Chinese Journal of Lasers, Volume. 49, Issue 16, 1602021(2022)
Process Optimization and Interfacial Microstructure and Properties Analysis of Laser Cladded IN718 Alloy
[1] Zhang Q L, Li D, Zhang J et al. Influence of pre-fabricated groove angle on microstructure and properties of laser additive remanufactured IN718 alloy[J]. Surface Technology, 48, 90-96(2019).
[2] Yao Z H, Yao J H, Xiang Q. Development of laser remanufacturing technology and application[J]. Strategic Study of CAE, 22, 63-70(2020).
[3] Li P F, Gong Y D, Zhou J Z et al. Interface characteristics of abrupt gradient materials fabricated by laser cladding[J]. Laser & Optoelectronics Progress, 58, 0714011(2021).
[4] Zhao X, Sui S, Li Z et al. Effect of forming environments on microstructure of GH4169 superalloy fabricated using high-deposition-rate laser metal deposition[J]. Chinese Journal of Lasers, 47, 0802004(2020).
[5] Sui S, Chen J, Ma L et al. Microstructures and stress rupture properties of pulse laser repaired Inconel 718 superalloy after different heat treatments[J]. Journal of Alloys and Compounds, 770, 125-135(2019).
[6] Wang Q Y, Xi Y C, Liu X Y et al. Microstructure and mechanical properties of interface between laser cladded Hastelloy coating and steel substrate[J]. Transactions of Nonferrous Metals Society of China, 27, 733-740(2017).
[7] Wang L, Xia H C, Hu Y et al. Porosity defects suppression in narrow V-groove laser remanufacturing zone through electromagnetic composite field[J]. Chinese Journal of Lasers, 47, 0602003(2020).
[8] Lu Y Z, Lei W N, Ren W B et al. Matching and strengthening between Inconel718 cladding and K418 alloy blades by laser remanufacturing[J]. Laser Technology, 44, 54-60(2020).
[9] Fang J X, Wang Y J, Dong S Y et al. Microstructure and mechanics properties of interfaces between laser cladded Inconel718 coating and substrate[J]. China Mechanical Engineering, 30, 2108-2113(2019).
[10] Xu M S, Li J F, Li H D et al. Influence on powders and process parameters on bonding shear strength in laser cladding[J]. Journal of Mechanical Engineering, 53, 209-216(2017).
[11] Wang W M, Shen J B, Chen Y et al. Adhesive test method for measuring interfacial bonding strength between laser cladding and matrix[J]. Physical Testing and Chemical Analysis (Part A: Physical Testing), 55(2019).
[12] Zhang J, Zhang Q L, Li D et al. Effect of δ aging treatment on microstructure and tensile properties of repaired Inconel 718 alloy using laser additive manufacturing[J]. Chinese Journal of Lasers, 47, 0102001(2020).
[13] Li D, Zhang Q L, Zhang J et al. Influence of atmospheres on morphology, microstructure and properties of laser cladding IN718 coatings[J]. Surface Technology, 47, 185-190(2018).
[14] Chen B, Mazumder J. Role of process parameters during additive manufacturing by direct metal deposition of Inconel 718[J]. Rapid Prototyping Journal, 23, 919-929(2017).
[15] Zhang J, Zhang Q L, Chen Z J et al. Experimental and statistical analyses of geometry characteristics of Inconel 718 laser clad layer with response surface methodology[J]. Journal of Laser Applications, 31, 032016(2019).
[16] Wu J, Zhu D D, Yang R C et al. Parameters optimization and friction and wear properties for laser cladding Ni60AA coating on 45 steel shaft surface[J]. Laser & Optoelectronics Progress, 58, 1114008(2021).
[17] Pang Y F, Fu G Y, Wang M Y et al. Parameter optimization of high deposition rate laser cladding based on the response surface method and genetic neural network model[J]. Chinese Journal of Lasers, 48, 0602112(2021).
[18] Zhang Q L, Zhang J, Li D et al. Microstructure and properties of laser additive remanufactured IN718 alloy with different aging temperatures[J]. Rare Metal Materials and Engineering, 49, 1785-1792(2020).
[19] Zhang J, Zhang Q L, Zhuang Y F et al. Microstructures and cyclic hot corrosion behavior of laser deposited Inconel 718 alloy under different heat treatment conditions[J]. Optics & Laser Technology, 135, 106659(2021).
[20] Karmakar D P, Muvvala G, Nath A K. Effect of scan strategy and heat input on the shear strength of laser cladded Stellite 21 layers on AISI H13 tool steel in as-deposited and heat treated conditions[J]. Surface and Coatings Technology, 384, 125331(2020).
[21] Zhao Y H, Wang Z G, Zhao J B et al. Influence of substrate cooling condition on properties of laser deposited AlSi10Mg alloys[J]. Acta Optica Sinica, 40, 1114002(2020).
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Jie Zhang, Qunli Zhang, Jianhua Yao, Zhisheng Wu, Ke Li. Process Optimization and Interfacial Microstructure and Properties Analysis of Laser Cladded IN718 Alloy[J]. Chinese Journal of Lasers, 2022, 49(16): 1602021
Category: laser manufacturing
Received: Feb. 10, 2022
Accepted: May. 5, 2022
Published Online: Jul. 28, 2022
The Author Email: Zhang Qunli (zql@zjut.edu.cn)