中国激光, 2019, 46 (3): 0300001, 网络出版: 2019-05-09   

超音速激光沉积技术:研究现状及发展趋势 下载: 1912次封面文章

Research States and Development Tendency of Supersonic Laser Deposition Technology
姚建华 1,2,*吴丽娟 1,2李波 1,2张群莉 1,2
作者单位
1 浙江工业大学激光先进制造研究院, 浙江 杭州 310014
2 浙江省高端激光制造装备协同创新中心, 浙江 杭州 310014
引用该论文

姚建华, 吴丽娟, 李波, 张群莉. 超音速激光沉积技术:研究现状及发展趋势[J]. 中国激光, 2019, 46(3): 0300001.

Jianhua Yao, Lijuan Wu, Bo Li, Qunli Zhang. Research States and Development Tendency of Supersonic Laser Deposition Technology[J]. Chinese Journal of Lasers, 2019, 46(3): 0300001.

参考文献

[1] Lauwers B, Klocke F, Klink A, et al. Hybrid processes in manufacturing[J]. CIRP Annals, 2014, 63(2): 561-583.

[2] 姚建华. 激光复合制造技术研究现状及展望[J]. 电加工与模具, 2017( S1): 4- 11.

    Yao JH. Research progress and future prospect of laser hybrid manufacturing technology[J]. Electromachining & Mould, 2017( S1): 4- 11.

[3] 王红阳, 孙佳, 刘黎明. 6061-T6铝合金激光-电弧复合高速焊气孔形成及控制机制[J]. 中国激光, 2018, 45(3): 0302001.

    Wang H Y, Sun J, Liu L M. Formation and controlling mechanism of pores in laser-TIG hybrid welding of 6061-T6 aluminum alloys at high speed[J]. Chinese Journal of Lasers, 2018, 45(3): 0302001.

[4] Olakanmi E O, Doyoyo M. Laser-assisted cold-sprayed corrosion- and wear-resistant coatings: a review[J]. Journal of Thermal Spray Technology, 2014, 23(5): 765-785.

[5] Cockburn A, Bray M. O'Neill W.The laser-assisted cold spray process[J]. The Laser User, 2008, 53: 30-31.

[6] Bray M, Cockburn A. O'Neill W. The laser-assisted cold spray process and deposit characterisation[J]. Surface & Coatings Technology, 2009, 203(19): 2851-2857.

[7] Lupoi R, Cockburn A, Bryan C, et al. Hardfacing steel with nanostructured coatings of Stellite-6 by supersonic laser deposition[J]. Light: Science & Applications, 2012, 1(5): e10.

[8] Lupoi R, Sparkes M, Cockburn A, et al. High speed titanium coatings by supersonic laser deposition[J]. Materials Letters, 2011, 65(21/22): 3205-3207.

[9] Jones M, Cockburn A, Lupoi R, et al. Solid-state manufacturing of tungsten deposits onto molybdenum substrates with supersonic laser deposition[J]. Materials Letters, 2014, 134(3): 295-297.

[10] Luo F, Cockburn A, Lupoi R, et al. Performance comparison of Stellite 6 ® deposited on steel using supersonic laser deposition and laser cladding [J]. Surface & Coatings Technology, 2012, 212: 119-127.

[11] Luo F, Lupoi R, Cockburn A, et al. Characteristics of Stellite 6 deposited by supersonic laser deposition under optimized parameters[J]. Journal of Iron and Steel Research, International, 2013, 20(2): 52-57.

[12] 骆芳, 孔凡志. 威廉·欧尼尔, 等. 激光加热温度对冷喷Stellite 6合金沉积层表面特性的影响[J]. 兵工学报, 2012, 33(7): 840-846.

    Luo F, Kong F Z, William O, et al. Effect of laser heating temperature on coating characteristics of Stellite 6 deposited by cold spray[J]. Acta Armamentarii, 2012, 33(7): 840-846.

