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Effects of current density on preparation and performance of Al/conductive coating/α-PbO_2-Ce O_2-TiO_2/β-Pb O_2-MnO_2-WC-ZrO_2 composite electrode materials 被引量:1
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作者 杨海涛 陈步明 +5 位作者 郭忠诚 刘焕荣 张永春 黄惠 徐瑞东 付仁春 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第10期3394-3404,共11页
Al/conductive coating/α-Pb O2-Ce O2-Ti O2/β-PbO 2-MnO 2-WC-Zr O2 composite electrode material was prepared on Al/conductive coating/α-PbO 2-Ce O2-Ti O2 substrate by electrochemical oxidation co-deposition technique... Al/conductive coating/α-Pb O2-Ce O2-Ti O2/β-PbO 2-MnO 2-WC-Zr O2 composite electrode material was prepared on Al/conductive coating/α-PbO 2-Ce O2-Ti O2 substrate by electrochemical oxidation co-deposition technique. The effects of current density on the chemical composition, electrocatalytic activity, and stability of the composite anode material were investigated by energy dispersive X-ray spectroscopy(EDXS), anode polarization curves, quasi-stationary polarization(Tafel) curves, electrochemical impedance spectroscopy(EIS), scanning electron microscopy(SEM), and X-ray diffraction(XRD). Results reveal that the composite electrode obtained at 1 A/dm2 possesses the lowest overpotential(0.610 V at 500 A/m2) for oxygen evolution, the best electrocatalytic activity, the longest service life(360 h at 40 °C in 150 g/L H2SO4 solution under 2 A/cm2), and the lowest cell voltage(2.75 V at 500 A/m2). Furthermore, with increasing current density, the coating exhibits grain growth and the decrease of content of Mn O2. Only a slight effect on crystalline structure is observed. 展开更多
关键词 composite electrode material A1 substrate β-PbO2-MnO2-WC-ZrO2 electrochemical co-deposition current density
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On-site hydrolytic H_(2)production by CaH_(2)/(Al/Si)composites via Na+bridging effect for fuel cell
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作者 Ali Hammad Siyi Zou +7 位作者 Fandi Ning Ghulam Nabi Yuzhuo Jiang Bin Tian Wentao Huang Muhammad Rashid Shiqi Zhao Xiaochun Zhou 《Journal of Energy Chemistry》 2026年第1期97-110,I0004,共15页
Inorganic materials can solve transportable and on-site hydrolytic hydrogen generation issues.CaH_(2)/(Al/Si)composites are preferable due to their notable chemical properties.However,these composites require pretreat... Inorganic materials can solve transportable and on-site hydrolytic hydrogen generation issues.CaH_(2)/(Al/Si)composites are preferable due to their notable chemical properties.However,these composites require pretreatments,an inert environment,and long hours of physical ball milling for high homogeneity and synergistic effects.CaH_(2)also inhibits the hydrolysis reaction by forming its products on the Al/Si surface,which hinders the direct utilization of composites.This work represents the first investigation of NaH-CaH_(2)(Al/Si)fuel composites,which greatly overcome these limitations and can be directly used for on-site hydrogen generation and proton exchange membrane(PEM)fuel cells.The NaH-CaH_(2)(Al/Si)fuel composites were prepared by using a straightforward mixing method with variable composition ratios,showing high H_(2)yield and fuel cell(FC)performance.NaH addition provides the bridge effect,which opens up a new way to enable efficient hydrolysis and greatly enhances