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哈尔滨工业大学机电学院航空与宇航制造工程系
收稿日期:2008-05-21,
修回日期:2008-07-02,
网络出版日期:2008-09-25,
纸质出版日期:2008-09-25
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李灵,王扬. 水导激光微细加工中激光与水束光纤耦合技术[J]. 光学精密工程, 2008,16(9):1614-1621
Li Ling, Yang Wang. Laser and water-jet fiber coupling technology for water-jet guided laser micromachining[J]. Optics and precision engineering, 2008, 16(9): 1614-1621.
为了保证水导激光微细加工中会聚激光与水束光纤的耦合效果,建立了高精度的耦合对准系统,提出了新的耦合对准方法,研制了特殊结构的耦合装置。由于激光要经过空气层、玻璃层、水层进入水束光纤,因此根据计算结果,采用特殊方法来确定会聚透镜与水束光纤起始端(喷嘴孔)的距离;研究了激光在水束光纤中发生全反射的最大入射角;通过流体动力学仿真,设计了腔内流场分布均匀的耦合装置,保证了直径0.12mm的水束光纤的高耦合品质;研究了激光能量在水束光纤中的衰减,采用特定波长、脉冲能量的激光和特殊过滤的去离子水来减小激光能量在水束光纤中耦合的损耗率。试验结果表明,能生成导光长度超过100mm的水束光纤;采用该耦合技术能够在0.2mm厚的硅基晶片上以2mm/s速度切割出缝宽0.12mm的均匀窄缝,几乎无裂纹、无热影响区。该耦合技术能够很好满足水导激光微细加工的要求。
In order to guarantee the coupling effect of focused laser and water-jet fiber
accurate coupling alignment system was set up
special coupling alignment method was put forward
special coupling unit was designed. Before laser arriving at water-jet fiber
it passes through air
glasses and water
so based on calculating result
a special adjustment method was used to determine the distance between the focus lens and the nozzle hole. The max angle of incidence of laser was researched for full reflection. After fluid simulation
a coupling unit was designed. It makes the fluid field in the chamber symmetry and can form high quality water-jet fiber which diameter is 0.12mm. The attenuation of laser energy in water-jet fiber was investigated. Applying appropriate laser wavelength
pulse energy and filtered and deionized water
energy attenuation in fiber was reduced. Experimental results indicate that: 100mm long water-jet fiber could be formed; 0.12mm wide slot can be cut in 0.2mm thick Si wafer at the speed of 2mm/s
nearly no crack
no heat affected zone was formed. Applying this coupling technology
perfect water-jet guided laser micromachining can be achieved.
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