International Journal of Extreme Manufacturing, Volume. 7, Issue 1, 15003(2025)

Heterogeneous interfaces of aluminum bronze/Inconel 718 dissimilar alloys under different wire arc directed energy deposition sequences

Chang Tianxing, Fang Xuewei, Zhou You, Zhang Hongkai, Xi Naiyuan, Ghafoor Shahid, and Huang Ke
References(59)

[1] [1] Cunningham C R, Flynn J M, Shokrani A, Dhokia V and Newman S T 2018 Invited review article: strategies and processes for high quality wire arc additive manufacturing Addit. Manuf.22 672–86

[2] [2] Svetlizky D, Das M, Zheng B L, Vyatskikh A L, Bose S, Bandyopadhyay A, Schoenung J M, Lavernia E J and Eliaz N 2021 Directed energy deposition (DED) additive manufacturing: physical characteristics, defects, challenges and applications Mater. Today49 271–95

[3] [3] Lee J H, Lee C M and Kim D H 2022 Repair of damaged parts using wire arc additive manufacturing in machine tools J. Mater. Res. Technol.16 13–24

[4] [4] Yang L, Jiang X S, Sun H L, Shao Z Y, Fang Y J and Shu R 2021 Effects of alloying, heat treatment and nanoreinforcement on mechanical properties and damping performances of Cu–Al-based alloys: a review Nanotechnol. Rev.10 1560–91

[5] [5] Shen C, Pan Z X, Ding D H, Yuan L, Nie N, Wang Y, Luo D Z, Cuiuri D, van Duin S and Li H J 2018 The influence of post-production heat treatment on the multi-directional properties of nickel-aluminum bronze alloy fabricated using wire-arc additive manufacturing process Addit. Manuf.23 411–21

[6] [6] Zhang Y and Yin Y 2020 Investigation into the manufacturing process and properties of BrAl10Fe4 Aluminium-bronze parts by selective laser melting Mater. Technol.35 821–35

[7] [7] Ding D H, Pan Z X, van Duin S, Li H J and Shen C 2016 Fabricating superior NiAl bronze components through wire arc additive manufacturing Materials9 652

[8] [8] Kalashnikov K et al 2022 Development of a multimaterial structure based on CuAl9Mn2 bronze and inconel 625 alloy by double-wire-feed additive manufacturing Metals12 2048

[9] [9] Yang J, Zhang Y J, Zhao X Q, An Y L, Zhou H D, Chen J M and Guoliang H 2015 Tribological behaviors of plasma sprayed CuAl/Ni-graphite composite coating Tribol. Int.90 96–103

[10] [10] Zhang L N and Ojo O A 2020 Corrosion behavior of wire arc additive manufactured Inconel 718 superalloy J. Alloys Compd.829 154455

[11] [11] Tillmann W, Schaak C, Nellesen J, Schaper M, Aydinz M E and Hoyer K P 2017 Hot isostatic pressing of IN718 components manufactured by selective laser melting Addit. Manuf.13 93–102

[12] [12] Xu N W, Kang R K, Zhang B, Zhang Y, Wang C X, Bao Y and Dong Z G 2024 Improving fatigue properties of normal direction ultrasonic vibration assisted face grinding Inconel 718 by regulating machined surface integrity Int. J. Extrem. Manuf.6 035101

[13] [13] Vorontsov A, Gurianov D, Zykova A, Nikonov S, Chumaevskii A and Kolubaev E 2024 Phase formation and morphological characteristics of aluminum bronze and nickel alloy composites produced by the additive manufacturing process Scr. Mater.239 115811

[14] [14] Xu J L, Yang B, Ju C Y and Zhang L H 2010 Microstructure and tribological properties of a Ni-base laser cladding on aluminum bronze Adv. Mater. Res.160–162 100–5

[15] [15] Zhang L C and Wang J C 2024 Stabilizing 3D-printed metal alloys Science383 586–7

