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Microstructure and superhardness effect of VC/TiC superlattice films 被引量:2
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作者 董学超 岳建岭 +2 位作者 王恩青 李淼磊 李戈扬 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第8期2581-2586,共6页
Vanadium carbide/titanium carbide (VC/TiC) superlattice films were synthesized by magnetron sputtering method. The effects of modulation period on the microstructure evolution and mechanical properties were investig... Vanadium carbide/titanium carbide (VC/TiC) superlattice films were synthesized by magnetron sputtering method. The effects of modulation period on the microstructure evolution and mechanical properties were investigated by EDXA, XRD, HRTEM and nano-indentation. The results reveal that the VC/TiC superlattice films form an epitaxial structure when their modulation period is less than a critical value, accompanied with a remarkable increase in hardness. Further increasing the modulation period, the hardness of superlattices decreases slowly to the rule-of-mixture value due to the destruction of epitaxial structures. The XRD results reveal that three-directional strains are generated in superlattices when the epitaxial structure is formed, which may change the modulus of constituent layers. This may explain the remarkable hardness enhancement of VC/TiC superlattices. 展开更多
关键词 superlattice films carbide films microstructure evolution superhardness effect epitaxial growth
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Strategies for superhard tool coating materials:focus on preparation methods and properties
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作者 Xing-xing Wang Yuan-hang Wang +11 位作者 Zi-cheng Ling Zhi-peng Yuan Jian-jun Shi Jian Qin Hua-wei Sun Kun-ming Pan Zai-ming Geng Huai-li Ma Zi-jia Yang Sheng Liu Yan-ming Wu Yan Peng 《Journal of Iron and Steel Research International》 2025年第8期2232-2266,共35页
In recent years,superhard coatings have emerged as a focal point in metal material research due to their innovative design strategies and exceptional mechanical properties.They are widely utilized in industries such a... In recent years,superhard coatings have emerged as a focal point in metal material research due to their innovative design strategies and exceptional mechanical properties.They are widely utilized in industries such as shielding,oil extraction,and coal mining.However,in practical applications,tools often suffer from wear,fractures,plastic deformation,and other types of failure,directly impacting machining efficiency,costs,and product quality.To mitigate these challenges,the selection of appropriate tool materials and preparation methods is critical to ensure sustained production efficiency.Therefore,it is essential to identify and develop coating materials with superior performance.Recent advancements in superhard coatings are reviewed comprehensively;preparation methods are discussed for superhard tools;diamond coatings,diamond-like carbon coatings,cubic boron nitride coatings and graphite carbon nitride coatings are examined specifically.It analyzes their microstructures,phase transformation processes,mechanical properties,and formation mechanisms,while also evaluating properties such as wear resistance,corrosion resistance,and high hardness.The applicability of existing theoretical models is verified and new frameworks for future superhard coating designs are proposed.Moreover,the current research limitations in tool coatings are identified and directions for future research and development are proposed. 展开更多
关键词 Preparation technology Superhard coating MICROSTRUCTURE Mechanical property Application
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Synergetic Enhancement of Hardness and Toughness in New Superconductors Ti_(2)Co and Ti_(4)Co_(2)O
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作者 Lifen Shi Keyuan Ma +12 位作者 Jingyu Hou Pan Ying Ningning Wang Xiaojun Xiang Pengtao Yang Xiaohui Yu Huiyang Gou Jianping Sun Yoshiya Uwatoko Fabian O.von Rohr Xiangfeng Zhou Bosen Wang Jinguang Cheng 《Chinese Physics Letters》 2025年第6期170-177,共8页
