ASTM E2510-2007 Standard Test Method for Torque Calibration or Conformance of Rheometers《流变仪的扭矩校准或一致性用标准试验方法》.pdf
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1、Designation: E 2510 07Standard Test Method forTorque Calibration or Conformance of Rheometers1This standard is issued under the fixed designation E 2510; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A
2、number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method describes the calibration or perfor-mance conformance for the torque signal generated by com-mercial or custom-built
3、rheometers. The specific range of thetest depends upon the torque range of the rheometer.1.2 SI units are the standard.1.3 There is no ISO standard equivalent to this test method.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is therespon
4、sibility of the user of this standard 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:2E4 Practices for Force Verification of Testing MachinesE 473 Terminology Relating to Thermal
5、Analysis and Rhe-ologyE 617 Specification for Laboratory Weights and PrecisionMass StandardsE 1142 Terminology Relating to Thermophysical Properties3. Terminology3.1 Specific technical terms used in this test method aredefined in Terminologies E 473 and E 1142. These termsinclude angular frequency,
6、frequency, loss modulus, rheometer,storage modulus, strain, stress, viscoelasticity, viscometer,viscometry, and viscosity.3.2 Definitions:3.2.1 torque, nforce applied through a moment arm thatproduces or tends to produce rotation (N m)4. Summary of Test Method4.1 A known force is applied to a rheome
7、ter coupling shaftthrough a moment arm to produce a torque. The torque thusapplied is measured and compared to the measured torque. Theratio between indicated and applied torque is used to create acalibration coefficient that may be used in future determina-tions.4.2 The known force generated by sus
8、pended precisionmass or masses is transmitted to the rheometer coupling shaftby a line and an appropriate series of pulleys.4.3 Torque is mathematically defined by Eq 1:t5dFsinF (1)where:t = torqued = the length of the moment arm (m)F = the applied force (N)F = the angle to the moment arm over which
9、 the force isapplied ()4.3.1 If the force is applied tangentially at right angles (thatis, F = 90) to the moment arm, then sinF = 1 and Eq 1reduces to Eq 2:t5dF (2)4.4 The moment arm in this test method is created byattaching a fixture of known radius to the rheometer couplingshaft in lieu of a geom
10、etry, tool or plate. The radius of thefixture is the value of d in Eq 2.4.5 A force is applied to the fixture at a tangent by asuspended mass through a thin wire and a suitable pulleyarrangement (see, for example, Fig. 1).4.6 For a mass or masses of known value, the applied forceis given by Eq 3:F 5
11、 Mgf (3)where:M = the suspended mass (kg)g = standard acceleration due to gravity (= 9.8065 m s2)f = correction factor for local gravity and air buoyancytaken from Table 1 (dimensionless)1This test method is under the jurisdiction ofASTM Committee E37 on ThermalMeasurements and is the direct respons
12、ibility of Subcommittee E37.08 on Rheom-etry Methods and Practices.Current edition approved Feb. 1, 2007. Published March 2007.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information
13、, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5. Significance and Use5.1 The test method calibrates or demonstrates conformityof the torque signal of a rheometer at
14、ambient temperature.5.2 A calibration factor thus determined may be used toobtain correct torque values.5.3 This test method may be used in research, development,specification acceptance, and quality control or assurance.6. Apparatus6.1 RheometerThe essential instrumentation required pro-viding the
15、minimum rheological analytical capabilities include:6.1.1 Drive Actuator, to apply torque or angular displace-ment to the specimen in a periodic manner capable of frequen-cies of oscillation from 0.001 to 100 rad/s. This actuator mayalso be capable of providing static torque or displacement onthe sp
16、ecimen.6.1.2 Coupling Shaft, or other means to transmit the torqueor displacement from the motor to the specimen.6.1.3 Geometry or Tool, to fix the specimen between thedrive shaft and a stationary position.6.1.4 Sensor, to measure the torque developed by thespecimen, a position sensor to measure the
17、 angular displace-ment of 50 nanoradians of the test specimen, or both.6.1.5 Temperature Sensor, to provide an indication of thespecimen temperature to within 60.1C.FIG. 1 Example of Suspended Mass .TABLE 1 Unit Force Exerted by a Unit Mass in Air at Various Latitudes and ElevationsAElevation Above
18、Sea Level, m (ft)Latitude, 30.5 to 152(100 to 500)152 to 457(500 to 1500)457 to 762(1500 to 2500)762 to 1067(2500 to 3500)1067 to 1372(3500 to 4500)1372 to 1676(4500 to 5500)20 0.9978 0.9977 0.9976 0.9975 0.9975 0.997425 0.9981 0.9980 0.9979 0.9979 0.9978 0.997730 0.9985 0.9984 0.9983 0.9982 0.9982
19、0.998135 0.9989 0.9988 0.9987 0.9987 0.9986 0.998540 0.9993 0.9993 0.9992 0.9991 0.9990 0.998945 0.9998 0.9997 0.9996 0.9996 0.9995 0.999450 1.0003 1.0002 1.0001 1.0000 0.9999 0.999955 1.0007 1.0006 1.0005 1.0005 1.0004 1.0003ATaken from Practice E4.E25100726.1.6 Furnace, or Heating/Cooling Element,
20、 to providecontrolled heating or cooling of a specimen at a constanttemperature or at a constant rate within the temperature rangeof interest.6.1.7 Temperature Controller, capable of executing a spe-cific temperature program by operating the furnace or heating/cooling element between selected temper
21、ature limits constantto within 60.1C.6.1.8 Recording Device, capable of recording and display-ing on the Y-axis any fraction of the measured signal (hereapplied torque) or calculated signal (such as viscosity, storageand loss modulus, etc.) including signal noise using a linear orlogarithmic scale a
22、s a function of any fraction of the indepen-dent experimental parameter (such as temperature, time) orcalculated signals (such as stress or strain) on the X-axisincluding signal noise.6.1.9 Auxiliary instrumentation considered necessary oruseful in conducting this method includes:6.1.9.1 Cooling Cap
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