Chinese Journal of Lasers, Volume. 47, Issue 10, 1002001(2020)
Fe-Based Composite Coating Prepared by Laser Cladding and Its Heat and Corrosion Resistance
[1] Song S H, Zhang X Q. Summary on the anti-skid coatings[J]. China Coatings, 24, 60-63(2009).
[2] Gu M B, Jiang X J, Leng X F et al. Aircraft skid-resistant coatings summary[J]. China Coatings, 28, 69-71(2013).
[3] Zhang X N, Liu T, Liu C L et al. Research on skid resistance of asphalt pavement based on three-dimensional laser-scanning technology and pressure-sensitive film[J]. Construction and Building Materials, 69, 49-59(2014).
[4] Hadiwardoyo S P, Sinaga E S, Fikri H. The influence of Buton asphalt additive on skid resistance based on penetration index and temperature[J]. Construction and Building Materials, 42, 5-10(2013).
[5] Deng Q, Xu J W, Gao X H et al. Technology and developing tendency of warship deck paints[J]. Chinese Journal of Ship Research, 8, 111-116(2013).
[6] Hong W H. Situation and development trend of foreign aircraft carrier deck anti-slip coating technology[J]. Ship Science and Technology, 37, 166-169(2015).
[8] Liu C M. Research of the polyurethane anti-skid deck coatings reinforced by SiC fibers[D]. Changsha: National University of Defense Technology(2014).
[9] Cheng J B, Liu D, Liang X B et al. Wear behaviors of arc-sprayed FeBSiNb amorphous coatings[J]. Tribology Letters, 60, 22(2015).
[10] Wu Q D, Xiao J K, Zhang G et al. Thermal sprayed metal-based non-skid wear-resistant coatings[J]. Surface Technology, 47, 251-259(2018).
[11] Jiang C P, Xing Y Z, Hao J M et al. Effects of heat-treatment on crystallization and wear property of plasma sprayed Fe-based amorphous coatings[J]. Journal of Wuhan University of Technology(Materials Science Edition), 28, 643-646(2013).
[15] Tang C Y, Wang M W, Zhuang Z F et al. Research progress of laser cladding technology to prepare amorphous alloy coating[J]. Laser Journal, 36, 22-25(2015).
[16] Weng F, Chen C Z, Yu H J. Research status of laser cladding on titanium and its alloys: a review[J]. Materials & Design, 58, 412-425(2014).
[17] Leunda J, García Navas V, Soriano C et al. Effect of laser tempering of high alloy powder metallurgical tool steels after laser cladding[J]. Surface and Coatings Technology, 259, 570-576(2014).
[20] [20] ChinaPetroleumandChemical IndustryAssociation. Paints and varnishes: determination of heat resistance: GB/T 1735—2009[S]. Beijing: Standards Press of China, 2010.
[21] Wu L F, Zeng Q S, Yang Y et al[J]. Research progress of surface crack in laser cladding Mechanical Engineer, 2016, 26-27.
[22] Zhong W H, Liu G Z, Pan J Z et al. Effect of Y2O3 on structure and properties of Ni/Cr3C2 cladding layer[J]. Transactions of Materials and Heat Treatment, 34, 147-151(2013).
[23] Cherg Q L, Tin T, Song L Y et al. Corrosion behaviour of Q235B carbon steel in sediment water from crude oil[J]. Corrosion Science, 111, 61-71(2016).
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Bai Yang, Wang Zhenhua, Zuo Juanjuan, Jiang Xiujie, Zhang Xueqing. Fe-Based Composite Coating Prepared by Laser Cladding and Its Heat and Corrosion Resistance[J]. Chinese Journal of Lasers, 2020, 47(10): 1002001
Category: laser manufacturing
Received: Mar. 10, 2020
Accepted: --
Published Online: Oct. 9, 2020
The Author Email: Yang Bai (b14040127@s.upc.edu.cn)