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Creep-Fatigue Relationsihps in Electroactive Polymer Systems and Predicted Effects in an Actuator DesignThe paper concerns the time-dependent behavior of electroactive polymers (EAP) and their use in advanced intelligent structures for space exploration. Innovative actuator design for low weight and low power valves required in small plants planned for use on the moon for chemical analysis is discussed. It is shown that in-depth understanding of cyclic loading effects observed through accelerated creep rates due to creep-fatigue interaction in polymers is critical in terms of proper functioning of EAP based actuator devices. In the paper, an overview of experimental results concerning the creep properties and cyclic creep response of a thin film piezoelectric polymer polyvinylidene fluoride (PVDF) is presented. The development of a constitutive creep-fatigue interaction model to predict the durability and service life of electroactive polymers is discussed. A novel method is proposed to predict damage accumulation and fatigue life of polymers under oyclic loading conditions in the presence of creep. The study provides a basis for ongoing research initiatives at the NASA Kennedy Space Center in the pursuit of new technologies using EAP as active elements for lunar exploration systems.
Document ID
20130010202
Acquisition Source
Kennedy Space Center
Document Type
Conference Paper
Authors
Vinogradov, Aleksandra M.
(Montana State Univ. Bozeman, MT, United States)
Ihlefeld, Curtis M.
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Henslee, Issac
(Montana State Univ. Bozeman, MT, United States)
Date Acquired
August 27, 2013
Publication Date
May 20, 2009
Subject Category
Nonmetallic Materials
Report/Patent Number
KSC-2009-081
Report Number: KSC-2009-081
Meeting Information
Meeting: 37th American Society for Test and Materials (ASTM) National Symposium on Fatigue and Fracture Mechanics
Location: Vancouver, BC
Country: Canada
Start Date: May 20, 2009
End Date: May 22, 2009
Distribution Limits
Public
Copyright
Public Use Permitted.
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