Effects of nitrogen content on microstructures and mechanical behavior of (TiTaCrMoNb)Nx films
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Ping Liu | Kecheng Zhang | P. Liaw | Wei Li | Fengcang Ma | Xiaohong Chen | Xun Ma | Jingjing Wang | Jingyi Fan
[1] W. Kao,et al. Mechanical, tribological and anti-corrosion properties of AlCrNbSiTi high entropy coatings with various nitrogen fluxes and application to nickel-based alloy milling , 2022, Materials Chemistry and Physics.
[2] B. Lou,et al. Phase, mechanical property and corrosion resistance evaluation of W-Nb-ta-Ti and W-Nb-ta-Ti-N medium entropy alloy thin films , 2022, Surface and Coatings Technology.
[3] M. Chehimi,et al. Effect of nitrogen content on structural and mechanical properties of AlTiZrTaHf(-N) high entropy films deposited by reactive magnetron sputtering , 2022, Surface and Coatings Technology.
[4] G. Wang,et al. Corrosion and friction resistance of TiVCrZrWNx high entropy ceramics coatings prepared by magnetron sputtering , 2021, Ceramics International.
[5] Sheng-Yu Hsu,et al. Effect of the N2/(Ar+N2) ratio on mechanical properties of high entropy nitride (Cr0.35Al0.25Nb0.12Si0.08V0.20)Nx films , 2021 .
[6] V. Buranich,et al. Positron annihilation studies of defect structure of (TiZrHfNbV)N nitride coatings under Xe14+ 200 MeV ion irradiation , 2021 .
[7] Cong Wang,et al. Tailoring the microstructure, mechanical and tribocorrosion performance of (CrNbTiAlV)Nx high-entropy nitride films by controlling nitrogen flow , 2021, Journal of Materials Science & Technology.
[8] Chao Chen,et al. Microstructure and biocompatibility of porous-Ta/Ti-6Al-4 V component produced by laser powder bed fusion for orthopedic implants , 2021, Materials Characterization.
[9] Sam Zhang,et al. Super-hard and anti-corrosion (AlCrMoSiTi)Nx high entropy nitride coatings by multi-arc cathodic vacuum magnetic filtration deposition , 2021, Vacuum.
[10] K. An,et al. Gradient cell–structured high-entropy alloy with exceptional strength and ductility , 2021, Science.
[11] D. Raabe,et al. Hierarchical crack buffering triples ductility in eutectic herringbone high-entropy alloys , 2021, Science.
[12] D. Kovalev,et al. Fabrication of high-entropy carbide (TiZrHfTaNb)С by high-energy ball milling , 2021, Ceramics International.
[13] Gang Wu,et al. Microstructure and high-temperature properties of laser cladded AlCoCrFeNiTi0.5 high-entropy coating on Ti 6Al-4V alloy , 2021, Surface and Coatings Technology.
[14] Wei-min Liu,et al. Dependence of mechanical and tribological performance on the microstructure of (CrAlTiNbV)Nx high-entropy nitride coatings in aviation lubricant , 2021 .
[15] Hui-di Zhou,et al. Microstructures and properties of (TiCrZrVAl)N high entropy ceramics films by multi-arc ion plating , 2021 .
[16] Cong Wang,et al. Investigation of (CrAlTiNbV)Nx high-entropy nitride coatings via tailoring nitrogen flow rate for anti-wear applications in aviation lubricant , 2021 .
[17] Li-Chun Chang,et al. Fabrication of TiZrNbTaFeN high-entropy alloys coatings by HiPIMS: Effect of nitrogen flow rate on the microstructural development, mechanical and tribological performance, electrical properties and corrosion characteristics , 2021 .
[18] R. Franz,et al. Influence of the nitrogen content on the structure and properties of MoNbTaVW high entropy alloy thin films , 2021 .
[19] Yin-Yu Chang,et al. Tribological and Mechanical Properties of Multicomponent CrVTiNbZr(N) Coatings , 2021, Coatings.