Compared to traditional superhard materials with high electron density and short,strong covalent bonds,alloy materials mainly composed of metallic bonding structures typically have great toughness and lower hardness.B... Compared to traditional superhard materials with high electron density and short,strong covalent bonds,alloy materials mainly composed of metallic bonding structures typically have great toughness and lower hardness.Breaking through the limits of alloy materials is a preface and long-term topic,which is of great significance and value for improving the comprehensive mechanical properties of alloy materials.Here,we report on the discovery of a cubic alloy semiconducting material Ti_(2)Co with a large Vickers of hardness K_(v)^(exp)∼6.7GPa and low fracture toughness of K_(IC)^(exp)∼1.51MPa·m^(1/2).Unexpectedly,the K_(v)^(exp)∼6.7GPa is nearly triple of the K_(v)^(cal)∼2.66GPa predicted by density functional theory(DFT)calculations and theK_(IC)^(exp)∼1.51MPa·m^(1/2)is about one or two orders of magnitude smaller than that of ordinary titanium alloy materials(K_(IC)^(exp)∼30-120MPa·m^(1/2)).These specifications place Ti_(2)Co far from the phase space of the known alloy materials.Upon incorporation of oxygen into structural void positions,both values were simultaneously improved for Ti_(4)Co_(2)O to∼9.7GPa and∼2.19MPa·m^(1/2),respectively.Further DFT calculations on the electron localization function of Ti_(4)Co_(2)X(X=B,C,N,O)vs.the interstitial elements indicate that these simultaneous improvements originate from the coexistence of Ti-Co metallic bonds,the emergence of newly oriented Ti-X covalent bonds,and the increase of electron concentration.Moreover,the large difference between K_(v)^(exp)and K_(v)^(cal)of Ti_(2)Co suggests underlying mechanism concerning the absence of the O(16d)or Ti_(2)-O bonds in the O-(Ti_(2))_(6) octahedron.This discovery proposes a new pathway to simultaneously improve the comprehensive mechanical performances and illuminates the path of exploring superconducting materials with excellent mechanical performances. 展开更多
关键词 limits metallic bonding structures superhard materials HARDNESS SUPERCONDUCTORS alloy materials improving comprehensive mechanical properties cubic alloy semiconducting material
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Synthesis and nitrogen content regulation of diamond in a high-pressure hydrogen-rich environment
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作者 黄国锋 陈良超 房超 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第6期541-546,共6页
The regulating nitrogen content of diamond in a hydrogen-rich high-temperature and high-pressure(HPHT) growth environment was systematically investigated in this work by developing three growth systems,namely, "F... The regulating nitrogen content of diamond in a hydrogen-rich high-temperature and high-pressure(HPHT) growth environment was systematically investigated in this work by developing three growth systems,namely, "FeNi+Ti", "FeNi+G_(3)N_(6)H_(6)",and "FeNi+Ti+C_(3)N_(6)H_(6)".Optical microscopy,infrared spectroscopy,and photoluminescence(PL)spectroscopy measurements were conducted to analyze the spectroscopic characteristics of diamonds grown in these three systems.From our analysis,it was demonstrated that the presence of hydrogen in the sp^(3) hybrid C-H does not directly affect the color of the diamond and facilitates the increase of the nitrogen-vacancy(NV) center concentration in a highnitrogen-content diamond.In addition,titanium plays an important role in nitrogen removal,while its impact on hydrogen doping within the diamond lattice is insignificant.Most importantly,by regulating the ratio of nitrogen impurities that coexist in the nitrogen and hydrogen HPHT environment,the production of hydrogenous Ⅱa-type diamond,hydrogenous Ib-type diamond,and hydrogenous high-nitrogen-type diamonds was achieved with a nitrogen content of less than 1 ppm to 1600 ppm. 展开更多
关键词 DIAMOND HPHT superhard material hydrogen-rich environment
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Microstructure and mechanical properties of VAlN/Si_(3)N_(4) nano-multilayer coatings 被引量:3
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作者 TAO Xian-cheng LOU Yu-min +5 位作者 LI Miao-lei ZHAO Ning-ning TANG Xiu-zhi HU Hai-long HUANG Xiao-zhong YUE Jian-ling 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第5期1403-1411,共9页
