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Low-Cost α+β PM Ti Alloys by Fe/Ni Addition to Pure Ti

机译:Fe / Ni加纯Ti制成的低成本α+βPM Ti合金

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摘要

Ti and its alloys can deliver a very interesting combination of properties such as low density, high strength, corrosion resistance and biocompatibility and, therefore, are very flexible materials which can be adapted to various applications. Nonetheless, Ti and Ti alloys are only employed in critical applications (i.e. aeronautical and aerospace, nautical, medical, etc.) or in products for leisure. In both of these cases the higher fabrication costs of Ti in comparison to its competitors (i.e. steel and aluminium) is not the limiting factor as it is for many structural applications, especially for mass production (i.e. automotive sector). The use of creative techniques and the decrement of the starting price of Ti have been identified as the two main routes to follow to decrease the fabrication costs. In this study, the production of low-cost α+β Ti alloys has been assessed by combining the addition of cheap alloying elements (in particular a Fe/Ni powder) with the classical powder metallurgy route (pressing and sintering). Physical and mechanical properties as well as microstructural analysis of these low-cost alloys were measured and correlated to the processing parameters used to sinter them. It is found that the low-cost Ti alloys show similar behaviour to conventional α+β Ti alloys and, thus, have the potential to be used for non-critical applications.
机译:Ti及其合金可以提供非常有趣的特性组合,例如低密度,高强度,耐腐蚀性和生物相容性,因此是非常柔软的材料,可以适应各种应用。但是,Ti和Ti合金仅用于关键应用(即航空航天,航海,医疗等)或用于休闲产品。在这两种情况下,Ti与其竞争对手(即钢和铝)相比更高的制造成本不是限制因素,因为它在许多结构应用中,尤其是在批量生产(即汽车领域)中。创造性技术的使用和Ti起始价格的降低已被确定为降低制造成本的两条主要途径。在这项研究中,通过将廉价的合金元素(特别是Fe / Ni粉末)与经典的粉末冶金方法(压制和烧结)相结合,评估了低成本α+βTi合金的生产。测量了这些低成本合金的物理和机械性能以及微观结构分析,并将其与用于烧结它们的加工参数相关联。发现低成本的Ti合金表现出与常规的α+βTi合金相似的行为,因此具有用于非关键应用的潜力。

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