ISO 7884-5-1987 Glass Viscosity and viscometric fixed points part 5 Determination of working point by sinking bar viscometer《玻璃 粘度和粘度固定点 第5部分 用沉棒粘度计测定工作点》.pdf
《ISO 7884-5-1987 Glass Viscosity and viscometric fixed points part 5 Determination of working point by sinking bar viscometer《玻璃 粘度和粘度固定点 第5部分 用沉棒粘度计测定工作点》.pdf》由会员分享,可在线阅读,更多相关《ISO 7884-5-1987 Glass Viscosity and viscometric fixed points part 5 Determination of working point by sinking bar viscometer《玻璃 粘度和粘度固定点 第5部分 用沉棒粘度计测定工作点》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL STANDARD INTERNATIONAL ORGANIZATION FOR STANDARDIZATION ORGANISATION INTERNATIONALE DE NORMALISATION MEXAYHAPOAHAR OPTAHM3Al,! ;y:. 1, 1, ,:?.:li.9.:-:,.:ei; ;-$;y;, Glass - Viscosity and viscometric fixed points - Part 5 : Determination of working point by sinking bar viscometer SO 78
2、84-5 First edition 1987-12-15 Reference number IS0 7884-5 : 1987 (E) 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 technic
3、al committees. Each 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 Stand
4、ards adopted by 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 IS
5、0 7884-5 was prepared 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 otherwis
6、e stated. 0 International Organization for Standardization, 1997 0 Printed in Switzerland INTERNATIONAL STANDARD IS0 7884-5 : 1987 (El Glass - Viscosity and viscometric fixed points - Part 5 : Determination of working point by sinking bar viscometer 0 Introduction international Standard IS0 7884, Gl
7、ass - Viscosity and viscometric fixed points, consists of the following separate parts : Part 1 : Principles for determining viscosity and viscometric fixed points. Part 2 : Determination of viscosity by rotation viscometers. Part 3 : Determination of viscosity by fibre elongation viscometer. Part 4
8、 : Determination of viscosity by beam bending. Part 5 : Determination of working point by sinking bar viscometer. Part 6 : Determination of softening point. Part 7 : Determination of annealing point and strain point by beam bending. Part 8 : Determination of ldilatometricl transformation temperature
9、. 1 Scope This part of IS0 7884 specifies a method of determining the working point of glass by means of the sinking bar viscometer. This method has been found useful for characterizing the low- viscosity range of glass working. This viscometric fixed point can be used in determining the viscosity-t
10、emperature relation- ship (see IS0 7884-l 1. 2 Field of application This method is applicable to all glasses of normal bulk- production compositions unless devitrification or evaporation of volatile components takes place during the preparation or testing of the specimen. The working points range be
11、tween 800 and 1 200 OC, depen- ding on the type of glass. 3 Reference IEC Publication 584-1, Thermocouples - Part 7 : Reference tables. 4 Definitions For the purposes of this part of IS0 7884, the following defini- tions apply. 4.1 working point : Temperature at which the melt of usual silicate glas
12、ses possesses an equilibrium viscosity of 104 dPa.s*. 4.2 sinking bar temperature : Working point as deter- mined by means of the sinking bar method. 4.3 sinking bar method : Simple procedure for determining rapidly the viscosity within a range of about 103,7 to IO%5 dPa.s as explained in clause 5.
13、5 Principle A vertically positioned narrow metal rod (the bar) of diameter d is allowed to sink under a force F (its own weight) into the melt. From the rate of sinking of the bar into the melt, the dynamic viscosity q of the melt is calculated. Under the geometrical con- ditions specified in 6.1 an
14、d 6.3, the deviations of this method from equation (1) are small compared with the experimental uncertainties as specified in 9.2. t q = C.rn.12 . . . (I) where C is a constant; 2 is the depth of sinking into the melt; m is the mass of the bar; t is the sinking time corresponding to 1. * 1 dPa.s = 1
15、 s = 1 P (P is the symbol for poise) 1 IS0 7884-5 : 1967 (E) If fixed values of the depth I and the mass m are specified, a constant K for the bar may be defined according to equation (2) : rj =K.t . . . (2) In this part of IS0 7884, the depth of sinking and the mass of the bar are specified as I =
16、20 mm and m = 0,902 g. respec- tively. NOTE - The buoyancy acting upon the immersed part of the bar is taken into account for the density of the reference glass used for calibration (see 6.1). The buoyancy correction for other values of glass density is neglected. 6 Apparatus 6.1 Sinking bar Bar mad
17、e from platinum-rhodium alloy with a mass fraction of rhodium between 0,2 and 0,3, with diameter 0,5 mm and mass 0,902 g (corresponding to a length between 240 and 245 mm depending upon the density of the platinum-rhodium alloy used). The ends of the bar shall be hemispherical. NOTE - With such a ba
18、r, for a viscosity of 104 dPa.s the time for sinking to a depth of 20 mm is 60 s. This corresponds to a bar constant K of about 140 to 170 dPa.s/s. For routine measurements it is convenient to have available several bars made from the same batch of the alloy. Used bars shall be gently cleaned of adh
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- ISO788451987GLASSVISCOSITYANDVISCOMETRICFIXEDPOINTSPART5DETERMINATIONOFWORKINGPOINTBYSINKINGBARVISCOMETER

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