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      Understanding of microstructures and mechanical properties of thermal sprayed Ni-based coatings with Al and Mo addition

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      https://www.riss.kr/link?id=A108416240

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      다국어 초록 (Multilingual Abstract)

      In this study, the mechanical properties of Ni coating implemented with twin wire arc spray (TWAS) were analyzed by adding Al and Mo to improve the surface properties of high-strength low-alloy steel. The effect of the additive element on the nickel c...

      In this study, the mechanical properties of Ni coating implemented with twin wire arc spray (TWAS) were analyzed by adding Al and Mo to improve the surface properties of high-strength low-alloy steel. The effect of the additive element on the nickel coating was suggested through microstructure analysis such as grain size and intermetallic compounds, and the applicability of Mo in the Ni-Al coating was evaluated. In the Ni-5Al coating, when the Al content was increased to 20Al, the grain size decreased by 19.81%, and when Mo was added, it decreased by 8.91% in Ni-5.5Al-5Mo. In addition, the more Al was added, the more intermetallic com-pounds of NiAl and Ni3Al formed. This is because the increase in Al content and the addition of Mo caused FCC lattice structure expansion and provided the driving force for solid solution formation. As a result of the microhardness test, the mechanical properties of Ni-20Al and Ni-5.5Al-Mo increased by 121.68% and 16.58%, respectively, compared to Ni-5Al.

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      참고문헌 (Reference) 논문관계도

      1 C. Xu, "The effect of Al content on the galvanic corrosion behaviour of coupled Ni/graphite and Ni–Al coatings" 53 (53): 2066-2074, 2011

      2 Z. Ahmad, "Principles of Corrosion Engineering and Corrosion Control" Butterworth-Heinemann 57-119, 2006

      3 Y. Wang, "Microstructures, hard-ness and erosion behavior of thermal sprayed and heat treated NiAl coatings with different ceria" 263 (263): 371-378, 2007

      4 Y. E. Jeong, "Microstructures and mechanical properties of deposited Fe-8Cr-3V-2Mo-2W on SCM420 substrate using directed energy deposition and effect of post-heat treatment" 14 (14): 2021

      5 J. Wang, "Microstructure of Ni–Al powder and Ni–Al composite coatings prepared by twin-wire arc spraying" 23 (23): 810-818, 2016

      6 E. Kornienko, "Microstructure and properties of Ni-Al coatings obtained by conventional and high-velocity atmospheric plasma spraying" 6 : 100038-, 2022

      7 X. Chen, "Microstructure and proper-ties of 700 MPa grade HSLA steel during high temperature deformation" 631 : 225-231, 2015

      8 J. Lee, "Microstructural evo-lution and martensitic transformation in FeCrV alloy fabri-cated via additive manufacturing" 809 : 2021

      9 E. Byon, "Introduction of ship deck coating method(anti-slip coating and thermal spray coating technology)" (513) : 144-149, 2021

      10 N. P Wasekar, "Influence of molybdenum on the mechanical properties, electrochemical corrosion and wear behavior of electrodeposited Ni-Mo alloy" 370 : 298-310, 2019

      1 C. Xu, "The effect of Al content on the galvanic corrosion behaviour of coupled Ni/graphite and Ni–Al coatings" 53 (53): 2066-2074, 2011

      2 Z. Ahmad, "Principles of Corrosion Engineering and Corrosion Control" Butterworth-Heinemann 57-119, 2006

      3 Y. Wang, "Microstructures, hard-ness and erosion behavior of thermal sprayed and heat treated NiAl coatings with different ceria" 263 (263): 371-378, 2007

      4 Y. E. Jeong, "Microstructures and mechanical properties of deposited Fe-8Cr-3V-2Mo-2W on SCM420 substrate using directed energy deposition and effect of post-heat treatment" 14 (14): 2021

      5 J. Wang, "Microstructure of Ni–Al powder and Ni–Al composite coatings prepared by twin-wire arc spraying" 23 (23): 810-818, 2016

      6 E. Kornienko, "Microstructure and properties of Ni-Al coatings obtained by conventional and high-velocity atmospheric plasma spraying" 6 : 100038-, 2022

      7 X. Chen, "Microstructure and proper-ties of 700 MPa grade HSLA steel during high temperature deformation" 631 : 225-231, 2015

      8 J. Lee, "Microstructural evo-lution and martensitic transformation in FeCrV alloy fabri-cated via additive manufacturing" 809 : 2021

      9 E. Byon, "Introduction of ship deck coating method(anti-slip coating and thermal spray coating technology)" (513) : 144-149, 2021

      10 N. P Wasekar, "Influence of molybdenum on the mechanical properties, electrochemical corrosion and wear behavior of electrodeposited Ni-Mo alloy" 370 : 298-310, 2019

      11 R. Jafari, "High-temperature corrosion per-formance of HVAF-sprayed NiCr, NiAl, and NiCrAlY coat-ings with alkali sulfate/chloride exposed to ambient air" 160 : 2019

      12 박형근 ; 김희진 ; 박철규, "HSLA-100강용 무예열 GMA 용접재료 개발" 대한용접접합학회 29 (29): 141-146, 2011

      13 G. Yang, "Effect of sec-ondary passivation on corrosion behavior and semiconduct-ing properties of passive film of 2205 duplex stainless steel" 15 : 6828-6840, 2021

      14 A. Shabani, "Effect of heat treatment on structure and oxidation resistance of flame-sprayed Ni-20 wt.% Al on carbon steel" 30 : 739-753, 2021

      15 W. Wu, "Corrosion and SCC ini-tiation behavior of low-alloy high-strength steels microal-loyed with Nb and Sb in a simulated polluted marine atmos-phere" 9 (9): 12976-12995, 2020

      16 G. Moon, "Combined effects of optimized heat treatment and nickel coating for the improvement of inter-facial bonding in aluminum–iron alloys hybrid structures" 11 (11): 1-15, 2021

      17 V. Panwar, "A review on dif-ferent thermal spray coating process for industrial applica-tions" 064-068, 2017

      18 B. S. Yilbas, "2.28 anti-corrosive materials" 2 : 913-943, 2018

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