ASTM D7605-2010 0000 Standard Test Method for Thermoplastic Elastomers&x2014 Measurement of Polymer Melt Rheological Properties and Congealed Dynamic Properties Using Rotorless She.pdf
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1、Designation: D7605 10Standard Test Method forThermoplastic ElastomersMeasurement of Polymer MeltRheological Properties and Congealed Dynamic PropertiesUsing Rotorless Shear Rheometers1This standard is issued under the fixed designation D7605; the number immediately following the designation indicate
2、s 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 covers the use of a rotorless
3、 oscillatingshear rheometer for the measurement of the flow properties ofpolymer melts and their respective congealed dynamic prop-erties for thermoplastic elastomers (TPE) which includesthermoplastic vulcanizates (TPV). These flow properties andcongealed dynamic properties are related to factory pr
4、ocessingand product performance.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
5、 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:2D1349 Practice for RubberStandard Temperatures forTestingD3896 Practice for Rubber From Synthetic SourcesSamplingD44
6、83 Practice for Evaluating Precision for Test MethodStandards in the Rubber and Carbon Black ManufacturingIndustriesD6600 Practice for Evaluating Test Sensitivity for RubberTest Methods3. Terminology3.1 Definitions:3.1.1 complex shear modulus, G*, nratio of peak ampli-tude shear stress to peak ampli
7、tude shear strain; mathemati-cally, G* = (S*/Area)/Strain = (G2+G”2)1/2.3.1.2 complex torque, S*, npeak amplitude torque re-sponse measured by a reaction torque transducer for a sinusoi-dally applied strain; mathematically, S* is computed by S* =(S2+S”2)1/2.3.1.3 dynamic complex viscosity, h*, nrati
8、o of the com-plex shear modulus, G* to the oscillation frequency, v,inradians per second.3.1.4 elastic torque, S, npeak amplitude torque compo-nent which is in phase with a sinusoidally applied strain.3.1.5 loss angle, d, nphase angle by which the complextorque (S*) leads a sinusoidally applied stra
9、in.3.1.6 loss factor, tan d, nratio of loss modulus to storagemodulus, or the ratio of viscous torque to elastic torque;mathematically, tan d = G”/G = S”/S.3.1.7 loss shear modulus, G”, nratio of (viscous) peakamplitude shear stress to peak amplitude shear strain for thetorque component 90 out of ph
10、ase with a sinusoidally appliedstrain; mathematically, G” = (S”/Area) /Peak Strain.3.1.8 real dynamic viscosity, h, nratio of the loss shearmodulus, G” to the oscillation frequency, v, in radians persecond.3.1.9 storage shear modulus, G, nratio of (elastic) peakamplitude shear stress to peak amplitu
11、de shear strain for thetorque component in phase with a sinusoidally applied strain;mathematically, G = (S/Area) /Peak Strain.3.1.10 viscous torque, S”, npeak amplitude torque com-ponent which is 90 out of phase with a sinusoidally appliedstrain.4. Summary of Test Method4.1 A thermoplastic elastomer
12、 test specimen is contained ina sealed die cavity which is closed and maintained at anelevated temperature. The cavity is formed by two dies, one ofwhich is oscillated through a rotary amplitude. This actionproduces a sinusoidal torsional strain in the test specimenresulting in a sinusoidal torque,
13、which measures a viscoelasticquality of the test specimen. The test specimen can be athermoplastic elastomer such as a thermoplastic vulcanizate(TPV), a styrenic blocked copolymer (SBC), a copolyester, athermoplastic polyurethane, a thermoplastic polyolefin, orother TPE forms.1This test method is un
14、der the jurisdiction of ASTM Committee D11 on Rubberand is the direct responsibility of Subcommittee D11.12 on Processability Tests.Current edition approved Feb. 1, 2010. Published March 2010. DOI: 10.1520/D7605-10.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM
15、Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, 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.4.2 These viscoelastic measurem
16、ents can be made based on(1), a frequency sweep in which the frequency is programmedto change in steps under constant strain amplitude and tem-perature conditions, (2), a strain sweep in which the strainamplitude is programmed to change in steps under constantfrequency and temperature conditions, or
17、 (3), a temperaturesweep in which the temperature is programmed to eitherincrease or decrease under constant strain amplitude andfrequency conditions. A timed test may also be performed inwhich a sinusoidal strain is applied for a given time periodunder constant strain amplitude, frequency and tempe
18、ratureconditions.4.2.1 For a frequency sweep test, the instrument is typicallyprogrammed to increase the frequency with each subsequentstep change. For a strain sweep test, the instrument is usuallyprogrammed to increase the strain amplitude with each subse-quent step change. This is done to minimiz
19、e the influence ofprior test conditions on subsequent test steps. For temperaturesweeps, the temperature may be programmed either to increaseor decrease with each subsequent step change, depending onthe effects to be studied. The results from increasing frequency,strain amplitude or temperature may
20、not be the same as resultsfrom decreasing these test parameters.4.3 Rheological properties are measured for each set offrequency, strain and temperature conditions. These propertiescan be measured as combinations of elastic torque S, viscoustorque S”, storage shear modulus, G, loss shear modulus G”,
21、tan d, complex dynamic viscosity h*, and real dynamicviscosity h.5. Significance and Use5.1 This test method is used to measure viscoelastic prop-erties of thermoplastic elastomer polymer melts at elevatedtemperatures as well as the dynamic properties of the respec-tive congealed thermoplastic elast
22、omer specimens measured atlower temperatures. These polymer melt viscoelastic propertiesmay relate to factory processing behavior while the dynamicproperties of the respective congealed specimen may relate toproduct performance.5.2 This test method may be used for quality control inthermoplastic ela
23、stomer manufacturing processes, for qualitycontrol of received shipments of thermoplastic elastomers, andfor research and development testing of thermoplastic elas-tomers. This method may also be used for evaluating process-ing and product performance differences resulting from the useof different c
24、ompounding materials and process conditions inthe making of these thermoplastic elastomers.6. Apparatus6.1 Torsion Strain Rotorless Oscillating Rheometer with aSealed CavityThis type of rheometer measures the elastictorque S and viscous torque S” produced by oscillatingangular strain of set amplitud
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