Practice E 308,CIE Publication 15.2, and CIE Standard S 002.3.2.4 CIE standard illuminant A, ncolorimetric illumi-nant, representing the full radiation at 2855.6 K, defined by theCIE in
11、 terms of a relative spectral power distribution. CIEB3.2.4.1 DiscussionThe relative spectral power distribu-tion of CIE standard illuminant A is tabulated in PracticeE 308, CIE Publication 15.2, and CIE Standard S 001.3.2.5 CIE standard source A, na gas-filled tungsten-filament lamp operated at a c
12、orrelated color temperature of2855.6 K. CIEB3.2.6 entrance angle, b, nin retroreflection, angle be-tween the illumination axis and the retroreflector axis.3.2.6.1 DiscussionThe entrance angle is usually no largerthan 90, but for completeness its full range is defined as 0 #b # 180. To completely spe
13、cify the orientation, this angle ischaracterized by two components, b1and b2.1This practice is under the jurisdiction of ASTM Committee E12 on Color andAppearance and is the direct responsibility of Subcommittee E12.10 on Retrore-flection.Current edition approved March 15, 1995. Published May 1995.
14、Originallypublished as E 811 81. Last previous edition E 811 94a.2Annual Book of ASTM Standards, Vol 06.01.3Available from USNC/CIE Publications Office, % TLA Lighting Consultants,Inc., 7 Pond St., Salem, MA 01970.4Stephenson, H. F., “The Colorimetric Measurement of Retroreflective Materi-als. Progr
15、ess Report on International Exchange Tests.” Proceedings of the CIE, 18thSession (London), pp. 595609, 1975.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.7 goniometer, nan instrument for measuring or settingangles.3.2.8 illumin
16、ation axis, nin retroreflection, a line from theeffective center of the source aperture to the retroreflectorcenter.3.2.9 observation angle, nangle between the axes of theincident beam and the observed (reflected) beam, (in retrore-flection, a, angle between the illumination axis and theobservation
17、axis).3.2.10 observation axis, nin retroreflection, a line fromthe effective center of the receiver aperture to the retroreflectorcenter.3.2.11 retroreflection, nreflection in which the reflectedrays are preferentially returned in directions close to theopposite of the direction of the incident rays
18、, this propertybeing maintained over wide variations of the direction of theincident rays. CIEB3.2.12 retroreflective device, ndeprecated term; use ret-roreflector.3.2.13 retroreflective sheeting, na retroreflective materialpreassembled as a thin film ready for use.3.2.14 retroreflector, na reflecti
19、ng surface or device fromwhich, when directionally irradiated, the reflected rays arepreferentially returned in directions close to the opposite of thedirection of the incident rays, this property being maintainedover wide variations of the direction of the incident rays. CIE,1982B3.2.15 retroreflec
20、tor axis, na designated line segmentfrom the retroreflector center that is used to describe theangular position of the retroreflector.3.2.15.1 DiscussionThe direction of the retroreflector axisis usually chosen centrally among the intended directions ofillumination; for example, the direction of the
21、 road on which orwith respect to which the retroreflector is intended to bepositioned. In testing horizontal road markings the retroreflec-tor axis is usually the normal to the test surface.3.2.16 retroreflector center, na point on or near a retrore-flector that is designated to be the center of the
22、 device for thepurpose of specifying its performance.3.2.17 rotation angle, e, nin retroreflection, angle indicat-ing the orientation of the specimen when it is rotated about theretroreflector axis.3.2.17.1 DiscussionThe rotation angle is the dihedralangle from the half-plane originating on the retr
23、oreflector axisand containing the positive part of the second axis to the halfplane originating on the retroreflector axis and containing thedatum mark. Range: 180 # e # 180.3.2.18 spectroradiometer, nan instrument for measuringthe spectral distribution of radiant energy or power.3.2.19 tristimulus
24、colorimeter, ninstrument that measurespsychophysical color, in terms of tristimulus values, by the useof filters to convert the relative spectral power distribution ofthe illuminator to that of a standard illuminant, and to convertthe relative spectral responsivity of the receiver to the respon-sivi
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