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纳微米结构版材研究进展 被引量:1
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作者 周海华 刘云霞 宋延林 《中国印刷与包装研究》 CAS 2013年第5期1-8,共8页
基于纳米材料的绿色印刷制版技术以其非感光成像、低成本、无污染及方便快捷的特点而受到科研人员的关注,并将其应用于胶印制版领域。本研究在简要介绍印刷版材发展和平版胶印版材的制版成像原理的基础上,重点介绍了纳米材料绿色制版技... 基于纳米材料的绿色印刷制版技术以其非感光成像、低成本、无污染及方便快捷的特点而受到科研人员的关注,并将其应用于胶印制版领域。本研究在简要介绍印刷版材发展和平版胶印版材的制版成像原理的基础上,重点介绍了纳米材料绿色制版技术及其关键材料之一——纳微米结构版材的研究进展,并着重分析了版基及涂层材料的制备与性能;最后指出免砂目处理的纳微米超亲水版材的研制对进一步促进我国印刷产业的绿色化进程具有重要意义。 展开更多
关键词 印刷版材 纳微米结构 绿色印刷 制版
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聚苯胺纳/微米结构薄膜的制备及对pH传感的影响
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作者 宋继霞 韩冬雪 +1 位作者 李斐 牛利 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2010年第8期1688-1692,共5页
考察了溶液酸度对纳/微米结构聚苯胺生长的影响.在0.1mol/L硫酸、pH=4和pH=7的磷酸缓冲溶液及0.1mol/L氨水中,在冰冻条件下氧化聚合苯胺单体,在溶液中和浸入反应溶液的玻璃基底上分别得到一系列不同形貌的聚苯胺,如:纳米仙人球、微米席... 考察了溶液酸度对纳/微米结构聚苯胺生长的影响.在0.1mol/L硫酸、pH=4和pH=7的磷酸缓冲溶液及0.1mol/L氨水中,在冰冻条件下氧化聚合苯胺单体,在溶液中和浸入反应溶液的玻璃基底上分别得到一系列不同形貌的聚苯胺,如:纳米仙人球、微米席子、微米片、微米花、三维网络、微米树状物和微米枝等.各种形貌的形成机理归结为pH的影响和冰的晶体结构的模板作用.另外,浸入反应溶液的基底诱导作用和聚合物扩散受限生长导致基底上树状结构的形成.基底上原位沉积的薄膜直接用于对pH缓冲溶液的响应研究,pH范围宽(pH=3~9),反应灵敏. 展开更多
关键词 聚苯胺 /微米结构 酸度 原位沉积 pH传感
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水热法油酸修饰纳微米硼酸锌的制备及摩擦学性能研究 被引量:5
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作者 贾正锋 夏延秋 邵鑫 《润滑与密封》 CAS CSCD 北大核心 2012年第9期70-74,共5页
以硼砂和硫酸锌为原料经水热法制得硼酸锌;通过场发射扫描电镜、X射线衍射、热重分析和红外分析表征硼酸锌的结构。结果表明,分散介质的变化对硼酸钙的形貌有一定的影响。将油酸修饰的硼酸锌分散于聚α-烯烃(PAO)中,利用SRV-1型微动摩... 以硼砂和硫酸锌为原料经水热法制得硼酸锌;通过场发射扫描电镜、X射线衍射、热重分析和红外分析表征硼酸锌的结构。结果表明,分散介质的变化对硼酸钙的形貌有一定的影响。将油酸修饰的硼酸锌分散于聚α-烯烃(PAO)中,利用SRV-1型微动摩擦磨损试验机考察其摩擦学性能,并分析摩擦机制。结果表明:在一定水热时间下制备的油酸修饰硼酸锌,能有效降低PAO润滑时45#钢的摩擦因数和磨损率;XPS分析显示,油酸修饰硼酸锌作为润滑添加剂时,在磨痕表面形成了含B、Zn和Fe的摩擦膜。 展开更多
关键词 /微米结构 硼酸锌 水热法 摩擦磨损
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乙醇-水体系3D纳/微米球形磷酸铁的制备与表征 被引量:5
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作者 吴康 李军 陈明 《无机盐工业》 CAS CSCD 北大核心 2020年第6期41-45,共5页
提出了一种在温和条件下制备高振实密度球形磷酸铁的简单方法。制备过程中无需引入碱性物质调节p H和添加其他模板剂,仅以九水合硝酸铁[Fe(NO3)·9H2O]和磷酸(H3PO4)为原料,在乙醇-水体系中即可制备3D纳/微米球形磷酸铁(记为FPE)。... 提出了一种在温和条件下制备高振实密度球形磷酸铁的简单方法。制备过程中无需引入碱性物质调节p H和添加其他模板剂,仅以九水合硝酸铁[Fe(NO3)·9H2O]和磷酸(H3PO4)为原料,在乙醇-水体系中即可制备3D纳/微米球形磷酸铁(记为FPE)。采用扫描电镜(SEM)、激光粒度仪、X射线衍射仪(XRD)、热重-差式扫描量热仪(TG-DSC)、比表面积测试仪(BET)等对制备的磷酸铁进行表征分析。结果显示,制备的磷酸铁具有3D纳/微米球形结构,平均一次粒径为27.2 nm,二次粒径D50为3.75μm。FPE的组成为二水合磷酸铁(FePO4·2H2O),纯度较高,具有介孔结构,平均孔径为2.75 nm,比表面积为22.41 cm2/g,同时具有较高的振实密度(1.34 g/cm3)。3D纳/微米球形磷酸铁制备方法简单,性能优异,以其为前驱体制备的磷酸铁锂(LiFePO4/C)具有较高的振实密度(1.46 g/cm3),在0.2C倍率下的放电比容量为157.9 mA·h/g。 展开更多
关键词 乙醇-水体系 球形磷酸铁 /微米结构
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纳米材料绿色制版技术的版材研究 被引量:2
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作者 周海华 刘云霞 宋延林 《中国材料进展》 CAS CSCD 2012年第1期26-29,35,共5页
制版技术是印刷产业的关键技术之一。目前的印刷制版技术主要有激光照排制版技术和计算机直接制版技术。这两项制版技术是基于感光成像原理,需要显影、冲洗等化学处理过程。基于纳米材料的绿色制版技术无需感光成像,省略了显影、冲洗等... 制版技术是印刷产业的关键技术之一。目前的印刷制版技术主要有激光照排制版技术和计算机直接制版技术。这两项制版技术是基于感光成像原理,需要显影、冲洗等化学处理过程。基于纳米材料的绿色制版技术无需感光成像,省略了显影、冲洗等化学处理过程,是一项环境友好、低成本的制版技术。其中,版材的纳微米结构对印刷质量有重要影响。简要介绍具有纳微米结构的版材的制备过程,通过优化版基制备条件,可以有效提高印版的分辨率和印刷适应性。 展开更多
关键词 米材料 绿色制版技术 纳微米结构 版材 印刷制版
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有机酸控制合成多级结构聚苯胺