[13] Luo F, Cockburn A, Cai D B, et al. Simulation analysis of Stellite 6 ® particle impact on steel substrate in supersonic laser deposition process [J]. Journal of Thermal Spray Technology, 2015, 24(3): 378-393.

[14] Yao J H, Li Z H, Li B, et al. Characteristics and bonding behavior of Stellite 6 alloy coating processed with supersonic laser deposition[J]. Journal of Alloys and Compounds, 2016, 661: 526-534.

[15] Li B, Jin Y, Yao J H, et al. Influence of laser irradiation on deposition characteristics of cold sprayed Stellite-6 coatings[J]. Optics & Laser Technology, 2018, 100: 27-39.

[16] 李祉宏, 杨理京, 张群莉, 等. 超音速激光沉积与激光熔覆Stellite 6涂层的对比研究[J]. 中国激光, 2015, 42(5): 0503008.

    Li Z H, Yang L J, Zhang Q L, et al. Comparative research of Stellite 6 coatings prepared by supersonic laser deposition and laser cladding[J]. Chinese Journal of Lasers, 2015, 42(5): 0503008.

[17] Yao J H, Yang L J, Li B, et al. Characteristics and performance of hard Ni60 alloy coating produced with supersonic laser deposition technique[J]. Materials & Design, 2015, 83: 26-35.

[18] 杨理京, 李祉宏, 李波, 等. 超音速激光沉积法制备Ni60涂层的显微组织及沉积机理[J]. 中国激光, 2015, 42(3): 0306005.

    Yang L J, Li Z H, Li B, et al. Microstructure and deposition mechanism of Ni60 coatings prepared by supersonic laser deposition[J]. Chinese Journal of Lasers, 2015, 42(3): 0306005.

[19] 李波, 吴丽娟, 张欣, 等. 超音速激光沉积Ti6Al4V涂层的微观结构及耐蚀性能[J]. 中国表面工程, 2018, 31(5): 159-166.

    Li B, Wu L J, Zhang X, et al. Microstructure and corrosion-resistant property of Ti6Al4V coating prepared by supersonic laser deposition[J]. China Surface Engineering, 2018, 31(5): 159-166.

[20] 杨理京, 李祉宏, 李波, 等. 超音速激光沉积与激光熔覆金刚石强化涂层的组织形态[J]. 材料热处理学报, 2016, 37(6): 221-227.

    Yang L J, Li Z H, Li B, et al. Microstructure of diamond/Ni60 composite coatings produced by supersonic laser deposition and laser cladding[J]. Transactions of Materials and Heat Treatment, 2016, 37(6): 221-227.

[21] Yang L J, Li B, Yao J H, et al. Effects of diamond size on the deposition characteristic and tribological behavior of diamond/Ni60 composite coating prepared by supersonic laser deposition[J]. Diamond and Related Materials, 2015, 58: 139-148.

[22] Yao J H, Yang L J, Li B, et al. Beneficial effects of laser irradiation on the deposition process of diamond/Ni60 composite coating with cold spray[J]. Applied Surface Science, 2015, 330: 300-308.

[23] 李祉宏, 杨理京, 李波, 等. 超音速激光沉积WC/Stellite 6复合涂层显微组织特征的研究[J]. 中国激光, 2015, 42(11): 1106002.

    Li Z H, Yang L J, Li B, et al. Microstructural characteristics of WC/Stellite 6 composite coating prepared by supersonic laser deposition[J]. Chinese Journal of Lasers, 2015, 42(11): 1106002.

[24] Li B, Jin Y, Yao J H, et al. Solid-state fabrication of WC p-reinforced Stellite-6 composite coatings with supersonic laser deposition[J]. Surface & Coatings Technology, 2017, 321: 386-396.

[25] 李波, 李鹏辉, 张群莉, 等. 超音速激光沉积WC/SS316L复合涂层微观结构及磨损性能研究[J]. 电加工与模具, 2016( 1): 35- 39.

    LiB, Li PH, Zhang QL, et al. Study on microstructure and wear-resistant properties of WC/SS316L composite coatings prepared by supersonic laser deposition[J]. Electromachining & Mould, 2016( 1): 35- 39.

