DIN 53015-2001 Viscometry - Measurement of viscosity by means of the rolling ball viscometer by Hoeppler《粘度测定 Hoeppler滚球式粘度计法》.pdf
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1、ICS 17.060Viskosimetrie Messung der Viskositt mit demKugelfallviskosimeter nach HpplerIn keeping with current practice in standards published by the International Organization for Standardization(ISO), a comma has been used throughout as the decimal marker.ForewordThis standard has been prepared by
2、Technical Committee Viskosimetrie of the Normenausschuss Material-prfung (Material Testing Standards Committee).AmendmentsThis standard differs from the September 1978 edition as follows:a) The material has been changed for balls nos. 5 and 6.b) Methods of calibrating the viscometer and of determini
3、ng the uncertainty of measurement have beenincluded.c) The standard has been revised in form and content.Previous editionsSuppl to DIN 53655-1: 1947-12; DIN 53015: 1959-02, 1976-03, 1978-09.Ref. No. DIN 53015 : 2001-02English price group 11 Sales No. 011112.01DEUTSCHE NORM February 200153015Continue
4、d on pages 2 to 12. No part of this translation may be reproduced without the prior permission ofDIN Deutsches Institut fr Normung e.V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ViscometryMeasurement of viscosity using the Hpp
5、lerfalling-ball viscometerTranslation by DIN-Sprachendienst.In case of doubt, the German-language original should be consulted as the authoritative text.1 ScopeThis standard specifies a method of determining the dynamic viscosity of Newtonian liquids using theHppler falling-ball viscometer, includin
6、g a method of calibrating the viscometer.2 Normative referencesThis standard incorporates, by dated or undated reference, provisions from other publications. Thesenormative references are cited at the appropriate places in the text, and the titles of the publications arelisted below. For dated refer
7、ences, subsequent amendments to or revisions of any of these publicationsapply to this standard only when incorporated in it by amendment or revision. For undated references, thelatest edition of the publication (including amendments) referred to applies.DIN 1319-1 Basic concepts in metrology Genera
8、l conceptsDIN 1319-3 Basic concepts in metrology Evaluating measurements of a single measurand and ex-pression of uncertaintyDIN 1342-1 Viscosity Rheological conceptsDIN 12785 Laboratory thermometers for particular applicationsDIN ISO 3585 Borosilicate glass 3.3 Properties (ISO 3585 : 1999)ISO 3507
9、: 1999 Laboratory glassware PyknometersSupersedes DIN 53015,September 1978 edition.All dimensions are in millimetres.Page 2DIN 53015 : 2001-02ISO 12058-1 : 1997 Plastics Determination of viscosity using a falling-ball viscometer Part 1: Inclined-tube methodISO 12185 : 1996 Crude petroleum and petrol
10、eum products Determination of density Oscillating U-tubemethodISO 15212-1 : 1998 Oscillation-type density meters Part 1: Laboratory instrumentsISO/TR 3666 : 1998 Viscosity of waterBS 188 : 1977 British Standard Methods for determination of the viscosity of liquids1 Deutsches Arzneimittelbuch (German
11、 Pharmacopoeia)2 Guide to the Expression of Uncertainty in Measurement. Geneva: International Organization for Standardi-zation, 1993.3 ConceptsThe following concept shall apply in addition to those defined in DIN 1319-1 and DIN 1342-1.Standard viscosity sampleA sample of a standard Newtonian liquid
12、 whose viscosity has been measured at one or more temperatures usingstandard viscometers, whose viscosity value(s) and their traceability to the national viscosity standard aredocumented, and which serves as a material measure for promulgating the unit of viscosity.4 Symbols, quantities and unitsTab
13、le 1: Symbols, quantities and unitsSymbol Quantity SI unit Further legal unitsd Ball diameter m mm, mD Difference between ball and liquid densities kg/m3g/cm3g Acceleration due to gravity at viscosity measurement site m/s2gAcceleration due to gravity at viscometer calibration site m/s2K Calibration
14、constant Pa . s . m3/(kg . s) mPa . s . cm3/(g . s)m Ball mass kg gmWWeighed value of ball mass kg gn Number of fall times in a measurement series ()2DsRelative variance of difference between ball and liquid densities()2KsRelative variance of calibration constant ()2NsRelative variance of viscosity
15、due to deviation of the viscometer position from the horizontal()2tsRelative variance of ball fall time ()2timersRelative variance for timer us Temperature measurement standard deviation C K()2hu,sRelative variance of viscosity due to uncertainty of temperature measurement2FrsVariance of liquid dens
16、ity kg2/m6g2/cm62KrsVariance of ball density kg2/m6g2/cm6()2KrsRelative variance of ball density t Ball fall time s t1Minimum fall time required for calculating the uncertainty s as in subclause 12.2 (cf. table 4)t2Minimum fall time for obtaining a reproducible s measurement(continued)Page 3DIN 5301
17、5 : 2001-025 Measurement rangeThis method is suitable for measuring dynamic viscosities ranging from 0,6 mPa . s to 250000 mPa . s attemperatures from 20 C to 120 C. To cover this range, use is made of six balls having different diameters,each ball covering part of the range (see table 2).NOTE 1: Th
18、e lower limit of 0,6 mPa . s is reached at the minimum fall time t2specified in table 3 if the densityof the liquid to be measured is 1,0 g/cm3or more.NOTE 2: If the materials used (e.g. seals, feed hoses) are suitable, it is quite possible to perform measurementsoutside the specified temperature ra
19、nge (40 C to 150 C). The temperature measured in the thermal jacketmay differ by more than specified in subclause 8.4 from the temperature of the sample in the fall tube andallowance shall be made for this in determining the uncertainty.Table 2: Viscometer ball diameters for an internal fall tube di
20、ameter of 15,94 mmBall no. MaterialDensityBallDeviation Calibration Viscosity(guidelinediameter,from constant (guide- measurementvalue), rKW,in mmcircularity, line value), K, in range,in g/cm3in mm mPa . s . cm3/g . s in mPa . s1 Borosilicate glass 2,4 15,81 t 0,01 t 0,0005 0,007 0,6 to 500102 Boros
21、ilicate glass 2,4 15,60 t 0,05 t 0,0005 0,09 9,0 to 501403 Ni/iron 8,1 15,60 t 0,05 t 0,001 0,09 40,0 to 507004 Ni/iron 8,1 15,20 t 0,1 t 0,001 0,7 150,0 to 050005 Ni/iron 8,1 14,00 t 0,5 t 0,001 7 1500,0 to 500006 Ni/iron 8,1 11,00 t 1 t 0,002 35 Above 7 5006 PrincipleThe time taken by a ball to tr
22、averse a distance delineated by marks (gauge length) under the influence of gravityis measured in an inclined cylindrical tube filled with the liquid to be examined.Symbol Quantity SI unit Further legal unitstmax, tminLongest and shortest ball fall times in a series of n single s measurementsuuUncer
23、tainty of temperature measurement C KUh, UnTemperature coefficient of dynamic or kinematic viscosity 1/K 1/ChuRelative uncertainty of viscosity measurement KruRelative uncertainty of ball density measurement KuRelative uncertainty for determination of calibration constant W Air buoyancy constant a C
24、oefficient of linear thermal expansion 1/K etRelative range of ball fall times in a series of measurements made using one viscometerh Dynamic viscosity Pa . s mPa . shNDynamic viscosity of a standard sample Pa . s mPa . shNuDynamic viscosity of a standard sample at calibration Pa . s mPa . stemperat
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