VAlN coating is of particular interest for dry cutting applications owing to its low-friction and excellent abrasiveness.Nano-multilayer structure is designed to tailor the properties of VAlN coating.In this work,a se... VAlN coating is of particular interest for dry cutting applications owing to its low-friction and excellent abrasiveness.Nano-multilayer structure is designed to tailor the properties of VAlN coating.In this work,a series of VAlN/Si_(3)N_(4) nano-multilayer coatings with varied Si_(3)N_(4) layer thicknesses were prepared by reactive sputtering method.The microstructure and mechanical properties of the coatings were both investigated.It is revealed that Si_(3)N_(4) with a shallow thickness(~0.4 nm)was crystallized and grown coherently with VAlN,showing a remarkable increase in hardness compared to VAlN monolayer coating.The hardness of coherently VAlN/Si_(3)N_(4) nano-multilayer coatings reached to 48.7 GPa.With further increase of Si_(3)N_(4) layer thickness,the coherent growth of nano-multilayers was terminated,showing amorphous structure formed in nano-multilayers and the hardness was declined.On the other hand,when Si_(3)N_(4) layer thickness was 0.4 nm,the friction coefficient of VAlN/Si_(3)N_(4) nano-multilayer coating was almost equal to that of VAlN monolayer coating,which was attributed to the crystallization of Si_(3)N_(4) and the produced coherent interfaces between VAlN and Si_(3)N_(4) for the hardening effect of nano-multilayer coatings.Upon further increase of Si_(3)N_(4) layer thickness,pronounced improvement of friction coefficient in VAlN/Si_(3)N_(4) nano-multilayer coating was observed. 展开更多
关键词 VAlN/Si_(3)N_(4) nano-multilayer coatings mechanical properties MICROSTRUCTURE superhardness effect
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Numerical simulation and experimental verification of a novel double-layered split die for high-pressure apparatus used for synthesizing superhard materials 被引量:2
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作者 Zhuo Yi Wen-zhi Fu +3 位作者 Ming-zhe Li Rui Li Liang Zhao Li-yan Wang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第3期377-385,共9页
Based on the principles of massive support and lateral support, a novel double-layered split die(DLSD) for high-pressure apparatus was designed to achieve a higher pressure-bearing capacity and larger sample cavity. T... Based on the principles of massive support and lateral support, a novel double-layered split die(DLSD) for high-pressure apparatus was designed to achieve a higher pressure-bearing capacity and larger sample cavity. The stress distributions of the DLSDs with different numbers of divided blocks were investigated by the finite element method and compared with the stress distributions of the conventional belt-type die(BTD). The results show that the cylinders and first-layer supporting rings of the DLSDs have dramatically smaller stresses than those of the BTD. In addition, increasing the number of divided blocks from 4 to 10 gradually increases the stress of the cylinder but has minimal influence on the stress of the supporting rings. The pressure-bearing capacities of the DLSDs with different numbers of divided blocks, especially with fewer blocks, are all remarkably higher than the pressure-bearing capacity of the BTD. The contrast experiments were also carried out to verify the simulated results. It is concluded that the pressure-bearing capacities of the DLSDs with 4 and 8 divided blocks are 1.58 and 1.45 times greater than that of the BTD. This work is rewarding for the commercial synthesis of high-quality, large-sized superhard materials using a double-layered split high-pressure die. 展开更多
关键词 SPLIT DIE prismatic CYLINDER pressure-bearing capacity high-pressure apparatus SUPERHARD material FEM
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Investigation of Element Profiles, Defects, Phase Composition and Physical and Mechanical Properties of Superhard Coatings Ti-Hf-Si-N 被引量:1
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作者 Alexander D. Pogrebnjak 《Materials Sciences and Applications》 2013年第4期24-31,共8页
This paper investigates the microstructure, physical, chemical and mechanical of superhard nanocomposite of Ti-Hf-Si-N. The coatings were grown by C-PVD method. Profiles of elements and vacancy-type defects (S-paramet... This paper investigates the microstructure, physical, chemical and mechanical of superhard nanocomposite of Ti-Hf-Si-N. The coatings were grown by C-PVD method. Profiles of elements and vacancy-type defects (S-parameter measurements of the Doppler broadening of the annihilation peak DBAP) in the studied coatings were investigated. Defined and calculated the elastic modulus E, hardness H, friction, adhesion. Wear rate was determined as a function of the bias potential supplied to the substrate and the pressure in the chamber. The developed coatings have hardness of 37.8 to 48 GPa, the friction coefficient of 0.48 to 0.15, the grain size of the solid solution from 3.9 to 10.8 nm (depending on deposition conditions). It was found that positrons are trapped by defects at the junction of three or more nanograins interfaces. In some cases, there was formed two phases in coatings: a solid solution (Ti, Hf)N with different volume content of Hf in a solid solution, and an amorphous phase α-Si3N4 (the layer between the nanograins). 展开更多
