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首页> 外文期刊>Materials science & engineering. C, Biomimetic and supramolecular systems >Mechanical properties and cyto-toxicity of new beta type titanium alloy with low melting points for dental applications
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Mechanical properties and cyto-toxicity of new beta type titanium alloy with low melting points for dental applications

机译:牙科用新型低熔点新型β型钛合金的机械性能和细胞毒性

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摘要

Beta stabilized new alloys such as Ti-29Nb-13Zr-2Cr, Ti-29Nb-15Zr-1.5Fe, Ti-29Nb-10Zr-0.5Si, Ti-29Nb-10Zr-0.5Cr-0.5Fe and Ti-29Nb-18Zr-2Cr-0.5Si have been developed for dental applications. These alloys were designed based on master alloy Ti-29Nb-13Ta-4.6Zr (TNTZ) for biomedical applications. In this research, high melting temperature element Ta was replaced with beta stabilizing elements such as Cr, Fe and Si to lower the melting temperature of the alloy. Their melting points, mechanical properties, surface reaction layers and cyto-toxicity were investigated in this study. Melting points of designed alloys fall by about 50 K to 370 K as compared with that of TNTZ, and Ti-29Nb-13Zr-2Cr has the lowest melting point of around 2050 K. Vickers hardness of the surface of each designed alloy cast into modified magnesia based investment material is in the range of 400 Hv to 500 Hv, which is lower than that of TNTZ (around 560 Hv). Balances of strength and ductility of cast Ti-29Nb-13Zr-2Cr, Ti-29Nb-15Zr-1.5Fe and Ti-29Nb-10Zr-0.5Cr-0.5Fe are nearly equal to that of cast TNTZ. Cell viability of each cast designed alloy is excellent.
机译:Beta稳定的新合金,例如Ti-29Nb-13Zr-2Cr,Ti-29Nb-15Zr-1.5Fe,Ti-29Nb-10Zr-0.5Si,Ti-29Nb-10Zr-0.5Cr-0.5Fe和Ti-29Nb-18Zr- 2Cr-0.5Si已开发用于牙科应用。这些合金是基于用于生物医学应用的中间合金Ti-29Nb-13Ta-4.6Zr(TNTZ)设计的。在这项研究中,高熔点元素Ta被Cr,Fe和Si等β稳定元素替代,以降低合金的熔融温度。研究了它们的熔点,机械性能,表面反应层和细胞毒性。与TNTZ相比,设计合金的熔点下降了约50 K至370 K,而Ti-29Nb-13Zr-2Cr的最低熔点约为2050K。铸造成改性合金的每种设计合金表面的维氏硬度氧化镁基的投资材料在400 Hv至500 Hv的范围内,低于TNTZ(约560 Hv)。 Ti-29Nb-13Zr-2Cr,Ti-29Nb-15Zr-1.5Fe和Ti-29Nb-10Zr-0.5Cr-0.5Fe铸件的强度和延展性平衡与TNTZ铸件几乎相等。每种铸造设计合金的细胞生存能力都非常出色。

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