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High Repetition Laser Shock Peening on Magnesium Based Biodegradable Alloys

机译:镁基可生物降解合金的高重复激光冲击喷丸

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New generation of metallic implants through capability of absorption within biological environment has been introduced in recent researches. Although, magnesium implant with proper biocompatibility has been proposed as biodegradable metallic implant, its insufficient mechanical attributes must be enhanced for implantation within human body. Laser shock peening has been successfully conducted for modification of magnesium implant. Overall, laser shock peening can be performed by low repetition rate (less than 30 Hz) and high power pulsed laser which needs expensive devices. In order to laser shock peen magnesium alloys that have a lower mechanical strength, it is better to use high repetition pulsed laser which is much faster and economical. Recently, high repetition rate laser shock peening of magnesium has been theoretically found feasible in previous research of authors. In order to validate occurrence of high repetition rate laser shock peening, changes in surface topography and hardness are evaluated on the magnesium specimens.
机译:在最近的研究中已经引入了通过在生物环境中吸收的能力的新一代金属植入物。尽管已经提出了具有适当生物相容性的镁植入物作为可生物降解的金属植入物,但是必须增强其不足的机械特性以用于植入人体内。已成功进行了激光冲击喷丸处理,以改良镁植入物。总体而言,可以通过低重复频率(小于30 Hz)和需要昂贵设备的高功率脉冲激光器来执行激光冲击喷丸处理。为了对具有较低机械强度的尖锐镁合金进行激光冲击,最好使用更快,更经济的高重复脉冲激光。最近,在作者先前的研究中,理论上已经发现镁的高重复频率激光冲击喷丸是可行的。为了验证高重复频率激光冲击喷丸的发生,在镁试样上评估了表面形貌和硬度的变化。

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