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·178 工程科学学报,第43卷,第2期 of AlCoCrFeNiTio.s coatings produced by HVOF.Surf Coar in Calcium Phosphate Biomaterials.Berlin:Springer,2014:267 Technol,.2020,403:126379 [51]Alagarsamy K,Fortier A,Komarasamy M,et al.Mechanical [39]Srivastava M,Jadhav M,Chethan,et al.Synthesis and properties properties of high entropy alloy Alo CoCrFeNi for peripheral of high velocity oxy-fuel sprayed FeCoCrNiAl high entropy alloy vascular stent application.Cardiovasc Eng Technol,2016,7(4): coating.Surf Coat Technol,2019,378:124950 448 [40]Vallimanalan A,Babu S P K,Muthukumaran S,et al.Corrosion [52]Popescu G,Ghiban B,Popescu CA,et al.New TiZrNbTaFe high behaviour of thermally sprayed Mo added AlCoCrNi high entropy entropy alloy used for medical applications.IOP Conf Ser Mater alloy coating.Mater Today Proc,2020,27:2398 Sci Eng,2018,400(2):022049 [41]Guo W.Liang X B.Chen Y X,et al.Preparation and [53]Vladescu A,Titorencu I,Dekhtyar Y,et al.In vitro characterization of the FeCrNiCoCu(B)high-entropy alloy biocompatibility of Si alloyed multi-principal element carbide coatings.China Surf Eng,2011,24(2):70 coatings.PLoS ONE,2016,11(8):e0161151 (郭伟,梁秀兵,陈永雄,等.FeCrNiCoCu(B)高熵合金涂层的制 [54]Oses C,Toher C,Curtarolo S.High-entropy ceramics.Nat Rev 备与表征.中国表面工程,2011,24(2):70) Mater,2020,5:295 [42]Liang X B.Chen Y X,Zhang Z B,et al.Effect of heat treatment [55]Wang F,Yan X L,Wang T Y,et al.Irradiation damage in on FeCrNiCoCu high-entropy alloy coating.J Acad Armored (Zro2sTa2sNbo2sTio2s)C high-entropy carbide ceramics.Acta Force Eng,2013,274):96 Maer,2020,195:739 (梁秀兵,陈永雄,张志彬,等.热处理对FeCrNiCoCui高嫡合金涂 [56]Xie C X,Li W,Zheng D H,et al.Study of crystallization behavior 层的影响.装甲兵工程学院学报,2013,27(4):96) and kinetics of magnetic FeCoCrNiZr high entropy amorphous [43]Lehtonen J,Koivuluoto H,Ge Y L,et al.Cold gas spraying of a alloy.J Non-Cryst Solids,2019,514:20 high-entropy CrFeNiMn equiatomic alloy.Coatings,2020,10(1): [57]Satake M,Bitoh T.Synthesis of Fe-Co-Ni-(B,Si,C)ferromagnetic 53 high entropy amorphous alloys and their thermal and magnetic [44]Anupam A,Kumar S,Chavan N M,et al.First report on cold- properties.J Jpn Soc Powder Powder Metall,2018,65(7):401 sprayed AlCoCrFeNi high-entropy alloy and its isothermal [58]Li X Q,Wei D X,Vitos L,et al.Micro-mechanical properties of oxidation.J Mater Res,2019,34(5):796 new alternative binders for cemented carbides:CoCrFeNiW,high- [45]Yin S,Li W Y,Song B,et al.Deposition of FeCoNiCrMn high entropy alloy (HEA)coating via cold spraying.J Mater Sci entropy alloys.J Alloys Compd,2020,820:153141 Technol,2019,35(6):1003 [59]Peng Y B,Zhang W,Li T C,et al.Effect of WC content on [46]Karthikeyan J,Berndt C C.Tikkanen J,et al.Plasma spray microstructures and mechanical properties of FeCoCrNi high- synthesis of nanomaterial powders and deposits.Mater Sci Eng A, entropy alloy/WC composite coatings by plasma cladding.Suf 1997,238(2):275 Coat Technol,2020,385:125326 [47]Darut G,Niederhauser A,Jaccoud B,et al.VLPPS:An emerging [60]Nygard MM,Slawinski W A,Ek G,et al.Local order in high- process to create well-defined components by additive entropy alloys and associated deuterides -a total scattering and manufacturing.J Therm Spray Technol,2019,28(1-2):255 Reverse Monte Carlo study.Acta Mater,2020,199:504 [48]Fauchais P,Montavon G,Bertrand G.From powders to thermally [61]Kaufmann K,Vecchio K S.Searching for high entropy alloys:A sprayed coatings.J Therm Spray Technol,2010,19(1-2):56 machine leaming approach.Acta Mater,2020,198:178 [49]Montavon G,Sampath S,Berndt CC,et al.Effects of vacuum [62]Gao T J,Zhao D,Zhang T W.et al.Strain-rate-sensitive plasma spray processing parameters on splat morphology.JTherm mechanical response,twinning,and texture features of NiCoCrFe Spray Technol,1995,4(1):67 high-entropy alloy:Experiments,multi-level crystal plasticity and [50]Berndt CC,Hasan F,Tietz U,et al.A review of hydroxyapatite artificial neural networks modeling.JAlloys Compd,2020,845: coatings manufactured by thermal spray /Nissan BB.Advances 155911of  AlCoCrFeNiTi0.5 coatings  produced  by  HVOF. Surf Coat Technol, 2020, 403: 126379 Srivastava M, Jadhav M, Chethan, et al. Synthesis and properties of high velocity oxy-fuel sprayed FeCoCrNi2Al high entropy alloy coating. Surf Coat Technol, 2019, 378: 124950 [39] Vallimanalan  A,  Babu  S  P  K,  Muthukumaran  S,  et  al.  