Chinese Journal of Lasers, Volume. 50, Issue 16, 1602209(2023)
Surface Quality of Silicon Carbide Ceramics Polished by Coupled Laser Based on Bidirectional Spot Overlap Ratio Regulation
[1] Wang X B, Wang F, He Z Y et al. Research progress on high thermal conductivity SiC ceramics[J]. Materials for Mechanical Engineering, 45, 8-12(2021).
[2] Li C R, Xie Z P, Kang G X et al. Research and application progress of SiC ceramics: a review[J]. Bulletin of the Chinese Ceramic Society, 39, 1353-1370(2020).
[3] Li W H, Feng L X, Zhang X Q et al. Brief review of research progress on the deformation, damage and failure of silicon carbide under extreme conditions[J]. Chinese Journal of High Pressure Physics, 35, 35-75(2021).
[4] Chen Y R, Su H H, Qian N et al. Ultrasonic vibration-assisted grinding of silicon carbide ceramics based on actual amplitude measurement: grinding force and surface quality[J]. Ceramics International, 47, 15433-15441(2021).
[5] Wu C, Fang X D, Liu F et al. High speed and low roughness micromachining of silicon carbide by plasma etching aided femtosecond laser processing[J]. Ceramics International, 46, 17896-17902(2020).
[6] Meng X S, Wu W L, Liao B K et al. Atomic simulation of textured silicon carbide surface ultra-precision polishing[J]. Ceramics International, 48, 17034-17045(2022).
[7] Pang L F, Li X B, Li T T et al. Ultra precision chemical mechanical polishing technology for SiC wafer[J]. Micronanoelectronic Technology, 58, 1035-1040(2021).
[8] Sun Q, Xu J X, Lu K et al. Microscopic simulation analysis on function of diamond and silica particles during chemical mechanical polishing of silicon carbide[J]. Electroplating & Finishing, 40, 1254-1261(2021).
[9] Xu Y F, Shao J Z, Lin Y et al. Research progress in laser surface polishing of hard and brittle materials[J]. Laser & Optoelectronics Progress, 59, 1300003(2022).
[10] Ren Y M, Zhang Z Y. Surface of nanosecond laser polished single-crystal silicon improved by two-step laser irradiation[J]. Acta Optica Sinica, 42, 0714004(2022).
[11] Soltani B, Azarhoushang B, Zahedi A. Laser ablation mechanism of silicon nitride with nanosecond and picosecond lasers[J]. Optics & Laser Technology, 119, 105644(2019).
[12] Jia X S, Zhu G Z, Zhang Y D et al. Laser processing of alumina ceramic by spatially and temporally superposing the millisecond pulse and nanosecond pulse train[J]. Optics Express, 28, 676-684(2020).
[13] Zhang X M, Ji L F, Zhang L T et al. Polishing of alumina ceramic to submicrometer surface roughness by picosecond laser[J]. Surface and Coatings Technology, 397, 125962(2020).
[14] Fu C L, Yang Y, Huang Z R et al. Investigation on the laser ablation of SiC ceramics using micro-Raman mapping technique[J]. Journal of Advanced Ceramics, 5, 253-261(2016).
[15] Bai F, Fan W Z, Li Y B et al. Influence of overlapping rate of focused femtosecond laser spot on the silicon surfaces colorization[J]. Chinese Journal of Lasers, 43, 0703001(2016).
[16] Lin Q Y, Fan Z J, Wang W J et al. The effect of spot overlap ratio on femtosecond laser planarization processing of SiC ceramics[J]. Optics & Laser Technology, 129, 106270(2020).
[17] Zheng Q Z, Cui J L, Fan Z J et al. Investigation on the underwater femtosecond laser polishing SiC ceramic[J]. Ferroelectrics, 564, 28-36(2020).
[18] Zheng Q Z, Jiang G D, Cui J L et al. Influence of pulse energy and scanning speed of femtosecond laser on surface roughness of SiC ceramics[J]. Integrated Ferroelectrics, 219, 20-27(2021).
[19] Zheng Y P, Tan W J, Han D D et al. Propagation of high-power optical flat-topped beams in strongly nonlinear media[J]. Results in Physics, 31, 105016(2021).
[20] Jiang Q C, Zhang C, Su Y L et al. Comparison of propagation properties of flat-top beams in different systems[J]. Chinese Journal of Quantum Electronics, 39, 334-342(2022).
[21] Jasim H A, Demir A G, Previtali B et al. Process development and monitoring in stripping of a highly transparent polymeric paint with ns-pulsed fiber laser[J]. Optics & Laser Technology, 93, 60-66(2017).
[22] Huang X D, Wang T, Hu S W et al. Parameter optimization of laser polishing based on orthogonal experiment and response surface method[J]. Laser & Optoelectronics Progress, 59, 1114004(2022).
[23] Kunc J, Rejhon M, Dědič V et al. Thickness of sublimation grown SiC layers measured by scanning Raman spectroscopy[J]. Journal of Alloys and Compounds, 789, 607-612(2019).
[24] Madito M J, Hlatshwayo T T, Mtshali C B. Chemical disorder of a-SiC layer induced in 6H-SiC by Cs and I ions co-implantation: Raman spectroscopy analysis[J]. Applied Surface Science, 538, 148099(2021).
[25] Feoktistov D V, Kuznetsov G V, Sivkov A A et al. Expanding the scope of SiC ceramics through its surface modification by different methods[J]. Surface and Coatings Technology, 435, 128263(2022).
[26] Wei X Y, Wen Q L, Lu J et al. Research on parameters optimization of diamond microgrooves processed by ultraviolet nanosecond laser[J]. Chinese Journal of Lasers, 49, 1002406(2022).
[27] Kadlečíková M, Breza J, Vančo Ľ et al. Raman spectroscopy of porous silicon substrates[J]. Optik, 174, 347-353(2018).
[28] Aguilar-Hernández J R, Sastré-Hernández J, Monroy-Rodríguez G et al. Photoluminescence and Raman spectroscopy of silicon thin films grown by laser ablation[J]. Optical Materials, 102, 109813(2020).
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Guiying Ma, Xiaoxiao Chen, Tao Chen, Wenwu Zhang. Surface Quality of Silicon Carbide Ceramics Polished by Coupled Laser Based on Bidirectional Spot Overlap Ratio Regulation[J]. Chinese Journal of Lasers, 2023, 50(16): 1602209
Category: Laser Surface Machining
Received: Sep. 5, 2022
Accepted: Dec. 20, 2022
Published Online: Jul. 11, 2023
The Author Email: Chen Xiaoxiao (chenxiaoxiao@nimte.ac.cn)