DIN 51562-1-1999 Viscometry - Measurement of kinematic viscosity by means of the Ubbelohde viscometer - Part 1 Viscometer specification and measurement procedure《粘度测量 用余白罗德(Ubberlo.pdf
《DIN 51562-1-1999 Viscometry - Measurement of kinematic viscosity by means of the Ubbelohde viscometer - Part 1 Viscometer specification and measurement procedure《粘度测量 用余白罗德(Ubberlo.pdf》由会员分享,可在线阅读,更多相关《DIN 51562-1-1999 Viscometry - Measurement of kinematic viscosity by means of the Ubbelohde viscometer - Part 1 Viscometer specification and measurement procedure《粘度测量 用余白罗德(Ubberlo.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、Viscometry Determination of kinematic viscosity using the Ubbelohde viscometer Part 1 : Apparatus and measurement procedure ICs 17.060 Descriptors: Viscometry, Ubbelohde viscometer, apparatus. DIN 51 562-1 Supersedes January 1983 edition. Viskosimetrie - Messung der kinematischen Viskositt mit dem U
2、bbelohde-Viskosimeter - Teil 1 : Bauform und Durchfhrung der Messung In keeping with current practice in standards published by the International Organization for Standardization (ISO), a comma has been used throughout as the decimal marker. Dimensions in mm Foreword This standard has been prepared
3、by Technical Committee Viskosimetrie of the Normenausschu Material- prfung (Materials Testing Standards Committee). It should be used together with DIN 53012 and The DIN 51562 series of standards comprises the following: Part 1 Part 2 Micro-Ubbelohde viscometers Part 3 Part 4 DIN 51562-4. Apparatus
4、and measurement procedure Relative change in viscosity at short flow times Calibration of viscometers and determination of uncertainty of measurement Amendments This standard differs from the January 1983 edition as follows: a) Calibration details have been included. b) Requirements for automatic me
5、asuring equipment are now included. c) Information on the uncertainty of measurement has been included. d) An additional viscometer size (no. V) has been included. e) Details relating to the apparatus and test procedure have been changed. Previo us edit ions Supplement 1 to DIN 53655: 1947-1 2; DIN
6、51 562: 1955-04, 1964-1 O, 1967-03, 1976-02; DIN 51 562-1 : 1978-1 2, 1983-01. 1 Scope and field of application This standard specifies the design and use of Ubbelohde suspended level viscometers with ring measuring marks that indicate the flow volume. Such viscometers are used to determine the kine
7、matic viscosity of Newtonian liquids that are sufficiently transparent to enable the meniscus of the liquid to be observed during measurement. NOTE: Special automatic measuring devices also allow viscosity measurements of opaque liquids (cf. DIN 51366). Continued on pages 2 to 1 O. Translation by DI
8、N-Sprachendienst. In case of doubt, the German-language original should be consulted as the authoritative text Q No pari of this translation may be reproduced without the prior permission of Beuth Verlag GmbH, D-10772 Berlin, has the exclusive right of sale for German Standards (DIN-Normen). Ref. No
9、. DIN 51562-1 : 1999-01 Sales No. 0108 11.99 DIN Deutsches Institut fur Normung e. V., Berlin. English price group 08 COPYRIGHT DIN DEUTSCHES Institut Fur Normung E.V.- EnglishLicensed by Information Handling ServicesPage 2 DIN 51562-1 : 1999-01 2 Normative references This standard incorporates, by
10、dated or undated reference, provisions from other publications. These norma- tive references are cited at the appropriate places in the text, and the titles of the publications are listed below. For dated references, subsequent amendments to or revisions of any of these publications apply to this st
11、andard only when incorporated in it by amendment or revision. For undated references, the latest edition of the publication referred to applies. DIN 1319-1 Basic concepts in metrology - General concepts DIN 1319-3 Basic concepts in metrology - Evaluating measurements of a single measurand and expres
12、- sion of uncertainty DIN 1342-1 Viscosity - Rheological concepts DIN 51366 Determination of kinematic viscosity of petroleum products using the Cannon-Fenske viscometer for opaque liquids DIN 51562-3 Determination of kinematic viscosity using the Ubbelohde viscometer - Relative change in viscosity
13、at short flow times DIN 51562-4 Determination of kinematic viscosity using the Ubbelohde viscometer - Calibration of viscometers and determination of uncertainty of measurement DIN 53012 Capillary viscometry of Newtonian liquids - Sources of error and corrections DIN 53017 Determination of temperatu
14、re coefficient of viscosity of liquids IS0 31 05 : 1994 Glass capillary kinematic viscometers - Specifications and operating instructions IS0 3585 : 1991 Borosilicate glass 3.3 - Properties ASTM D 21 62-79 Standard method of basic calibration of master viscometers and viscosity oil standards 3 Conce
15、pts The following concepts apply, in addition to those defined in DIN 1319-1 and DIN 1342-1. 3.1 Viscosity standard A material measure or measuring device which represents the viscosity unit (e.g. when calibrating a viscometer). 3.2 Standard viscometer For the purposes of this standard, an Ubbelohde
16、 capillary viscometer that is traceable to the national viscosity standard. NOTE: See subclause 8.1 for a description of the Ubbelohde viscometer. 3.3 Standard Newtonian liquid A Newtonian liquid whose change in viscosity with time is sufficiently small so that it is suitable as a viscosity standard
17、. 3.4 Standard viscosity sample A sample of a standard Newtonian liquid whose viscosity has been measured and recorded at one or more temperatures using standard viscometers; the traceability of the viscosity values thus obtained to the national viscosity standard shall have been documented. This sa
18、mple can thus be used as a material measure. 4 Symbols and units See tables 1 and 2 for symbols and units used in this standard. For the purposes of this standard, the Reynolds number, Re, is given by (1): Re = 637. Note that equation (1) only applies when the units given in column 4 of table 1 are
19、used. The following equations apply to the shear stress and shear rate, respectively: V R*K*t2 4.v Yw =- z.t.R3 COPYRIGHT DIN DEUTSCHES Institut Fur Normung E.V.- EnglishLicensed by Information Handling ServicesPage 3 DIN 51562-1 : 1999-01 Shear rate at the internal wall of capillary Acceleration du
20、e to gravity at the point of measurement (for Newtonian liquids) 5 Measuring range This method is suitable for measuring kinematic viscosities within a range of 0,35 to 1 O0 O00 mm2/s (see ta- ble 2), with flow times ranging from 200 s to l O00 s at temperatures from l O “C to l O0 “C. When using th
21、e viscometer at temperatures or flow times outside the above ranges, additional errors of measurement may occur which are not included in the uncertainty of measurement specified in clause 14. 6 Principle The viscosity of the test liquid is determined by measuring the time it takes for the sample, w
22、hose volume is defined by two ring-shaped measuring marks, to flow laminarly through a capillary under the influence of gravity. As a result of the suspended level, the mean pressure head is independent of the filling volume, while the influence of surface tension (see DIN 53012) can generally be ne
23、glected. Table 1: Symbols, quantities and units s-1 mis2 Symbol Mean pressure head Y, m mm g Coverage factor (cf. DIN 131 9-3) Viscometer constant k K rn2k.2 mm2k.2 I n Capillary length Number of single measurements (flow times) in a measurement series Capillary radius R Re m mm m mm t Relative unce
24、rtainty of viscometer constant Temperature coefficient of kinematic viscosity u: K-i UV Flow volume Kinetic energy correction U m3 cm3 S e Relative difference between viscosities measured with two viscometers Kinematic viscosity Quantity m2is mm2is I SI unit I Other legal units Density of liquid She
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