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On the fatigue behavior of medical Ti6Al4V roughened by grit blasting and abrasiveless waterjet peening

机译:添加到阅览室阅读软件下载与喷砂无磨料水喷丸强化医用Ti6al4V的疲劳性能相似的文献

摘要

Flat fatigue specimens of biomedical Ti6Al4V ELI alloy were surface-processed by high pressure waterjet peening (WJP) without abrasive particles using moderate to severe conditions that yield roughness values in the range of those obtained by commercial grit blasting (BL) with alumina particles. Fatigue behavior of WJP and BL specimens was characterized under cyclical uniaxial tension tests (R=0.1). The emphasis was put on a comparative analysis of the surface and subsurface induced effects and in their relevance on fatigue behavior. Within the experimental setup of this investigation it resulted that blasting with alumina particles was less harmful for fatigue resistance than abrasiveless WJP. BL specimens resulted in higher subsurface hardening and compressive residual stresses. Specimens treated with more severe WJP parameters presented much higher mass loss and lower compressive residual stresses. From the analysis performed in this work, it follows that, in addition to roughness, waviness emerges as another important topographic parameter to be taken into account to try to predict fatigue behavior. It is envisaged that optimization of WJP parameters with the aim of reducing waviness and mass loss should lead to an improvement of fatigue resistance
机译:生物医学Ti6Al4V ELI合金的平面疲劳试样在不带磨料颗粒的情况下,通过高压水射流喷丸(WJP)进行了表面处理,使用中度到重度条件,其粗糙度值在用氧化铝颗粒进行商业喷砂(BL)所获得的范围内。 WJP和BL试样的疲劳行为在周期性单轴拉伸试验下表征(R = 0.1)。重点放在对表面和地下诱导效应及其与疲劳行为的相关性进行比较分析。在该研究的实验装置内,结果表明,与无磨料的WJP相比,用氧化铝颗粒喷砂对疲劳强度的危害较小。 BL试样导致较高的地下硬化和压缩残余应力。用更严格的WJP参数处理的试样呈现出更高的质量损失和更低的压缩残余应力。从这项工作中进行的分析可以得出,除粗糙度外,波纹度是另一个重要的形貌参数,可用来预测疲劳行为。可以设想,以降低波纹度和质量损失为目标的WJP参数优化将导致抗疲劳性的提高。

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