ASTM C1350M-1996(2013) Standard Test Method for Measurement of Viscosity of Glass Between Softening Point and Annealing Range (Approximately 108 Pa· s to Approximately 1013 P.pdf
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1、Designation: C1350M 96 (Reapproved 2013)Standard Test Method forMeasurement of Viscosity of Glass Between Softening Pointand Annealing Range (Approximately 108Pas toApproximately 1013Pas) by Beam Bending (Metric)1This standard is issued under the fixed designation C1350M; the number immediately foll
2、owing the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method
3、 covers the determination of glassviscosity from approximately 108Pas to approximately 1013Pas by measuring the rate of viscous bending of a simplyloaded glass beam.2Due to the thermal history of the glass, theviscosity may not represent conditions of thermal equilibriumat the high end of the measur
4、ed viscosity range. Measurementscarried out over extended periods of time at any temperature orthermal preconditioning will minimize these effects by allow-ing the glass to approach equilibrium structural conditions.Conversely, the method also may be used in experimentalprograms that focus on nonequ
5、ilibrium conditions.1.2 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standa
6、rd to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:3C336 Test Method for Annealing Point and Strain Point ofGlass by Fiber ElongationC338 Test Method for Softening Point of GlassC5
7、98 Test Method for Annealing Point and Strain Point ofGlass by Beam BendingC965 Practice for Measuring Viscosity of Glass Above theSoftening PointC1351M Test Method for Measurement of Viscosity ofGlass Between 104Pas and 108Pas by Viscous Com-pression of a Solid Right Cylinder Metric3. Terminology3.
8、1 Definitions:3.1.1 beam bending viscometera device used to determinethe viscosity of glass from approximately 108Pas to approxi-mately 1013Pas by measuring the deflection rate of a simplysupported beam. The equation for calculating viscosity by thismethod is: 5gL31440 Icdh/dt!FM1AL1.6G F11sT!311gT!
9、4G(1)where: = viscosity, Pas,M = load (applied load + loading train), gms,dh/dt = midpoint deflection rate of test beam, cm/s,g = acceleration of gravity, 980 cm/s2,Ic= cross-sectional moment of inertia, cm4, = density of glass, g/cm3,A = cross-sectional area of the beam, cm2,L = support span, cm, a
10、ndsand g= mean coefficient of linear thermal expansion ofsupport stand and glass, respectively, 25C totemperature of measurement, T, m/m/C. SeeNote 1.NOTE 1The term (1 + sT)3/(1 + gT)4corrects for thermal expan-sion changes of room temperature dimensions. It can be ignored when sand gare approximate
11、ly equal. A fused silica support stand in combina-tion with a high expansion glass can make this term 3 % in magnitude.Only an estimate of gis required, singe the correction is small. Use 1.5times the room temperature coefficient if data are unavailable.4. Significance and Use4.1 This test method is
12、 well suited for measuring theviscosity of glasses in ranges higher than those covered byparallel plate (see Test Method C1351M) and rotational vis-cometry (see Practice C965) methods. This test method isuseful for providing information related to the behavior of1This test method is under the jurisd
13、iction of ASTM Committee C14 on Glassand Glass Productsand is the direct responsibility of Subcommittee C14.04 onPhysical and Mechanical Properties.Current edition approved Oct. 1, 2013. Published October 2013. Originallyapproved in 1996. Last previous edition approved in 2008 as C1350M 96 (2008).DO
14、I: 10.1520/C1350M-96R13.2Hagy, H. E., “Experimental Evaluation of Beam Bending Method of Deter-mining Glass Viscosities in the Range 108to 1015Poises”, Journal of the AmericanCeramic Society, Vol 46, No. 2, 1963, pp. 9597.3For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontac
15、t ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1glass after it has been f
16、ormed into an object of commerce andin research and development.5. Apparatus5.1 The apparatus shall consist of a furnace, a means ofcontrolling its temperature and heating rate, specimen holdersand loading rod, and a means of observing the rate of viscousdeflection of the glass specimen.5.2 Furnace:
17、5.2.1 The furnace shall be electrically heated by resistanceelements. The dimensions and the details of the furnaceconstruction are not critical; its cross-section can be circular of75 mm (;3 in.) diameter or square with sides of 75 mm. Thefurnace should have a constant temperature zone that coverst
18、he specimen geometry, including the deflection range. Differ-ences in temperature greater than 2C within that constanttemperature zone are unacceptable.5.3 Temperature Measuring and Indicating Instruments:5.3.1 For the measurement of temperature, there shall beprovided a calibrated Type K, R, or S t
19、hermocouple. Thethermocouple shall be housed in a double-bore alumina tubewith its junction placed within 5 mm of the specimen near theaxis of the furnace. The thermocouple shall be referenced to0C by means of an ice bath, and its emf measured with acalibrated potentiometer that can be read with a s
20、ensitivity of0.1C and an accuracy of 60.5C. Precautions shall be taken toensure that the ice bath is maintained at 0C throughout thetest. Alternately, the output of the thermocouple can bemeasured on a calibrated, direct reading meter (electronicthermometer) that can be read with a sensitivity of 0.
21、1C andan accuracy of 60.5C. See Note 3 for temperature lag-leadcorrections.5.4 Furnace Control:5.4.1 Suitable means shall be provided for maintaining thefurnace temperature at a fixed control point and for controllingthe heating and cooling rates. Commercially available pro-gramming equipment provid
22、es excellent control. A variabletransformer with manual control is an inexpensive, but lessadequate means of accomplishing the required control.5.5 Specimen Holder and Loading Rod :5.5.1 A diagram of the apparatus can be found in TestMethod C598.5.5.2 A ceramic support stand and a ceramic loading ro
23、dshall be provided for supporting the specimen and applying theload to it. The thermal expansion characteristics of bothmembers must be very similar so as to minimize motion of theloading rod due to expansion differences. A rectangular alu-mina muffle or circular tube that can be notched to definesp
24、ecimen position is a suitable support stand (see Note 2). Thesupporting surfaces of these notches shall be flat and lie in aplane perpendicular to the axis of the furnace. The inside edgesof these notches define the support span once the specimenbeam starts to deflect. A support span of about 5 cm (
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