[26] 李鹏辉, 李波, 张群莉, 等. 超音速激光沉积与激光熔覆WC/SS316L复合沉积层显微组织与性能的对比研究[J]. 中国激光, 2016, 43(11): 1102002.

    Li P H, Li B, Zhang Q L, et al. Comparative study on microstructure and performance of WC/SS316L composite coatings prepared by supersonic laser deposition and laser cladding[J]. Chinese Journal of Lasers, 2016, 43(11): 1102002.

[27] Li B, Yao J H, Zhang Q L, et al. Microstructure and tribological performance of tungsten carbide reinforced stainless steel composite coatings by supersonic laser deposition[J]. Surface & Coatings Technology, 2015, 275: 58-68.

[28] 金琰, 李波, 张欣, 等. 金属基复合材料WC/SS316L超音速激光沉积行为及电化学失效机理[J]. 中国激光, 2018, 45(1): 0102001.

    Jin Y, Li B, Zhang X, et al. Deposition behavior and electrochemical failure mechanism of WC/SS316L metal matrix composites prepared by supersonic laser deposition[J]. Chinese Journal of Lasers, 2018, 45(1): 0102001.

[29] 姚建华, 李鹏辉, 李波, 等. 一种可控激光光斑能量分布的冷喷涂方法: 106283030A[P].2017-01-04.

    Yao JH, Li PH, LiB, et al. Cold spraying method for controllable laser spot energy distribution: 106283030A[P]. 2017-01-04.

[30] 姚建华, 李波, 陈智君, 等. 一种金属基/金刚石激光复合涂层及其制备方法: 104018156A[P].2014-09-03.

    Yao JH, LiB, Chen ZJ, et al. Metal-based/diamond laser composite coating and preparation method thereof:104018156A[P]. 2014-09-03.

[31] 姚建华, 杨理京, 李波, 等. 一种超音速激光沉积低应力涂层的方法: 104005021A[P].2014-08-27.

    Yao JH, Yang LJ, LiB, et al. Method for supersonic laser deposition of low stress coating: 104005021A[P]. 2014-08-27.

[32] 姚建华, 李鹏辉, 李波. 一种超音速激光沉积同轴送粉装置: 206089807U[P].2017-04-12.

    Yao JH, Li PH, Li B. Coaxial powder feeding device for supersonic laser deposition: 206089807U[P].2017-04-12.

[33] Yao JH, LiB, Chen ZJ, et al. Metal-based/diamond laser composite coating and preparation method thereof:9945034[P]. 2018-04-17.

[34] Assadi H, Kreye H, Gärtner F, et al. Cold spraying- a materials perspective[J]. Acta Materialia, 2016, 116: 382-407.

[35] Riveiro A, Lusquiños F, Comesaña R, et al. Supersonic laser spray of aluminium alloy on a ceramic substrate[J]. Applied Surface Science, 2007, 254(4): 926-929.

[36] Birt A M, Champagne V K, Sisson R D, et al. Statistically guided development of laser-assisted cold spray for microstructural control of Ti-6Al-4V[J]. Metallurgical and Materials Transactions A, 2017, 48(4): 1931-1943.

[37] Gorunov A I, Gilmutdinov A K. Investigation of coatings of austenitic steels produced by supersonic laser deposition[J]. Optics & Laser Technology, 2017, 88: 157-165.

[38] Olakanmi E O. Optimization of the quality characteristics of laser-assisted cold-sprayed (LACS) aluminum coatings with Taguchi design of experiments (DOE)[J]. Materials and Manufacturing Processes, 2016, 31(11): 1490-1499.

[39] Li B, Yang L J, Li Z H, et al. Beneficial effects of synchronous laser irradiation on the characteristics of cold-sprayed copper coatings[J]. Journal of Thermal Spray Technology, 2015, 24(5): 836-847.

