Effects of RE (Nd, Ce, Y, La) on TiC(100)/Fe(110) interface based on first-principles calculations
暂无分享,去创建一个
[1] Yinsheng Yu,et al. First principle calculation of thermal conversion properties of W-Al2O3 based solar selective absorbing coating , 2022, Computational Materials Science.
[2] O. Ojo,et al. Precipitation behavior, mechanical properties, and corrosion resistance of rare earth–modified Al-Zn-Mg-Cu alloys , 2022, Materials Today Communications.
[3] Yucan Fu,et al. Effect of rare earth alloy addition on the microstructure and abrasion resistance of brazed diamonds with Cu-Sn-Ti filler metal , 2022, Diamond and Related Materials.
[4] C. Shi,et al. Interface bonding and mechanical properties of copper/graphene interface doped with rare earth elements: First principles calculations , 2022, Physica E: Low-dimensional Systems and Nanostructures.
[5] Hao Chen,et al. Effect of WC addition on TiC reinforced Fe matrix composites produced by laser deposition , 2022, Surface and Coatings Technology.
[6] Junsheng Wang,et al. Local atomic ordering strategy for high strength Mg alloy design by first-principle calculations , 2022, Journal of Alloys and Compounds.
[7] Ping Liu,et al. First-principles calculations to investigate the interfacial energy and electronic properties of Mg/AlN interface , 2022, Journal of Physics and Chemistry of Solids.
[8] Xiang Li,et al. Adsorption and dissociation mechanism of toluene on Pd (111) and PdO (101) surface: First principle calculation , 2022, Surface Science.
[9] L. Gan,et al. The effects of active elements on adhesion strength of SiC/Cu interface in SiC reinforced Cu-based composite: a first-principles investigation , 2022, Materials Today Communications.
[10] Yimin Gao,et al. Effect of Sb doping on microstructure, mechanical and electronic properties of Mg2Si in Mg2Si/AZ91 composites by experimental investigation and first-principles calculation , 2022, Journal of Alloys and Compounds.
[11] Tianbiao Yu,et al. Meso-scale numerical simulation and experimental verification of single grain grinding TiC–Fe composites , 2022, Ceramics International.
[12] X. Jian,et al. Investigation on the interface characteristic between WC(001) and diamond(111) by first-principles calculation , 2022, Diamond and Related Materials.
[13] J. Sobczak,et al. Improvement of TiC/Fe in situ composite layer formation on surface of Fe-based castings , 2021, Materials Letters.
[14] Baixiong Liu,et al. Revealing the adhesion strength and electronic properties of Ti3SiC2/Cu interface in Ti3SiC2 reinforced Cu-based composite by a first-principles study , 2021, Surfaces and Interfaces.
[15] W. Shao,et al. Effect of Cr doping on interface properties of DLC/CrN composite coatings: First-principles study , 2021, Diamond and Related Materials.
[16] Yuanyou Xiao,et al. TiN inducing ferrite nucleation based on the bcc-Fe/TiN interfaces formation at atomic scale by first-principles calculation , 2021 .
[17] Siddhartha Roy,et al. Review on development of metal/ceramic interpenetrating phase composites and critical analysis of their properties , 2021, Ceramics International.
[18] D. Zeng,et al. Preparation, mechanical properties and enhanced wear resistance of TiC-Fe composite cermet coating , 2021 .
[19] Jianwu Yu,et al. Wetting mechanism of Cu3Ni, Cu3Zn, Cu3Sn on diamond surface: A first-principles calculation , 2021, Physica B: Condensed Matter.
[20] Juan Huang,et al. First-principles calculations on interfacial properties and fracture behavior of the Mg(11¯01)||TiC(11¯1) interfaces , 2021 .
[21] H. Biermann,et al. Manufacturing Fe–TiC metal matrix composite by Electron Beam Powder Bed Fusion from pre-alloyed gas atomized powder , 2021 .
[22] C. Shi,et al. Effects of active elements on adhesion of the Al2O3/Fe interface: A first principles calculation , 2021, Computational Materials Science.
[23] Ming Yan,et al. First principle calculations and low cost SLM processing of Ti–TiB composite materials , 2021 .
[24] Xiaoming Zhang,et al. Understanding the influence of Lu, La and Ga active elements on the bonding properties of Sn/SiO2 interfaces from first principle calculations , 2020 .
[25] C. Shi,et al. Effect of rare metal element interfacial modulation in graphene/Cu composite with high strength, high ductility and good electrical conductivity , 2020 .
[26] Hao Wu,et al. The impact of oxygen impurity and La doping on thermodynamic properties of Si3N4 ceramic: A first-principle calculation approach , 2020 .
[27] Yong Du,et al. Densification, microstructure and mechanical performance of TiC/Fe composites by spark plasma sintering , 2020 .
[28] W. C. Liu,et al. First-principles calculations on the interface of the Al/TiC aluminum matrix composites , 2020 .
[29] Zhihui Zhang,et al. Fabrication of Fe-based composite coatings reinforced by TiC particles and its microstructure and wear resistance of 40Cr gear steel by low energy pulsed laser cladding , 2019, Optics & Laser Technology.
[30] Y. Zhan,et al. Adhesion strength and stability of Cu(111)/TiC(111) interface in composite coatings by first principles study , 2019, Vacuum.
[31] H. Fu,et al. Adhesion at cerium doped metal-ceramic α-Fe/WC interface: A first-principles calculation , 2019, Journal of Rare Earths.
[32] Y. Shin,et al. Assessment of sub-surface damage during machining of additively manufactured Fe-TiC metal matrix composites , 2019, Journal of Materials Processing Technology.
[33] Shibo Li,et al. Synthesis and mechanical properties of TiC-Fe interpenetrating phase composites fabricated by infiltration process , 2018, Ceramics International.
[34] Yunhua Xu,et al. Characterization and formation mechanisms of the TiC-Fe cermet layer in Ti-TiC-Fe composites , 2018, Vacuum.
[35] L. Gan,et al. Investigation of iron adsorption on composite transition metal carbides in steel by first-principles calculation , 2018 .
[36] M. Zha,et al. Effects of Ti, Si, Mg and Cu additions on interfacial properties and electronic structure of Al(111)/4H-SiC(0001) interface: A first-principles study , 2018 .
[37] H. Cui,et al. First-principles study of adhesion strength and stability of the TiB2/TiC interface in composite materials , 2018 .
[38] Shengjie Dong,et al. First-principles exploration of sp-electron digital magnetic heterostructures: The case for CaO δ-doped with 2p-block elements boron, carbon, and nitrogen , 2017 .
[39] S. Hong,et al. In-situ synthesis of TiC/Fe alloy composites with high strength and hardness by reactive sintering , 2017, Journal of Materials Science & Technology.
[40] Jianhong Dong,et al. Adhesion strength and stability of TiB2/TiC interface in composite coatings by first principles calculation , 2017 .
[41] H. Gong,et al. Doping of helium at Fe/W interfaces from first principles calculation , 2016 .
[42] Xin-bo He,et al. Fabrication and properties of the TiC reinforced high-strength steel matrix composite , 2016 .
[43] P. Yu,et al. Preparation of nickel-coated titanium carbide particulates and their use in the production of reinforced iron matrix composites , 2013 .
[44] H. Faraoun,et al. First-principles calculations of adhesion, bonding and magnetism of the Fe/HfC interface , 2012 .