关键词 Superhards COATINGS COMPOSITION Thermal Stability WEAR
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Surperhard monoclinic BC6N allotropes:First-principles investigations
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作者 Nian-Rui Qu Hong-Chao Wang +4 位作者 Qing Li Yi-Ding Li Zhi-Ping Li Hui-Yang Gou Fa-Ming Gao 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第9期303-310,共8页
Via structural searching methodology and first-principles calculations, we predicted two new BC6N allotropes, a Ccentered monoclinic BC6N(Cm-BC6N) and a primitive-centered monoclinic BC6N(Pm-BC6N).The lattice vibr... Via structural searching methodology and first-principles calculations, we predicted two new BC6N allotropes, a Ccentered monoclinic BC6N(Cm-BC6N) and a primitive-centered monoclinic BC6N(Pm-BC6N).The lattice vibrations,elastic properties, ideal strength, theoretical hardness, and electronic structure of the predicted BC6N were investigated systematically.Our results reveal that Cm-BC6N is more favorable energetically than graphite-like g-BC6N above 20.6 GPa,which is lower than the transition pressures of r-BC6N, t-BC6N, and Pm-BC6N.Both Cm-BC6N and Pm-BC6N are indirect semiconductors with band gaps of 2.66 eV and 0.36 eV, respectively.Cm-BC6N exhibits the excellent ideal shear strength of 53.9 GPa in(011)■, much greater than that of Pm-BC6N(25.0 GPa in(010)[101] shear direction), and Cm-BC6N shows a much lower anisotropy in shear strength than Pm-BC6N.The Vickers hardness of Cm-BC6N is estimated to be above 80 GPa, which is more outstanding than those of t-BC6N and r-BC6N. 展开更多
关键词 SUPERHARD materials elastic properties boron-carbon-nitride IDEAL strength
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Discovery of superhard materials via CALYPSO methodology
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作者 Shuangshuang Zhang Julong He +2 位作者 Zhisheng Zhao Dongli Yu Yongjun Tian 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第10期10-21,共12页
The study of superhard materials plays a critical role in modern industrial applications due to their widespread applications as cutting tools, abrasives, exploitation drills, and coatings. The search for new superhar... The study of superhard materials plays a critical role in modern industrial applications due to their widespread applications as cutting tools, abrasives, exploitation drills, and coatings. The search for new superhard materials with superior performance remains a hot topic and is mainly considered as two classes of materials:(i) the light-element compounds in the B-C-N-O(-Si) system with strong and short covalent bonds, and(ii) the transition-element light-element compounds with strong covalent bonds frameworks and high valence electron density. In this paper, we review the recent achievements in the prediction of superhard materials mostly using the advanced CALYPSO methodology. A number of novel, superhard crystals of light-element compounds and transition-metal borides, carbides, and nitrides have been theoretically identified and some of them account well for the experimentally mysterious phases. To design superhard materials via CALYPSO methodology is independent of any known structural and experimental data, resulting in many remarkable structures accelerating the development of new superhard materials. 展开更多
关键词 CALYPSO SUPERHARD MATERIALS CRYSTAL structure PREDICTION
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Effects of High Pressure on BC3
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作者 周金玲 崔田 +3 位作者 马琰铭 刘志明 刘冰冰 邹广田 《Chinese Physics Letters》 SCIE CAS CSCD 2006年第9期2538-2541,共4页
