DIN ISO 7884-2-1998 Glass - Viscosity and viscometric fixed points - Part 2 Determination of viscosity by rotation viscometers (ISO 7884-2 1987)《玻璃 粘度和粘度固定测定点 第2部分 用转动粘度计测定粘度》.pdf
《DIN ISO 7884-2-1998 Glass - Viscosity and viscometric fixed points - Part 2 Determination of viscosity by rotation viscometers (ISO 7884-2 1987)《玻璃 粘度和粘度固定测定点 第2部分 用转动粘度计测定粘度》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 7884-2-1998 Glass - Viscosity and viscometric fixed points - Part 2 Determination of viscosity by rotation viscometers (ISO 7884-2 1987)《玻璃 粘度和粘度固定测定点 第2部分 用转动粘度计测定粘度》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、Glass - Viscosity and viscometric fixed points Part 2: Determination of viscosity by rotation viscometers (IS0 7884-2 : 1987) ICs 81.040.1 O Descriptors: Glass, viscosity, testing, rotation viscometers. Glas - Viskositt und viskosimetrische Festpunkte - Teil 2: Bestimmung der Viskositt mit Rotations
2、viskosimetern (IS0 7884-2 : 1987) DIN IS0 7884-2 - Supersedes DIN 52312-2, February 1975 edition. Previous edition DIN 52312-2: 1975-02. This standard incorporates International Standard IS0 7884-2 Glass - Viscosity and viscometric fixed points - Part 2: Determination of viscosity by rotation viscom
3、eters. A comma is used as the decimal marker. National foreword This standard has been prepared by ISO/TC 48. The responsible German body involved in its preparation was the Normenausschu Materialprfung (Mate- rials Testing Standards Committee), Technical Committee Physikalische Prfverfahren fr Glas
4、. The DIN Standards corresponding to the International Standards and the IEC Publication referred to in clauses O and 2 of the IS0 Standard are as follows: IEC Publication/ DIN Standard IS0 Standard IEC 584-1 DIN IEC 584-1 IS0 7884-1 DIN IS0 7884-1 IS0 7884-3 DIN IS0 7884-3 IS0 7884-4 DIN IS0 7884-4
5、 IS0 7884-5 DIN IS0 7884-5 IS0 7884-6 DIN IS0 7884-6 IS0 7884-7 DIN IS0 7884-7 IS0 7884-8 DIN IS0 7884-8 Amendments DIN 52312-2, February 1975 edition, has been superseded by the specifications of DIN IS0 7884-2 National Annex NA Standards referred to (and not included in Introduction and Reference)
6、 DIN IS0 7884-1 Glass -Viscosity and viscometric fixed points - Part 1 : Principles for determining viscos- ity and viscometric fixed points (IS0 7884-1 : 1987) DIN IS0 7884-3 Glass -Viscosity and viscometric fixed points- Part 3: Determination of viscosity by fibre elongation viscometer (IS0 7884-3
7、 : 1987) I Continued overleaf. IS0 Standard comprises 11 pages. Q No pari of this standard may be reproduced without the prior permission of Ref. No. DIN IS0 7884-2 : 1998-02 Sales No. 0409 02.99 DIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, D-10772 Berlin, has the exclusive ri
8、ght of sale for German Standards (DIN-Normen). English price group O9 Page 2 DIN IS0 7884-1 : 1998-02 DIN IS0 7884-4 Glass - Viscosity and viscometric fixed points - Part 4: Determination of viscosity by beam bending (IS0 7884-4 : 1987) DIN IS0 7884-5 Glass - Viscosity and viscometric fixed points -
9、 Part 5: Determination of working point by sinking bar viscometer (IS0 7884-5 : 1987) DIN IS0 7884-6 Glass - Viscosity and viscometric fixed points - Part 6: Determination of softening point DIN IS0 7884-7 Glass - Viscosity and viscometric fixed points - Part 7: Determination of annealing point and
10、strain point by beam bending (IS0 7884-7 : 1987) DIN IS0 7884-8 Glass - Viscosity and viscometric fixed points - Part 8: Determination of (dilatometric) trans- formation temperature (IS0 7884-8 : 1987) (IS0 7884-6 : 1987) Page 1 IS0 7884-2 : 1987 Glass - Viscosity and viscometric fixed points Part 2
11、: Determination of viscosity by rotation viscometers Foreword IS0 (the International Organization for Standardization) is a worldwide federation of national standards bodies (IS0 member bodies). The work of preparing International Standards is normally carried out through IS0 technical Committees. E
