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Computation and Simulation of the Effect of Microstructures on Material Properties

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dc.creator Carter, W. Craig
dc.date 2003-11-10T19:22:28Z
dc.date 2003-11-10T19:22:28Z
dc.date 2003-01
dc.date.accessioned 2013-10-09T02:31:50Z
dc.date.available 2013-10-09T02:31:50Z
dc.date.issued 2013-10-09
dc.identifier http://hdl.handle.net/1721.1/3659
dc.identifier.uri http://koha.mediu.edu.my:8181/xmlui/handle/1721
dc.description Many material properties depend on specific details of microstructure and both optimal material performance and material reliability often correlate directly to microstructure. In nano- and micro-systems, the material's microstructure has a characteristic length scale that approaches that of the device in which it is used. Fundamental understanding and prediction of material behavior in nano- and micro-systems depend critically on methods for computing the effect of microstructure. Methods for including the physics and spatial attributes of microstructures are presented for a number of materials applications in devices. The research in our group includes applications of computation of macroscopic response of material microstructures, the development of methods for calculating microstructural evolution, and the morphological stability of structures. In this review, research highlights are presented for particular methods for computing the response in: 1) rechargeable lithium ion battery microstructures, 2) photonic composites with anisotropic particulate morphologies, 3) crack deflection in partially devitrified metallic glasses.
dc.description Singapore-MIT Alliance (SMA)
dc.format 1062489 bytes
dc.format application/pdf
dc.language en_US
dc.relation Advanced Materials for Micro- and Nano-Systems (AMMNS);
dc.subject microstructure
dc.subject nano-systems
dc.subject micro-systems
dc.subject rechargeable lithium ion batteries
dc.subject photonic composites
dc.subject crack deflection
dc.subject partially devitrified metallic glass
dc.subject anisotropic morphology
dc.title Computation and Simulation of the Effect of Microstructures on Material Properties
dc.type Article


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