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Titlebook: Microstructure-Property Optimization in Metallic Glasses; Baran Sarac Book 2015 Springer International Publishing Switzerland 2015 Artific

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General Conclusions and Outlook,egligible plasticity. The ideal density for optimal mechanical properties was determined to be ~ 25.0 %, which is within the local failure deformation regime. Enhancement in mechanical properties in MG cellular structures was achieved by stress optimization through corner-fillets, which doubled the
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Book 2015re configuration within the matrix, and the overall width of the sample determines the extent of deformation, where the optimized values are attained for pore diameter to spacing ratio of one with AB type pore stacking.
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Microstructure-Property Optimization in Metallic Glasses
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2190-5053 ent of deformation, where the optimized values are attained for pore diameter to spacing ratio of one with AB type pore stacking.978-3-319-36538-1978-3-319-13033-0Series ISSN 2190-5053 Series E-ISSN 2190-5061
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2190-5053 g a novel quantitative approach by which influence of the seThis thesis consists of an in-depth study of investigating microstructure-property relationships in bulk metallic glasses using a novel quantitative approach by which influence of the second phase features on mechanical properties can be in
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Structural Characterization of Metallic Glasses, cast material for the artificial microstructures. For this reason, three different test methods, namely, formability test, structural and thermal analysis, and bending test were conducted prior to fabrication and testing of MG heterostructures, and the results are presented in this chapter.
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