12、ach member body interested in a subject for which a technical committee has been established has the right to be represented on that committee. International organizations, govern- mental and non-governmental, in liaison with ISO, also take part in the work. Draft International Standards adopted by
13、the technical committees are circulated to the member bodies for approval before their acceptance as International Standards by the IS0 Council. They are approved in accordance with IS0 procedures requiring at least 75 % approval by the member bodies voting. International Standard IS0 7884-2 was pre
14、pared by Technical Committee ISO/TC 48, Laboratory glassware and related apparatus. Users should note that all International Standards undergo revision from time to time and that any reference made herein to any other International Standard implies its latest edition, unless otherwise stated. Page 2
15、 IS0 7884-2 : 1987 O Introduction International Standard IS0 78 however, at rotational frequen- cies above 1 s- 1 it should be ascertained that inertia forces are negligible. 2 Reference IEC Publication 584-1, Thermocouples - Part I: Reference tables. 3 Definitions For the purposes of this part of I
16、S0 7884, the following defini- tions apply. 3.1 Field of flow, crucible and plunger 3.1.1 field of flow: The whole gap filled by the molten glass sample and the spatial distribution of the flow velocities within it, including its boundaries. 3.1.2 crucible : The outer boundary of the molten glass sa
17、m- ple corresponding to the inner surface of the crucible up to the level of the melt. 3.1.3 plunger: The inner boundary of the molten glass sam- ple corresponding to the outer surface of the plunger up to the level of the melt. 3.2 Flow field coefficient and instrument constant 3.2.1 Rotation visco
18、meters are either of the Searle type or of the Couette type, both of which allow the determination of the viscosity according to basic equation (1) : T rl =f$ where Q is the viscosity; . . . (1) dN.s * 1 dPa.s = 1 = 1 P rn2 IP is the symbol for poise) Page 3 IS0 7884-2 : 1987 .f is the flow field co
19、efficient; T is the torque applied to the plunger; n is the rotational frequency either of the plunger (Searle type) or of the crucible (Couette type). The flow field coefficient f is a function only of the geometrical shape of the field of flow and has the dimension of reciprocal cubic length. The
20、analytical calculation of the flow field coefficient is possible in a restricted number of geometries, e.g. in the following cases see also annex A). a) Crucible and plunger are shaped like infinite concentric cylinders; methods of eliminating experimentally the effect of the plane end surfaces are
21、known from literature, but they are difficult to apply in the case of glass melts. b) Crucible and plunger form two confocal rotation sur- faces of the second order, e.g. two half-ellipsoids, cut perpendicularly to the axis of rotation. If the shapes of the crucible and of the plunger are made up by
22、 several rotational surfaces, the boundaries of the perpendicular median cuts being irregular curves (e.g. cylinders with plane or cone-shaped or hemi-spherical ends), the flow field coefficient can be determined only by means of viscometric standard liquids with Newtonian behaviour. 1) 3.2.2 If, fo
23、r the torque, the length and/or the rotational fre- quency, units are used which do not correspond to the unit for the viscosity, and if the resulting factor is combined with the flow field coefficient, a new constant, the instrument con- stant k, can be defined by equation (2) : . T = k- n where q
24、is the viscosity measured, in decipascal seconds; k is the instrument constant (numerical value), resulting from equation (3); 7 is the torque, in newton millimetres; n is the rotational frequency, in reciprocal seconds. The instrument constant k is related to the flow field coefficient f by equatio
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