Selective laser melting of an equiatomic CoCrFeMnNi high-entropy alloy: Processability, non-equilibrium microstructure and mechanical property
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T. Yuan | P. Cao | Rui-di Li | Chao Chen | K. Zhou | Niu Pengda | K. Zhou | Tiechui Yuan
[1] Xiaozhou Liao,et al. Hierarchical microstructure and strengthening mechanisms of a CoCrFeNiMn high entropy alloy additively manufactured by selective laser melting , 2018, Scripta Materialia.
[2] Jingjing Yang,et al. Prediction of microstructure in selective laser melted Ti 6Al 4V alloy by cellular automaton , 2018, Journal of Alloys and Compounds.
[3] J. Krell,et al. General investigations on processing tool steel X40CrMoV5-1 with selective laser melting , 2018 .
[4] Zhifeng Lin,et al. Studies on the microstructure and properties of AlxCoCrFeNiTi1-x high entropy alloys , 2018 .
[5] D. Ponge,et al. Phase nucleation through confined spinodal fluctuations at crystal defects evidenced in Fe-Mn alloys , 2018, Nature Communications.
[6] Min Song,et al. Microstructures and mechanical properties of C-containing FeCoCrNi high-entropy alloy fabricated by selective laser melting , 2018 .
[7] Xingwu Qiu,et al. Microstructure, hardness and corrosion resistance of Al 2 CoCrCuFeNiTi x high-entropy alloy coatings prepared by rapid solidification , 2018 .
[8] Yong Zhang,et al. Cryogenic-deformation-induced phase transformation in an FeCoCrNi high-entropy alloy , 2018 .
[9] Chee Kai Chua,et al. Modeling temperature and residual stress fields in selective laser melting , 2018 .
[10] J. Kim,et al. Mechanical properties and deformation twinning behavior of as-cast CoCrFeMnNi high-entropy alloy at low and high temperatures , 2018 .
[11] Yang Shao,et al. Microstructures and mechanical properties of TixNbMoTaW refractory high-entropy alloys , 2018 .
[12] Jingjing Yang,et al. Investigation on laser welding of selective laser melted Ti-6Al-4V parts: Weldability, microstructure and mechanical properties , 2018 .
[13] Jingfeng Zhang,et al. Structure and high-temperature property of amorphous composite coating synthesized by laser cladding FeCrCoNiSiB high-entropy alloy powder , 2018 .
[14] Hyoung-Seop Kim,et al. High-temperature tensile deformation behavior of hot rolled CrMnFeCoNi high-entropy alloy , 2018 .
[15] Ruirun Chen,et al. Effect of Co content on phase formation and mechanical properties of (AlCoCrFeNi) 100-x Co x high-entropy alloys , 2018 .
[16] Yusheng Shi,et al. Effect of scan line spacing on texture, phase and nanohardness of TiAl/TiB2 metal matrix composites fabricated by selective laser melting , 2017 .
[17] B. Zhang,et al. Microstructural origins of high strength and high ductility in an AlCoCrFeNi2.1 eutectic high-entropy alloy , 2017 .
[18] Mujian Xia,et al. Improving additive manufacturing processability of hard-to-process overhanging structure by selective laser melting , 2017 .
[19] X. Shao,et al. An octree-based adaptive mesh refinement method for three-dimensional modeling of keyhole mode laser welding , 2017 .
[20] U. Ramamurty,et al. Tensile, fracture, and fatigue crack growth properties of a 3D printed maraging steel through selective laser melting , 2017 .
[21] Yusheng Shi,et al. Integral method of preparation and fabrication of metal matrix composite: Selective laser melting of in-situ nano/submicro-sized carbides reinforced iron matrix composites , 2017 .
[22] Libo Zhou,et al. Selective laser melting of pure tantalum: Densification, microstructure and mechanical behaviors , 2017 .
[23] M. A. Zaeem,et al. Generalized stacking fault energies, ductilities, and twinnabilities of CoCrFeNi-based face-centered cubic high entropy alloys , 2017 .
[24] Liangchi Zhang,et al. Investigation into nanoscratching mechanical response of AlCrCuFeNi high-entropy alloys using atomic simulations , 2017 .
[25] T. Yuan,et al. Selective laser melting of a novel Sc and Zr modified Al-6.2 Mg alloy: Processing, microstructure, and properties , 2017 .
[26] T. L. Yang,et al. Microstructure and mechanical properties of open-cell porous Ti-6Al-4V fabricated by selective laser melting , 2017 .
[27] T. Langdon,et al. Defect structure and hardness in nanocrystalline CoCrFeMnNi High-Entropy Alloy processed by High-Pressure Torsion , 2017 .
[28] Xin Lin,et al. Effect of Ti addition on cracking and microhardness of Inconel 625 during the laser solid forming processing , 2017 .
