Viscoelastic behavior of 80In15Pb5Ag and 50Sn50Pb alloys: Experiment and modeling
Identifieur interne : 012396 ( Main/Repository ); précédent : 012395; suivant : 012397Viscoelastic behavior of 80In15Pb5Ag and 50Sn50Pb alloys: Experiment and modeling
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Abstract
Dynamic and creep behavior of 80In15Pb5Ag and 50Sn50Pb were studied isothermally over nine decades of time and frequency. 80In15Pb5Ag was examined at -6, 21, and 50°C, and 50Sn50Pb was examined at 21°C. Viscoelastic behavior was observed at strains less than 10-5 as a function of temperature and time/frequency. At the small strain used in the study, the alloys exhibit linear viscoelasticity rather than the viscoplasticity observed at larger strain. Viscoelasticity was subject to constitutive modeling. The creep followed a superposition of a stretched exponential and a power law in time, and an Arrhenius form in temperature. Behavior was thermorheologically simple over at least nine decades of true time and frequency. © 2000 American Institute of Physics.
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<author><name sortKey="Edwards, L K" uniqKey="Edwards L">L. K. Edwards</name>
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<front><div type="abstract" xml:lang="en">Dynamic and creep behavior of 80In15Pb5Ag and 50Sn50Pb were studied isothermally over nine decades of time and frequency. 80In15Pb5Ag was examined at -6, 21, and 50°C, and 50Sn50Pb was examined at 21°C. Viscoelastic behavior was observed at strains less than 10<sup>-5</sup>
as a function of temperature and time/frequency. At the small strain used in the study, the alloys exhibit linear viscoelasticity rather than the viscoplasticity observed at larger strain. Viscoelasticity was subject to constitutive modeling. The creep followed a superposition of a stretched exponential and a power law in time, and an Arrhenius form in temperature. Behavior was thermorheologically simple over at least nine decades of true time and frequency. © 2000 American Institute of Physics.</div>
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as a function of temperature and time/frequency. At the small strain used in the study, the alloys exhibit linear viscoelasticity rather than the viscoplasticity observed at larger strain. Viscoelasticity was subject to constitutive modeling. The creep followed a superposition of a stretched exponential and a power law in time, and an Arrhenius form in temperature. Behavior was thermorheologically simple over at least nine decades of true time and frequency. © 2000 American Institute of Physics.</s0>
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