the hydrolysis activity of CaH_(2)/(Al/Si)composites.The novel fuel composites(NaH-CaH_(2)/Al)have extraordinary FC performance and a 0.42 W/cm2 peak power density greater than commercial hydrogen generators.It provides high H_(2)yield 84.4%for NaH-CaH_(2)/Al and 82%for NaH-CaH_(2)/Si compared to NaOH-CaH_(2)(Al/Si),NaCl-CaH_(2)(Al/Si),and KCl-CaH_(2)(Al/Si)composites.The NaH bridge effect hinders the direct water contact and stops the formation of Ca(OH)2 around Al/Si,which provides adequate pathways for the CaH_(2)(Al/Si)hydrolysis.The impressive capabilities of novel fuel composites are anticipated to offer practical uses in fuel cells,automobile applications,and portable/on-board H_(2)generation. 展开更多
关键词 On-site hydrogen HYDROLYSIS Fuel composites NaH-CaH_(2)/(al/Si) Bridge effect Ambient temperature Inorganic materials High H_(2)yield PEM fuel cell
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Al23/Al2O3 Joint Brazed with Al2O3-particulate-contained Composite Ag-Cu-Ti Filler Material 被引量:2
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作者 Jianguo YANG Hongyuan FANG Xin WAN 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2005年第5期782-784,共3页
Microstructure and interracial reactions of Al2O3 joints brazed with Al2O3-particulate-contained composite Ag-Cu-Ti filler material were researched by scanning electron microscopy(SEM),electron probe microscopy analys... Microstructure and interracial reactions of Al2O3 joints brazed with Al2O3-particulate-contained composite Ag-Cu-Ti filler material were researched by scanning electron microscopy(SEM),electron probe microscopy analysis(EPMA),energy dispersive spectroscopy(EDS)and X-ray diffraction(XRD).The interracial reaction layer thickness of joints brazed with conventional active filler metal and active composite filler materials with different volume fraction of Al2O3 particulate was also studied.The experimental results indicated although there were Al2O3 particulates added into active filler metals,the time dependence of interracial layer growth of joints brazed with active composite filler material is t^1/2 as described by Fickian law as the joints brazed with conventional active filler metal. 展开更多
关键词 composite filler materials BRAZE Interface al2O3
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Influence of nano-CeO_2 on coating structure and properties of electrodeposited Al/α-PbO_2/β-PbO_2 被引量:4
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作者 陈阵 余强 +2 位作者 廖登辉 郭忠诚 武剑 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第5期1382-1389,共8页
Al/α-PbO2/β-PbO2 composite electrodes doped with rare earth oxide (CeO2) were prepared by anodic oxidation method investigate the influence of nano-CeO2 dopants on the properties of Al/α-PbO2/β-PbO2-CeO2 electro... Al/α-PbO2/β-PbO2 composite electrodes doped with rare earth oxide (CeO2) were prepared by anodic oxidation method investigate the influence of nano-CeO2 dopants on the properties of Al/α-PbO2/β-PbO2-CeO2 electrodes and the impact of α-PbO2 as the intermediate layer. The results show that using α-PbO2 as the intermediate layer will benefit the crystallization of β-PbO2 and β-PbO2 is more suitable as the surface layer than α-PbO2. CeO2 dopants change the crystallite size and crystal structure, enhance the catalytic activity, and even change the deposition mechanism of PbO2. The doping of CeO2 in the PbO2 electrodes can enhance the electro-catalytic activity, which is helpful for oxygen evolution, and therefore reduce the cell voltage. 展开更多