[29] X. An,et al. In-situ high-resolution transmission electron microscopy investigation of grain boundary dislocation activities in a nanocrystalline CrMnFeCoNi high-entropy alloy , 2017 .
[30] Bin Chen,et al. Deformation stimulated precipitation of a single-phase CoCrFeMnNi high entropy alloy , 2017 .
[31] D. Choudhuri,et al. Cu assisted stabilization and nucleation of L1 2 precipitates in Al 0.3 CuFeCrNi 2 fcc-based high entropy alloy , 2017 .
[32] Guanqun Yu,et al. Porosity evolution and its thermodynamic mechanism of randomly packed powder-bed during selective laser melting of Inconel 718 alloy , 2017 .
[33] Zemin Wang,et al. Effect of crystallographic orientation on mechanical anisotropy of selective laser melted Ti-6Al-4V alloy , 2017 .
[34] M. Tikhonovsky,et al. Mechanical properties of the CoCrFeNiMnVx high entropy alloys in temperature range 4.2–300 K , 2017 .
[35] A. Weisheit,et al. Combining thermodynamic modeling and 3D printing of elemental powder blends for high-throughput investigation of high-entropy alloys – Towards rapid alloy screening and design , 2017 .
[36] Peter Hodgson,et al. Tension/compression asymmetry in additive manufactured face centered cubic high entropy alloy , 2017 .
[37] Jian Huang,et al. Microstructure and corrosion properties of CrMnFeCoNi high entropy alloy coating , 2017 .
[38] Kai Zhang,et al. Evolution of microstructure, mechanical and corrosion properties of AlCoCrFeNi high-entropy alloy prepared by direct laser fabrication , 2017 .
[39] Jinghao Li,et al. Synthesis and characterization of refractory TiZrNbWMo high-entropy alloy coating by laser cladding , 2017 .
[40] D. Choudhuri,et al. Change in the primary solidification phase from fcc to bcc-based B2 in high entropy or complex concentrated alloys , 2017 .
[41] C. Yan,et al. Effect of laser scanning speed on a Ti-45Al-2Cr-5Nb alloy processed by selective laser melting: Microstructure, phase and mechanical properties , 2016 .
[42] Zhili Feng,et al. Weldability of a high entropy CrMnFeCoNi alloy , 2016 .
[43] D. Miracle,et al. A critical review of high entropy alloys and related concepts , 2016 .
[44] G. Eggeler,et al. Microstructure evolution and critical stress for twinning in the CrMnFeCoNi high-entropy alloy , 2016 .
[45] C. Emmelmann,et al. Additive Manufacturing of Metals , 2016 .
[46] D. Choudhuri,et al. A combinatorial assessment of AlxCrCuFeNi2 (0 < x < 1.5) complex concentrated alloys: Microstructure, microhardness, and magnetic properties , 2016 .
[47] Alexander M. Rubenchik,et al. Denudation of metal powder layers in laser powder bed fusion processes , 2016 .
[48] Jian Lu,et al. High-entropy alloy: challenges and prospects , 2016 .
[49] Dierk Raabe,et al. Decomposition of the single-phase high-entropy alloy CrMnFeCoNi after prolonged anneals at intermediate temperatures , 2016 .
[50] C. Liu,et al. Phase separation of metastable CoCrFeNi high entropy alloy at intermediate temperatures , 2016, 1606.03693.
[51] Yan Zhou,et al. Effect of heat treatment on CuCrZr alloy fabricated by selective laser melting: Microstructure evolution, mechanical properties and fracture mechanism , 2016, Journal of Materials Research and Technology.
[52] Zhiheng Hu,et al. Selective laser melting of high strength Al–Cu–Mg alloys: Processing, microstructure and mechanical properties , 2016 .
[53] Andrew T. Anderson,et al. Laser powder-bed fusion additive manufacturing: Physics of complex melt flow and formation mechanisms of pores, spatter, and denudation zones , 2015, 1512.02593.
[54] Takahiko Kato,et al. First demonstration of promising selective electron beam melting method for utilizing high-entropy alloys as engineering materials , 2015 .
[55] C. Tasan,et al. Non-equiatomic high entropy alloys: Approach towards rapid alloy screening and property-oriented design , 2015 .
[56] Krzysztof J. Kurzydłowski,et al. Microstructural characterisation of high-entropy alloy AlCoCrFeNi fabricated by laser engineered net shaping , 2015 .
[57] Zemin Wang,et al. Cracking behavior and control of Rene 104 superalloy produced by direct laser fabrication , 2015 .
[58] Howard Stone,et al. Research data supporting: "Precipitation in the Equiatomic High-Entropy Alloy CrMnFeCoNi" , 2015 .
[59] Tongmin Wang,et al. Effects of annealing treatment on microstructure and hardness of bulk AlCrFeNiMo0.2 eutectic high-entropy alloy , 2015 .
