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个人简介
Dunn’s research has focused on understanding the mechanics and physics of complex heterogeneous materials through a combination of theory and experiment and using this understanding to create methods and tools to design and manufacture new materials and components. This includes constitutive modeling of the nonlinear multiphysics response (thermal, optical, mechanical) of active polymers and polymer composites, computational design automation approaches based on shape and topology optimization and additive manufacturing based on SLA, DLP and FDM technologies. Most recently this has involved the development of computational design and manufacturing methodologies for multimaterial additive manufacturing, including the creation of a technology called 4D printing – an approach that integrates new computational design, manufacturing process and materials technologies to create environmentally responsive printed components.
Dunn has received international recognition and awards for his research accomplishments as well as awards for products designed with the methods and tools developed from his research. Dunn received his PhD in mechanical engineering from the University of Washington and held positions at Sandia National Laboratories and the Boeing Company before joining academia.
Dunn has received international recognition and awards for his research accomplishments as well as awards for products designed with the methods and tools developed from his research. Dunn received his PhD in mechanical engineering from the University of Washington and held positions at Sandia National Laboratories and the Boeing Company before joining academia.
研究兴趣
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Journal of Manufacturing Processes (2024): 92-102
Materials horizonsno. 12 (2023): 5508-5520
JOURNAL OF COMPOSITE MATERIALSno. 4 (2022): 851-863
Manufacturing in the Era of 4th Industrial Revolutionpp.163-194, (2021)
Advanced materials and technologiesno. 8 (2021): 2170042
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