教师名录
Research field: Theory, technology, equipment, and application of laser additive manufacturing in special environmental atmospheres (underwater); Analysis of material fatigue, corrosion, wear, fracture and other behaviors;Development and operation and maintenance of offshore wind power equipment; ;Application of Machine Learning in Additive Manufacturing
Projects: GF Basic Research Key Project, JKW 173 Fund, JKW 163 Program, ZF Fund Youth Talent Project, National Natural Science Foundation of China, Jiangsu Province Key R&D Program Industry Outlook and Key Core Technology Key Project, Jiangsu Province Natural Science Foundation, Jiangsu Province Industry University Research Outlook Project, Guangdong Province Offshore Wind Power Joint Fund General Project, Shenzhen Science and Technology Major Special Project, National Postdoctoral and Special Funding Project, etc
Monographs, papers, soft works, patents: publish one English monograph on underwater laser additive manufacturing, with one chapter in an English book. Published over 90 SCI indexed papers and over 10 EI indexed papers as first author or corresponding author in industry journals. 2 public software copyrights; 67 national invention patents have been publicly disclosed, with 30 authorized and 3 national defense patents.
Research field: Theory, technology, equipment, and application of laser additive manufacturing in special environmental atmospheres (underwater); Analysis of material fatigue, corrosion, wear, fracture and other behaviors;Development and operation and maintenance of offshore wind power equipment; ;Application of Machine Learning in Additive Manufacturing
Projects: GF Basic Research Key Project, JKW 173 Fund, JKW 163 Program, ZF Fund Youth Talent Project, National Natural Science Foundation of China, Jiangsu Province Key R&D Program Industry Outlook and Key Core Technology Key Project, Jiangsu Province Natural Science Foundation, Jiangsu Province Industry University Research Outlook Project, Guangdong Province Offshore Wind Power Joint Fund General Project, Shenzhen Science and Technology Major Special Project, National Postdoctoral and Special Funding Project, etc
Monographs, papers, soft works, patents: publish one English monograph on underwater laser additive manufacturing, with one chapter in an English book. Published over 90 SCI indexed papers and over 10 EI indexed papers as first author or corresponding author in industry journals. 2 public software copyrights; 67 national invention patents have been publicly disclosed, with 30 authorized and 3 national defense patents.
Monograph
[1] GF Sun, ZD Wang, CS Liu. Underwater Direct Metal Deposition.
[2] GF Sun, R Zhou. Chapter 3: Mechanical properties improvement of metallic rolls by laser surface alloying. In the Book Laser surface engineering: Processes and applications. Edited by Jonathan Lawrence and David Waugh. Published by Woodhead Publishing Limited. 2015, 59-96.
Paper
2024
(88) K Yang, MZ Chen, K Zhao, ZY Jia, ZD Wang, RS Lu, GF Sun*. Tailoring of the microstructure and mechanical properties of high nitrogen steel repaired by underwater laser direct metal deposition. Metallurgy and Materials Transactions: B, 2024, 168: 108268.
(87) K Yang, MZ Chen, K Zhao, ZY Jia, ZD Wang, H Qi, GF Sun*. Research on gas pore formation and inhibition mechanism of high nitrogen steel during laser direct metal deposition. Optics & Laser Technology, 2024, 175: 110788.
(86) B Han, R Li, QY Pi, Y Shi, H Qi, GF Sun*, KD Bi. Deposit characteristics, morphology and microstructure regulation of single-track nickel-based alloy using quasi-continuous-wave laser direct energy deposition. Surface & Coatings Technology, 2024, 478: 130481.
(85) MZ Chen, ZD Wang, EK Wu, K Yang, K Zhao, JJ Shi, GF Sun*, EH Han. Electrochemical passivation behavior and surface chemistry of 316L stainless steel coatings on NV E690 steel fabricated by underwater direct metal deposition. Corrosion Science, 2024, 229: 111882.
