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Self-recovery, fatigue and anti-fatigue of supramolecular elastomers
A. D. Drozdov
, J. deClaville Christiansen
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
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Dive into the research topics of 'Self-recovery, fatigue and anti-fatigue of supramolecular elastomers'. Together they form a unique fingerprint.
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Keyphrases
Self-recovery
100%
Anti-fatigue
100%
Supramolecular Elastomer
100%
Cyclic Softening
33%
Room Temperature
16%
Hydrogen Bonds (H-bonds)
16%
Metal Coordination
16%
Recovery Time
16%
Short Intervals
16%
Coordination Bond
16%
Recovery Process
16%
Optimal Duration
16%
Cyclic Deformation
16%
Ionic Hydrogen Bond
16%
Multistage Testing
16%
Non-covalent Bond
16%
Polymer Complexation
16%
Self-healing Recovery
16%
Engineering
Elastomer
100%
Covalent
33%
Good Agreement
16%
Room Temperature
16%
Fatigue Property
16%
Recovery Process
16%
Test Cycle
16%
Ionic Bond
16%
Material Science
Elastomer
100%
Hydrogen Bonding
33%
Complexation
16%
Covalent Bond
16%