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首页> 外文期刊>Materials Science and Engineering >Effects of surface laser treatments on microstructure, tension, and fatigue behavior of AISI 316LVM biomedical wires
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Effects of surface laser treatments on microstructure, tension, and fatigue behavior of AISI 316LVM biomedical wires

机译:表面激光处理对AISI 316LVM生物医学线的微观结构,张力和疲劳行为的影响

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Recent developments in minimally invasive surgical techniques have led to a surge in advancing alternative manufacturing routes. In order to meet the functional needs of such small devices as cardiovascular stents, and guide wires, the use of new materials and delicate geometries has increased creating a new challenge for manufacturing and machining. In this work, two sets of laser parameters leading to different laser power output were employed to study the effects of systematic changes in microstructure and mechanical characteristics of AISI 316LVM biomedical grade wires. Uniaxial tension and cyclic strain-controlled fatigue with the use of flex bending machines were used in order to evaluate the mechanical properties. Surface quality, heat affected zone (HAZ), and subsequent mechanical response were also investigated. Improvements in the fatigue behavior of laser-treated wires were obtained but depended on the choice of laser parameters. Low power Nd:YAG laser-treated AISI 316LVM annealed wires exhibited better fatigue performance in both high cycle fatigue and low cycle fatigue compared to the annealed AISI 316LVM wires. In contrast, high power Nd:YAG laser-treated annealed wires exhibited poorer fatigue performance in both high cycle and low cycle fatigue. Nd:YA6 laser-treated AISI 316LVM hard wires exhibited poorer fatigue performance in both high cycle fatigue and low cycle fatigue compared to the AISI 316LVM hard wires. The effects of laser processing conditions on the microstructural features responsible for these changes in fatigue behavior are discussed.
机译:微创外科技术的最新发展导致替代制造路线的激增。为了满足诸如心血管支架和导丝之类的小型设备的功能需求,对新材料和精细几何形状的使用日益增加,这对制造和加工提出了新的挑战。在这项工作中,使用两组导致不同激光功率输出的激光参数来研究AISI 316LVM生物医学级焊丝的微观结构和机械特性的系统变化的影响。为了评估机械性能,使用了单向张力和使用弯曲弯曲机控制循环应变的疲劳。还研究了表面质量,热影响区(HAZ)和后续的机械响应。获得了激光处理过的线材的疲劳性能的改善,但取决于激光参数的选择。与AISI 316LVM退火线相比,低功率Nd:YAG激光处理的AISI 316LVM退火线在高周疲劳和低周疲劳方面均表现出更好的疲劳性能。相反,经高功率Nd:YAG激光处理的退火线在高周疲劳和低周疲劳中均表现出较差的疲劳性能。与AISI 316LVM硬线相比,Nd:YA6激光处理过的AISI 316LVM硬线在高周疲劳和低周疲劳方面均表现出较差的疲劳性能。讨论了激光加工条件对造成这些疲劳行为变化的微观结构的影响。

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