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Fatigue Characteristics of Low Cost ft Titanium Alloys for Healthcare and Medical Applications

机译:用于医疗保健和医疗应用的低成本ft钛合金的疲劳特性

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Two new low cost beta titanium alloys, Ti-4.3Fe-7.1Cr (TFC alloy) and Ti-4.3Fe-7.1Cr-3.0Al (TFCA alloy) for healthcare and medical applications have been recently developed. As for such applications, the alloys are necessary to have high fatigue performance. The aim of this study is. therefore, to investigate fatigue characteristics of the alloys subjected to solution treatment above (i transus. Fatigue tests were carried out at a stress ratio, R, of 0.1 and a frequency of 10 Hz. Fatigue limit of the solution treated TFC alloy is higher than that of the solution treated TFCA alloy, but both are higher than that of the existing biometallic materials. Fatigue strength of the TFC alloy is almost independent of solution treatment temperature, while, fatigue strength of the TFCA alloy strongly depends on solution treatment temperature, especially, in the low cycle fatigue life (LCF) region. The fatigue ratio and biofunctionality of these new alloys are much higher than those of the existing biometallic materials. In general, a crack initiates from the surface in the LCF region and from subsurface (internal) in the high cycle fatigue life (HCF) region for the TFC alloy, while, in the case of the TFCA alloy, a crack tends to initiate from the subsurface in both LCF and HCF regions. The internal crack initiation sites aie found to be the aiea with low f! phase stability in the LCF region and at the area with high stability of fS phase in the HCF region. The relam el) low fatigue stiength of TFCA alloy is associated with the addition of Al that leads to precipitate a phase in which both crack initiation and facet formation ate easier to occur.
机译:最近已经开发出两种新型的低成本β钛合金,分别是用于医疗保健和医疗应用的Ti-4.3Fe-7.1Cr(TFC合金)和Ti-4.3Fe-7.1Cr-3.0Al(TFCA合金)。对于这种应用,合金必须具有高疲劳性能。这项研究的目的是。因此,为了研究经过上述固溶处理的合金的疲劳特性(i transus。疲劳试验是在应力比R为0.1和频率为10 Hz的情况下进行的。固溶处理的TFC合金的疲劳极限高于固溶处理后的TFCA合金的疲劳强度几乎与固溶处理温度无关,而TFCA合金的疲劳强度在很大程度上取决于固溶处理温度,尤其是固溶处理温度。在低循环疲劳寿命(LCF)区域。这些新合金的疲劳比和生物功能远远高于现有的生物金属材料。通常,裂纹从LCF区域的表面和亚表面(内部)开始)在TFC合金的高循环疲劳寿命(HCF)区域中,而在TFCA合金的情况下,LCF和HC都倾向于从地下开始产生裂纹F地区。发现内部裂纹萌生点aie是f!低的aiea。 LCF区域和HCF区域中fS相具有高稳定性的区域的相稳定性。 TFCA合金的低疲劳强度与Al的添加有关,Al导致析出相,在该相中,裂纹萌生和刻面形成都容易发生。

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