关键词 rare earth CEO2 composite electrode material α-PbO2 β-PbO2 cell voltage inert anode
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(B_(4)C+Al_(2)O_(3))/Al中子吸收材料的稳定化工艺
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作者 石宝铭 昝宇宁 +2 位作者 王全兆 肖伯律 马宗义 《科技导报》 北大核心 2026年第2期98-107,共10页
(B_(4)C+Al_(2)O_(3))/Al复合材料作为乏燃料干式贮存系统中的关键中子吸收材料,其在高温下长期服役的可靠性直接关系到核废料安全管理的有效性。该结构功能一体化材料在高温下存在非晶Al_(2)O_(3)(am-Al_(2)O_(3))向γ-Al_(2)O_(3)相... (B_(4)C+Al_(2)O_(3))/Al复合材料作为乏燃料干式贮存系统中的关键中子吸收材料,其在高温下长期服役的可靠性直接关系到核废料安全管理的有效性。该结构功能一体化材料在高温下存在非晶Al_(2)O_(3)(am-Al_(2)O_(3))向γ-Al_(2)O_(3)相变的风险,可能导致力学性能降低,但目前对其组织演化规律及性能稳定性的认识仍不足。为此,对(B_(4)C+Al_(2)O_(3))/Al复合材料进行了400℃/100 h和550℃/8 h 2种稳定化工艺处理,并通过400℃下最长4000 h的退火实验验证其长期稳定性。结果表明,经稳定化处理后,复合材料在室温及350℃下的抗拉强度分别保持在220.0和100.0 MPa以上,满足工程应用需求。微观组织分析表明,am-Al_(2)O_(3)部分转化为γ-Al_(2)O_(3),但材料在退火过程中组织与性能均趋于稳定。2种工艺均能有效提升材料的热稳定性,为(B_(4)C+Al_(2)O_(3))/Al复合材料制备的乏燃料干式贮存容器实现长期安全服役提供了材料学依据。 展开更多
关键词 中子吸收材料 (B_(4)C+al_(2)O_(3))/al复合材料 稳定化工艺 力学性能 微观组织
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High-Performance Stretchable Gallium Battery for Wearable Electronics,Through Synthesis of Foam Electrodes
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作者 Elahe Parvini Abdollah Hajalilou +2 位作者 Manuel Reis Carneiro Pedro Alhais Lopes Mahmoud Tavakoli 《Energy & Environmental Materials》 2025年第4期80-86,共7页
The demand for sustainable and stretchable thin-film printed batteries for bioelectronics,wearables,and e-textiles is rapidly increasing.Recently,we developed a fully 3D-printed soft-matter thin-film Ga-Ag_(2)O batter... The demand for sustainable and stretchable thin-film printed batteries for bioelectronics,wearables,and e-textiles is rapidly increasing.Recently,we developed a fully 3D-printed soft-matter thin-film Ga-Ag_(2)O battery with 3R characteristics:resilient to mechanical strain,repairable after damage,and recyclable.This battery achieved a record-breaking areal capacity of 26.37 mAh cm-2,increasing to 30.32 mAh cm^(-2) after 10 cycles under 100%strain.This performance stems from the synergistic effects of gallium’s liquid metal properties and the styrene-isoprene-styrene polymer in the anode.Gallium’s high specific capacity(1153.2 mAh g^(-1)),deformability,and self-healing abilities,supported by its supercooled liquid phase,significantly enhance the battery’s resilience and efficiency.However,the cathode’s lower theoretical capacity,due to Ag_(2)O(231.31 mAh g^(-1)),remains a limitation.Traditional Ag_(2)O-carbon black-styrene-isoprene-styrene cathodes experience rapid capacity decay as only the surface area of the active materials interacts with the electrolyte.To overcome this,we designed a carbon-filled Ag_(2)O foam electrode using a sacrificial sugar template,increasing the effective surface area.This optimization enhanced ion-exchange efficiency,specific capacity,and cyclability,achieving a specific capacity of 221.16 mAh g^(-1).Consequently,the Ga-Ag_(2)O stretchable battery attained a record areal capacity of 40.91 mAh cm^(-2)—double that of nonfoam electrodes—and exhibited fivefold improved charge-discharge cycles.Using ultrastretchable Ag-EGaIn-styrene-isoprene-styrene and carbon black-styrene-isoprene-styrene current collectors,the battery’s specific capacity increased by 33%under 50%strain.Integrated into a soft-matter smart wristband for temperature monitoring,the battery demonstrated its promise for wearable electronics. 展开更多