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作者 童亚兰 王玉洁 +1 位作者 李士超 钟文斌 《应用化工》 CAS CSCD 2012年第6期1028-1031,1036,共5页
在丙烯酸(AA)的溶液中,用三氯化铁为氧化剂氧化聚合苯胺,得到了多级纳/微米结构的聚苯胺(PANI)。讨论了丙烯酸和苯胺单体以及搅拌等条件对产物形貌及其结构的影响。研究发现,通过调整AA浓度,能可控的制备PANI球形和塔型多级结构。利用F... 在丙烯酸(AA)的溶液中,用三氯化铁为氧化剂氧化聚合苯胺,得到了多级纳/微米结构的聚苯胺(PANI)。讨论了丙烯酸和苯胺单体以及搅拌等条件对产物形貌及其结构的影响。研究发现,通过调整AA浓度,能可控的制备PANI球形和塔型多级结构。利用FTIR和XRD对产物分子结构进行了表征。 展开更多
关键词 聚苯胺 丙烯酸 多孔球 /微米结构
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西天山乌拉根大规模铅锌成矿中H_2S成因:菌生结构和硫同位素组成约束 被引量:14
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作者 陈兴 薛春纪 《岩石学报》 SCIE EI CAS CSCD 北大核心 2016年第5期1301-1314,共14页
乌拉根铅锌矿是中国西北地区目前探明金属量最大的铅锌矿床,但大规模成矿所需H2S的成因方式尚不清楚。在野外调查和矿相学观察基础上,论文通过场发射扫描电镜(FESEM)、能谱(EDS)和质谱(MS)观测分析表明,矿石中发育闪锌矿纳米莓球... 乌拉根铅锌矿是中国西北地区目前探明金属量最大的铅锌矿床,但大规模成矿所需H2S的成因方式尚不清楚。在野外调查和矿相学观察基础上,论文通过场发射扫描电镜(FESEM)、能谱(EDS)和质谱(MS)观测分析表明,矿石中发育闪锌矿纳米莓球、丝/管状结构,它们由他形闪锌矿微晶集合而成,莓球直径30~700nm,丝/管状结构与莓球密切共生;常见与闪锌矿等矿石矿物共生的方解石纳米莓球结构,由他形方解石微晶集合而成,莓球直径20~800nm;也常见与矿石矿物共生的菱铁矿微米莓球、丝/管状结构,它们由他形菱铁矿微晶集合而成,莓球直径1~3μm,表面毛糙,丝/管状结构常出现在莓球周围并连接着莓球。这些纳/微米莓球在矿石中成群落不均匀分布,属细菌微生物成因,丝/管状结构为胞外聚合物的表现。矿石δ34SCDT变化大且显著偏负值(-27.9‰~15.0‰)。乌拉根大规模铅锌硫化物成矿所需H2S可能主要通过细菌硫酸盐还原(BSR)产生,盆地流体中烃类有机质催化下的细菌微生物硫酸盐还原反应是乌拉根铅锌大规模成矿的重要过程。 展开更多
关键词 闪锌矿米莓球和丝/管状结构 碳酸盐/微米莓球和丝/管状结构 硫同位素组成 乌拉根铅锌矿 西天山
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仿生超疏水涂层材料研究新进展 被引量:5
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作者 徐蕊 马英子 肖新颜 《化工新型材料》 CAS CSCD 北大核心 2009年第12期1-4,共4页
介绍了有关固体表面润湿性模型和构建超疏水表面涂层常用的低表面能物质,结合粗糙表面的构建方法,阐述了有关超疏水表面涂层材料的最新研究进展,指出超疏水涂层材料研究中存在的问题,并对超疏水涂层材料在油品输送、生物传感器,微流控... 介绍了有关固体表面润湿性模型和构建超疏水表面涂层常用的低表面能物质,结合粗糙表面的构建方法,阐述了有关超疏水表面涂层材料的最新研究进展,指出超疏水涂层材料研究中存在的问题,并对超疏水涂层材料在油品输送、生物传感器,微流控件和智能分离膜等领域的应用前景进行了展望。利用低表面能物质对粗糙结构表面进行修饰,将涂层表面粗糙化与低表面能物质修饰两种技术进行有机结合是构建超疏水表面涂层的有效途径。 展开更多
关键词 超疏水 自清洁 接触角 低表面能 /微米结构
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Dropwise condensation heat transfer enhancement on surfaces micro/nano structured by a two-step electrodeposition process 被引量:4
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作者 Hamid Reza TALESH BAHRAMI Alireza AZIZI Hamid SAFFARI 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第5期1065-1076,共12页
Condensation is an important regime of heat transfer which has wide applications in different industries such as power plants,heating,ventilating and air conditioning,and refrigeration.Condensation occurs in two diffe... Condensation is an important regime of heat transfer which has wide applications in different industries such as power plants,heating,ventilating and air conditioning,and refrigeration.Condensation occurs in two different modes including filmwise (FWC) and dropwise (DWC) condensation.DWC occurring on hydrophobic and superhydrophobic surfaces has a much higher heat transfer capacity than FWC.Therefore,wide investigations have been done to produce DWC in recent years.Superhydrophobic surfaces have micro/nano structures with low surface energy.In this study,a two-step electrodeposition process is used to produce micro/nano structures on copper specimens.The surface energy of specimens is reduced by a self-assembled monolayer using ethanol and 1-octadecanethiol solution.The results show that there is an optimum condition for electrodeposition parameters.For example,a surface prepared by 2000 s step time has 5 times greater heat transfer than FWC while a surface with 4000 s step time has nearly the same heat transfer as FWC.The surfaces of the fabricated specimens are examined using XRD and SEM analyses.The SEM analyses of the surfaces show that there are some micro-structures on the surfaces and the surface porosities are reduced by increasing the second step electrodeposition time. 展开更多