(84) ZD Wang, MZ Chen, K Zhao, R Li, L Zong, SB Zhang, GF Sun*. Effect of different feedstocks on the microstructure and mechanical properties of HSLA steel repaired by underwater direct metal deposition. Materials Chemistry and Physics, 2024, 314: 128935.
(83) K Zhao, K Yang, MZ Chen, ZD Wang, EK Wu, GF Sun*. Optimization of process parameters for gas-powder flow behavior in the coaxial nozzle during laser direct metal deposition based on numerical simulation. The International Journal of Advanced Manufacturing Technology, 2024, 130: 3967-3982.
(82) ZD Wang, R Li, MZ Chen, K Yang, ZG Sun, XH Zhang, S Tang, GF Sun*. Enhanced wear and corrosion resistance of the laser direct metal deposited AISI 316L stainless steel by in-situ interstitial N alloying. Optics & Laser Technology, 2024, 171, 110381.
2023
(81) K Yang, MZ Chen, ZD Wang, K Zhao, LX Yu, GF Sun*. Influence mechanism of underwater hyperbaric environment on the corrosion behavior of high nitrogen steel fabricated by underwater laser direct metal deposition. Materials Today Communications, 2023, 37, 107614.
(80) R Li, B Han, K Zhao, ZD Wang, Y Shi, KD Bi, GF Sun*. Effects of TiC addition on the hot corrosion behavior of IN718 fabricated by laser direct metal deposition. Materials Chemistry and Physics, 2023, 308: 128167.
(79) K Yang, ZD Wang, MZ Chen, ZH Ni, H Qi, GF Sun*. How the underwater environment affects the melt pool solidification during underwater laser directed energy deposition of HNS steel? Journal of Manufacturing Processes, 2023, 101: 892-903.
(78) MZ Chen, K Yang, ZD Wang, K Zhao, EK Wu, JJ Shi, H Qi, GF Sun*. Corrosion performance of NV E690 steel and 316L stainless steel coating fabricated by underwater direct metal deposition. Corrosion Science, 2023, 219: 111232.
(77) Q Chai, X He, Y Xing, GF Sun*. Numerical study on the collision effect of particles in the gas-powder flow by coaxial nozzles for laser cladding. Optics and Laser Technology, 2023, 163: 109449.
(76) K Yang, MZ Chen, ZD Wang, H Qi, JD Bao, GF Sun*. Influence mechanism of underwater hyperbaric environment on nitrogen behavior, phase evolution, and mechanical properties of high nitrogen steel repaired by underwater laser direct metal deposition. Materials Science & Engineering A, 2023, 872: 144967.
(75) B Han, R Li, QY Pi, Y Shi, H Qi, KD Bi, GF Sun*. Prediction of deposit characteristics based on the discrete coaxial nozzle during laser direct metal deposition. Optics and Laser Technology, 2023, 158: 109385.
(74) MZ Chen, K Yang, ZD Wang, SB Wang, EK Wu, ZH Ni, JZ Lu, GF Sun*. Underwater laser directed energy deposition of NV E690 steel. Advanced Powder Materials, 2023, 2, 100095.
(73) LJ Lin, K Yang, MZ Chen, ZD Wang, EK Wu, KD Bi, Y Shi, GF Sun*. Effects of alloying elements X (Cr, Fe and Mo) on the interfacial properties of γ-Ni(110)/TiC(110) in TiC-particles reinforced NMCs: First-principles study. Optics and Laser Technology, 2023, 158: 108870.
2022
(72) X Yan, MZ Chen, Y Lu, EK Wu, Y Zhang, GF Sun*. Laser deposition remanufacturing of aviation optoelectronic radar motor commutator. China Surface Engineering, 2022, 35(4): 223-231.
(71) 王占栋, 王世彬, 吴二柯, 毕可东, 倪中华, 孙桂芳*. 水下定向能量沉积修复钛合金电化学腐蚀特性研究. 中国激光, 2022, 49(14): 1402806.