关键词 Ag2O-CB-SIS composite electrochemical performance foam fabrication liquid metal battery porous electrode materials
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Effects of Cerium on the Mechanical Properties of the ZA22/Al_2O_3 Composites 被引量:3
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作者 于思荣 何镇明 +1 位作者 孟长生 陈凯 《Journal of Rare Earths》 SCIE EI CAS CSCD 1995年第1期27-31,共5页
ZA22/Al2O3 composites were prepared by means of squeeze casting process. The effects of Ce on the ultimate tensile strength (UTS), impact toughness, and hardness of the composites were studied. The results show that b... ZA22/Al2O3 composites were prepared by means of squeeze casting process. The effects of Ce on the ultimate tensile strength (UTS), impact toughness, and hardness of the composites were studied. The results show that both the UTS and the hardness are improved and the impact toughness is decreased with the increase of the volume fraction of fibers (Vf). After Ce is added ,UTS (Vf>15%) and the hardness are improved at room temperature because of the modification of Ce, but the impact toughness and UTS at elevated temperature are lowered.The filtered action of the fiber preform results in that the influence of the amount of Ce added from 0. 1 wt% to 0. 5 wt% on the mechanical properties of the composites can be ignored. 展开更多
关键词 CERIUM Zn-al alloy al2O3 composite materials Mechanical property
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Effect of Al_(2)O_(3)on the Mechanical Properties of(B_(4)C+Al_(2)O_(3))/Al Neutron Absorbing Materials
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作者 J.X.Cai B.M.Shi +6 位作者 N.Li Y.Liu Z.G.Zhang Y.N.Zan Q.Z.Wang B.L.Xiao Z.Y.Ma 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2024年第8期1411-1420,共10页
B_(4)C/Al composites are widely utilized as neutron absorbing materials for the storage and transportation of spent nuclear fuel.In order to improve the high-temperature mechanical properties of B_(4)C/Al composites,i... B_(4)C/Al composites are widely utilized as neutron absorbing materials for the storage and transportation of spent nuclear fuel.In order to improve the high-temperature mechanical properties of B_(4)C/Al composites,in-situ nano-Al_(2)O_(3)was introduced utilizing oxide on Al powder surface.In this study,the Al_(2)O_(3)content was adjusted by utilizing spheroid Al powder with varying diameters,thereby investigating the impact of Al_(2)O_(3)content on the tensile properties of(B_(4)C+Al_(2)O_(3))/Al composites.It was found that the pinning effect of Al_(2)O_(3)on the grain boundaries could hinder the recovery of dislocations and lead to dislocation accumulation at high temperature.As the result,with the increase in Al_(2)O_(3)content and the decrease in grain size,the high-temperature strength of the composites increased significantly.The finest Al powder used in this investigation had a diameter of 1.4μm,whereas the resultant composite exhibited a maximum strength of 251 MPa at room temperature and 133 MPa at 350℃,surpassing that of traditional B_(4)C/Al composites. 展开更多
关键词 al matrix composites Neutron absorbing materials (B_(4)C+al_(2)O_(3))/al composites High-temperature strength
