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Nonlinear Dynamic Mechanical Moduli for Polycarbonate and Pmma
W. M. Davis, Chris Macosko
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Article
›
peer-review
58
Scopus citations
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Dive into the research topics of 'Nonlinear Dynamic Mechanical Moduli for Polycarbonate and Pmma'. Together they form a unique fingerprint.
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Keyphrases
Nonlinearity
100%
Dynamic Mechanical
100%
Nonlinear Dynamics
100%
Pmma
100%
Mechanical Moduli
100%
Torsion
50%
Glass Transition
50%
Poly(methyl methacrylate)
50%
Constitutive Equation
50%
Hollow Cylinder
50%
Linear Region
50%
Maximum Strain
50%
Potential Errors
50%
Higher Harmonics
50%
Phase Angle
50%
Harmonic Content
50%
Fatigue Behavior
50%
Small Strain Measurement
50%
Shear Strain Amplitude
50%
Shear Oscillation
50%
Boltzmann Superposition Principle
50%
Rectangular Bar
50%
Multiple Integrals
50%
Cross-correlator
50%
Impact Behavior
50%
Nonlinear Constants
50%
Nonlinear Region
50%
Phase Voltage Harmonics
50%
Integral Expansions
50%
Engineering
Polycarbonate
100%
Non-Linear Dynamics
100%
Nonlinearity
66%
Correlator
33%
Potential Error
33%
Constitutive Equation
33%
Boltzmann Equation
33%
Nonlinear Region
33%
Linear Region
33%
Harmonic Content
33%
Superposition Principle
33%
Strain Amplitude
33%
Fatigue Behavior
33%
Shear Strain
33%
Harmonics
33%
Phase Shift
33%
Material Science
Polycarbonate
100%
Poly Methyl Methacrylate
33%
Glass Transition
33%
Fatigue Behavior
33%
Strain Measurement
33%
Shear Strain
33%