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Alternative approach for cavitation damage study utilizing repetitive laser pulses

机译:利用重复激光脉冲研究气蚀损伤的另一种方法

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摘要

Cavitation is a common phenomenon in fluid systems that can lead to dramatic degradation of solid materials surface in contact with the cavitating media. Study of cavitation damage has great significance in many engineering fields. Current techniques for cavitation damage study either require large scale equipments or tend to introduce damages from other mechanisms. In this project, we utilized the cavitation phenomenon induced by laser optical breakdown and developed a prototype apparatus for cavitation damage study. In our approach, cavitation was generated by the repetitive pressure waves induced by high-power laser pulses. As proof of principal study, stainless steel and aluminum samples were tested using the novel apparatus. Surface characterization via scanning electron microscopy revealed damages such as indentation and surface pitting, which were similar to those reported in the literature using other state-of-the-art techniques. These preliminary results demonstrated the new device was capable of generating cavitation damages and could be used as an alternative method for cavitation damage study.
机译:空化是流体系统中的常见现象,可导致与空化介质接触的固体材料表面急剧降解。空化损伤的研究在许多工程领域具有重要意义。目前用于气蚀损伤研究的技术要么需要大型设备,要么倾向于从其他机制引入损伤。在该项目中,我们利用了激光击穿引起的气蚀现象,并开发了用于气蚀损伤研究的原型设备。在我们的方法中,由高功率激光脉冲引起的重复压力波产生了气蚀现象。作为主要研究的证明,使用该新型仪器测试了不锈钢和铝样品。通过扫描电子显微镜进行的表面表征揭示了诸如压痕和表面点蚀之类的损害,这与使用其他最新技术的文献中报道的损害相似。这些初步结果表明,该新设备能够产生气蚀损伤,并且可以用作研究气蚀损伤的替代方法。

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