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Titlebook: Materials Design and Applications; Lucas F. M. da Silva Book 2017 Springer International Publishing AG 2017 MDA 2016 Porto.Shape Memory Co

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楼主: minuscule
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Monica Periolatto,Elisabetta Di Francia,Marco Sangermano,Sabrina Grassini,Pasquale Russo Spenassful advances are insufficient for many emergent diseases. We review work hypothesizing Makona, phenotypically similar to much smaller outbreaks, emerged out of shifts in land use brought about by neoliberal economics. The epidemiological consequences demand a new science that explicitly addresses
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E. Boco,R. Frizzell,J. Punchngs of neoliberal globalisation — offers at best a simplistic and superficial understanding of the phenomenon, primarily because it lacks an adequate appreciation of the social and historical context within which it has emerged. Instead, this analysis is best understood in ideological terms — as the
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The Influence of Microstructure on the Mechanical Behaviour of Dual Phase Steelsments defined by legislation on efficiency, fuel consumption, gas emissions and safety. These challenges can be addressed by the use of stronger materials to produce thinner components that contributes for weight reduction of automobiles and improvements of aspects related to the safety. Among high-
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Application of Cutting Edges with High Durability Made of Nanocrystalline Cemented Carbidesystalline sintered carbides. Cutting inserts were sintered using nanocrystalline powder by the pulse-plasma method. Durability of the cutting edges was determined during turning of EN 1.45.41 (1H18N9T) austenitic steel. The Nano_WC-5Co + 0.9% Cr.C. nanocrystalline cemented carbides have much higher
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Design of Nanocrystalline Cemented Carbides with High Hardnessmented carbides with Cr.C. (0.3, 0.6 and 0.9%) growth inhibitor and without it. The cutting edges made of nanocrystalline cemented carbides were sintered using the Pulse Plasma Sintering (PPS) method. During the manufacturing process of cutting inserts, various values of both sintering temperature a
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Probing Oxygen Vacancies in BaTiO3 Powders and Single Crystals by Micro-Raman Scattering this study, we evaluate the oxygen vacancies in BaTiO. single crystals and powders using micro-Raman spectroscopy. The amount of oxygen vacancies is varied by reducing BaTiO. in a hydrogen atmosphere at 700–900 °C for 120 min. An additional mode, which is related to the oxygen vacancies, appears ne
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