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Synthesis of high temperature polyaspartimide-urea based shape memory polymers
Authors:JA Shumaker  AJW McClung  JW Baur
Affiliation:1. University of Dayton Research Institute, 300 College Park, Dayton, OH 45469-0060, USA;2. National Research Council, AFRL, Wright-Patterson AFB, OH 45433, USA;3. Air Force Research Laboratory, Materials and Manufacturing Directorate, WPAFB, OH 45433, USA
Abstract:Thermally activated shape memory polymers (SMPs) have attracted great interest in recent years for application in adaptive shape-changing (morphing) aero structures. However, these components require materials with transition temperatures well above the glass transition temperatures of most widely available SMPs while also maintaining processability and property tailorability. In the present study, a series of novel polyaspartimide-urea based polymers are synthesized and characterized. The glass transition temperature and shape memory properties are varied using a diisocyanate resin creating a urea crosslinking moiety between the polyaspartimide chains. Overall, a family of high temperature SMPs was synthesized and characterized showing high thermal stability (>300 °C), toughness, strong shape memory effects, and tailorable properties.
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