[60] Harihar Rakshit Sistla,et al. Effect of Al/Ni ratio, heat treatment on phase transformations and microstructure of AlxFeCoCrNi2−x (x = 0.3, 1) high entropy alloys , 2015 .
[61] Tomasz Kurzynowski,et al. Effect of heat treatment on the microstructure and mechanical properties of Inconel 718 processed by selective laser melting , 2015 .
[62] Wei Liu,et al. Textures formed in a CoCrMo alloy by selective laser melting , 2015 .
[63] I. Todd,et al. The use of high-entropy alloys in additive manufacturing , 2015 .
[64] Akihiko Hirata,et al. Nanoscale phase separation in a fcc-based CoCrCuFeNiAl0.5 high-entropy alloy , 2015 .
[65] Jinglong Li,et al. Nanostructured Co–Cr–Fe alloy surface layer fabricated by combination of laser clad and friction stir processing , 2014 .
[66] O. Ojo,et al. Numerical modeling of microstructure evolution during laser additive manufacturing of a nickel-based superalloy , 2014 .
[67] Huijun Kang,et al. A Promising New Class of High-Temperature Alloys: Eutectic High-Entropy Alloys , 2014, Scientific Reports.
[68] K. Dahmen,et al. Microstructures and properties of high-entropy alloys , 2014 .
[69] G. Eggeler,et al. The influences of temperature and microstructure on the tensile properties of a CoCrFeMnNi high-entropy alloy , 2013 .
[70] M. Herbig,et al. Segregation engineering enables nanoscale martensite to austenite phase transformation at grain boun , 2013 .
[71] Sheng Guo,et al. Anomalous solidification microstructures in Co-free AlxCrCuFeNi2 high-entropy alloys , 2013 .
[72] Yun-peng Zhang,et al. Microstructure and corrosion resistance of AlCrFeCuCo high entropy alloy , 2013 .
[73] J. Yeh,et al. Effects of Al addition on the microstructure and mechanical property of AlxCoCrFeNi high-entropy alloys , 2012 .
[74] Reinhart Poprawe,et al. Densification behavior, microstructure evolution, and wear performance of selective laser melting processed commercially pure titanium , 2012 .
[75] Li Wang,et al. Balling behavior of stainless steel and nickel powder during selective laser melting process , 2012 .
[76] D. Dimiduk,et al. Oxidation behavior of a refractory NbCrMo0.5Ta0.5TiZr alloy , 2012, Journal of Materials Science.
[77] Yong Zhang,et al. Prediction of high-entropy stabilized solid-solution in multi-component alloys , 2012 .
[78] Z. Hui,et al. Microstructure and properties of AlCrFeCuNix (0.6 ≤ x ≤ 1.4) high-entropy alloys , 2012 .
[79] J. Yeh,et al. Microstructure and wear behavior of AlxCo1.5CrFeNi1.5Tiy high-entropy alloys , 2011 .
[80] C. Liu,et al. Effect of valence electron concentration on stability of fcc or bcc phase in high entropy alloys , 2011 .
[81] Hui Zhang,et al. Synthesis and characterization of FeCoNiCrCu high-entropy alloy coating by laser cladding , 2011 .
[82] Huizeng Li,et al. Microstructures and compressive properties of multicomponent AlCoCrCuFeNiMox alloys , 2010 .
[83] Li Wang,et al. Densification behavior of gas and water atomized 316L stainless steel powder during selective laser melting , 2010 .
[84] Xi-Yan Zhang,et al. Thermodynamic analysis of the simple microstructure of AlCrFeNiCu high-entropy alloy with multi-principal elements , 2009 .
[85] J. Kruth,et al. Residual stresses in selective laser sintering and selective laser melting , 2006 .
[86] J. Fuh,et al. Study on Shrinkage Behaviour of Direct Laser Sintering Metallic Powder , 2006 .
[87] B. Cantor,et al. Microstructural development in equiatomic multicomponent alloys , 2004 .
[88] T. Shun,et al. Nanostructured High‐Entropy Alloys with Multiple Principal Elements: Novel Alloy Design Concepts and Outcomes , 2004 .
[89] T. Yuan,et al. Selective laser melting of W-Ni-Cu composite powder: Densification, microstructure evolution and nano-crystalline formation , 2018 .
[90] Ting Zhu,et al. Additively manufactured hierarchical stainless steels with high strength and ductility. , 2018, Nature materials.
[91] K. An,et al. A precipitation-hardened high-entropy alloy with outstanding tensile properties , 2016 .
[92] Shichao Ma,et al. Strain rate effects on the dynamic mechanical properties of the AlCrCuFeNi2 high-entropy alloy , 2016 .
[93] T. Nieh,et al. Effects of Al addition on structural evolution and tensile properties of the FeCoNiCrMn high-entropy alloy system , 2014 .
[94] Hui Zhang,et al. Microstructure and properties of 6FeNiCoSiCrAlTi high-entropy alloy coating prepared by laser cladding , 2011 .