(70) R Zhou, GF Sun*. Laser alloying with Mn+Cr3C2 and Mn+NiCr-C for improved wear and corrosion resistance of stainless steel. Surface & Coatings Technology, 2022, 451: 129076.
(69) K Yang, MZ Chen, ZD Wang, SB Wang, Y Lu, ZH Ni, GF Sun*. Evolutions of microstructure and mechanical property of high nitrogen steel repaired by underwater directed energy deposition technique. Materials Science & Engineering A, 2022, 857: 144077.
(68) SB Wang, ZD Wang, K Yang, MZ Chen, EK Wu, ZH Ni, GF Sun*. Investigation of on-site repair of 18Ni300 by underwater laser direct metal deposition technique. Journal of Manufacturing Processes, 2022, 80: 909-919.
(67) EK Wu, ZD Wang, K Yang, MZ Chen, SB Wang, Y Lu, ZH Ni, GF Sun*. Microstructure and mechanical properties of underwater laser deposition remanufactured 316LN stainless steel at a pressure of 0.3 MPa. Optics and Laser Technology, 2022, 155: 108394.
(66) ZD Wang, K Yang, MZ Chen, Y Lu, SB Wang, EK Wu, KD Bi, ZH Ni, GF Sun*. High-quality remanufacturing of HSLA-100 steel through the underwater directed energy deposition in an underwater hyperbaric environment. Surface & Coatings Technology, 2022, 437, 128370.
(65) MZ Chen, K Yang, ZD Wang, SB Wang, Y Lu, ZH Ni, GF Sun*. Quasi-continuous-wave laser directed energy deposition on inclined NV E690 steel plates: melt pool and temperature evolution. Surface & Coatings Technology, 2022, 437, 128344.
(64) ZD Wang, SB Wang, K Yang, MZ Chen, KD Bi, ZH Ni, GF Sun*. In-situ SEM investigation on the fatigue behavior of Ti-6Al-4V ELI fabricated by the powder-blown underwater directed energy deposition technique. Materials Science & Engineering A, 2022, 838: 142783.
(63) GF Sun, ZD Wang, Y Lu, MZ Chen, K Yang, ZH Ni. Underwater laser welding/cladding for high-performance repair of marine metal materials: a review. Chinese Journal of Mechanical Engineering, 2022, 35:5.
(62) ZD Wang, K Yang, MZ Chen, Y Lu, KD Bi, GF Sun*, ZH Ni. Investigation of the microstructure and mechanical properties of Ti-6Al-4V repaired by the powder-blown underwater directed energy deposition technique. Materials Science & Engineering A, 2022, 831: 142186.
(61) Q Yan, K Yang, ZD Wang, MZ Chen, GF Sun*, ZH Ni. Surface roughness optimization and high-temperature wear performance of H13 coating fabricated by extreme high-speed laser cladding. Optics and Laser Technology, 2022, 149: 107823.
(60) CH Gu, Y Lu, MZ Chen, GF Sun*, ZH Ni*. A reweighting offset bin classification network for surface defect detection and location of metal components. Measurement, 2022, 187: 110166.