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Long-cycling lithium-oxygen batteries enabled by tailoring Li nucleation and deposition via lithiophilic oxygen vacancy in Vo-TiO_(2)/Ti_(3)C_(2)Tx composite anodes 被引量:2
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作者 Yu Yan Chaozhu Shu +6 位作者 Ruixin Zheng Minglu Li Zhiqun Ran Miao He Longfei Ren Dayue Du Ying Zeng 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第2期654-665,共12页
Uncontrollable Li dendrite growth and infinite volume fluctuation during durative plating and stripping process gravely hinder the application of metallic Li electrode in lithium-oxygen batteries.Herein,oxygen vacancy... Uncontrollable Li dendrite growth and infinite volume fluctuation during durative plating and stripping process gravely hinder the application of metallic Li electrode in lithium-oxygen batteries.Herein,oxygen vacancy-rich TiO_(2)(Vo-TiO_(2))nanoparticles(NPs)uniformly dispersing on Ti_(3)C_(2)T_(x)(Vo-TiO_(2)/Ti_(3)C_(2) T_(x))with excellent lithiophilicity feature are presented as effective composite anodes,on which a dense and uniform Li growth behavior is observed.Based on electrochemical studies,mutiphysics simulation and theoretical calculation,it is found that Vo-TiO_(2) coupling with three dimensional(3 D)conductive Ti_(3)C_(2) T_(x) MXene forms highly ordered lithiophilic sites which succeed in guiding Li ions flux and adsorption,thus modulating the uniform Li nucleation and growth.As a result,this composite electrode is capable of preserving Li with high areal capacity of~10 mAh cm^(-2) without the presence of dendrites and large volume expansion.Consequently,the as-prepared Vo-TiO_(2)/Ti_(3)C_(2) T_(x)@Li anode shows outstanding performance including low voltage hysteresis(~19 mV)and superior durability(over 750 h).When assembling with the Vo-TiO_(2)/Ti_(3)C_(2) T_(x)@Li anodes,lithium-oxygen batteries also deliver enhanced cycling stability and improved rate performance.This work demonstrates the effectiveness of oxygen vacancies in guiding Li nucleating and plating behavior at initial stage and brings a promising strategy for promoting the development of advanced Li metal-based batteries. 展开更多
关键词 Lithium-oxygen batteries electrode materials Vo-TiO_(2)/Ti_(3)C_(2)Tx composite Oxygen vacancies Adsorption energy
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MnO_(2)复合类花状镍基纳米材料制备及其在超级电容器中的应用
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作者 韩玉相 闫欣雨 +4 位作者 要凯华 侯江锦 毛喜玲 金丽 李孟委 《当代化工》 2026年第1期6-13,共8页
针对目前超级电容器正极材料能量密度低及水滑石材料合成条件要求高的问题,利用安全高效的回流、水浴法制备“增强型”类花层状镍铝-二氧化锰水滑石(NiAl-MnO_(2)-LDH)复合电极材料。通过调控水浴温度和高锰酸钾(KMnO_(4))的反应浓度来... 针对目前超级电容器正极材料能量密度低及水滑石材料合成条件要求高的问题,利用安全高效的回流、水浴法制备“增强型”类花层状镍铝-二氧化锰水滑石(NiAl-MnO_(2)-LDH)复合电极材料。通过调控水浴温度和高锰酸钾(KMnO_(4))的反应浓度来确定MnO_(2)与NiAl-LDH的最佳复合条件。借助扫描电子显微镜(SEM)、能谱分析技术(EDS)和X射线衍射技术(XRD),对复合电极材料的形貌和晶体结构进行详细的表征。通过电化学性能分析得出,该NiAl-MnO_(2)-LDH电极材料在1 A·g^(-1)的电流密度下比容量高达2665.57 F·g^(-1),这主要归因于引入的MnO_(2)在协同效应下为电极材料提供了额外的比表面积和大量的电化学活性位点。与活性炭(AC)一起组装成电压窗口可达1.6 V的高性能非对称超级电容器,在1 A·g^(-1)的电流密度下比容量高达144.78 F·g^(-1),在高倍率充放电电流(20 A·g^(-1))下比容量损失不到30%(1 A·g^(-1)),并且成功点亮红色的LED灯。结果表明,采用安全高效的回流、水浴法将MnO_(2)与类花状镍基纳米材料复合在提升超级电容器电化学性能领域具有较好的应用前景。 展开更多
关键词 回流法 水浴法 镍铝-二氧化锰水滑石 复合电极材料 电化学 超级电容器
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β-Sialon-Al_2O_3-SiC系复相材料的研制和性能 被引量:5
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作者 黄朝晖 孙加林 +1 位作者 王金相 洪彦若 《耐火材料》 CAS 北大核心 2002年第1期1-4,共4页
