Infrared and Laser Engineering, Volume. 50, Issue 12, 20210137(2021)
Numerical simulation of ablation and carbonization of GFRP irradiated by laser induced microwave transmission decay
[1] Penn L, Larsen F. Physicochemial properties of kevlar 49 fiber[J]. Journal of Applied Polymer Science, 23, 59-73(1979).
[2] Yi Shoujun, Fan Zhen, Wu Chao, et al. Catalytic graphitization of furan resin carbon by yttrium[J]. Carbon, 46, 378-380(2008).
[3] [3] Xu Weixin. Studies on catalytic graphitization of carbon materials[D]. Changsha: Hunan University, 2008: 3032. (in Chinese)
[4] [4] Li Weilong. Research of microstructure properties of low temperature isotropic pyrocarbon coating[D]. Hangzhou: Hangzhou Dianzi University, 2016: 1721. (in Chinese)
[5] Russell N V, Williamson J, Gibbins J R. Structural ordering in high temperature coal chars and the effect on reactivity[J]. Fuel, 78, 803-807(1999).
[6] Gao Rui, Wang Chengguo, Li Binpeng, et al. Preparation and microwave absorbing property of polyacrylonitrile based porous disorder carbon[J]. Fiber Reinforced Plastics/Composites, 111-114(2012).
[7] [7] Xu Liang. Research on microwave dielectric properties of coal s[D]. Taiyuan: Taiyuan University of Technology, 2015: 2528. (in Chinese)
[8] Wang Jingjing, Liu Haiyu, Xu Liang, et al. Research on dielectric property of biomass and coal during carbonization[J]. Science Technology and Engineering, 16, 181-185(2016).
[9] Xu Liang, Liu Haiyu, Jin Yan, et al. Variation of microstructure at elevated temperatures and its impact on dielectric properties of coal chars[J]. Journal of Engineering Thermophysics, 36, 1148-1152(2015).
[10] Zubkova V, Prezhdo V. Change in electric and dielectric properties of some Australian coals during the processes of pyrolysis[J]. Journal of Analytical and Applied Pyrolysis, 75, 140-149(2006).
[11] Monsef M P, Ravindran M, McWhinnie W R, et al. Rapid microwave pyrolysis of coal methodology and examination of the residual and volatile phases[J]. Fuel and Energy Abstracts, 36, 20-27(1995).
[12] Ge Lichao, Zhang Yanwei. Effects of microwave irradiation treatment on physico- chemical characteristics of Chinese low-rank coals[J]. Energy Conversion and Management, 71, 74-91(2013).
[13] Peng Zhiwei, Hwang Jiann-Yang, Kim Byoung-Gon, et al. Microwave absorption capability of high volatile bituminous coal during pyrolysis[J]. Energy and Fuels, 26, 5146-5151(2012).
[14] Semak V V, Miller T F. Modeling of laser charring and material removal in fiberglass materials[J]. Journal of Directed Energy, 2, 5-21(2006).
[15] Liu Zunfeng, Bai Gang, Huang Yi, et al. Reflection and absorption contributions to the electromagnetic interference shielding of single-walled carbon nanotube/polyurethane composites[J]. Carbon, 45, 821-827(2007).
[16] Cao Maosheng, Song Weili, Hou Zhiling, et al. The effects of temperature and frequency on the dielectric properties, electromagnetic interference shielding and microwave-absorption of short carbon fiber/silica composites[J]. Carbon, 8, 788-796(2010).
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Weiping Liu, Yuwei Lv, Lixiong Wu, Chenghua Wei, Jiawei Wang, Yongchao Han, Shuang Zhang. Numerical simulation of ablation and carbonization of GFRP irradiated by laser induced microwave transmission decay[J]. Infrared and Laser Engineering, 2021, 50(12): 20210137
Category: Lasers & Laser optics
Received: Jan. 29, 2021
Accepted: --
Published Online: Feb. 9, 2022
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