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DIC analysis of deformation in Harmonic Structured materials MASTER THESIS PROJECT(30HP) 1. Background Modern demands in structural materials can be hardly met by the traditional polycrystalline materials with homogeneous structures. Such materials are either ductile but too soft when coarse-grained (CG; crystallite size d³10µm) or strong but too brittle when nano- or ultrafine-grained (UFG; cryst

https://www.material.lth.se/fileadmin/material/MScTheses/2019-Ads/MTEK-MSc_Thesis-I.pdf - 2025-02-02

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Segmentation and analysis of 3D structures in x-ray, neutron imaging MASTER THESIS PROJECT(30HP) 1. Background Magnesium (Mg) alloys are the lightest structural metals having excellent potential in biomedical applications since their mechanical properties are some of the most similar to human bones among engineering materials. The Division of Materials Engineering at LTH works extensively on the d

https://www.material.lth.se/fileadmin/material/MScTheses/2019-Ads/MTEK-MSc_Thesis-III.pdf - 2025-02-02

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In vitro study of bio-degradation in Mg alloys by isothermal calorimetry MASTER THESIS PROJECT(30HP) 1. Background Magnesium (Mg) alloys are the lightest structural metals having excellent potential in biomedical applications since their mechanical properties are some of the most similar to human bones among engineering materials. The Division of Materials Engineering at LTH works extensively on t

https://www.material.lth.se/fileadmin/material/MScTheses/2019-Ads/MTEK_BYGG-MSc_Thesis.pdf - 2025-02-02

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Dependence of nano-hardness on precipitate structure in Mg MASTER THESIS PROJECT(30HP) 1. Background Magnesium (Mg) alloys are the lightest structural metals having excellent potential in biomedical applications since their mechanical properties are some of the most similar to human bones among engineering materials. The Division of Materials Engineering at LTH works extensively on the development

https://www.material.lth.se/fileadmin/material/MScTheses/2019-Ads/MTEK_IProd-MSc_Thesis-II.pdf - 2025-02-02