2021
(59) K Yang, ZD Wang, MZ Chen, HF Lan, GF Sun*, ZH Ni. Effect of pulse frequency on the morphology, microstructure, and corrosion resistance of high-nitrogen steel prepared by laser directed energy deposition. Surface & Coatings Technology, 2021, 421: 127450. (SCI)
(58) ZD Wang, GF Sun*, MZ Chen, Y Lu, SB Zhang, HF Lan, KD Bi, ZH Ni*. Investigation of the underwater laser directed energy deposition technique for the on-site repair of HSLA-100 steel with excellent performance. Additive Manufacturing, 2021, 39: 101884. (SCI)
(57) Q Chai, C Fang, XL Qiu, Y Xing*, GF Sun*. Modeling of temperature field and profile of Ni60AA formed on cylindrical 316 stainless steel by laser cladding. Surface & Coatings Technology, 2021, 428: 127865. (SCI)
(56) ZD Wang, GF Sun*, Y Lu, MZ Chen, HF Lan, KD Bi, ZH Ni*. High-performance Ti-6Al-4V with graded microstructure and superior properties fabricated by powder feeding underwater laser metal deposition. Surface & Coatings Technology, 2021, 408: 126778 (SCI)
(55) Y Lu, GF Sun*, XF Xiao, WJ Ren, E Sprague, ZH Ni, J Mazumder. In situ monitoring of solidification mode, porosity and clad height during laser metal deposition of AISI 316 stainless steel. Journal of Manufacturing Processes, 2021, 68: 1705-1713. (SCI)
(54) MZ Chen, Y Lu, ZD Wang, HF Lan, GF Sun*, ZH Ni*. Melt pool evolution on inclined NV E690 steel plates during laser direct metal deposition. Optics & Laser Technology, 2021, 136: 106745. (SCI)
(53) 王鹏飞, 杨坤, 陈明智, 王占栋, 卢轶, 孙桂芳*, 倪中华*. 倾斜基板激光熔覆GH3536熔池形貌的仿真与实验研究. 中国激光, 2021, 1002121 (EI).
2020
(52) ZD Wang, GF Sun*, Y Lu, MZ Chen, KD Bi, ZH Ni. Microstructural characterization and mechanical behavior of ultrasonic impact peened and laser shock peened AISI 316L stainless steel. Surface & Coatings Technology, 2020, 385: 125403. (SCI)
(51) Y Lu, GF Sun*, ZD Wang, BY Su, YK Zhang, ZH Ni. The effects of laser peening on laser additive manufactured 316L steel. The International Journal of Advanced Manufacturing Technology, 2020, 107: 2239-2249 (SCI)
2019
(50) P Yang, GF Sun*, Y Lu, ZH Ni. Monitoring of optical emissions in laser cladding of 316L stainless steel. Applied Optics, 2019, 58: 8733-8742. (SCI).
(49) GF Sun*, XT Shen, ZD Wang, MJ Zhan, S Yao, R Zhou ZH Ni. Laser metal deposition as repair technology for 316L stainless steel: Influence of feeding powder compositions on microstructure and mechanical properties. Optics and Laser Technology, 2019, 109: 71-83. (SCI).
(48) Y Lu, GF Sun, XF Xiao, J Mazumder. Online stress measurement during laser aided metallic additive manufacturing, Scientific Reports, 2019, 9: 7630.
(47) Y Lu, GF Sun*, ZD Wang, YK Zhang, BY Su, AX Feng, ZH Ni. Effects of electromagnetic field on the laser direct metal deposition of austenitic stainless steel. Optics and Laser Technology, 2019, 119: 105586
(46) MJ Zhan, GF Sun*, ZD Wang, XT Shen, Y Yan, ZH Ni. Numerical and experimental investigation on laser metal deposition as repair technology for 316L stainless steel. Optics and Laser Technology, 2019, 118: 84-92.
2018
(45) GF Sun*, S Yao, ZD Wang, XT Shen, Y Yan, R Zhou ZH Ni. Microstructure and mechanical properties of HSLA-100 steel repaired by laser metal deposition. Surface & Coatings Technology, 2018, 351: 198-211. (SCI).
(44) GF Sun*, ZD Wang, Y Lu, R Zhou, ZH Ni, X Gu, ZG Wang. Numerical and experimental investigation of thermal field and residual stress in laser-MIG hybrid welded NV E690 steel plates. Journal of Manufacturing Processes, 2018, 34: 106-120. (SCI)
(43) ZD Wang, Y Lu, GF Sun*, ZH Ni. Effect of ultra-sonic peening on laser-arc hybrid welded NV E690 steel. Journal of Laser Applications, 2018, 30: 032403. (SCI).