[16] [16] Ma H Y, Wang J C, Qin P, Liu Y J, Chen L Y, Wang L Q and Zhang L C 2024 Advances in additively manufactured titanium alloys by powder bed fusion and directed energy deposition: microstructure, defects, and mechanical behavior J. Mater. Sci. Technol.183 32–62

[17] [17] Xiao Y H, Wan Z X, Liu P W, Wang Z, Li J J and Chen L 2022 Quantitative simulations of grain nucleation and growth at additively manufactured bimetallic interfaces of SS316L and IN625 J. Mater. Process. Technol.302 117506

[18] [18] Hu Z Q, Hua L, Ni M, Ji F L and Qin X P 2023 Microstructure and mechanical properties of directed energy deposition-arc/wire bimetallic hierarchical structures of hot-working tool steel and martensitic stainless steel Addit. Manuf.67 103495

[19] [19] Squires L, Roberts E and Bandyopadhyay A 2023 Radial bimetallic structures via wire arc directed energy deposition-based additive manufacturing Nat. Commun.14 3544

[20] [20] Nagamatsu H, Abe T, Nakajima K and Sasahara H 2023 Development of directed energy deposition strategy for a mechanically interlocked pure Ti and Al alloy component with cross-shaped internal pure Ti lattice Addit. Manuf.78 103895

[21] [21] Zykova A et al 2022 Aluminum bronze/udimet 500 composites prepared by electron-beam additive double-wire-feed manufacturing Materials15 6270

[22] [22] Iams A D, Lienert T J, Otazu D A and Ramoni M 2023 Effects of deposition sequence on microstructural evolution in additively manufactured Cu-Cr-Nb alloy/superalloy bimetallic structures Addit. Manuf. Lett.6 100151

[23] [23] Kah P, Vimalraj C, Martikainen J and Suoranta R 2015 Factors influencing Al-Cu weld properties by intermetallic compound formation Int. J. Mech. Mater. Eng.10 10

[24] [24] Ma H, Qin G L, Geng P H, Ao Z Y and Chen Y 2022 Effect of intermetallic compounds on the mechanical property and corrosion behaviour of aluminium alloy/steel hybrid fusion-brazed welded structure J. Manuf. Process.75 170–80

[25] [25] Ning J S et al 2024 Printability disparities in heterogeneous material combinations via laser directed energy deposition: a comparative study Int. J. Extrem. Manuf.6 025001

[26] [26] Dinovitzer M, Chen X H, Laliberte J, Huang X and Frei H 2019 Effect of wire and arc additive manufacturing (WAAM) process parameters on bead geometry and microstructure Addit. Manuf.26 138–46

[27] [27] Wei C, Zhang Z Z, Cheng D X, Sun Z, Zhu M H and Li L 2021 An overview of laser-based multiple metallic material additive manufacturing: from macro- to micro-scales Int. J. Extrem. Manuf.3 012003

[28] [28] Wu F et al 2023 Evolution and formation of dissimilar metal interfaces in fusion welding Acta Mater.258 119232

[29] [29] Singh I J, Murtaza Q and Kumar P 2023 A comprehensive review on effect of cold metal transfer welding parameters on dissimilar and similar metal welding J. Eng. Res.25 73–80

[30] [30] Tian Y B, Shen J Q, Hu S S, Gou J and Kannatey-Asibu E 2020 Wire and arc additive manufactured Ti–6Al–4V/Al–6.25Cu dissimilar alloys by CMT-welding: effect of deposition order on reaction layer Sci. Technol. Weld. Joining25 73–80

[31] [31] Hauser T, Reisch R T, Seebauer S, Parasar A, Kamps T, Casati R, Volpp J and Kaplan A F H 2021 Multi-Material Wire Arc Additive Manufacturing of low and high alloyed aluminium alloys with in-situ material analysis J. Manuf. Process.69 378–90

