ASTM E1155M-1996(2001) Standard Test Method for Determining FF Floor Flatness and FL Floor Levelness Numbers [Metric]《使用F-数字制测定楼板平正度和水平度的试验方法(米制)》.pdf
《ASTM E1155M-1996(2001) Standard Test Method for Determining FF Floor Flatness and FL Floor Levelness Numbers [Metric]《使用F-数字制测定楼板平正度和水平度的试验方法(米制)》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1155M-1996(2001) Standard Test Method for Determining FF Floor Flatness and FL Floor Levelness Numbers [Metric]《使用F-数字制测定楼板平正度和水平度的试验方法(米制)》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1155M 96 (Reapproved 2001)METRICStandard Test Method forDetermining FFFloor Flatness and FLFloor Levelness NumbersMetric1This standard is issued under the fixed designation E 1155M; the number immediately following the designation indicates the year oforiginal adoption or, in the case
2、 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 test method covers a quantitative method of mea-suring floor surface profiles to obtai
3、n estimates of the floorscharacteristic FFFlatness and FLLevelness Face Floor ProfileNumbers (F-Numbers) using the metric (SI) system of units.NOTE 1This is the metric companion to Test Method E 1155.1.2 The text of this test method references notes andfootnotes that provide explanatory material. Th
4、ese notes andfootnotes (excluding those in tables and figures) shall not beconsidered as requirements of this test method.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-
5、priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:E 1155 Test Method for Determining FFFloor Flatness andFLFloor Levelness Numbers22.2 ACI Standard:ACI 117-90 Standard Specifications for Tolerances for
6、 Con-crete Construction and Materials33. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 elevationheight, altitude, vertical location in space.Elevation measurements are always made parallel to thedirection of gravity.3.1.2 flateven, plane, homoloidal, free of undulation.3.1.2.1
7、DiscussionFor the purposes of this test method,flatness will be measured by calculating curvature value, q,between all 12-in. reading points separated by 24 in. Thecurvature value is the difference between successive elevationdifferences. The mean and standard deviation of all thecurvature values fo
8、r a given test section are then convertedaccording to the equations in this test method to get thedimensionless FFFlatness Number.3.1.3 floor profilometera Type I device (see 6.1.1) thatproduces a continuous record of the elevation of a single pointmoving along a line on the floors surface.3.1.4 hor
9、izontallevel, normal to the direction of gravity.3.1.5 inclinometera Type II device (see 6.1.2) that mea-sures the angle between horizontal and the line joining the twopoints of contact with the floors surface.3.1.6 levelhorizontal, normal to the direction of gravity.3.1.6.1 DiscussionFor the purpos
10、es of this test method,levelness will be measured by collecting elevation differencesat points spaced 10 ft apart and that will be described by the FLLevelness number (dimensionless).3.1.7 longitudinal differential floor profilometer, na TypeII device (see 6.1.2) that produces a continuous record of
11、 theelevation difference between two points moving along a line onthe floors surface, which two points remain separated by afixed distance.3.1.8 sample measurement linea sample measurementline shall consist of any straight line on the test surface alongwhich measurements are taken, with the limitati
12、ons listed in7.3.3.1.9 sign conventionwhere up is the positive direction;down is the negative direction. Consequently, the higher thereading point, the more positive its hivalue, and the lower thereading point, the more negative its hivalue. Similarly, theelevation difference from a low point to a h
13、igh point (that is, anuphill difference) is positive, while the elevation differencefrom a high point to a low point (that is, a downhill difference)is negative.3.1.10 test sectiona test section consists of any subdivi-sion of the test surface with the limitations listed in 7.2.3.1.11 test surfaceon
14、 any one building level, the entirefloor area of interest constitutes the test surface, with thelimitations listed in 7.1.3.1.12 verticalparallel to the direction of gravity.1This test method is under the jurisdiction of ASTM Committee E06 onPerformance of Buildings and is the direct responsibility
15、of Subcommittee E06.21on Serviceability.Current edition approved April 10, 2001. Published May 1996. Originallypublished as E 1155M 87. Last previous edition E 1155M 87e1.2Annual Book of ASTM Standards, Vol 04.11.3Available from American Concrete Institute, P.O. Box 19150, Detroit, MI48219-0150.1Cop
16、yright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2 Symbols:3.2.1 Aiarea of Test Section i.3.2.2 didifference in elevation (in millimetres) betweenreading points Piand Pi1(i $ 1).3.2.3 FfFace FFFlatness Number (dimensionless).3.2.4 Ffico
17、mposite FFFlatness Number for Test Section i.3.2.5 FlFace FLLevelness Number (dimensionless).3.2.6 Flicomposite FLLevelness Number for Test Sectioni.3.2.7 hielevation (in millimetres) of Reading Point Pi(i$0).3.2.8 njnumber of reading points in Test Sample j (nj$12).3.2.9 Nminminimum number of 3-m e
18、levation differencereadings required per the test section.3.2.10 qiarithmetic difference (in millimetres) betweenelevation differences diand di1(i $ 2).3.2.11 rxjnumber of readings of Variable x obtained fromSample j.3.2.12 sxjstandard deviation of Variable x in Sample j.3.2.13 Vxjvariance of Variab
19、le x in Sample j.3.2.14 zidifference in elevation (in millimetres) betweenReading Points Piand Pi10(i $ 10).4. Summary of Test Method4.1 Straight lines are marked at various locations on thefloor surface. Point elevations are then measured at regular300-mm intervals along each line. The elevation di
20、fferencesbetween all adjacent reading points are calculated, and astraight line approximation to the surface profile along eachmeasurement line is produced and evaluated for consistencywith visual observation of the floor surface.4.2 The arithmetic differences between all adjacent 300-mmelevation di
21、fferences and the elevation differences between allpoints separated 3 m are then calculated. Estimates of each testsections floors FFFlatness and FLLevelness F-Numbers areobtained through statistical analyses of these calculated profilevalues. Finally, the F-Numbers for each test section arecombined
22、 to arrive at a composite set of F-Numbers for eachtest surface.5. Significance and Use5.1 This test method provides statistical (and graphical)information concerning floor surface profiles.5.2 Results of this test method are used primarily to:5.2.1 Establish compliance of randomly trafficked floors
23、urfaces with specified FFFlatness and FLLevelness toler-ances,5.2.2 Evaluate the effect of different construction methodson resulting floor surface flatness and levelness, and5.2.3 Investigate the curling and deflection of floor surfaces.5.3 Results of this test method shall not be used to enforceco
24、ntract flatness and levelness tolerances on those floor instal-lations primarily intended to support the operation of fixed-path vehicle systems (for example, narrow aisle warehousefloors).NOTE 2When the traffic patterns across a floor are random, (as isgenerally the case) evaluation of the floors F
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