关键词 dropwise condensation heat transfer ELECTRODEPOSITION micro/nano structure POROSITY
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Stainless steel anisotropic superhydrophobic surfaces fabrication with inclined cone array via laser ablation and post annealing treatment 被引量:3
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作者 ZHAO Yi-zhe HONG Ming-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3261-3269,共9页
Metal superhydrophobic surfaces with anisotropic wettability and adhesion have become more and more important due to their promising applications. Herein, we report a new fabrication strategy through a combination of ... Metal superhydrophobic surfaces with anisotropic wettability and adhesion have become more and more important due to their promising applications. Herein, we report a new fabrication strategy through a combination of pulsed laser ablation and low-temperature annealing post-processing. An inclined cone structure array is made on stainless steel surfaces, and then 120 °C low-temperature annealing is applied. Such surface displays excellent mechanical durability and anisotropic superhydrophobicity. It is demonstrated experimentally that the contact angle of water droplets on the surface is different along the parallel(167° ±2°) and perpendicular directions(157° ±2°) of the inclined cone structure. The sliding behaviors of water droplets and mechanical durability of the inclined cone structures are studied. These surfaces obtained in a short time with environmentally friendly fabrication can be applied in industries for water harvesting, droplet manipulation, and pipeline transportation. 展开更多
关键词 superhydrophobic anisotropy laser precision engineering micro/nano-structure bio-inspired surface
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Microstructure and properties of Al-doped ODS steels prepared by wet-milling and SPS methods 被引量:3
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作者 SUN Yu-zhou LIN Nan +6 位作者 ZHANG Wu-jun ZHANG Yong-sen LI Zhong-tao HAN Xian-qi WU Zheng-gang WANG Zu-yong MA Chao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1219-1232,共14页
In this paper,15Cr-ODS steels containing 0,1 wt%,2 wt%and 3 wt%Al element were fabricated by combining wet-milling and spark plasma sintering(SPS)methods.The microstructure and mechanical properties of ODS steel were ... In this paper,15Cr-ODS steels containing 0,1 wt%,2 wt%and 3 wt%Al element were fabricated by combining wet-milling and spark plasma sintering(SPS)methods.The microstructure and mechanical properties of ODS steel were investigated by XRD,SEM,TEM,EBSD and tensile tests.The results demonstrate that the Al addition significantly refines the particle precipitates in the Fe-Cr