[32] [32] Wei C, Gu H, Gu Y C, Liu L C, Huang Y H, Cheng D X, Li Z Q and Li L 2022 Abnormal interfacial bonding mechanisms of multi-material additive-manufactured tungsten–stainless steel sandwich structure Int. J. Extrem. Manuf.4 025002

[33] [33] Tan C L, Deng C, Li S, Abena A, Jamshidi P, Essa K, Wu L K, Xu G H, Attallah M M and Liu J 2022 Mechanical property and biological behaviour of additive manufactured TiNi functionally graded lattice structure Int. J. Extrem. Manuf.4 045003

[34] [34] Shuai C J, Li D S, Yao X, Li X and Gao C D 2023 Additive manufacturing of promising heterostructure for biomedical applications Int. J. Extrem. Manuf.5 032012

[35] [35] Englert L, Heuer A, Engelskirchen M K, Frlich F, Dietrich S, Liebig W V, Krger L and Schulze V 2022 Hybrid material additive manufacturing: interlocking interfaces for fused filament fabrication on laser powder bed fusion substrates Virtual Phys. Prototy17 508–27

[36] [36] Chueh Y H, Wei C, Zhang X J and Li L 2020 Integrated laser-based powder bed fusion and fused filament fabrication for three-dimensional printing of hybrid metal/polymer objects Addit. Manuf.31 100928

[37] [37] Xi N Y, Tang K X, Fang X W, Li Y, Duan Y S and Huang K 2023 Enhanced comprehensive properties of directed energy deposited Inconel 718 by a novel integrated deposition strategy J. Mater. Sci. Technol.141 42–55

[38] [38] Xi N Y, Ni Z Y, Fang X W, Zhou Y, Tang K X, Zhang H K and Huang K 2023 Role of -phase on mechanical behaviors of additive manufactured inconel 718: detailed microstructure analysis and crystal plasticity modelling Int. J. Plast.168 103708

[39] [39] Zhou Y, Fang X W, Xi N Y, Jin X X, Tang K X, Zhang Z Y, Zhang Q, Yang Y and Huang K 2024 Enhanced strength and ductility of laser-directed energy deposition repaired IN718 superalloy via a novel tailored heat treatment J. Mater. Sci. Technol.199 86–101

[40] [40] Wang H Y, Lu W and Liu J H 2010 Effects of high pressure heat treatment on the thermal physical properties of aluminum bronze Chin. J. High Press. Phys.24 300–4

[41] [41] Zhang Q W, Wang X T, Qin Y, He G N, Zhang S Y, Huang K L and Wang J 2022 Improving thermal conductivity of a nickel-based alloy through advanced electromagnetic coupling treatment J. Mater. Res. Technol.21 4708–23

[42] [42] Rosli N A, Alkahari M R, Abdollah M F B, Maidin S, Ramli F R and Herawan S G 2021 Review on effect of heat input for wire arc additive manufacturing process J. Mater. Res. Technol.11 2127–45

[43] [43] Luo S B, Wang W L, Xia Z C and Wei B 2017 Phase separation and subsequent solidification of peritectic Fe–Cu–Ge alloys subjected to substantial undercooling processing J. Alloys Compd.717 190–6

[44] [44] Soysal T, Kou S, Tat D and Pasang T 2016 Macrosegregation in dissimilar-metal fusion welding Acta Mater.110 149–60

[45] [45] Wang J C, Zhu R, Liu Y J and Zhang L C 2023 Understanding melt pool characteristics in laser powder bed fusion: an overview of single- and multi-track melt pools for process optimization Adv. Powder Mater.2 100137

[46] [46] Zhang Y J, Zhou J X, Yin Y J, Ji X Y, Shen X and Guo Z 2023 Study on the solutal convection during dendrite growth of superalloy under directional solidification condition J. Mater. Res. Technol.23 3916–27

