DIN 53019-1-2008 Viscometry - Measurement of viscosities and flow curves by means of rotational viscometers - Part 1 Principles and measuring geometry《粘度测定法 使用旋转粘度计测量粘度和流动曲线 第1部分 原.pdf
《DIN 53019-1-2008 Viscometry - Measurement of viscosities and flow curves by means of rotational viscometers - Part 1 Principles and measuring geometry《粘度测定法 使用旋转粘度计测量粘度和流动曲线 第1部分 原.pdf》由会员分享,可在线阅读,更多相关《DIN 53019-1-2008 Viscometry - Measurement of viscosities and flow curves by means of rotational viscometers - Part 1 Principles and measuring geometry《粘度测定法 使用旋转粘度计测量粘度和流动曲线 第1部分 原.pdf(22页珍藏版)》请在麦多课文档分享上搜索。
1、September 2008DEUTSCHE NORM Normenausschuss Materialprfung (NMP) im DINDIN-SprachendienstEnglish price group 12No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of
2、 sale for German Standards (DIN-Normen).ICS 17.060!$WV:“1525123www.din.deDDIN 53019-1Viscometry Measurement of viscosities and flow curves by means of rotationalviscometers Part 1: Principles and geometry of measuring systemEnglish translation of DIN 53019-1:2008-09Viskosimetrie Messung von Viskosit
3、ten und Fliekurven mit Rotationsviskosimetern Teil 1: Grundlagen und MessgeometrieEnglische bersetzung von DIN 53019-1:2008-09Viscosit Mesurage des viscosits et des courbes dcoulement par des viscosimtres rotation Partie 1: Concepts fondamentaux et gomtrie du mesurageTraduction anglaise de DIN 53019
4、-1:2008-09SupersedesDIN 53019-1:1980-05 andDIN 53018-1:1976-03www.beuth.deDocument comprises pages2202.10 DIN 53019-1:2008-09 A comma is used as the decimal marker. Contents Page Foreword3 1 Scope 4 2 Normative references4 3 Terms and definitions .5 4 Symbols and units.6 5 Principle7 6 Apparatus .7
5、7 Sampling and sample preparation.8 8 Procedure .8 9 Flow zone patterns 9 Bibliography 22 2 DIN 53019-1:2008-09 Foreword This standard has been prepared by Working Committee NA 062-08-31 AA Viskosimetrie of the Normenausschuss Materialprfung (Materials Testing Standards Committee). DIN 53019, Viscom
6、etry Measurement of viscosities and flow curves by means of rotational viscometers comprises: Part 1: Principles and geometry of measuring system Part 2: Viscometer calibration and determination of the uncertainty of measurement Part 3: Measurement errors and corrections Amendments This standard dif
7、fers from DIN 53018-1:1976-03 and DIN 53019-1:1980-05 as follows: a) DIN 53018-1:1976-03 and DIN 53019-1:1980-05 have been combined. b) The contents have been rearranged and updated. Previous editions DIN 53788: 1974-04 DIN 53018-1: 1976-03 DIN 53019-1: 1980-05 3 DIN 53019-1:2008-09 1 Scope This sta
8、ndard specifies flow zones for measuring the flow behaviour of Newtonian and non-Newtonian fluids in rotational viscometers by describing a number of instrument geometries, the flow behaviour being described by the shear viscosity1), the shear viscosity function1), the viscosity curve1)or the flow c
9、urve1)(i.e. the graph of the relationship between shear rate and shear stress). This standard can only be applied if the following conditions are met. a) There is no slippage between the fluid and the boundary surfaces, i.e. the fluid adheres to the walls. NOTE Wall adhesion is not the same as wall
10、wetting. b) The accelerating forces in the fluid remain so low that the flow pattern is determined solely by laminar, stationary layer flow. c) Any variations in the temperature of the fluid with location and time are negligible. d) The flow zones are described by boundary surfaces, each of which co
11、mprises a lateral cylinder surface, a lateral cone surface or a circular surface (simple boundary surfaces). In practice, composite boundary surfaces are also used. e) Any boundary surfaces other than these simple ones have no effect on the flow zone. f) Any circularity defects in the boundary surfa
12、ces or errors in their axial alignment shall be negligible. Any deviations from the above conditions will increase the uncertainty of measurement (see DIN 53019-2) unless they can be compensated for by appropriate corrections (see DIN 53019-3). 2 Normative references The following referenced documen
13、ts are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the document (including any amendments) applies. DIN 1342-1, Viscosity Rheological concepts DIN 1342-2, Viscosity of Newtonian liquids DIN 13
14、42-3, Viscosity of non-Newtonian liquids DIN 53019-2, Viscometry Determination of flow curves with rotational viscometers Part 2: Viscometer calibration and determination of uncertainty of measurement DIN 53019-3, Viscometry Measurement of viscosities and flow curves by means of rotational viscomete
15、rs Part 3: Measurement errors and corrections _ 1)See DIN 1342-1. 4 DIN 53019-1:2008-09 3 Terms and definitions For the purpose of this standard, the terms and definitions given in DIN 1342-1, DIN 1342-2, DIN 1342-3 and the following apply. 3.1 measurement gap space between the boundary surfaces 3.2
16、 gap width separation between the boundary surfaces, e.g. as defined by the difference in radii, the taper angle or the plate separation NOTE For a given angular velocity, the gap geometry determines the shear rate, (see DIN 1342-1 for definition), of the fluid in the measurement gap. in this case t
17、he temperature shall be measured before and/or after shearing of the sample during viscosity or flow curve measurements since the immersion of the temperature sensor will disturb the flow zone; b) indirectly by means of temperature sensors that are incorporated in the measuring system or in the temp
18、erature-control jacket surrounding the measuring system; in this case the temperature can be measured continuously during the entire measurement. 7 DIN 53019-1:2008-09 Differences between the sample temperature and the measured temperature are to be expected, particularly if the measurement temperat
19、ure differs markedly from the ambient temperature (see DIN 53019-2). 7 Sampling and sample preparation Sampling and sample preparation procedures will depend on the requirements relating to the material concerned. The size of any solid particles in the sample shall not be greater than one fifth of t
20、he narrowest point in the measurement gap. In the case of a cone-and-plate system, this is equal to the height of the truncated cone. NOTE Solid particles may give rise to additional measurement errors in cone-and-plate systems in which the cone is not truncated. 8 Procedure Calibrate the viscometer
21、 and measurement system as specified in DIN 53019-2. Introduce the amount of sample required by the measurement system (see 9.2.4 and DIN 53019-2) ensuring it is free from bubbles and bring the apparatus and the sample to the specified measurement temperature. The procedure adopted for measuring the
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