ASTM E810-2003 Standard Test Method for Coefficient of Retroreflection of Retroreflective Sheeting Utilizing the Coplanar Geometry《利用共面几何学测试反光板反射系数的标准试验方法》.pdf
《ASTM E810-2003 Standard Test Method for Coefficient of Retroreflection of Retroreflective Sheeting Utilizing the Coplanar Geometry《利用共面几何学测试反光板反射系数的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E810-2003 Standard Test Method for Coefficient of Retroreflection of Retroreflective Sheeting Utilizing the Coplanar Geometry《利用共面几何学测试反光板反射系数的标准试验方法》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 810 03Standard Test Method forCoefficient of Retroreflection of Retroreflective SheetingUtilizing the Coplanar Geometry1This standard is issued under the fixed designation E 810; the number immediately following the designation indicates the year oforiginal adoption or, in the case of
2、 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 test method describes an instrument measurementof the retroreflective performance of retr
3、oreflective sheeting.1.2 The user of this test method must specify the entranceand observation angles to be used, and may specify the rotationangles.1.3 This test method is intended as a laboratory test andrequires a facility that can be darkened sufficiently so that straylight does not affect the t
4、est results. The testing apparatus mustbe able to achieve the coplanar geometry.1.4 Portable and bench retroreflection measuring equipmentmay be used to determine RAvalues provided the geometry andappropriate substitution standard reference panels, measured inaccordance with this test method, are ut
5、ilized. In this case themethods of Procedure B in Practice E 809 apply. Additionalinformation on the use of portable retroreflectometers may befound in Test Method E 1709.1.5 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility
6、 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 Appearance2E 308 Practice for Computing the Colors of Objects byUsing the CIE Sys
7、tem2E 691 Practice for Conducting an Interlaboratory Study toDetermine the Precision of a Test Method3E 808 Practice for Describing Retroreflection2E 809 Practice for Measuring Photometric Characteristicsof Retroreflectors2E 1709 Test Method for Measurement of RetroreflectiveSigns Using a Portable R
8、etroreflectivemeter22.2 Other Document:CIE Publication No 54 RetroreflectionDefinition andMeasurement43. Terminology3.1 The terms and definitions in Terminology E 284 andPractice E 808 apply to this test method.3.2 Definitions:3.2.1 coeffcient of retroreflection, RAof a plane retrore-flecting surfac
9、e, the ratio of the coefficient of luminousintensity (RI) to the area (A), expressed in candelas per lux persquare metre (cdlx1m2). RA= RI/A.3.2.1.1 DiscussionThe equivalent inchpound units forcoefficient of retroreflection are candelas per foot-candle persquare foot (cdfc1ft2). The SI and inch poun
10、d units arenumerically equal, because the units of RAreduce to 1/sr. Anequivalent term used for coefficient of retroreflection is specificintensity per unit area, with symbol SIA or the CIE symbol R8.The term coefficient of retroreflection and the symbol RAalongwith the SI units of candelas per lux
11、per square meter(cdlx1m2) are recommended by ASTM.3.2.1.2 DiscussionRAis a useful engineering quantity fordetermining the photometric performance of such retroreflec-tive surfaces as highway delineators or warning devices. RAmay also be used to determine the minimum area of retrore-flective sheeting
12、 necessary for a desired level of photometricperformance. RAhas been used extensively in the specificationof retroreflective sheeting.3.2.2 coplanar geometry, nretroreflection geometry inwhich the retroreflector axis, illumination axis, and observationaxis lie in one plane.3.2.2.1 DiscussionIn the c
13、oplanar geometry: the secondentrance angle component, b2, is equal to 0; presentationangle, g, is equal to either 0 or 180; orientation angle, vs,isequal to either the rotation angle, e,ortoe + 180 or e 180.3.2.3 datum axis, na designated half-line from the retrore-flector center perpendicular to th
14、e retroreflector axis.1This test method is under the jurisdiction of ASTM Committee E12 on Colorand Appearance and is the direct responsibility of Subcommittee E12.10 onRetroreflection.Current edition approved Feb. 10, 2003. Published April 2003. Originallyapproved in 1981. Last previous edition app
15、roved in 2001 as E 810 01.2Annual Book of ASTM Standards, Vol 06.01.3Annual Book of ASTM Standards, Vol 14.02.4Available from USNC/CIE Publications Office, TLALighting Consultants, Inc.77 Pond St., Salem, MA 01970.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken,
16、PA 19428-2959, United States.3.2.4 datum mark, n an indication on the retroreflector,off the retroreflector axis, that establishes the direction of thedatum axis.3.2.5 entrance angle, b, nthe angle between the illumi-nation axis and the retroreflector axis.3.2.5.1 DiscussionThe entrance angle is usu
17、ally no largerthan 90, but for completeness its full range is defined as 0 #b # 180. In the CIE (goniometer system) b is resolved intotwo components b1and b2. Since by definition b is alwayspositive, the common practice of referring to the small entranceangles that direct specular reflections away f
18、rom the photore-ceptor as a negative value is deprecated by ASTM. Therecommendation is to designate such negative values asbelonging to b1.3.2.6 goniometer, nan instrument for measuring or settingangles.3.2.7 illumination axis, nthe half-line from the retrore-flector center through the source point.
19、3.2.8 observation angle, a, nthe angle between the illu-mination axis and the observation axis.3.2.8.1 DiscussionThe observation angle is never nega-tive and is almost always less than 10 and usually no morethan 2. The full range is defined as 0 # a 180.3.2.9 observation axis, nthe half-line from th
20、e retroreflec-tor center through the observation point.3.2.10 receiver, n the portion of a photometric instrumentthat receives the viewing beam from the specimen, including acollector such as an integrating sphere, if used, often themonochromator or spectral filters, the detector, and associatedopti
21、cs and electronics.3.2.11 retroreflection, nreflection in which the reflectedrays are preferentially returned in directions close to theopposite of the direction of the incident rays, this propertybeing maintained over wide variations of the direction of theincident rays. CIEB3.2.12 retroreflective
22、material, na material that has a thincontinuous layer of small retroreflective elements on or verynear its exposed surface (for example, retroreflective sheeting,retroreflective fabrics, transfer films, beaded paint, highwaysurface signs, or pavement striping).3.2.13 retroreflective sheetinga retror
23、eflective materialpreassembled as a thin film ready for use.3.2.14 retroreflector, na reflecting 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 mai
24、ntainedover wide variations of the direction of the incident rays. CIE,1982B3.2.15 retroreflector axis, na designated half-line from theretroreflector center.3.2.15.1 DiscussionThe direction of the retroreflector axisis usually chosen centrally among the intended directions ofillumination; for examp
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