(42) R Zhu, YK Zhang, GF Sun*, XT Shen, P Li. Finite element analysis of surface roughness generated by multiple laser shock peening. Rare Metal Materials and Engineering, 2018, 47: 33-38. (SCI)
(41) AM Xiao, GF Sun*, ZP Tong, SY Dong, SX Yan, JZ Lu, YK Zhang. Effect of laser shock processing on microstructure, residual stress and wear-fracture behavior of laser deposited Fe-based alloy coating. Lasers in Engineering, 2018, 39: 175-194. (SCI)
(40) R Zhou, ZP Tong, GF Sun*, ZH Ni, W Zhang. Microstructure and wear behavior of 38CrMoAl steel laser-processed with addition of MoS2 or WS2. Lasers in Engineering, 2018, 41(1-3): 1-25. (SCI)
(39) SK Zou, JF Wu, YK Zhang, SL Gong, GF Sun*, ZH Ni, ZW Cao, ZG Che, AX Feng. Surface integrity and fatigue lives of Ti17 compressor blades subjected to laser shock peening with square spots. Surface & Coatings Technology, 2018, 347: 398-406. (SCI).
(38) BY Su, YK Zhang, GF Sun*, ZH Ni. Prediction of micro indentation depth of TC4 titanium alloy during laser shock processing. Japanese Journal of Applied Physics, 2018, 57, 122703-6. (SCI)
(37) 孙桂芳*, 陶丰, 姜波, 姬文宣, 牛牧遥, 沈旭婷. 医用不锈钢激光合金化铜钴合金的组织及其生物医学性能. 中国激光, 2018, 45: 1202008. (EI).
(36) 苏波泳, 孙桂芳*, 裴旭, 朱然, 倪中华. 冲击波动态船舶特性对激光喷丸残余应力场的影响. 中国表面工程, 2018, 31: 15-22. (EI)
(35) 吴俊峰, 邹世坤, 张永康, 孙桂芳*, 倪中华, 车志刚, 曹子文. 激光冲击强化TC17叶片前缘模拟件的抗FOD性能研究. 稀有金属材料与工程, 2018, 11: 3359-3364. (SCI)
2017
(34) GF Sun*, ZD Wang, Y Lu, R Zhou, ZH Ni. Investigation on microstructure and mechanical properties of NV E690steel joint by laser-MIG hybrid welding. Materials and Design, 2017, 127: 297-301. (SCI)
(33) JF Wu, SK Zou, YK Zhang, SL Gong, GF Sun*, ZH Ni, ZW Cao, ZG Che, AX Feng. Microstructures and mechanical properties of β forging Ti17 alloy under combined laser shock processing and shot peening. Surface & Coatings Technology, 2017, 328: 283-291 (SCI).