研究了在 15 0 0℃的流动氮气中 ,用Al粉、Si粉、Al2 O3粉、刚玉和SiC的颗粒及细粉直接制备 β Sialon -Al2 O3-SiC系复相材料的氮化烧结技术。XRD和SEM分析表明 ,结合相 β Sialon的显微形貌随刚玉量的增加由纤维状向棱柱状转变 ,发育... 研究了在 15 0 0℃的流动氮气中 ,用Al粉、Si粉、Al2 O3粉、刚玉和SiC的颗粒及细粉直接制备 β Sialon -Al2 O3-SiC系复相材料的氮化烧结技术。XRD和SEM分析表明 ,结合相 β Sialon的显微形貌随刚玉量的增加由纤维状向棱柱状转变 ,发育良好。复相材料的高温抗折强度高于常温抗折强度。抗热震试验结果显示 :添加适量的刚玉对β Sialon -SiC复相材料和添加适量的SiC对β Sialon -刚玉 复相材料都具有良好的增韧效果 ,这是β Sialon的纤维增强及柱状晶体原位自补强增韧和复合弥散相增韧综合作用的结果。抗碱和抗高炉渣试验均显示了该复相材料优良的抗碱和抗铁渣侵蚀能力。 展开更多
关键词 Β-SIalON al2O3 复相材料 高级耐火材料 三氧化二铝 碳化硅 研制 性能
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纳米SiO_2/Al复合粒子的制备 被引量:6
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作者 刘耀鹏 杨毅 《化工进展》 EI CAS CSCD 北大核心 2005年第2期178-181,共4页
摘 要 利用在活化微米金属铝粉表面包覆纳米SiO2 致密膜的方法, 以对推进剂燃烧具有催化作用的纳米膜取代了铝粉表面本身的惰性氧化层。分析了纳米膜包覆的形成机理, 并以此制备了纳米 SiO2/Al复合粒子。通过检测分析, 发现包覆前后... 摘 要 利用在活化微米金属铝粉表面包覆纳米SiO2 致密膜的方法, 以对推进剂燃烧具有催化作用的纳米膜取代了铝粉表面本身的惰性氧化层。分析了纳米膜包覆的形成机理, 并以此制备了纳米 SiO2/Al复合粒子。通过检测分析, 发现包覆前后颗粒粒度变化不明显, 包覆膜的厚度在 10 nm左右, 与铝粉本身的氧化层厚度相当;发现复合颗粒表面有Si—O—Si反对称伸缩振动峰及Si—O—Si弯曲振动吸收峰, 表明包覆膜为SiO2。 展开更多
关键词 纳米材料 SIO2 al 复合粒子 包覆技术
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(Al_2O_3)_p和SiC_p多元增强铝基复合材料 被引量:2
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作者 欧阳柳章 罗承萍 +1 位作者 隋贤栋 骆灼旋 《铸造技术》 CAS 北大核心 1999年第6期40-42,共3页
利用Al2(SO4)3 分解反应所制备的多元增强铝基复合材料,其中Al2O3 和SiC 颗粒和基体结合良好,分解的SO3 对SiCp/ Al 复合材料熔体进行精炼、除气,试样中没有发现气孔、团聚、集聚、偏析,克服了传统搅拌... 利用Al2(SO4)3 分解反应所制备的多元增强铝基复合材料,其中Al2O3 和SiC 颗粒和基体结合良好,分解的SO3 对SiCp/ Al 复合材料熔体进行精炼、除气,试样中没有发现气孔、团聚、集聚、偏析,克服了传统搅拌铸造所带来的铸造缺陷,解决了回收利用重熔过程中的吸气、精炼问题;从而为颗粒增强铝基复合材料走向实用化打下了基础。 展开更多
关键词 复合材料 铝基 多元增强 碳化硅 氧化铝
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纳米Fe-Al/Cr3C2复合涂层的抗电化学腐蚀性能 被引量:2
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作者 刘晓明 马文 +2 位作者 闫侯霞 杨月红 韩吉伟 《光学精密工程》 EI CAS CSCD 北大核心 2019年第9期1950-1959,共10页
研究纳米Fe-Al/Cr 3C 2复合涂层的抗电化学腐蚀性能,确定纳米Fe-Al/Cr 3C 2团聚颗粒加入量的最佳值。采用三电极系统,对微米Fe-Al/Cr 3C复合涂层、纳米Fe-Al/Cr 3C 2和分别添加了5%,10%,15%纳米Fe-Al/Cr 3C 2团聚颗粒的系列复合涂层抗... 研究纳米Fe-Al/Cr 3C 2复合涂层的抗电化学腐蚀性能,确定纳米Fe-Al/Cr 3C 2团聚颗粒加入量的最佳值。采用三电极系统,对微米Fe-Al/Cr 3C复合涂层、纳米Fe-Al/Cr 3C 2和分别添加了5%,10%,15%纳米Fe-Al/Cr 3C 2团聚颗粒的系列复合涂层抗电化学腐蚀性能进行测试;利用Zview软件拟合交流阻抗谱,从定性到定量拟合对纳米Fe-Al/Cr 3C 2系列复合涂层的电化学腐蚀行为进行分析;利用扫描电子显微镜观察腐蚀后涂层表面形貌。添加了5%纳米Fe-Al/Cr 3C 2团聚颗粒的复合涂层自腐蚀电位为-0.775 V,自腐蚀电流为0.280 mA/cm 2,与其它涂层相比抗电化学腐蚀性能最优;此处添加的5%纳米级Fe-Al/Cr 3C 2团聚颗粒的复合涂层的特征主要以均匀腐蚀性为主,而其它Fe-Al/Cr 3C 2复合涂层都表现为一定的局部腐蚀特性。Fe-Al/Cr 3C 2复合涂层本身的抗电化学腐蚀特性会受到Fe-Al/Cr 3C 2团聚颗粒的影响而存在改善的价值。加入量低于最佳值时,涂层因表面质量没有得到改善而抗电化学腐蚀性能较低;加入量高于最佳值时,涂层因表面高活性而导致抗电化学腐蚀性能较低。 展开更多
关键词 纳米材料 Fe-al/Cr 3C 2 复合涂层 抗电化学腐蚀
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Layered AI-substituted Cobalt Hydroxides/GO Composites for Electrode Materials of Supercapacitors 被引量:1
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作者 陈艳丽 胡中爱 +4 位作者 常艳琴 王欢文 付国瑞 金小青 谢莉婧 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2011年第11期2257-2262,共6页
In this work, Al-substituted a-Co(OH)2/GO composites with supercapacitive properties were prepared by chemical co-precipitated method in which cobalt nitrate and aluminum nitrate were used as the raw material, and g... In this work, Al-substituted a-Co(OH)2/GO composites with supercapacitive properties were prepared by chemical co-precipitated method in which cobalt nitrate and aluminum nitrate were used as the raw material, and graphite oxide was employed as carrier. The as-prepared materials were characterized by X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM) and fourier transform infrared spectroscopy (FF-IR). Cyclic voltammetry (CV) and galvanostatic charge/discharge measurements showed that the Al-substituted a-Co(OH)2/GO electrode material had excellent electrochemical capacitance. The specific capacitance of 1137 F·g-11 was achieved in 6 mol/L KOH solution at a current density of 1 A·g-1 within a potential range of 0-0.5 V. Moreover, only 12% losses of the initial specific capacitance were found after 500 cycles at a current density of 1 A·g-1. 展开更多
