[1] Hao H S, Fu P, Gong L et al[J]. Recent achievement in research for electronic packaging ceramic substrate materials Ceramics, 2007, 24-27.
[2] Li T T, Peng C Q, Wang R C et al. Research progress in ceramic substrate material for electronic packaging[J]. The Chinese Journal of Nonferrous Metals, 20, 1365-1374(2010).
[3] Tang T, Zhang X, Xu Z Z. Research progress and trends of electronic packaging materials[J]. Journal of Nanjing University of Technology(Natural Science Edition), 32, 105-110(2010).
[4] Tian M B, Liang T X, He W. Electronic packaging technologies and materials[J]. Semiconductor Information, 32, 42-61(1995).
[5] Fu Y P, Tan K, Tian M B. Recent development of electronic packaging technology[J]. Semiconductor Technology, 34, 113-118(2009).
[6] Zhang J L. Applications of laser processing in microelectronics packaging[J]. Printed Circuit Information, 9, 33-38(2001).
[8] Liu Z, Zhang H, Yan Y et al. Corrosion of sintered SiC ceramics in mixed acid solution: temperature and time dependences[J]. Corrosion Engineering, Science and Technology, 52, 38-45(2017).
[9] Thoe T B, Aspinwall D K. Wise M L H. Review on ultrasonic machining[J]. International Journal of Machine Tools and Manufacture, 38, 239-255(1998).
[10] Li H F, Li J, Wen Y et al. EDM for ceramics and its research status[J]. Journal of Jinan University(Science and Technology Edition), 22, 178-182(2008).
[11] Yu W, Wang X C, Gong S L et al[J]. Rapid scanning electron beam processing technology and its potential application in aviation manufacturing industry Aeronautical Manufacturing Technology, 2010, 44-47.
[12] Feng Y X. A study on milling ceramics with abrasive waterjet technology[D]. Jinan: Shandong University(2007).
[13] Mishra S, Yadava V. Laser beam micromachining (LBMM): a review[J]. Optics and Lasers in Engineering, 73, 89-122(2015).
[14] Wang H J, Lin H, Wang C Y et al. Laser drilling of structural ceramics: a review[J]. Journal of the European Ceramic Society, 37, 1157-1173(2017).
[15] Zhao W Q, Wang W J, Mei X S et al. Investigations of morphological features of picosecond dual-wavelength laser ablation of stainless steel[J]. Optics & Laser Technology, 58, 94-99(2014).
[16] Duan W Q, Wang K D, Dong X et al. Study on machining of high-quality micro-holes by laser trepan drilling[J]. Journal of Xi'an Jiaotong University, 49, 95-103, 112(2015).
[17] Liu B, Jiang G D, Wang W J et al. Porous microstructures induced by picosecond laser scanning irradiation on stainless steel surface[J]. Optics and Lasers in Engineering, 78, 55-63(2016).
[18] Zhai Z Y, Wang W J, Mei X S et al. Effect of temporal control of air/water environment on laser drilling of nickel-based alloy with thermal barrier coatings[J]. The International Journal of Advanced Manufacturing Technology, 97, 3395-3405(2018).
[19] Zhao W Q, Wang W J, Li B Q et al. Wavelength effect on hole shapes and morphology evolution during ablation by picosecond laser pulses[J]. Optics & Laser Technology, 84, 79-86(2016).
[20] Ahmed N, Darwish S, Alahmari A M. Laser ablation and laser-hybrid ablation processes: a review[J]. Materials and Manufacturing Processes, 31, 1121-1142(2016).
[21] Adelmann B, Hellmann R. Rapid micro hole laser drilling in ceramic substrates using single mode fiber laser[J]. Journal of Materials Processing Technology, 221, 80-86(2015).
[22] Mendes M, Sarrafi R, Schoenly J et al. Fiber laser micromachining in high-volume manufacturing[J]. Industrial Laser Solutions, 30, 23-27(2015).
[23] Gautam G D, Pandey A K. Pulsed Nd∶YAG laser beam drilling: a review[J]. Optics & Laser Technology, 100, 183-215(2018).
[24] Sun L H. The research of laser drilling on ceramics[D]. Changchun: Changchun University of Science and Technology(2007).
[25] Semak V, Matsunawa A. The role of recoil pressure in energy balance during laser materials processing[J]. Journal of Physics D: Applied Physics, 30, 2541-2552(1997).
[26] Quintero F, Varas F, Pou J et al. Theoretical analysis of material removal mechanisms in pulsed laser fusion cutting of ceramics[J]. Journal of Physics D: Applied Physics, 38, 655-666(2005).
[27] Vora H D, Santhanakrishnan S, Harimkar S P et al. One-dimensional multipulse laser machining of structural alumina: evolution of surface topography[J]. The International Journal of Advanced Manufacturing Technology, 68, 69-83(2013).
