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Evolution of Laser Ablation Plume Measured by Self-Mixing Interferometry

机译:通过自混合干涉测量测量激光消融羽流的演变

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Laser ablation is the basis of most of the laser micromachining processes. Depending on the pulse duration, wavelength, intensity of the beam, as well as the material type, material removal may occur in the form of vaporization, melt expulsion, or direct sublimation. Most commonly material removal is accompanied by a plume formation. The characteristics of the plume can be analyzed to assess the ablation performance. Non-invasive optical methods for the purpose can be further exploited in industrial laser micromachining applications, if opportunely designed and implemented. This work uses an interferometric approach to investigate the optical path changes induced by the ablation plume formed during the laser percussion drilling of different metallic and ceramic materials. A self-mixing interferometer is installed inline to a laser micromachining setup composed of a ns-pulsed green fiber laser.
机译:激光消融是大多数激光微机械加工过程的基础。根据脉冲持续时间,波长,光束的强度以及材料类型,可以以蒸发,熔体排出或直接升华的形式发生材料去除。最常见的材料去除伴随着羽流形成。可以分析羽流的特性以评估消融性能。如果机会设计和实施,可以在工业激光微机械加工应用中进一步利用非侵入式光学方法。该工作使用干涉方法来研究由不同金属和陶瓷材料的激光打击钻孔期间形成的消融羽流引起的光路改变。自混合干涉仪安装到由NS脉冲绿色光纤激光器组成的激光微机械设置中。

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