matrix,leading to the obvious refinement in grain size of matrix and the improvement of mechanical properties.The dispersion particles in ODS steels with Al addition are identified as Al2O3 and Y_(2)Ti_(2)O_(7)nanoparticles,which has a heterogeneous size distribution in the range of 5 nm to 300 nm.Increasing Al addition causes an obvious increase in tensile strength and a decline in elongation.The tensile strength and elongation of 15Cr-ODS steel containing 3 wt%Al are 775.3 MPa and 15.1%,respectively.The existence of Al element improves the corrosion resistance of materials.The ODS steel containing 2 wt%Al shows corrosion potential of 0.39 V and passivation current density of 2.61×10^(−3)A/cm^(2)(1.37 V).This work shows that Al-doped ODS steels prepared by wet-milling and SPS methods have a potential application in structural parts for nuclear system. 展开更多
关键词 wet-milling spark plasma sintering ODS steels oxide nanoparticles MICROSTRUCTURE tensile strength dispersion strengthening
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Femtosecond-laser direct writing 3D micro/nano-lithography using VIS-light oscillator 被引量:3
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作者 Antanas BUTKUS Edvinas SKLIUTAS +1 位作者 Darius GAILEVIČIUS Mangirdas MALINAUSKAS 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3270-3276,共7页
Here we report a femtosecond laser direct writing(a precise 3D printing also known as two-photon polymerization lithography) of hybrid organic-inorganic SZ2080^(TM)pre-polymer without using any photo-initiator and app... Here we report a femtosecond laser direct writing(a precise 3D printing also known as two-photon polymerization lithography) of hybrid organic-inorganic SZ2080^(TM)pre-polymer without using any photo-initiator and applying ~100 fs oscillator operating at 517 nm wavelength and 76 MHz repetition rate. The proof of concept was experimentally demonstrated and benchmarking 3D woodpile nanostructures, micro-scaffolds, free-form micro-object “Benchy” and bulk micro-cubes are successfully produced. The essential novelty underlies the fact that non-amplified laser systems delivering just 40-500 p J individual pulses are sufficient for inducing localized cross-linking reactions within hundreds of nanometers in cross sections. And it is opposed to the prejudice that higher pulse energies and lower repetition rates of amplified lasers are necessary for structuring non-photosensitized polymers. The experimental work is of high importance for fundamental understanding of laser enabled nanoscale 3D additive manufacturing and widens technology’ s field of applications where the avoidance of photo-initiator is preferable or is even a necessity, such as micro-optics, nano-photonics, and biomedicine. 展开更多
关键词 laser direct writing two-photon polymerization multi-photon lithography 3D printing additive manufacturing SZ2080TM MICROSTRUCTURES NANOTECHNOLOGY
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Template-free hydrothermal synthesis and gas-sensitivity of hollow-structured Cu_(0.3)Co_(2.7)O_(4) microspheres 被引量:2