[28] Harimkar S P, Samant A N, Dahotre N B. Temporally evolved recoil pressure driven melt infiltration during laser surface modifications of porous alumina ceramic[J]. Journal of Applied Physics, 101, 054911(2007).
[29] Samant A N, Dahotre N B. Computational predictions in single-dimensional laser machining of alumina[J]. International Journal of Machine Tools and Manufacture, 48, 1345-1353(2008).
[31] Ren L, Wang H L, Tang Y J et al. The impact of laser drilling on insulating strength of AlN ceramics[J]. Cryogenics and Superconductivity, 34, 451-455(2006).
[33] Zhang Y J, Fang M G. The research of the ceramic drilling by Nd∶YAG laser[J]. Laser & Infrared, 31, 161-162(2001).
[34] Kacar E, Mutlu M, Akman E et al. Characterization of the drilling alumina ceramic using Nd∶YAG pulsed laser[J]. Journal of Materials Processing Technology, 209, 2008-2014(2009).
[36] Hanon M M, Akman E, Genc Oztoprak B et al. Experimental and theoretical investigation of the drilling of alumina ceramic using Nd∶YAG pulsed laser[J]. Optics & Laser Technology, 44, 913-922(2012).
[37] Raman S, Lumpp J K. Laser machining and metallization of VIAS in aluminum nitride[J]. MRS Proceedings, 390, 269(1995).
[38] Zhang W. Numerical simulation and experimental study of pulsed laser drilling on nickel-based superalloy[D]. Zhenjiang: Jiangsu University(2016).
[39] Iwatani N. DoanH D, Fushinobu K. Optimization of near-infrared laser drilling of silicon carbide under water[J]. International Journal of Heat and Mass Transfer, 71, 515-520(2014).
[40] Samant A, Dahotre N. Ab initio physical analysis of single dimensional laser machining of silicon nitride[J]. Advanced Engineering Materials, 10, 978-981(2008).
[41] LaudeL, OgeretC, JadinA, et al., 1998, 127/128/129: 848- 851.
[42] Bharatish A. Narasimha Murthy H N, Anand B, et al. Characterization of hole circularity and heat affected zone in pulsed CO2 laser drilling of alumina ceramics[J]. Optics & Laser Technology, 53, 22-32(2013).
[43] Xie C Y, Lu X Z, Xie H H et al. The impact of laser drilling on AlN ceramics. [C]∥2011 IEEE International Conference on Information and Automation, June 6-8, 2011. Shenzhen, China. New York: IEEE, 882-885(2011).
[44] Yu J, Zeng Z J, Zhu S G et al. Research on advantages of UV laser in fine processing technology[J]. Infrared, 29, 9-13, 40(2008).
[46] Ho C Y, Lu J K. A closed form solution for laser drilling of silicon nitride and alumina ceramics[J]. Journal of Materials Processing Technology, 140, 260-263(2003).
[47] Atanasov P A, Eugenieva E D, Nedialkov N N. Laser drilling of silicon nitride and alumina ceramics: a numerical and experimental study[J]. Journal of Applied Physics, 89, 2013-2016(2001).
[48] Nedialkov N, Sawczak M, Jendrzejewski R et al. Analysis of surface and material modifications caused by laser drilling of AlN ceramics[J]. Applied Surface Science, 254, 893-897(2007).
[49] Nikolay N, Atanasov P A. M. S, et al. Laser drilling of AIN ceramics using nanosecond pulses[J]. Proceedings of SPIE, 5777, 850-853(2005).
[50] Mutlu M. Effects of the laser wavelength on drilling process of ceramic using Nd∶YAG laser[J]. Journal of Laser Micro, 4, 84-88(2009).
[51] Klimentov S M, Garnov S V, Kononenko T V et al. High rate deep channel ablative formation by picosecond-nanosecond combined laser pulses[J]. Applied Physics A: Materials Science & Processing, 69, S633-S636(1999).
[53] Jiang L, Wang A D, Li B et al. Electrons dynamics control by shaping femtosecond laser pulses in micro/nanofabrication: modeling, method, measurement and application[J]. Light: Science & Applications, 7, 17134(2018).
[54] Wang Z C. The experimental and numerical simulation study on mass migration during the combined pulsed laser drilling[D]. Nanjing: Nanjing University of Science and Technology(2017).
[55] Zhai Z Y, Wang W J, Mei X S et al. Influence of plasma shock wave on the morphology of laser drilling in different environments[J]. Optics Communications, 390, 49-56(2017).
[56] Yuan Z Z. Design of ultrasonic vibration and jet-assisted laser composite machining system[D]. Hefei: Anhui Jianzhu University(2018).