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CuO/Al反应自生复合材料的制备及其力学性能 被引量:1
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作者 马颖 郝远 +1 位作者 寇生中 鲁学年 《材料热处理学报》 EI CAS CSCD 北大核心 2003年第1期37-40,共4页
采用液态搅拌法在低温下制备CuO Al反应自生Al2 O3 增强金属基复合材料并研究了它的力学性能。结果表明 :CuO Al反应自生复合材料中自生增强颗粒的尺寸细小 (<1 μm)、分布均匀 ,复合材料具有较高的抗拉强度 (2 97MPa) ,较基体 (1 95... 采用液态搅拌法在低温下制备CuO Al反应自生Al2 O3 增强金属基复合材料并研究了它的力学性能。结果表明 :CuO Al反应自生复合材料中自生增强颗粒的尺寸细小 (<1 μm)、分布均匀 ,复合材料具有较高的抗拉强度 (2 97MPa) ,较基体 (1 95MPa)提高 53 %。硬度达 1 36HB ,提高近 1倍。 展开更多
关键词 自生复合材料 氧化铜/铝 力学性能 液态搅拌 制备
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CuO/Al反应自生复合材料的机械性能研究 被引量:1
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作者 寇生中 郝远 李常峰 《甘肃工业大学学报》 2000年第3期22-25,共4页
采用液态搅拌法制备了反应自生 Al2 O3增强金属基复合材料并研究了它的机械性能 .采用 X衍射和扫描电镜分析了相组成和断口形貌 .与基体合金比较 ,复合材料的强硬性得到较大提高 ,其中 10 % Cu O复合材料的抗拉强度提高了 5 2 .3% ,硬... 采用液态搅拌法制备了反应自生 Al2 O3增强金属基复合材料并研究了它的机械性能 .采用 X衍射和扫描电镜分析了相组成和断口形貌 .与基体合金比较 ,复合材料的强硬性得到较大提高 ,其中 10 % Cu O复合材料的抗拉强度提高了 5 2 .3% ,硬度提高近一倍 .复合材料中的拉伸断裂特征为韧性断裂 。 展开更多
关键词 自生复合材料 机械性能 氧化铜/铝
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High temperature mechanical behavior of alumina dispersion strengthened copper alloy with high content of alumina 被引量:6
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作者 向紫琪 李周 +2 位作者 雷前 肖柱 庞咏 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第2期444-450,共7页
The microstructure and its effects on the high temperature mechanical behavior of Cu-2.7%Al_2O_3 (volume fraction) dispersion strengthened copper (ADSC) alloy were investigated. The results indicate that fine alum... The microstructure and its effects on the high temperature mechanical behavior of Cu-2.7%Al_2O_3 (volume fraction) dispersion strengthened copper (ADSC) alloy were investigated. The results indicate that fine alumina particles are uniformly distributed in the copper matrix, while a few coarse ones are distributed on the grain boundaries. Tensile tests results show that Hall-Petch mechanism is the main contribution to the yield strength of ADSC alloy at room temperature. Its high temperature strength is attributed to the strong pinning effects of alumina particles on the grain and sub-grain boundaries with dislocations. The ultimate tensile strength can reach 237 MPa and the corresponding yield strength reaches 226 MPa at 700℃. Tensile fracture morphology indicates that the ADSC alloy shows brittleness at elevated temperatures. Creep tests results demonstrate that the steady state creep rates at 400 ℃ are lower than those at 700 ℃. The stress exponents at 400 ℃ and 700℃ are 7 and 5, respectively, and the creep strain rates of the ADSC alloy are controlled by dislocation core diffusion and lattice diffusion. 展开更多
关键词 copper alloys alumina dispersion strengthened alloy high temperature mechanical behavior creep behavior FRACTURE strengthening mechanism
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Preparation of copper nano-wires by template synthesis method 被引量:1
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作者 郑国渠 倪似愚 +2 位作者 郑华钧 干学宏 张九渊 《Journal of Central South University of Technology》 SCIE EI CAS 2004年第4期371-374,共4页
Highly ordered and porous anodic aluminum oxide templates were prepared. The ordered copper nanowires arrays were assembled in nano-holes of the template by alternating current electrodeposition at lover voltage. The ... Highly ordered and porous anodic aluminum oxide templates were prepared. The ordered copper nanowires arrays were assembled in nano-holes of the template by alternating current electrodeposition at lover voltage. The morphologies of template and copper nano-wires arrays were characterized by means of field emission scanning electron microscope (FESEM) and the crystal structure of copper nano-wires was determined by means of X-ray diffraction. The results indicate that copper nano-wires hold the preferred crystalline orientation along (111), (200), (220) and (331) crystal faces during growth, and the growth of copper nano-wires in the nano-holes of the template is homogenous and continuous. 展开更多
