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Alloy design and property evaluation of new Ti-Cr-Nb alloys

机译:新型Ti-Cr-Nb合金的合金设计和性能评估

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摘要

Titanium and its alloys are extensively used as biomedical implant materials because their good mechan ical properties are accompanied by an excellent biocompatibility and corrosion resistance. However, the most widely used Ti alloy for medical implants, Ti-6A1-4V, does not satisfy a major requirements about non-toxicity and low elastic modulus close to that of cortical bone. Therefore, alternative titanium-based biomedical alloys with other alloying elements are currently the subject of intensive study. This work was conducted to develop new as-cast Ti-based alloys with biocompatible elements, i.e. chromium and niobium addition and low elastic modulus. For this purpose six Ti-Cr-Nb alloys were pre pared and their properties were evaluated. The obtained results indicated that experimental alloys have a/p microstructure. Among them, alloys Ti7oCrloNb2o, Ti7OCr2oNblo and Ti6OCr2oNb2O have very low elastic modulus (17-50 GPa), high strength (1580-1700 MPa) and plasticity (75.0-83.5%) as well as an excellent corrosion resistance. According to the obtained results it could be considered that new biomedical alloys with adequate properties for biomedical applications were developed.
机译:钛及其合金被广泛用作生物医学植入物材料,因为它们的良好机械性能伴随着出色的生物相容性和耐腐蚀性。但是,最广泛用于医疗植入物的Ti合金Ti-6A1-4V不能满足无毒和低弹性模量(接近皮质骨)的主要要求。因此,具有其他合金元素的替代钛基生物医学合金目前是深入研究的主题。进行这项工作是为了开发具有生物相容性元素(即添加铬和铌和低弹性模量)的新型铸态Ti基合金。为此,制备了六种Ti-Cr-Nb合金,并对其性能进行了评估。所得结果表明实验合金具有a / p微观结构。其中,Ti7oCrloNb2o,Ti7OCr2oNblo和Ti6OCr2oNb2O合金具有极低的弹性模量(17-50 GPa),高强度(1580-1700 MPa)和可塑性(75.0-83.5%)以及优异的耐腐蚀性。根据获得的结果,可以认为开发了具有足够生物医学应用性能的新型生物医学合金。

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  • 来源
    《Materials & design》 |2012年第1期|p.26-30|共5页
  • 作者单位

    University of Zagreb, Faculty of Metallurgy, Department of Physical Metallurgy, Aleja narodnih heroja 3, 44103 Sisak, Croatia;

    University of Zagreb, Faculty of Metallurgy, Department of Physical Metallurgy, Aleja narodnih heroja 3, 44103 Sisak, Croatia;

    University of Zagreb, Faculty of Metallurgy, Department of Physical Metallurgy, Aleja narodnih heroja 3, 44103 Sisak, Croatia;

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