首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Fatigue endurance of Ti-6Al-4V alloy with electro-eroded surface for improved bone in-growth.
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Fatigue endurance of Ti-6Al-4V alloy with electro-eroded surface for improved bone in-growth.

机译:具有电腐蚀表面的Ti-6Al-4V合金的疲劳强度,可改善骨骼的向内生长。

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摘要

Ti-6Al-4V hour-glass shaped rotating beam specimens with duplex microstructure were processed by electric discharge machining (EDM). A comparatively high peak current of 29A was utilized in order to increase surface roughness for improved osteointegration. High cycle fatigue (HCF) tests were performed in rotating beam loading (R=-1) on these EDM specimens and results were compared with electrolytically polished specimens serving as reference. As expected, the HCF performance of EDM specimens was inferior to the electrolytically polished specimens. A detailed study of fatigue crack nucleation and microcrack growth was carried out on failed specimens by SEM. The poor HCF strength of EDM specimens is explained by early crack nucleation due to the high notch sensitivity of Ti-6Al-4V. In addition, process-induced residual tensile stresses and microstructural effects may also account for the drastic loss in HCF performance relative to the electropolished baseline.
机译:通过放电加工(EDM)对具有双相显微组织的Ti-6Al-4V沙漏形旋转梁样品进行了处理。为了增加表面粗糙度以改善骨整合,使用了较高的29A峰值电流。对这些EDM样品在旋转光束载荷(R = -1)中进行了高周疲劳(HCF)测试,并将结果与​​电解抛光的样品作了比较。不出所料,EDM样品的HCF性能不如电解抛光的样品。通过扫描电镜对失效的试样进行了疲劳裂纹成核和微裂纹生长的详细研究。由于Ti-6Al-4V的高缺口敏感性,早期的裂纹形核可以解释EDM样品的HCF强度差。此外,相对于电抛光基准线,过程引起的残余拉伸应力和微观结构效应也可能导致HCF性能急剧下降。

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