(32) 朱然, 张永康, 孙桂芳*, 李普, 张胜标, 倪中华. 三维平顶光束激光冲击2024铝合金的残余应力场数值模拟. 中国激光, 2017, 44(8): 0802007. (EI)
(31) JZ Lu, LJ Wu, GF Sun, Y Liu, CY Cui, XM Luo, KY Luo. Microstructural response and grain refinement mechanism of commercially pure titanium subjected to multiple laser shock peening impacts. Acta Materialia, 2017, 127: 252-266. (SCI)
2016
(30) GF Sun*, XY Fang, ZP Tong, ZH Ni, Y Lu. Effect of laser shock peening on aluminum alloy laser-welds. Surface Engineering, 2016, 32: 943-948. (SCI)
(29) GF Sun*, ZP Tong, XY Fang, XJ Liu, ZH Ni, W Zhang. Effect of scanning speeds on microstructure and wear behavior of laser processed NiCr-Cr3C2-MoS2-CeO2 on 38CrMoAl steel. Optics & Laser Technology, 2016, 77: 80-90. (SCI)
(28) Y. Lu, GF Sun, D.P. Wen, Y.K. Zhang, A.X. Feng. Effects of applying electric and magnetic fields on laser drilling. The International Journal of Advanced Manufacturing Technology, 2016, 84: 2293-2300 (SCI)
(27) KY Luo, CY Wang, GF Sun, CY Cui, J Sheng, JZ Lu. Investigation and microstructural analyses of massive LSP impacts with coverage area on crack initiation location and tensile properties of AM50 magnesium alloy. Materials Science & Engineering A, 2016, 650: 110-118. (SCI)
(26) KY Luo, X Jing, J Sheng, GF Sun, Z Yan, JZ Lu*. Characterization and analyses on micro-hardness, residual stress and microstructure in laser cladding coating of 316L stainless steel subjected to massive LSP treatment. Journal of Alloys and Compounds, 2016, 673: 158-169. (SCI)
(25) 李倩, 孙桂芳*, 卢轶, 张永康. 光纤激光水下切割1mm厚304不锈钢的实验研究. 中国激光, 2016, 43: 0602001-10 (EI).
2015
(24) GF Sun*, R Zhou, JZ Lu, J Mazumder. Evaluation of defect density, microstructure, residual stress, elastic modulus, hardness and strength of laser deposited AISI 4340 steel. Acta Materialia, 2015, 84: 172-189. (SCI)
(23) GF Sun*, K Wang, R Zhou, AX Feng, W Zhang. Effect of different heat-treatment temperatures on the laser cladded M3:2 high-speed steel. Materials and Design, 2015, 65: 606-616. (SCI)
(22) GF Sun*, K Wang, R Zhou, ZP Tong, XY Fang. Effect of annealing on microstructure and mechanical properties of laser deposited Co-285+WC coatings. Optics & Laser Technology, 2015, 66: 98-105. (SCI)
(21) R Zhou, GF Sun*, CS Liu, XD Ren, K Wang, AX Feng, XP Bu. Effects of yttrium on microstructure and wear properties of laser DMD Co-285+WC coatings. Lasers in Engineering, 2015, 31(3-4): 161-178. (SCI)
2014
(20) GF Sun*, YK Zhang, MK Zhang, R Zhou, K Wang, CS Liu, KY Luo. Microstructure and corrosion characteristics of 304 stainless steel laser-alloyed with Cr-CrB2. Applied Surface Science, 2014, 295: 94-107. (SCI)
(19) GF Sun*, R Zhou, YK Zhang, GD Yuan, K Wang, XD Ren, DP Wen. Microstructure evolution and lubricant wear performance of laser alloyed layers on automobile engine chains. Optics & Laser Technology, 2014, 62: 20-31. (SCI)
(18) MK Zhang, GF Sun*, YK Zhang, CS Liu, XD Ren, AX Feng, W Zhang. Laser surface alloying of Cr-CrB2 on SUS 304 stainless steel. Lasers in Engineering, 2014, 27(3-4): 231-245. (SCI)
(17) 李鹏, 孙桂芳*, 张尉, 刘卫祥, 张永康, 张满奎. 不锈钢表面激光合金化Mn-Al2O3 强化层的组织及性能. 中国有色金属学报, 2012, 22(8): 2253-2259 (EI).
