首页> 外文期刊>Journal of Materials Research >Fabrication of Ni-free Ti-based bulk-metallic glassy alloy having potential for application as biomaterial, and investigation of its mechanical properties, corrosion, and crystallization behavior
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Fabrication of Ni-free Ti-based bulk-metallic glassy alloy having potential for application as biomaterial, and investigation of its mechanical properties, corrosion, and crystallization behavior

机译:具有作为生物材料应用潜力的无镍钛基块状金属玻璃合金的制备及其机械性能,腐蚀和结晶行为的研究

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摘要

A new Ti-based bulk-metallic glassy (BMG) alloy without Ni was developed in various forms such as melt-spun ribbon and cylindrical rods. Ti metal and Ti-based alloys are well known as biomaterials because Ti has good biocompatibility with the human body. We examined mechanical and chemical properties of a newly developed Ti-based BMG alloy in comparison with pure Ti metal and Ti-6Al-4V alloy, which are used for biomaterials. The new Ti-based BMG (Ti_(45)Zr_(10)Pd_(10)Cu_(31)Sn_4) alloy does not contain Ni, Al, and Be elements, which are known to be toxic. The Ti_(45)Zr_(10)Pd_(10)Cu_(31)Sn_4 BMG alloy rod with a diameter of 3 mm, which is produced by copper mold casting, exhibits a compressive strength of 1970 MPa and a Young's modulus of 95 GPa. In addition, the Ti_(45)Zr_(10)Pd_(10)Cu_(31)Sn_4 BMG alloy shows a supercooled liquid region of 56 K and a reduced glass-transition temperature, T_(rg)( = T_g/T_1), of 0.56. The high thermal stability of supercooled liquid has enabled the fabrication of a cylindrical rod specimen with a diameter of 4 mm. This alloy exhibits precipitation of a primary nanoscale icosahedral phase upon devitrification followed by the formation of a metastable unidentified phase. Ti_2Cu and Ti_3Sn are stable phases formed in this alloy. The Ti_(45)Zr_(10)Pd_(10)Cu_(31)Sn_4 BMG alloy has a high corrosion resistance and is passivated at a lower passive current density of approximately 10~(-2) A/m~2 compared to those of pure titanium and the Ti-6Al-4V alloy in 1 mass% lactic acid and phosphate-buffered saline solutions at 310 K.
机译:一种新的不含镍的钛基块状金属玻璃(BMG)合金以各种形式开发,例如熔纺带和圆柱棒。钛金属和钛基合金是众所周知的生物材料,因为钛与人体具有良好的生物相容性。与用于生物材料的纯Ti金属和Ti-6Al-4V合金相比,我们研究了新开发的Ti基BMG合金的机械和化学性能。新的Ti基BMG(Ti_(45)Zr_(10)Pd_(10)Cu_(31)Sn_4)合金不含已知有毒的Ni,Al和Be元素。通过铜铸模生产的直径为3 mm的Ti_(45)Zr_(10)Pd_(10)Cu_(31)Sn_4 BMG合金棒具有1970 MPa的抗压强度和95 GPa的杨氏模量。此外,Ti_(45)Zr_(10)Pd_(10)Cu_(31)Sn_4 BMG合金显示56 K的过冷液体区域和降低的玻璃化转变温度T_(rg)(= T_g / T_1),为0.56。过冷液体的高热稳定性使得能够制造直径为4 mm的圆柱形棒状样品。该合金在失透后表现出主要的纳米级二十面体相的沉淀,随后形成亚稳态的未鉴定相。 Ti_2Cu和Ti_3Sn是在该合金中形成的稳定相。 Ti_(45)Zr_(10)Pd_(10)Cu_(31)Sn_4 BMG合金具有很高的耐蚀性,并且在与之相比较低的大约10〜(-2)A / m〜2的无源电流密度下被钝化。在310 K下在1质量%的乳酸和磷酸盐缓冲盐溶液中制备纯钛和Ti-6Al-4V合金。

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