DIN 51562-4-1999 Viscometry - Measurement of kinematic viscosity by means of the Ubbelohde viscometer - Part 4 Viscometer calibration and determination of the uncertainty of measur.pdf
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1、DEUTSCHE NORM Januarv 1999 Viscometry Determination of kinematic viscosity using the Ubbelohde viscometer Part 4: Calibration of viscometers and determination of uncertainty of measurement DIN 51 562 -4 ICs 17.060 Descriptors: Viscometry, calibration, Ubbelohde viscometer, uncertainty of measurement
2、. Viskosimetrie - Messung der kinematischen Viskositt mit dem Ubbelohde-Viskosimeter - Teil 4: Viskosimeterkalibrierung und Ermittlung der Meunsicherheit In keeping with current practice in standards published by the International Organization for Standardization (ISO), a comma has been used through
3、out as the decimal marker. Foreword This standard has been prepared by Technical Committee Viskosimetrie of the Normenausschu Material- prfung (Materials Testing Standards Committee). This standard should be used together with DIN 51562-1 and (when using micro-Ubbelohde viscometers) DIN 51 562-2. Th
4、e apparatus requirements and measurement procedures covered in these two standards are not repeated here. The DIN 51562 series of standards comprises the following: Part 1 Part 2 Micro-Ubbelohde viscometers Part 3 Part 4 Apparatus and measurement procedure Relative change in viscosity at short flow
5、times Calibration of viscometers and determination of uncertainty of measurement 1 Scope This standard specifies the calibration of Ubbelohde viscometers as in DIN 51562-1 anc DIP 51562-2, as well as the determination of measurement uncertainty; these activities help increase the comparability of me
6、asurement results. When calibrating with standard viscometers or standard viscosity samples that are traceable to national standards, the requirements of DIN EN IS0 9001 are also met. 2 Normative references This standard incorporates, by dated or undated reference, provisions from other publications
7、. These normative 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 standard only when incorporated in it by amendment or revision. Fo
8、r undated references, the latest edition of the publication referred to applies. DIN 131 9-3 Basic concepts in metrology - Evaluating measurements of a single measurand and expres- sion of uncertainty DIN 51 562-1 Determination of kinematic viscosity using the Ubbelohde viscometer - Apparatus and me
9、asurement procedure DIN 51 562-2 Determination of kinematic viscosity using the Ubbelohde viscometer - Micro-Ubbelohde viscometers DIN 5301 2 Capillary viscometry of Newtonian liquids - Sources of error and corrections DIN 5301 7 Determination of temperature coefficient of viscosity of liquids Conti
10、nued on pages 2 to 8. Translation by DIN-Sprachendienst. In case of doubt, the German-language original should be consulted as the authoritative text. No pari of this translation may be reproduced without the prior permission of V Deutsches Institut fur Normung e. V., Berlin. Luth Verlag GmbH, D-107
11、72 Berlin, has the exclusive right of sale for German Standards (DIN-Normen). Ref. No. DIN 51562-4 : 1999-0 English price group 07 Sales No. 0107 11.99 Page 2 DIN 51 562-4 : 1999-01 DIN EN IS0 9001 Quality systems - Model for quality assurance in design/development, production, instal- lation and se
12、rvicing (IS0 9001 : 1994) IS0 3585 : 1991 Borosilicate glass 3.3 - Properties ISO/TR 3666 Viscosity of water 3 Concepts The concepts defined in DIN 51562-1 shall apply. 4 Symbols and units The symbols and units defined below in table 1 and in DIN 51562-1 shall apply. Table 1: Symbols, quantities and
13、 units 5 Apparatus and working substances 5.1 General The apparatus shall be as in DIN 51562-1; however, for calibration by direct comparison as described in subclause 6.4, the constant-temperature bath shall be large enough to accommodate at least three viscometers (two standard viscometers and one
14、 or more viscometers requiring calibration). 5.2 Standard samples and calibration liquids Calibration as in subclause 6.3 requires standard viscosity samples, each of which shall have a calibration certificate containing the following information: kinematic viscosity at the given temperature, uncert
15、ainty of viscosity values (expressed preferably in accordance with DIN 131 9-3, for a coverage factor, k, of 2, equivalent to a confidence level of about 95 YO), the temperature coefficient of kinematic viscosity at the given temperature (cf. DIN 5301 7), and the period of validity of the certificat
16、e. For calibration as in subclause 6.4, any Newtonian liquid with a suitable viscosity may be used, as long as it meets the following requirements. a) It shall be sufficiently transparent to allow visual assessment of the passage of the meniscus. b) There shall be no change in viscosity during testi
17、ng or calibration (e.g. due to evaporation of a compo- nent, water absorption, or heating carried out to facilitate filling of the viscometer). c) It shall be easily soluble in organic solvents that are non-toxic or of low toxicity which are used for cleaning the viscometer (e.g. using special boili
18、ng-point (SBP) spirit). Suitable Newtonian liquids are referred to in this standard as ?KF liquids?. These include pure organic liquids, mineral oils without additives, poly-a-olefines, and polyisobutylenes. Silicone oils are not suitable. Page 3 DIN 51 562-4 : 1999-01 O 6 Calibration 6.1 General Si
19、nce the glass used for producing Ubbelohde viscometers (borosilicate glass 3.3 to IS0 3585) has a very low coefficient of linear thermal expansion, the effects of temperature on the viscometer constant are negligible within the range of 1 O “C to 1 O0 “C (cf. DIN 5301 2). Therefore, calibration may
20、be performed at any temperature within this range, preferably, however, at room temperature (I 3 OC). Automatic measuring devices may be used; see subclause 8.5 of DIN 51562-1, January 1999 edition, for more detai Is. NP-1 600 to 800 NP-2 1000 to 1500 6.2 Cleaning of viscometers Viscometers shall be
21、 cleaned as described in DIN 51562-1. The viscometer to be calibrated should be cleaned using the procedure for heavily contaminated viscometers. Oc to Ia 6.3 Calibration with standard samples Determine the constants of viscometers of sizes II to V using two standard samples (denoted here as NP-1 an
22、d NP-2). For viscometers of sizes O to Ia, athird sample (denoted NP-O) shall be used to establish constant H of the kinetic energy correction (cf. DIN 51 562-1 regarding viscometer sizes). Standard samples shall have the flow times specified in table 2. Table 2: Flow times of standard samples for v
23、iscometers of different sizes NP-1 400 to 600 NP-2 800 to 1200 Viscometer I size no. as in I standard I Flow time. in s NP-1 NP-2 I DIN 51562-1 I sample I 300 to 500 700 to 1200 I NP-O I 350 to 450 I NP-O I 180 to 250 Carry out viscosity measurements as specified in DIN 51 562-1. For each sample, ca
24、lculate the mean flow time 4 t =1zti n (where n 2 5) and the relative difference between the longest and shortest flow times Et = tmax - tmin t whereby the following conditions must be fulfilled: 1 . 10-3 for Y I 1 O00 mm2/s 2 . 10-3 for Y 1 O00 mm2/s (3) Et If the conditions in (3) are not fulfille
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