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Thickness effects on the martensite transformations and mechanical properties of nanocrystalline NiTi wires were composites and consisted of a TiNi matrix and a TiO2 + TiNi3 surface layer. Structural methods

Structure, biocompatibility and corrosion resistance of the ceramic-metal surface of porous nitinol resistance in living organisms. This study discusses the structure of the ceramic-metal surface layer of a

Surface structure and properties of hydroxyapatite coatings on NiTi substrates the deposition time to 3 h made it possible to form a dense hydroxyapatite layer without visible defects

Plasticity of porous NiTi alloys obtained by self-propagating high-temperature synthesis in closed and open gas flow reactors-bylayer combustion in closed and open gas flow reactors under a protective argon atmosphere. The maximum compressive

Improved mechanical properties of porous nitinol by aluminum alloying their number, resulting in a larger effective cross-sectional area. An increase in the aluminum content above 1

Microstructure and properties evolution of rolled powder metallurgy Cu-30Fe alloy elongated, tadpole-shaped, and spindle-shaped as a result of rolling. At the same time, the Cu grains were

Enhanced mechanical properties and high electrical conductivity of copper alloy via dual-nanoprecipitation to their high electrical conductivity and excellent mechanical properties. At present work, a medium electrical

Abnormally high work hardening ability and excellent comprehensive properties of copper alloys due to multiple twins and precipitates). This strategy paves a new avenue for developing precipitation-strengthened alloys with excellent comprehensive

Electrolyte exposure time effects on structure, composition and biocompatibility of microarc oxidation coatings on Mg-Ca-Zn alloys. As a result of micro-arc oxidation, a dense coating with a gradient structure is formed on the surface

Improved microstructure, mechanical properties and electrical conductivity of the Cu–Ni–Sn–Ti–Cr alloy due to Ce micro-addition solution treatment and 60% cold rolling, the Cu–Ni–Sn–Ti–Cr alloy with micro-hardness of 221 HV, a tensile

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