High-pressure phases of BC3 are studied within the local density approximation under the density functional theory framework. When the pressure reaches 20 GPa, the layered BC3 that is a semiconductor at ambient pressu... High-pressure phases of BC3 are studied within the local density approximation under the density functional theory framework. When the pressure reaches 20 GPa, the layered BC3 that is a semiconductor at ambient pressure, becomes metallic. As the pressure increases, the material changes into a network structure at about 35 GPa. To understand the mechanism of phase transitions, band structure and density of states are discussed. With the increase of pressure, the width of bands broadens and the dispersion of bands enlarges. Additionally, the density of states of the network bears great resemblance to that of diamond. Formation of the sp3 bonding in the network is the main reason for the structural transformation at 35 GPa. 展开更多
关键词 GRAPHITE-LIKE MATERIAL STRUCTURAL-PROPERTIES SUPERHARD MATERIALS STATES FILMS
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Superhard BC_2N:an Orthogonal Crystal Obtained by Transversely Compressing(3,0)-CNTs and(3,0)-BNNTs
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作者 胡玉洁 徐胜亮 +3 位作者 王昊 刘恒 徐雪春 蔡影祥 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第10期94-98,共5页
By means of density functional theory calculations, an orthogonal boron-carbon-nitrogen compound called (3,0)- BC2N is predicted, which can be obtained by transversely compressing (3,03 carbon nanotubes (CNTs) an... By means of density functional theory calculations, an orthogonal boron-carbon-nitrogen compound called (3,0)- BC2N is predicted, which can be obtained by transversely compressing (3,03 carbon nanotubes (CNTs) and boron nitride nanotubes (BNNTs). Its structural stability, elastic properties, mechanical properties and electronic structure are systematically investigated. The results show that (3,0)-BU2N is a superhard material with a direct bandgap. However, its similar structures, (3,0)-C and (3,0)-BN are indirect semiconductors. Strikingly, (3,0)-C is harder than diamond. We also simulate the x-ray diffraction of (3,0)-BC2N to support future experimental investigations. In addition, our study shows that the transition from (3,03 CNTS and BNNTs to (3,0)-BC2N is irreversible. 展开更多
关键词 CNTs and is of BC BNNTs Superhard BC2N:an Orthogonal Crystal Obtained by Transversely Compressing by
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Is the hardness of material harder than diamond reliable?
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作者 Jin Liu Yongtao Zou +4 位作者 Guodong David Zhan Pei Wang Xiaozhi Yan Duanwei He Liping Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第13期111-117,共7页
With the development of new synthesis methods and chemistries,a number of new superhard materials have been reported to be harder than diamond.While such materials are highly desirable due to their wide-ranging applic... With the development of new synthesis methods and chemistries,a number of new superhard materials have been reported to be harder than diamond.While such materials are highly desirable due to their wide-ranging applications,there are some inherent uncertainties in the methods utilized to determine and define the hardness of such materials.In this paper,we employed the standard Vickers diamond indenter and substitute indenters with the same shape to measure the hardness of nine ceramics and superhard materials within well-defined criteria and methodology,for the assessment of consistency in the hardness testing.The findings and the developed testing method in the current study have broad implications in characterizing new and emerging superhard materials,leading to new discoveries. 展开更多
关键词 Vickers hardness Superhard materials Emerging materials APPLICABILITY
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Reproducibility of deposition and industrial applications of stable superhard nanocomposites
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作者 Stan Veprek 《中国有色金属学会会刊:英文版》 CSCD 2004年第z1期19-24,共6页
After a brief introduction regarding the different approaches to superhard coatings we shall concentrate on the problem of the reproducibility of the deposition of superhard and thermally very stable nanocomposites ac... After a brief introduction regarding the different approaches to superhard coatings we shall concentrate on the problem of the reproducibility of the deposition of superhard and thermally very stable nanocomposites according to the design principle published by Veprek and Reiprich in 1995. It will be shown that either the choice of inappropriate deposition conditions, in contradiction to our design principle, or impurities in the coatings are the reason for the lack of reproducibility of our earlier results by many other workers. We shall also briefly summarize the recent industrial applications. 展开更多