关键词 al-substituted a-Co(OH)2/GO chemical co-precipitation electrode materials SUPERCAPACITOR
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Al^(3+)掺杂α-Ni(OH)_2复合CNTs电极材料的高温性能
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作者 李培培 刘长久 +1 位作者 陈世娟 韦日修 《桂林理工大学学报》 CAS 北大核心 2012年第4期584-587,共4页
采用化学共沉淀法制备Al3+掺杂α-Ni(OH)2粉体,将其复合碳纳米管(CNTs)制成镍电极材料并研究其在高温下的电化学性能。结果表明:以混合CNTs(w=0.5%)的Al掺杂α-Ni(OH)2样品材料为活性物质制成镍电极,由其组装的MH-Ni电池在65℃高温环境... 采用化学共沉淀法制备Al3+掺杂α-Ni(OH)2粉体,将其复合碳纳米管(CNTs)制成镍电极材料并研究其在高温下的电化学性能。结果表明:以混合CNTs(w=0.5%)的Al掺杂α-Ni(OH)2样品材料为活性物质制成镍电极,由其组装的MH-Ni电池在65℃高温环境下,采用0.2和1.0 C充放电制度的放电比容量分别为391.1和366.4 mAh.g-1;经40次充放电循环,放电比容量衰减率分别为6.8%、11.98%,表现出较好的高温环境电化学性能。 展开更多
关键词 al3+掺杂 Α-NI(OH)2 高温环境 电化学性能 电极材料
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Zn^(2+)-Ni^(2+)-Al^(3+)-MnO_4^--LDHs制备及其表征
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作者 王金玺 党睿 +4 位作者 马向荣 刘洁莹 张宇鑫 罗娇 张鑫玲 《工业催化》 CAS 2018年第7期23-27,共5页
锌、镍和铝物质的量比为1∶3∶2,以尿素为沉淀剂,采用均相沉淀技术制备Zn^(2+)-Ni^(2+)-Al^(3+)-CO_3^(2-)-LDHs。以Zn^(2+)-Ni^(2+)-Al^(3+)-CO_3^(2-)-LDHs为前驱体,分别与Cl-和MnO_4^-进行离子交换,将MnO_4^-引入Zn^(2+)-Ni^(2+)-Al^... 锌、镍和铝物质的量比为1∶3∶2,以尿素为沉淀剂,采用均相沉淀技术制备Zn^(2+)-Ni^(2+)-Al^(3+)-CO_3^(2-)-LDHs。以Zn^(2+)-Ni^(2+)-Al^(3+)-CO_3^(2-)-LDHs为前驱体,分别与Cl-和MnO_4^-进行离子交换,将MnO_4^-引入Zn^(2+)-Ni^(2+)-Al^(3+)-LDHs层间制备Zn^(2+)-Ni^(2+)-Al^(3+)-MnO_4^--LDHs新型复合材料。通过XRD、SEM、FT-IR和EDS等对合成产物Zn^(2+)-Ni^(2+)-Al^(3+)-MnO_4^--LDHs进行表征。结果表明,Zn^(2+)-Ni^(2+)-Al^(3+)-MnO_4^--LDHs复合材料结晶度较高,层间距为0.912 nm,具有明显的六边形层状结构,片层横向尺寸约为3μm,厚度约为100 nm。 展开更多
关键词 复合材料 zn^2+-Ni^2+-al^3+--LDHs MnO4^- 均相沉淀技术 插层
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(La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4: A high-entropy rare-earth phosphate monazite ceramic with low thermal conductivity and good compatibility with Al2O3 被引量:23
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作者 Zifan Zhao Heng Chen +4 位作者 Huimin Xiang Fu-Zhi Dai Xiaohui Wang Zhijian Peng Yanchun Zhou 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第12期2892-2896,共5页
Low thermal conductivity, matched thermal expansion coefficient and good compatibility are general requirements for the environmental/thermal barrier coatings(EBCs/TBCs) and interphases for Al2O3 f/Al2O3 composites. I... Low thermal conductivity, matched thermal expansion coefficient and good compatibility are general requirements for the environmental/thermal barrier coatings(EBCs/TBCs) and interphases for Al2O3 f/Al2O3 composites. In this work, a novel high-entropy(HE) rare-earth phosphate monazite ceramic (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4 is designed and successfully synthesized. This new type of HE rare-earth phosphate monazite exhibits good chemical compatibility with Al2O3, without reaction with Al2O3 as high as 1600℃ in air. Moreover, the thermal expansion coefficient(TEC) of HE (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4(8.9 × 10^-6/℃ at 300–1000℃) is close to that of Al2O3. The thermal conductivity of HE (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4 at room temperature is as low as 2.08 W·m^-1·K^-1, which is about 42% lower than that of La PO4. Good chemical compatibility, close TEC to that of Al2O3, and low thermal conductivity indicate that HE (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4 is suitable as a candidate EBC/TBC material and an interphase for Al2O3 f/Al2O3 composites. 展开更多