[20] M. Bilek,et al. High entropy nitride (HEN) thin films of AlCoCrCu0.5FeNi deposited by reactive magnetron sputtering , 2020 .
[21] Sheng-Yu Hsu,et al. Improvement of high entropy alloy nitride coatings (AlCrNbSiTiMo)N on mechanical and high temperature tribological properties by tuning substrate bias , 2020 .
[22] Kecheng Zhang,et al. Effects of nitrogen content on microstructures and mechanical properties of (AlCrTiZrHf)N high-entropy alloy nitride films , 2020 .
[23] F. Sanchette,et al. Structural and mechanical properties of AlTiTaZr( N) medium entropy films (MEF) obtained by DC magnetron sputtering in dynamic mode , 2020 .
[24] Ping Liu,et al. Microstructure and mechanical properties of (AlCrTiZrV)Nx high-entropy alloy nitride films by reactive magnetron sputtering , 2020 .
[25] Zhaobing Cai,et al. Effects of nitriding on the microstructure and properties of VAlTiCrMo high-entropy alloy coatings by sputtering technique , 2020 .
[26] S. Fritze,et al. Influence of N content on structure and mechanical properties of multi-component Al-Cr-Nb-Y-Zr based thin films by reactive magnetron sputtering , 2020 .
[27] P. Munroe,et al. FeMnNiCoCr-based high entropy alloy coatings: Effect of nitrogen additions on microstructural development, mechanical properties and tribological performance , 2020 .
[28] Hans Chen,et al. Microstructure and wear resistance of CoCrNbNiW high-entropy alloy coating prepared by laser melting deposition , 2019, Rare Metals.
[29] Yip-Wah Chung,et al. Commentary on using H/E and H/E as proxies for fracture toughness of hard coatings , 2019, Thin Solid Films.
[30] A. Kirichenko,et al. Composition, Structure, and Mechanical Properties of (Ti–Hf)N Coatings on Titanium Alloy , 2019, Technical Physics.
[31] L. Fu,et al. Effect of texture on wear resistance of tantalum nitride film , 2019, Tribology International.
[32] S. Fritze,et al. Multicomponent Hf-Nb-Ti-V-Zr nitride coatings by reactive magnetron sputter deposition , 2018, Surface and Coatings Technology.
[33] S. V. Litovchenko,et al. Microstructure and Physical–Mechanical Properties of (TiAlSiY)N Nanostructured Coatings Under Different Energy Conditions , 2018, Metals and Materials International.
[34] Wei Li,et al. Microstructures and properties of high-entropy alloy films and coatings: a review , 2018 .
[35] H. Ju,et al. Research on Microstructure, Mechanical and Tribological Properties of Cr-Ti-B-N Films , 2017 .
[36] D. Miracle,et al. A critical review of high entropy alloys and related concepts , 2016 .
[37] D. He,et al. Synthesis, Hardness, and Electronic Properties of Stoichiometric VN and CrN , 2016 .
[38] A. Matthews,et al. Small grain size zirconium-based coatings deposited by magnetron sputtering at low temperatures , 2015 .
[39] K. Dahmen,et al. Microstructures and properties of high-entropy alloys , 2014 .
[40] R. Zhao,et al. Structure and properties of (AlCrMoNiTi)Nx and (AlCrMoZrTi)Nx films by reactive RF sputtering , 2013 .
[41] Ming-Hua Shiao,et al. Structural morphology and characterization of (AlCrMoTaTi)N coating deposited via magnetron sputtering , 2013 .
[42] N. Yan,et al. Influence of Magnetron Sputtering Parameters on Surface Properties of TiN-Coated Bearing Steel , 2013 .
[43] J. Yeh,et al. Effect of nitrogen content and substrate bias on mechanical and corrosion properties of high-entropy films (AlCrSiTiZr)100 −xNx , 2012 .