关键词 SUPERHARD NANOCOMPOSITE REPRODUCIBILITY of DEPOSITION INDUSTRIAL application
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SUPERPLASTIC DEFORMATION BEHAVIOR OF SUPERHARD Al ALLOY LC4
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《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1991年第7期70-73,共4页
The superplasticity of high strength superhard A1 alloy LC4 was improved to a great extent by modified thermomechanical treatment.Its maximum elongation may be up to 2100% un- der deformation at initial strain rate of... The superplasticity of high strength superhard A1 alloy LC4 was improved to a great extent by modified thermomechanical treatment.Its maximum elongation may be up to 2100% un- der deformation at initial strain rate of 8.33×10^(-4) S^(-1) at 510℃.Observations of the microstructure changes revealed that with the increase of the deformation,the grain grows and the alloy exhibits strain hardening.The excellent elongation of the alloy seems due to the in- crease of grain stability under deformation. 展开更多
关键词 SUPERPLASTICITY thermomechanical treatment artificial aging superhard Al alloy
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Superhard Nanocomposite Coatings
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作者 SamZHANG DeenSUN 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2002年第6期485-491,共7页
The recent development in the field of nanocomposite coatings with good mechanical properties is critically reviewed in this paper. The design principle and materials selection for the nanocomposite coatings are intro... The recent development in the field of nanocomposite coatings with good mechanical properties is critically reviewed in this paper. The design principle and materials selection for the nanocomposite coatings are introduced. Different methods for the preparation of superhard nanocomposite coatings are described with emphasis on the magnetron sputtering. Based on recent theoretical and experimental results regarding the appearance of superhardness in nanocomposite coating, lattice parameter changes, crystallite size, microstructure and morphology are reviewed in detail. Also emphasized are the mechanical properties (especially on hardness) and the ways by which the properties are derived. 展开更多
关键词 SUPERHARD NANOCOMPOSITE COATING
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tP40 carbon: A novel superhard carbon allotrope
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作者 Heng Liu Qing-Yang Fan +3 位作者 Fang Yang Xin-Hai Yu Wei Zhang Si-Ning Yun 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第10期392-400,共9页
In this work, a novel carbon allotrope tP40 carbon with space group P4/mmm is proposed. The structural stability, mechanical properties, elastic anisotropy, and electronic properties of tP40 carbon are investigated sy... In this work, a novel carbon allotrope tP40 carbon with space group P4/mmm is proposed. The structural stability, mechanical properties, elastic anisotropy, and electronic properties of tP40 carbon are investigated systematically by using density functional theory (DFT). The calculated elastic constants and phonon dispersion spectra indicate that the tP40 phase is a metastable carbon phase with mechanical stability and dynamic stability. The B/G ratio indicates that tP40 carbon is brittle from 0 GPa to 60 GPa, while tP40 carbon is ductile from 70 GPa to 100 GPa. Additionally, the anisotropic factors and the directional dependence of the Poisson's ratio, shear modulus, and Young's modulus of tP40 carbon at different pressures are estimated and plotted, suggesting that the tP40 carbon is elastically anisotropic. The calculated hardness values of tP40 carbon are 44.0 GPa and 40.2 GPa obtained by using Lyakhov–Oganov's model and Chen's model, respectively, which means that the tP40 carbon can be considered as a superhard material. The electronic band gap within Heyd–Scuseria–Ernzerhof hybrid functional (HSE06) is 4.130 eV, and it is found that the tP40 carbon is an indirect and wider band gap semiconductor material. 展开更多
关键词 novel carbon allotrope elastic properties ANISOTROPY superhard material
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Structure and Properties of TiB_2 Thin Films Deposited at Low Temperatures Using RF Magnetron Sputtering