关键词 (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4 High-entropy ceramics al2O3f/al2O3ceramic matrix composites Environmental barrier coating materials Interphase material Thermal expansion coefficient Thermal conductivity Solution synthesis Rare-earth phosphates MONAZITE
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Ni-Al辅助微波自蔓延烧结制备Ti_(3)SiC_(2)基金刚石复合材料工艺研究
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作者 史书浩 杨黎 +3 位作者 郭胜惠 高冀芸 侯明 鲁元佳 《金刚石与磨料磨具工程》 CAS 北大核心 2024年第1期22-30,共9页
为降低金刚石磨削工具的制造成本和能耗,探寻一种在低能耗下实现高性能陶瓷结合剂金刚石磨具的制备工艺,同时研究助燃剂Si和金刚石粒度等因素对样品物相组成、显微形貌和磨削性能的影响。采用Ti、Si、石墨粉和金刚石磨料作为原料,经冷... 为降低金刚石磨削工具的制造成本和能耗,探寻一种在低能耗下实现高性能陶瓷结合剂金刚石磨具的制备工艺,同时研究助燃剂Si和金刚石粒度等因素对样品物相组成、显微形貌和磨削性能的影响。采用Ti、Si、石墨粉和金刚石磨料作为原料,经冷压成型至生胚,通过Ni-Al辅助在微波场加热诱发Ti-Si-C体系发生自蔓延高温合成(SHS)反应以制备Ti_(3)SiC_(2)基金刚石复合材料。结果表明,高热值Ni-Al合金辅助可以缩短样品的烧结时间,还可以将诱发SHS反应的温度点控制在金刚石石墨化温度以下。在Ar保护气氛下,Ti-Si-C体系发生SHS反应,可生成Ti_(3)SiC_(2)、TiC和Ti5Si3等3种物相。随Si含量升高,Ti_(3)SiC_(2)相先增多后减少,当n(Ti):n(Si):n(C)=3∶1.1∶2时,复合材料的磨削性能最佳,磨耗比最高可达286.53。分析不同原料配比下的试样磨耗比差异的产生机制,认为基体组织中存在微小且分布均匀的气孔结构,在磨削时可产生大区域的平整磨削面,易于发挥金刚石磨料的磨削效果,有利于提升复合材料样品的磨削性能。 展开更多
关键词 微波自蔓延烧结 Ti_(3)SiC_(2) 金刚石复合材料 NI-al合金
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Development of non-shrinkable ceramic composites for use in high-power microwave tubes
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作者 N.Dandapat S.Ghosh 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第4期516-522,共7页
Al_2O_3–CaO–SiC-based ceramic composites with four different compositions were sintered at 1700℃ for 3 h in an air furnace. The phase analysis, microstructural characterization, and elemental composition determinat... Al_2O_3–CaO–SiC-based ceramic composites with four different compositions were sintered at 1700℃ for 3 h in an air furnace. The phase analysis, microstructural characterization, and elemental composition determination of the developed composites were performed by X-ray diffraction(XRD), field-emission scanning electron microscopy(FESEM), and energy-dispersive X-ray(EDAX) analysis, respectively. The shrinkage, thermal properties, and electrical resistivity of the composites were also studied. The experimental results showed the effects of adding silicon carbide and calcia to alumina on the thermal, electrical, and shrinkage properties of the resultant composites. Among the four investigated ceramic composites, the one composed of 99 wt% alumina, 0.5 wt% CaO, and 0.5 wt% SiC exhibited the best characteristics for use as a potting material in a dispenser cathode of a microwave tube. The material exhibited slight expansion instead of shrinkage during drying or firing. Other properties of the composite powder, such as its thermal properties and electrical resistivity, were comparable to those of a commercial alumina powder. 展开更多
关键词 al2O3-CaO-SiC composite EXPANSION POTTING material DISPENSER CATHODE microwave tube
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