2011
(16) GF Sun*, S Bhattacharya, GP Dinda, A Dasgupta, J Mazumder. Microstructure evolution during laser aided direct metal deposition of alloy tool steel, Scripta Materialia, 2011, 64: 454-457. (SCI)
(15) GF Sun*, S Bhattacharya, GP Dinda, A Dasgupta, J Mazumder. Influence of processing parameters on lattice parameters in laser deposited tool alloy steel. Materials Science and Engineering: A, 2011, 528: 5141-5145. (SCI)
(14) GF Sun*, R Zhou, P Li, AX Feng, YK Zhang. Laser surface alloying of C-B-W-Cr powders on nodular cast iron rolls. Surface & Coatings Technology, 2011, 205: 2747-2754. (SCI)
2010
(13) GF Sun, CS Liu, LJ Song, J Mazumder. Microstructure and wear behavior of laser-aided direct metal deposited Co-285 and Co-285 +WC coatings. Metallurgy and Materials Transactions: A, 2010, 41: 1592-1603. (SCI)
(12) GF Sun*, YK Zhang, CS Liu, KY Luo, XQ Tao, P Li. Microstructure and wear resistance enhancement of cast steel rolls by laser surface alloying NiCr-Cr3C2. Materials and Design, 2010,31(6): 2737-2744. (SCI)
(11) GF Sun*, YK Zhang, CS Liu, P Li, XQ Tao. Microstructure and wear resistance enhancement of semi-steel rolls by laser surface alloying of NiCr-Cr3C2. Lasers in Engineering, 2010, 19: 347-361. (SCI)
(10) GF Sun*, YK Zhang, CS Liu. Effects of laser surface re-melting on the microstructure and hardness of laser deposited Co-285+WC coatings. Lasers in Engineering, 2010, 20: 9-20. (SCI)
(9) JZ Lu, KY Luo, YK Zhang, GF Sun, YY Gu, JZ Zhou, XD Ren, XC Zhang, LF Zhang, KM Chen, CY Cui, YF Jiang, AX Feng, L Zhang. Grain refinement mechanism of multiple laser shock processing impacts on ANSI 304 stainless steel. Acta materialia,2010, 58(16): 5354-5362. (SCI)
(8) HY Wang, DW Zuo, G Chen, GF Sun, XF Li, X Cheng. Hot corrosion behavior of low Al NiCoCrAlY cladded coatings reinforced by nano-particles on a Ni-base super alloy. Corrosion science, 2010, 52: 3561-3567. (SCI)
(7) JZ Lu, KY Luo, YK Zhang, CY Cui, GF Sun, JZ Zhou, L Zhang, J You, KM Chen, JW Zhong. Grain refinement of LY2 aluminum alloy induced by ultra-high plastic strain during multiple laser shock processing impacts. Acta Materialia, 2010, 58: 3984-3994. (SCI)
(6) 孙桂芳, 梁京, 陈岁元, 刘常升. 碳钢上激光辅助沉积Co-285 合金的组织与性能. 中国有色金属学报, 2010, 20(2): 274-281(EI).
2008
(5) 孙桂芳, 刘常升, 陶兴启, 陈岁元. 高镍铬无线冷硬铸铁轧辊表面激光合金化的研究. 东北大学学报(自然科学版), 2008, 29(6): 845-848 (EI).
Conference Proceedings
(4) R Zhou, GF Sun*, KK Chen, YQ Tong. Effect of tempering on microstructure and mechanical properties of cast iron rolls laser alloyed with C-B-W-Cr. 2014 Global Conference on Polymer and Composite Materials (PCM 2014), IOP Conf. Series: Materials Science and Engineering, 2014, 62: 012015-6. (EI)
(3) GF Sun*, R Zhou, P Li, YK Zhang. Effects of processing parameters on the laser deposited Co-285 + WC coatings. Key Engineering Materials, 2011, 464: 568-571. (EI)
(2) GF Sun, CS Liu, J Liang, JH Zhou, XQ Tao. Laser surface alloying of NiCr-Cr3C2 and C-B-W-Cr powders on nodular cast iron rolls. Advanced Materials Research, 2009, 79-82: 1459-1462. (EI)
(1) GF Sun, CS Liu, GP Dinda, J Mazumder. Laser-Aided Direct Metal Deposition of Co-285. ICALEO, 27th International Congress on Application of Lasers & Electro-Optics, October 20-23, 2008. Pechanga Resort & Casino, Temecula, CA, USA. (ISTP)