Corrosion behaviour of thermally sprayed Mo added AlCoCrNi high entropy alloy coating. Mater Today Proc, 2020, 27: 2398 [40] Guo  W,  Liang  X  B,  Chen  Y  X,  et  al.  Preparation  and characterization  of  the  FeCrNiCoCu(B)  high-entropy  alloy coatings. China Surf Eng, 2011, 24(2): 70 (郭伟, 梁秀兵, 陈永雄, 等. FeCrNiCoCu(B)高熵合金涂层的制 备与表征. 中国表面工程, 2011, 24(2):70) [41] Liang X B, Chen Y X, Zhang Z B, et al. Effect of heat treatment on  FeCrNiCoCu  high-entropy  alloy  coating. J Acad Armored Force Eng, 2013, 27(4): 96 (梁秀兵, 陈永雄, 张志彬, 等. 热处理对FeCrNiCoCu高熵合金涂 层的影响. 装甲兵工程学院学报, 2013, 27(4):96) [42] Lehtonen J, Koivuluoto H, Ge Y L, et al. Cold gas spraying of a high-entropy CrFeNiMn equiatomic alloy. Coatings, 2020, 10(1): 53 [43] Anupam  A,  Kumar  S,  Chavan  N  M,  et  al.  First  report  on  cold￾sprayed  AlCoCrFeNi  high-entropy  alloy  and  its  isothermal oxidation. J Mater Res, 2019, 34(5): 796 [44] Yin  S,  Li  W  Y,  Song  B,  et  al.  Deposition  of  FeCoNiCrMn  high entropy  alloy  (HEA)  coating  via  cold  spraying. J Mater Sci Technol, 2019, 35(6): 1003 [45] Karthikeyan  J,  Berndt  C  C,  Tikkanen  J,  et  al.  Plasma  spray synthesis of nanomaterial powders and deposits. Mater Sci Eng A, 1997, 238(2): 275 [46] Darut G, Niederhauser A, Jaccoud B, et al. VLPPS: An emerging process  to  create  well-defined  components  by  additive manufacturing. J Therm Spray Technol, 2019, 28(1-2): 255 [47] Fauchais P, Montavon G, Bertrand G. From powders to thermally sprayed coatings. J Therm Spray Technol, 2010, 19(1-2): 56 [48] Montavon  G,  Sampath  S,  Berndt  C  C,  et  al.  Effects  of  vacuum plasma spray processing parameters on splat morphology. J Therm Spray Technol, 1995, 4(1): 67 [49] Berndt C C, Hasan F, Tietz U, et al. A review of hydroxyapatite coatings manufactured by thermal spray // Nissan B B. Advances [50] in Calcium Phosphate Biomaterials. Berlin: Springer, 2014: 267 Alagarsamy  K,  Fortier  A,  Komarasamy  M,  et  al.  Mechanical properties  of  high  entropy  alloy  Al0.1CoCrFeNi  for  peripheral vascular  stent  application. Cardiovasc Eng Technol,  2016,  7(4): 448 [51] Popescu G, Ghiban B, Popescu C A, et al. New TiZrNbTaFe high entropy alloy used for medical applications. IOP Conf Ser Mater Sci Eng, 2018, 400(2): 022049 [52] Vladescu  A,  Titorencu  I,  Dekhtyar  Y,  et  al.  In  vitro biocompatibility  of  Si  alloyed  multi-principal  element  carbide coatings. PLoS ONE, 2016, 11(8): e0161151 [53] Oses  C,  Toher  C,  Curtarolo  S.  High-entropy  ceramics. Nat Rev Mater, 2020, 5: 295 [54] Wang  F,  Yan  X  L,  Wang  T  Y,  et  al.  Irradiation  damage  in (Zr0.25Ta0.25Nb0.25Ti0.25)C  high-entropy  carbide  ceramics. Acta Mater, 2020, 195: 739 [55] Xie C X, Li W, Zheng D H, et al. Study of crystallization behavior and  kinetics  of  magnetic  FeCoCrNiZr  high  entropy  amorphous alloy. J Non-Cryst Solids, 2019, 514: 20 [56] Satake M, Bitoh T. Synthesis of Fe-Co-Ni-(B, Si, C) ferromagnetic high  entropy  amorphous  alloys  and  their  thermal  and  magnetic properties. J Jpn Soc Powder Powder Metall, 2018, 65(7): 401 [57] Li X Q, Wei D X, Vitos L, et al. Micro-mechanical properties of new alternative binders for cemented carbides: CoCrFeNiWx high￾entropy alloys. J Alloys Compd, 2020, 820: 153141 [58] Peng  Y  B,  Zhang  W,  Li  T  C,  et  al.  Effect  of  WC  content  on microstructures  and  mechanical  properties  of  FeCoCrNi  high￾entropy  alloy/WC  composite  coatings  by  plasma  cladding. Surf Coat Technol, 2020, 385: 125326 [59] Nygård  M  M,  Sławiński  W  A,  Ek  G,  et  al.  Local  order  in  high￾entropy  alloys  and  associated  deuterides   –  a  total  scattering  and Reverse Monte Carlo study. Acta Mater, 2020, 199: 504 [60] Kaufmann K, Vecchio K S. Searching for high entropy alloys: A machine learning approach. Acta Mater, 2020, 198: 178 [61] Gao  T  J,  Zhao  D,  Zhang  T  W,  et  al.  Strain-rate-sensitive mechanical response, twinning, and texture features of NiCoCrFe high-entropy alloy: Experiments, multi-level crystal plasticity and artificial  neural  networks  modeling. J Alloys Compd,  2020,  845: 155911 [62] · 178 · 工程科学学报,第 43 卷,第 2 期
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