[40] Yuan L J, Luo F, Yao J H. Deposition behavior at different substrate temperatures by using supersonic laser deposition[J]. Journal of Iron and Steel Research, International, 2013, 20(10): 87-93.

[41] Lu Y H, Yuan L J, Cai D B, et al. Effect of the process parameters on the indentation size of particle deposited using supersonic laser deposition[J]. Rare Metal Materials and Engineering, 2014, 43(10): 2349-2353.

[42] Kulmala M, Vuoristo P. Influence of process conditions in laser-assisted low-pressure cold spraying[J]. Surface & Coatings Technology, 2008, 202(18): 4503-4508.

[43] Olakanmi E O, Tlotleng M, Meacock C, et al. Deposition mechanism and microstructure of laser-assisted cold-sprayed (LACS) Al-12 wt.%Si coatings: effects of laser power[J]. JOM, 2013, 65(6): 776-783.

[44] Tlotleng M, Akinlabi E, Shukla M, et al. Microstructural and mechanical evaluation of laser-assisted cold sprayed bio-ceramic coatings: potential use for biomedical applications[J]. Journal of Thermal Spray Technology, 2015, 24(3): 423-435.

[45] Yao J H, Yang L J, Li B, et al. Deposition characteristics and microstructure of a Ni60-Ni composite coating produced by supersonic laser deposition[J]. Lasers in Engineering, 2017, 36: 117-131.

[46] Luo F, Cockburn A, Sparkes M, et al. Performance characterization of Ni60-WC coating on steel processed with supersonic laser deposition[J]. Defence Technology, 2015, 11(1): 35-47.

[47] de Feudis M, Caricato A P, Taurino A, et al. . Diamond graphitization by laser-writing for all-carbon detector applications[J]. Diamond & Related Materials, 2017, 75: 25-33.

[48] Wang C L, Gao Y, Wang R, et al. Microstructure of laser-clad Ni60 cladding layers added with different amounts of rare-earth oxides on 6063 Al alloys[J]. Journal of Alloys and Compounds, 2018, 740: 1099-1107.

[49] Moridi A. Hassani-Gangaraj S M, Guagliano M, et al. Cold spray coating: review of material systems and future perspectives[J]. Surface Engineering, 2014, 30(6): 369-395.

[50] Aldwell B, Yin S. McDonnell K A, et al. A novel method for metal-diamond composite coating deposition with cold spray and formation mechanism[J]. Scripta Materialia, 2016, 115: 10-13.

[51] Yin S, Xie Y C, Cizek J, et al. Advanced diamond-reinforced metal matrix composites via cold spray: properties and deposition mechanism[J]. Composites Part B: Engineering, 2017, 113: 44-54.

[52] Wang Z, Chen X Y, Gong Y F, et al. Tribocorrosion behaviours of cold-sprayed diamond-Cu composite coatings in artificial sea water[J]. Surface Engineering, 2018, 34(5): 392-398.

[53] 关振中. 激光加工工艺手册[M]. 北京: 中国计量出版社, 2007.

    Guan ZZ. Handbook of laser processing[M]. Beijing: China Metrology Publishing House, 2007.

[54] 周香林, 张济山, 巫湘坤. 先进冷喷涂技术与应用[M]. 北京: 机械工业出版社, 2011.

    Zhou XL, Zhang JS, Wu XK. Advanced cold spray technology and its applications[M]. Beijing: China Machine Press, 2011.

[55] Koivuluoto H, Milanti A, Bolelli G, et al. Structures and properties of laser-assisted cold-sprayed aluminum coatings[J]. Materials Science Forum, 2016, 879: 984-989.

姚建华, 吴丽娟, 李波, 张群莉. 超音速激光沉积技术:研究现状及发展趋势[J]. 中国激光, 2019, 46(3): 0300001. Jianhua Yao, Lijuan Wu, Bo Li, Qunli Zhang. Research States and Development Tendency of Supersonic Laser Deposition Technology[J]. Chinese Journal of Lasers, 2019, 46(3): 0300001.

本文已被 8 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!