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作者 戴伟 张同俊 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2008年第5期666-669,共4页
The TiB2 thin films were deposited on steel substrates using RF magnetron sputtering technique with the low normalized substrate temperature (0.1〈Ts/Tm〈0.2). Microstructure of these films was obtained by field emi... The TiB2 thin films were deposited on steel substrates using RF magnetron sputtering technique with the low normalized substrate temperature (0.1〈Ts/Tm〈0.2). Microstructure of these films was obtained by field emission scanning electron microscope (FESEM) and the grazing incidence X-ray diffraction (GIXRD) characterization, while the composition of films was obtained using Auger emission spectroscopy (AES) analysis. It was found that the TiB2 thin films were overstoichiometric with the B/Ti ratio at 2.33 and the diffusion of Ti and B atoms on the substrate surface was greatly improved at 350 ℃. Moreover, a new dense structure, named "equiaxed" grain structure was observed by FESEM at this substrate temperature, Combined with FESEM and AES analysis, it was suggested that the "equiaxed" grain structure was located in Zone 2 at the normalized substrate temperature as low as 0.18. 展开更多
关键词 TiB2 thin films structure zones 1 2 T equiaxed structure superhard coating auger electron spectroscopy
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Organizations of the 5^(th) Zhengzhou International Superhard Materials and Related Products Conference
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《金刚石与磨料磨具工程》 CAS 北大核心 2008年第S1期24-24,共1页
关键词 WANG Organizations of the 5 Zhengzhou International Superhard Materials and Related Products Conference TH
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A new family of sp3-hybridized carbon phases
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作者 徐宁 李建福 +1 位作者 黄勃龙 王保林 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第1期712-716,共5页
A new family of superhard carbon allotropes C48(2i + 1 ) is constructed by alternating even 4 and 8 membered rings. These new carbon allotropes are of a spatially antisymmetrical structure, compared with the symmet... A new family of superhard carbon allotropes C48(2i + 1 ) is constructed by alternating even 4 and 8 membered rings. These new carbon allotropes are of a spatially antisymmetrical structure, compared with the symmetrical structures of bet- C4, Z-carbon, and P-carbon. Our calculations show that bulk moduli of C48(2i + 1 ) are larger than that of c-BN and smaller than that of cubic-diamond. C48(2i + 1 ) are transparent superhard materials possessing large Vicker hardness comparable to diamoud. This work can help us understand the structural phase transformations of cold-compression graphite and carbon nanotubes. 展开更多
关键词 low-temperature phase transformation superhard carbon phase
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Research on C_(3)N_(4)Superhard Compound Thin Film and Its Application
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作者 Wu Da-wei Peng Li-i +1 位作者 Lu Ning Peng You-gui 《Wuhan University Journal of Natural Sciences》 CAS 2003年第01A期54-58,共5页
By combination of DC reactive magnetron sputter i ng with multiple arcplating,the alternating C_(3)N_(4)/TiN compo und film is deposited onto HSS.The core level binding energy and the contents o f carbon and nitrogen ... By combination of DC reactive magnetron sputter i ng with multiple arcplating,the alternating C_(3)N_(4)/TiN compo und film is deposited onto HSS.The core level binding energy and the contents o f carbon and nitrogen are characterized by X-ray photoelectron spectrum.X-ray diffraction(XRD)shows that compound thin film contains hard crystalline phases ofα-C_(3)N_(4)andβ-C_(3)N_(4).The Knoop microhardne ss in the load range of 50.5-54.1 GPa is measured.According to acoustic emissi on scratch test,the critical load values for the coatings on HSS substrates are in the range of 40-80 N.The metal coated with C_(3)N_(4)/TiN compound f ilms has a great improvement in the resistance against corrosion.Many tests sho w that such a coating has a very high wearability.Compared with the uncoated an d TiN coated tools,the C_(3)N_(4)/TiN coated tools have a much longer cut ting life. 展开更多
关键词 C_(3)N_(4) superhard thin film High Speed Steel(HSS) coated cutting tool
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