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Enhancement of the corrosion resistance and mechanical properties of nanocrystalline titanium by low-temperature annealing

机译:通过低温退火提高纳米晶钛的耐腐蚀性和机械性能

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Annealing deformed metals usually leads to reduced strength. In the case of nanocrystalline materials, the opposite effect was observed after low-temperature annealing. The annihilation of mobile dislocations and a relaxation of grain boundaries are probable reasons for the observed phenomenon. Dislocation density and grain boundaries character affect also on the corrosion resistance. Hence, in this work the effect of low-temperature annealing on both the hardness and corrosion resistance of nanotitanium was investigated. The results indicated that low-temperature annealing is a fast, simple and inexpensive way to further enhance nanotitanium's mechanical and corrosion properties, which are crucial for implantable materials.
机译:退火变形金属通常会导致强度降低。对于纳米晶体材料,在低温退火后观察到相反的效果。移动位错的an灭和晶界的松弛是观察到的现象的可能原因。位错密度和晶界特征也影响耐腐蚀性。因此,在这项工作中,研究了低温退火对纳米钛的硬度和耐蚀性的影响。结果表明,低温退火是进一步提高纳米钛的机械和腐蚀性能的快速,简单和廉价的方法,这对于可植入材料至关重要。

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