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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Phase-Tunable Fabrication of Consolidated (α+β)-TiZr Alloys for Biomedical Applications through Molten Salt Electrolysis of Solid Oxides
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Phase-Tunable Fabrication of Consolidated (α+β)-TiZr Alloys for Biomedical Applications through Molten Salt Electrolysis of Solid Oxides

机译:通过固体氧化物的熔盐电解,可生物相容的(α+β)-TiZr合金的相可调法制备

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摘要

Electrochemical reduction of a solid TiO2-ZrO2 mixture (molar ratio = 1: 1) to the TiZr alloys in a consolidated porous structure was studied by constant cell voltage electrolysis in molten CaCl2 at 900 °C. For the first time, and surprisingly, it was found that tuning the α- and β-phases in the TiZr alloys could be easily realized by controlling the electrolysis time or, specifically, the oxygen content in the alloys. Oxygen acted as a phase-transition inhibitor from the high-temperature β-TiZr to the low-temperature α-TiZr, leading to metastable β-TiZr or (α+β)-TiZr as the product at room temperature. However, if the oxygen content decreased to < 1100 ppm, only α-TiZr was collected, even when the electrolytic alloy was directly quenched in water. The consolidated porous (α+β)-TiZr alloys possessed elastic moduli in the range of 20-40 GPa, matching closely to that of natural bone (10-30 GPa). They also exhibited excellent corrosion resistance in the Ringer solution. These novel findings promise a simple, one-step, low-energy, and environmentally friendly electrochemical process for the production of β-phase containing TiZr alloys as medical implant materials without any added expensive and/or bio-incompatible elements.
机译:通过在900°C下在熔融的CaCl2中进行恒定的电解槽电压电解,研究了固结多孔结构中固体TiO2-ZrO2混合物(摩尔比= 1:1)向TiZr合金的电化学还原。令人惊讶的是,首次发现,通过控制电解时间或合金中的氧含量可以轻松实现TiZr合金中α和β相的调谐。氧气起着从高温β-TiZr到低温α-TiZr的相变抑制剂的作用,在室温下产生亚稳态的β-TiZr或(α+β)-TiZr。但是,如果将氧含量降低至<1100ppm,则即使将电解合金在水中直接淬火也仅收集到α-TiZr。固结的多孔(α+β)-TiZr合金的弹性模量在20-40 GPa的范围内,与天然骨的弹性模量(10-30 GPa)紧密匹配。它们在林格溶液中也表现出出色的耐腐蚀性。这些新颖的发现有望实现一种简单,一步,低能耗,环保的电化学工艺,用于生产含β相的TiZr合金作为医用植入材料,而无需添加任何昂贵的和/或生物不相容的元素。

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