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作者 TIAN Li LIU Qiang +1 位作者 WU Jie-ling YI Yi-tao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期1946-1954,共9页
Hollow-structured Cu_(0.3)Co_(2.7)O_(4) microspheres have been synthesized by a simple one-pot template-free hydrothermal method with copper sulfate,cobalt acetate and ammonia as raw materials.The products were charac... Hollow-structured Cu_(0.3)Co_(2.7)O_(4) microspheres have been synthesized by a simple one-pot template-free hydrothermal method with copper sulfate,cobalt acetate and ammonia as raw materials.The products were characterized by powder X-ray diffraction,energy dispersive X-ray analysis,selected area electron diffraction,high-resolution transmission electron microscopy,scanning electron microscopy and BET measurements.The research results show that the hollow Cu_(0.3)Co_(2.7)O_(4) microspheres consist of single-crystalline nanocubes with the diameter of about 20 nm.The formation mechanism of hollow Cu_(0.3)Co_(2.7)O_(4) microspheres is suggested as Ostwald ripening in a solid-solution-solid process,and Cu_(0.3)Co_(2.7)O_(4) microspheres are mesoporous containing two pore sizes of 3.3 and 5.9 nm.The as-prepared Cu_(0.3)Co_(2.7)O_(4) sensors have optimal gas responses to 50×10^(−6) mg/m^(3) C_(2)H_(5)OH at 190℃. 展开更多
关键词 Cu_(0.3)Co_(2.7)O_(4)oxides MICROSPHERE inorganic compounds nanostructures template-free hydrothermal method
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Synthesis of Ni-Zn ferrite and its microstructure and magnetic properties 被引量:1
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作者 阳征会 龚竹青 +2 位作者 李宏煦 马玉天 杨余芳 《Journal of Central South University of Technology》 2006年第6期618-623,共6页
Nanometer Ni0.5Zn0.5Fe2O4 powders with spinel phase were prepared by the hydrothermal method using purified FeSO4 solution from sodium jarosite's slag as materials. The results show that the spinel phase of Ni0.5Zn0.... Nanometer Ni0.5Zn0.5Fe2O4 powders with spinel phase were prepared by the hydrothermal method using purified FeSO4 solution from sodium jarosite's slag as materials. The results show that the spinel phase of Ni0.5Zn0.5Fe2O4 powders begins to form at a relatively low temperature (130 ℃) and a shorter holding time (1 h) when pH=8. The crystallization kinetics equation at 200℃ is ln[-ln(1-x)] =-0.78+0.951n t. The growth activation energy of Ni0.5Zn0.5Fe2O4 grains is 41.6 kJ/moL in hydrothermal synthesis process. With the increase of sintering temperature, the density and diameter shrinkage of ferrite circulus increase, whereas its pores decrease. The results of magnetic measurements show that saturation magnetic flux density Bs increases and the coercivity Hc decreases with the increase of their sintering temperature. Magnetic parameters of all the investigated samples satisfy the character demand of high Bs, low Br and low Hc of soft magnetic ferrite materials. 展开更多
关键词 sodium jarosite hydrothermal synthesis Ni-Zn ferrite NANOPARTICLE
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Microstructure and mechanical properties of VAlN/Si_(3)N_(4) nano-multilayer coatings 被引量:1
