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Fatigue Performance of Additively Manufactured Ti-6Al-4V: Surface Condition vs. Internal Defects

机译:疲劳性能含有加剧制造的Ti-6Al-4V:表面条件与内部缺陷

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摘要

Grade 23 Ti-6Al-4V additively manufactured by selective electron beam melting (SEBM) has found important clinical applications as bone implants since 2007. In general, an as-built rough surface is desirable for bone ingrowth, but at the expense of fatigue performance. This study assesses the relative influence of the surface condition and internal defects on the fatigue performance of SEBM Ti-6Al-4V. Chemical etching, standard machining, and precision machining are used to improve the as-built surface condition, while a significant two-step hot isostatic pressing (HIP) treatment is employed to heal internal defects. Detailed assessment of the fatigue performance of these samples with different surface and internal conditions leads to a range of informative observations. The fatigue results are superimposed on a well-established fatigue diagram for Ti-6Al-4V and further presented in a fatigue-processing condition diagram. It is shown that HIP is necessary only when the surface finish is sufficient and when there are no surface defects. Improving the surface condition is far more important than applying post-SEBM HIP. For example, as-built samples with machined surfaces of R-a = 0.05 mu m and R-z = 0.45 mu m without HIP exhibited much better fatigue performance than as-built samples with machined surfaces of R-a = 0.13 mu m and R-z = 0.95 mu m plus HIP. This study provides a quantitative basis for the design and application of SEBM Ti-6Al-4V as bone implants in terms of fatigue performance, as well as for other applications.
机译:通过选择性电子束熔化(SEBM)的23级TI-6AL-4V通过2007年以来,通过选择性电子束熔化(SEBM)加剧制造了重要的临床应用。一般来说,对于骨骼发起,理想的粗糙表面是理想的,但以疲劳性能为代价。该研究评估了表面状况和内部缺陷对SEBM Ti-6Al-4V的疲劳性能的相对影响。化学蚀刻,标准加工和精密加工用于改善竣工表面状况,而采用显着的两步热等静压(髋级)处理来治愈内部缺陷。详细评估这些样品的疲劳性能具有不同的表面和内部条件导致一系列信息性观察。疲劳结果叠加在为TI-6AL-4V的良好疲劳图上叠加在疲劳处理条件图中进一步呈现。结果表明,只有在表面光洁度足够且没有表面缺陷时,才需要臀部。改善表面条件比应用后SEBM HIP更重要。例如,具有Ra =0.05μm和Rz =0.45μm的机械化表面而没有髋关节的疲劳性能比用Ra = 0.13 mu m和Rz =0.95μm加上的机加工表面表现出更好的疲劳性能。时髦的。本研究为在疲劳性能方面的骨植入物以及其他应用提供了SEBM TI-6AL-4V作为骨植入的定量依据。

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