Laser Technology, Volume. 48, Issue 3, 387(2024)

Microstructure and properties of La2O3 doped Fe-based shape memory alloy coating

XU Na, PANG Chi*, XU Peng, WANG Wei, and JING Zhijie
Author Affiliations
  • [in Chinese]
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    References(43)

    [1] [1] PATHANIA A,KUMAR S A,NAGESHA B K,et al.Reclamation of titanium alloy based aerospace parts using laser based metal deposition methodology[J].Materials Today: Proceedings,2021,45: 4886-4892.

    [2] [2] AVERY D Z,CLEEK C E,PHILLIPS B J,et al.Evaluation of microstructure and mechanical properties of Al-Zn-Mg-Cu alloy repaired via additive friction stir deposition[J].Journal of Engineering Materials and Technology,2022,144(3): 031003.

    [3] [3] VTIAN J Y,XU P,CHEN J,et al.Microstructure and phase transformation behaviour of a Fe/Mn/Si/Cr/Ni alloy coating by laser cladding[J].Optics and Lasers in Engineering,2019,122: 97-104.

    [4] [4] SMUROV I.Laser cladding and laser assisted direct manufacturing[J].Surface and Coatings Technology,2008,202(18): 4496-4502.

    [5] [5] CALLEJA A,TABERNERO I,FERNNDEZ A,et al.Improvement of strategies and parameters for multi-axis laser cladding operations[J].Optics and Lasers in Engineering,2014,56: 113-120.

    [6] [6] LIU Ch Y,XU P,ZHENG D Y,et al.Study on microstructure and properties of a Fe-based SMA/PZT composite coating produced by laser cladding[J].Journal of Alloys and Compounds,2020,831: 154813.

    [7] [7] ROBINSON J S,PIRLING T,TRUMAN C E,et al.Residual stress relief in the aluminium alloy 7075[J].Materials Science and Technology,2017,33(15): 1765-1775.

    [8] [8] TANG F,LU A L,MEI J F,et al.Research on residual stress reduction by a low frequency alternating magnetic field[J].Journal of Materials Processing Technology,1998,74(1/3): 255-258.

    [9] [9] PARK S J,MURAISHI S.Influence of residual stress around constituent particles on recrystallization and grain growth in Al-Mn-based a-lloy during annealing[J].Materials,2021,14(7): 1701.

    [10] [10] ROEHLING J D,SMITH W L,ROEHLING T T,et al.Reducing residual stress by selective large-area diode surface heating during laser powder bed fusion additive manufacturing[J].Additive Manufacturing,2019,28: 228-235.

    [11] [11] MARTINEZ HURTADO A,FRANCIS J A,STEVENS N P C.An assessment of residual stress mitigation strategies for laser clad depo-sits[J].Materials Science and Technology,2016,32(14): 1484-1494.

    [12] [12] XU P,JU H,LIN Ch X,et al.In-situ synthesis of Fe-Mn-Si-Cr-Ni shape memory alloy functional coating by laser cladding[J].Chinese Optics Letters,2014,12(4): 041403.

    [13] [13] JU H,LIN C X,ZHANG J Q,et al.Research on residual stress inside Fe-Mn-Si shape memory alloy coating by laser cladding processing[J].Optoelectronics Letters,2016,12(5): 344-348.

    [14] [14] TIAN J Y,XU P,CHEN J H,et al.Microstructure and phase transformation behaviour of a Fe/Mn/Si/Cr/Ni alloy coating by laser cladding[J].Optics and Lasers in Engineering,2019,122: 97-104.

    [15] [15] LIU Ch Y,XU P,ZHA G Q,et al.Microstructure and properties of a Ti doped Fe-based SMA coating produced by laser cladding[J].Journal of Materials Research and Technology,2021,14: 2441-2450.

    [16] [16] LIU Ch Y,XU P,LISh B,et al.Evading stress-property tradeoff in a SMA/PZT laser cladding coating via phase transformations[J].Surface and Coatings Technology,2022,436: 128313.

    [17] [17] BALARAM V.Rare earth elements: A review of applications,occurrence,exploration,analysis,recycling,and environmental impact[J].Geoscience Frontiers,2019,10(4): 1285-1303.

    [18] [18] YANG Y W,YANG M L,HE Ch X,et al.Rare earth improves strength and creep resistance of additively manufactured Zn implants[J].Composites Part B: Engineering,2021,216: 108882.

    [19] [19] ZHANGZh Y,LU X Ch,HAN B L,et al.Rare earth effect on the microstructure and wear resistance of Ni-based coatings[J].Materials Science and Engineering,2007,A454: 194-202.

    [20] [20] DAS A K.Effect of rare earth oxide additive in coating deposited by laser cladding: A review[J].Materials Today: Proceedings,2022,52: 1558-1564.

    [21] [21] WANG K L,ZHANG Q B,SUN M L,et al.Rare earth elements modification of laser-clad nickel-based alloy coatings[J].Applied Surface Science,2001,174(3/4): 191-200.

    [22] [22] CHEN S Ch,YE H X,LIN X Q.Effect of rare earth and alloying elements on the thermal conductivity of austenitic medium manganese steel[J].International Journal of Minerals,Metallurgy,and Materials,2017,24: 670-674.