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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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Microstructure and abrasive wear behaviour of anodizing composite films containing Si C nanoparticles on Ti6Al4V alloy 被引量:6
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作者 李松梅 郁秀梅 +3 位作者 刘建华 于美 吴量 杨康 《Journal of Central South University》 SCIE EI CAS 2014年第12期4415-4423,共9页
Anodized composite films containing Si C nanoparticles were synthesized on Ti6Al4 V alloy by anodic oxidation procedure in C4O6H4Na2 electrolyte. Scanning electron microscopy(SEM), energy dispersive spectroscopy(EDS) ... Anodized composite films containing Si C nanoparticles were synthesized on Ti6Al4 V alloy by anodic oxidation procedure in C4O6H4Na2 electrolyte. Scanning electron microscopy(SEM), energy dispersive spectroscopy(EDS) and X-ray photoelectron spectroscopy(XPS) were employed to characterize the morphology and composition of the films fabricated in the electrolytes with and without addition of Si C nanoparticles. Results show that Si C particles can be successfully incorporated into the oxide film during the anodizing process and preferentially concentrate within internal cavities and micro-cracks. The ball-on-disk sliding tests indicate that Si C-containing oxide films register much lower wear rate than the oxide films without Si C under dry sliding condition. Si C particles are likely to melt and then are oxidized by frictional heat during sliding tests. Potentiodynamic polarization behavior reveals that the anodized alloy with Si C nanoparticles results in a reduction in passive current density to about 1.54×10-8 A/cm2, which is more than two times lower than that of the Ti O2 film(3.73×10-8 A/cm2). The synthesized composite film has good anti-wear and anti-corrosion properties and the growth mechanism of nanocomposite film is also discussed. 展开更多
关键词 Ti6Al4V alloy anodic oxidation Si C nanoparticle composite film
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Effect of nanofibers at surface of carbon fibers on microstructure of carbon/carbon composites during chemical vapor infiltration 被引量:1
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作者 肖鹏 陈洁 +1 位作者 徐先锋 卢雪峰 《Journal of Central South University》 SCIE EI CAS 2014年第7期2590-2595,共6页
Before densification by chemical vapor infiltration,carbon or SiC nanofibers were grown on the surface of carbon fibers by catalytic chemical vapor deposition using electroplated Ni as catalyst.The modification and me... Before densification by chemical vapor infiltration,carbon or SiC nanofibers were grown on the surface of carbon fibers by catalytic chemical vapor deposition using electroplated Ni as catalyst.The modification and mechanism of nanofibers on the pyrocarbon deposition during chemical vapor infiltration were investigated.The results show that the nanofibers improve the surface activity of the carbon fibers and become active nucleation centers during chemical vapor infiltration.They can induce the ordered deposition of pyrocarbon and adjust the interface bonding between pyrocarbon and carbon fibers during the infiltration. 展开更多
关键词 carbon nanofiber SiC nanofiber PYROCARBON interface bonding
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