[47] [47] Rojas R, Sotomayor V, Takaki T, Hayashi K and Tomiyama A 2022 A phase field-finite difference lattice Boltzmann method for modeling dendritic growth solidification in the presence of melt convection Comput. Math. Appl.114 180–7

[48] [48] Sun Q, Chen J Y, Wang X N, Gu F, Tan C W, Shamsolhodaei A, Sun L N and Zhou Y N 2021 Study on weld formation and segregation mechanism for dissimilar pulse laser welding of NiTi and Cu wires Opt. Laser Technol.140 107071

[49] [49] Yang M X, Liu H and Qi B J 2019 The surface depression and temperatures in molten pool with pulsed arc welding J. Manuf. Process.37 130–8

[50] [50] Lu L X, Sridhar N and Zhang Y W 2018 Phase field simulation of powder bed-based additive manufacturing Acta Mater.144 801–9

[51] [51] Prasad A, Yuan L, Lee P, Patel M, Qiu D, Easton M and StJohn D 2020 Towards understanding grain nucleation under Additive Manufacturing solidification conditions Acta Mater.195 392–403

[52] [52] Dharmendra C, Shakerin S, Ram G D J and Mohammadi M 2020 Wire-arc additive manufacturing of nickel aluminum bronze/stainless steel hybrid parts—Interfacial characterization, prospects, and problems Materialia13 100834

[53] [53] Chumaevskii A V, Kalashnikova T A, Panfilov A O, Gusarova A V, Knyazhev E O, Kalashnikov K N and Nikonov S Y 2021 The formation of bimetallic materials by the electron-beam additive manufacturing IOP Conf. Ser.: Mater. Sci. Eng.1079 042014

[54] [54] Noecker I I F F and DuPont J N 2007 Microstructural development and solidification cracking susceptibility of Cu deposits on steel: part II—use of a Ni interlayer J. Mater. Sci.42 510–21

[55] [55] Lv J M, Liang Y C, Xu X, Xu G, Zhang H M, Lu H F, Luo K Y, Cai J and Lu J Z 2024 Performance-control-orientated hybrid metal additive manufacturing technologies: state of the art, challenges, and future trends Int. J. Extrem. Manuf.6 032009

[56] [56] Li X Z, Zhang M G, Fang X W, Li Z X, Jiao G H and Huang K 2023 Improved strength-ductility synergy of directed energy deposited AZ31 magnesium alloy with cryogenic cooling mode Virtual Phys. Prototy18 2170252

[57] [57] Ma Q S, Chen H Z, Ren N N, Zhang Y Y, Hu L, Meng W and Yin X H 2021 Effects of ultrasonic vibration on microstructure, mechanical properties, and fracture mode of inconel 625 parts fabricated by cold metal transfer arc additive manufacturing J. Mater. Eng. Perform.30 6808–20

[58] [58] Wen C Y, Qiu Y, Zhang Z G, Li K M, Deng C, Hu L X, Chen D C, Lu Y and Zhou S F 2024 Deformation behavior of heterogeneous lamellar Cu-Fe-P immiscible alloys with enhanced strength and ductility produced by laser powder bed fusion J. Alloys Compd.971 172675

[59] [59] Zhou S F, Xie M, Wu C Y, Yi Y L, Chen D C and Zhang L C 2022 Selective laser melting of bulk immiscible alloy with enhanced strength: heterogeneous microstructure and deformation mechanisms J. Mater. Sci. Technol.104 81–87

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Chang Tianxing, Fang Xuewei, Zhou You, Zhang Hongkai, Xi Naiyuan, Ghafoor Shahid, Huang Ke. Heterogeneous interfaces of aluminum bronze/Inconel 718 dissimilar alloys under different wire arc directed energy deposition sequences[J]. International Journal of Extreme Manufacturing, 2025, 7(1): 15003

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Received: Jan. 26, 2024

Accepted: Apr. 17, 2025

Published Online: Apr. 17, 2025

The Author Email:

DOI:10.1088/2631-7990/ad870f

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