[44] Fuh-Sheng Shieu,et al. Structural and mechanical properties of multi-element (TiVCrZrHf)N coatings by reactive magnetron sputtering , 2011 .
[45] Zhongyi Liu,et al. Structure and properties of (AlCrMnMoNiZrB0.1)Nx coatings prepared by reactive DC sputtering , 2011 .
[46] Yen-Lin Huang,et al. Structure and mechanical properties of (TiVCr)N coatings prepared by energetic bombardment sputtering with different nitrogen flow ratios , 2011 .
[47] Yen-Lin Huang,et al. Effect of nitrogen flow ratios on the structure and mechanical properties of (TiVCrZrY)N coatings prepared by reactive magnetron sputtering , 2010 .
[48] J. Schneider,et al. Experimental and computational study on the phase stability of Al-containing cubic transition metal nitrides , 2010 .
[49] J. Yeh,et al. Effects of nitrogen content on structure and mechanical properties of multi-element (AlCrNbSiTiV)N coating , 2009 .
[50] J. Gan,et al. Effects of nitrogen flow ratio on the structure and properties of reactively sputtered (AlMoNbSiTaTiVZr)Nx coatings , 2008 .
[51] Y. Zhou,et al. Phase transformation induced by lattice distortion in multiprincipal component CoCrFeNiCuxAl1−x solid-solution alloys , 2008 .
[52] Y. Arango,et al. Study of TiN and ZrN thin films grown by cathodic arc technique , 2006 .
[53] Shou-Yi Chang,et al. Preparation and characterization of AlCrTaTiZr multi-element nitride coatings , 2006 .
[54] Jyh-Wei Lee,et al. The mechanical properties evaluation of the CrN coatings deposited by the pulsed DC reactive magnetron sputtering , 2006 .
[55] J. Yeh,et al. Mechanical performance of the AlxCoCrCuFeNi high-entropy alloy system with multiprincipal elements , 2005 .
[56] Jien-Wei Yeh,et al. Nanostructured nitride films of multi-element high-entropy alloys by reactive DC sputtering , 2004 .
[57] B. Cantor,et al. Microstructural development in equiatomic multicomponent alloys , 2004 .
[58] T. Shun,et al. Nanostructured High‐Entropy Alloys with Multiple Principal Elements: Novel Alloy Design Concepts and Outcomes , 2004 .
[59] J. Hsieh,et al. Study of oxidation and wear behaviors of (Nb,Cr)N thin films using Raman spectroscopy , 2004 .
[60] C. Mitterer,et al. Structure–property relationships in single- and dual-phase nanocrystalline hard coatings , 2003 .
[61] A. Matthews,et al. On the significance of the H/E ratio in wear control: a nanocomposite coating approach to optimised tribological behaviour , 2000 .
[62] Da-yung Wang,et al. Synthesis of (Ti, Zr)N hard coatings by unbalanced magnetron sputtering , 2000 .
[63] G. Pharr,et al. An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments , 1992 .
[64] Nathan I. Croitoru,et al. Reactive-sputter-deposited TiN films on glass substrates , 1991 .
[65] S. Hofmann. Formation and diffusion properties of oxide films on metals and on nitride coatings studied with Auger electron spectroscopy and X-ray photoelectron spectroscopy , 1990 .
[66] L. Hultman,et al. Formation of polyhedral N2 bubbles during reactive sputter deposition of epitaxial TiN(100) films , 1989 .
[67] D. Xiong,et al. Hard and tough (NbTaMoW)Nx high entropy nitride films with sub-stoichiometric nitrogen , 2022 .
[68] J. J. Yang,et al. Improved corrosion resistance of reactive gas pulse sputtered (TiTaNbZrNi)N high entropy alloy coatings with a hybrid architecture of multilayered and compositionally graded structures , 2021 .
[69] Hui Zhou,et al. Chemical state, structure and mechanical properties of multi-element (CrTaNbMoV)Nx films by reactive magnetron sputtering , 2020 .