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Thermodynamics and thermal decomposition for shape memory effects with crystallization based on dissipation and logarithmic strain
R. B. Hall,
I. J. Rao
, H. J. Qi
Mechanical and Industrial Engr
Research output
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Contribution to journal
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Article
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peer-review
5
Scopus citations
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Dive into the research topics of 'Thermodynamics and thermal decomposition for shape memory effects with crystallization based on dissipation and logarithmic strain'. Together they form a unique fingerprint.
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Chemical Compounds
Additive
15%
Application
7%
Crystallite
57%
Crystallization
48%
Decomposition
14%
Dissipation
75%
Electron Spin
19%
Entropy
38%
Gibbs Free Energy
35%
Macromolecule
19%
Pyrolysis
48%
Shape
30%
Shape Memory Effect
100%
Strain
48%
Thermal Expansion
24%
Thermodynamics
43%
Engineering & Materials Science
Crystallites
74%
Crystallization
75%
Decomposition
12%
Entropy
29%
Free energy
41%
Macromolecules
24%
Pyrolysis
65%
Shape memory effect
75%
Temperature
13%
Thermal expansion
17%
Thermodynamics
59%