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Corrosion resistance of Zr as metallic biomaterials

机译:Zr作为金属生物材料的耐腐蚀性

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The corrosion behavior of Zr and Zr-based binary alloys (Zr-Ti, Zr-Nb, Zr-Ta, Zr-Pd, Zr-Pt, Zr-Cu, and Zr-Au) with various concentrations in simulated body fluids were investigated. Pure Zr showed pitting corrosion during the potentiodynamic anodic polarization measurement in Hanks' solution, however, the pitting potential of Zr was much higher than that of type 316L stainless steel. The pitting potential was widely changed by the composition of the alloy. In particular, Zr alloyed with larger amount of Ti, Nb, and Au showed higher pitting potential than pure Zr. Thus, these alloying elements can be considered as beneficial for improving corrosion resistance in physiological environment. On the other hand, Zr-Cu alloys showed low pitting potentials. Therefore, Zr alloys should be carefully designed when they will be used in chloride-containing environments.
机译:研究了Zr和Zr基二元合金(Zr-Ti、Zr-Nb、Zr-Ta、Zr-Pd、Zr-Pt、Zr-Cu和Zr-Au)在模拟体液中的腐蚀行为。纯Zr在Hanks溶液的动电位阳极极化测量中表现出点蚀,但Zr的点蚀电位远高于316L型不锈钢。点蚀电位因合金成分而发生很大变化。特别是,与Ti、Nb和Au含量较多的Zr合金化,其点蚀潜力高于纯Zr。因此,这些合金元素可以被认为有利于提高生理环境中的耐腐蚀性。另一方面,Zr-Cu合金表现出较低的点蚀潜力。因此,当Zr合金在含氯化物环境中使用时,应仔细设计。

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