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Effect of Ta, Nb Content and Sintering Temperature on the Microstructure, Mechanical Properties and Sinterability of Ti-Nb-Ta Alloys

机译:Ta,Nb含量和烧结温度对Ti-Nb-Ta合金微观结构,机械性能和烧结性的影响

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Various ternary and quaternary titanium alloys have been developed in the recent years to improve long term performance of biomedical implants. These alloying elements have difficult diffusion due to their refractory nature. The aim of this investigation is an attempt to study the effect of control factors on the response variables by using Design of Experiments (DOE) methodology. A combined technique using a DOE matrix with three factors, two levels for each factor and analysis of variance was performed to investigate the contribution and effects on the flexural strength and Young's Modulus of the mentioned titanium alloys. The structural, mechanical and microstructure test were performed to characterize the Ti-Nb-Ta alloys. The results revealed that the control factors had significant effect on how to obtain Beta Titanium alloys. The studied alloys present lower Young's Modulus than Ti CP and Ti-6Al-4V, with good mechanical properties, being interesting as biomaterials.
机译:近年来,各种三元和季钛合金已开发,以提高生物医学植入物的长期性能。由于其难熔性,这些合金元素具有困难的扩散。该调查的目的是通过使用实验(DOE)方法的设计来研究控制因素对响应变量对响应变量的影响。使用具有三个因素的DOE基质的组合技术,进行每个因素的两个水平和方差分析,以研究提及钛合金对弯曲强度和杨氏模量的贡献和影响。进行结构,机械和微观结构试验以表征Ti-Nb-Ta合金。结果表明,对照因素对如何获得β钛合金具有显着影响。研究的合金具有比Ti Cp和Ti-6Al-4V的较低的杨氏模量,具有良好的机械性能,是有趣的生物材料。

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