    [23] [23] GE M Q,GUO X F,YAN Y H.Preparation and study on the structure and properties of rare-earth luminescent fiber[J].Textile Research Journal,2012,82(7): 677-684.

    [24] [24] YU X,ZHANG Zh H,XIE J X.Microstructure,ordered structure and warm tensile ductility of Fe-6.5% Si alloy with various Ce content[J].Acta Metallurgica Sinica,2017,53(8): 927-936(in Ch-inese).

    [25] [25] HAMDY A S,HUSSIEN H M.Deposition,characterization and electrochemical properties of permanganate-based coating treatments over ZE41 Mg-Zn-rare earth alloy[J].International Journal of Electrochemical Science,2013,8: 11386-11402.

    [26] [26] JIN G,LU B W,HOU D D,et al.Influence of rare earths addition on residual stress of Fe-based coating prepared by brush plating technology[J].Journal of Rare Earths,2016,34(3): 336-340.

    [27] [27] WANG K L,ZHANG Q B,SUN M L,et al.Microstructural characteristics of laser clad coatings with rare earth metal elements[J].Journal of Materials Processing Technology,2003,139(1/3): 448-452.

    [28] [28] CHEN Sh G,ZHANG X M,ZHENG Q Ch,et al.Effect of CeO2 on microstructure and properties of Ni60 alloy coating by laser cladding[J].Laser Technology,2017,41(6): 904-908(in Chinese).

    [29] [29] SONG Ch W,LI M X,Effect of nano-CeO2 on the microstructure and properties of laser clad nickel-based alloy coating[J].Laser Technology,2006,30(3): 228-231(in Chinese).

    [30] [30] QUAZI M M,FAZAL M A,HASEEB A,et al.Effect of rare earth elements and their oxides on tribo-mechanical performance of laser claddings: A review[J].Journal of Rare Earths,2016,34(6): 549-564.

    [31] [31] TIAN J Y,XU P,LIU Q B.Effects of stress-induced solid phase transformations on residual stress in laser cladding a Fe-Mn-Si-Cr-Ni alloy coating[J].Materials & Design,2020,193: 108824.

    [32] [32] NAIK S N,WALLEY S M.The Hall-Petch and inverse Hall-Petch relations and the hardness of nanocrystalline metals[J].Journal of Materials Science,2020,55(7): 2661-2681.

    [33] [33] WANG Q,YANG J,NIU W J,et al.Effect of La2O3 on microstructure and properties of Fe-based alloy coatings by laser cladding[J].Optik,2021,245: 167653.

    [34] [34] XU Zh Y.fcc(γ)→hcp(ε) Martensitic transformation[J].Chin-ese Science,1997,E27(4): 289-293(in Chinese).

    [35] [35] CHENG X Y,HE Y,SONG R X,et al.Study of mechanical cha-racter and corrosion properties of La2O3 nanoparticle reinforced Ni-W composite coatings[J].Colloids and Surfaces,2022,A652: 129799.

    [36] [36] CHEN L,CHEN W G,LI D Y,et al.Effect of nano-La2O3 doping on the tribological behavior of laser cladded WC-12Co coating on 65Mn steel under water lubrication condition[J].Tribology International,2022,169: 107428.

    [37] [37] WEI Ch Q.Research on modification of in situ synthesized Ti3Al based ceramic composite coating on titanium alloy surface by laser cladding[D].Dalian: Dalian University of Technology,2018(in Chinese).

    [38] [38] ZHAO G M,WANG K L.Effect of La2O3 on corrosion resistance of laser clad ferrite-based alloy coatings[J].Corrosion Science,2006,48(2): 273-284.

    [39] [39] WANG D Zh,HU Q W,ZENG X Y.Residual stress and cracking behaviors of Cr13Ni5Si2 based composite coatings prepared by laser-induction hybrid cladding[J].Surface and Coatings Technology,2015,274: 51-59.

    [40] [40] ROSSINI N S,DASSISTI M,BENYOUNIS K Y,et al.Methods of measuring residual stresses in components[J].Materials & Design,2012,35: 572-588.

    [41] [41] ZHU J G,XIE H M,HU Zh X,et al.Residual stress in thermal spray coatings measured by curvature based on 3D digital image co-rrelation technique[J].Surface and Coatings Technology,2011,206(6): 1396-1402.

    [42] [42] ZHANG H,PAN Y J,ZHANG Y,et al.Microstructure,toughness,and tribological properties of laser cladded Mo2FeB2-based composite coating with in situ synthesized WC and La2O3 addition[J].Surface and Coatings Technology,2022,449: 128947.

    [43] [43] GUAN Sh,NELSON B J.Electrodeposition of low residual stress CoNiMnP hard magnetic thin films for magnetic MEMS actuators[J].Journal of Magnetism and Magnetic Materials,2005,292: 49-58.

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    XU Na, PANG Chi, XU Peng, WANG Wei, JING Zhijie. Microstructure and properties of La2O3 doped Fe-based shape memory alloy coating[J]. Laser Technology, 2024, 48(3): 387

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    Paper Information

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    Received: May. 26, 2023

    Accepted: --

    Published Online: Aug. 5, 2024

    The Author Email: PANG Chi (p-chi@fiyboat365.com)

    DOI:10.7510/jgjs.issn.1001-3806.2024.03.014

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