关键词 TEMPLATE porous alumina copper nano-wires ELECTRODEPOSITION
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Current Efficiency, Corrosion and Structural Changes in SnO2-Sb2O3-CuO Inert Anodes for Aluminium Electrolysis 被引量:2
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作者 Ana-Maria Popescu Virgil Constantin 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2014年第3期368-372,共5页
A systematic study was conducted on current efficiency (CE), corrosion and structural changes in SnO2-based inert anodes (made of 96wt%SnO2+2wt%Sb2O3+2wt%CuO) on a laboratory Hall-Heroult aluminium cell. The inf... A systematic study was conducted on current efficiency (CE), corrosion and structural changes in SnO2-based inert anodes (made of 96wt%SnO2+2wt%Sb2O3+2wt%CuO) on a laboratory Hall-Heroult aluminium cell. The influence of operating parameters and electrolyte composition on the CE and corrosion process were evaluated. The CE was found to be more than 90% and catastrophic corrosion took place at low percent of Al2O3, high percent of LiF, low cryolite ratio and high current densities. From all the structural changes that took place in the SnO2-based inert anodes, we assumed that the most important contribution was due to the migration of CuO towards the outer limits of the constituent grains of SnO2 based ceramic. The complex process occurred during the formation of various phases and their sintering ability both directly depended on Cu/Sb molar ratio. 展开更多
关键词 Inert anode Aluminium electrowinning Current efficiency
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Plasma electrolytic oxidation behavior and corrosion resistance of brass in aluminate electrolyte containing NaH2PO4 or Na2SiO3 被引量:2
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作者 Yu-lin CHENG Tian FENG +2 位作者 Jia-hui LÜ Pan-feng HU Ying-liang CHENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第12期3985-3997,共13页
Plasma electrolytic oxidation(PEO) of brass was carried out in aluminate electrolytes with the addition of NaH2PO4(S1) and Na2SiO3(S2), respectively, with the aim to investigate the effect of additives on the coating ... Plasma electrolytic oxidation(PEO) of brass was carried out in aluminate electrolytes with the addition of NaH2PO4(S1) and Na2SiO3(S2), respectively, with the aim to investigate the effect of additives on the coating formation and corrosion resistance. For the PEO in S1 electrolyte, a mixed layer of AlPO4and Al2O3is formed at the initial stage, which leads to fast plasma discharges and formation of black coatings with the compositions of Al2O3,CuO, Cu2O and ZnO. However, in S2 electrolyte, plasma discharges are delayed and the coatings show a reddish color due to more Cu2O. Mott-Schottky tests show that the S1 coatings are p-type semiconductors;while the S2 coatings can be adjusted between n-type and p-type. Potentiodynamic polarization and electrochemical impedance spectroscopy(EIS) tests show that the PEO treatment can significantly improve the corrosion resistance of brass, with protection efficiency up to 91.50% and the largest charge transfer resistance of 59.95 kΩ·cm^(2) for the S1 coating. 展开更多
关键词 plasma electrolytic oxidation BRASS corrosion resistance ALUMINATE sodium dihydrogen phosphate sodium silicate
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Effect of sub-layer thickness on magnetic and giant magnetoresistance properties of Ni–Fe/Cu/Co/Cu multilayered nanowire arrays 被引量:1
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作者 王宏智 黄波 +3 位作者 邓华权 李浩晨 张卫国 姚素薇 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第7期1231-1235,共5页
Ni-Fe/Cu/Co/Cu multilayered nanowire arrays were electrodeposited into anodic aluminum oxide template by using dual-bath method at room temperature. Scanning electron microscopy and transmission electron microscopy we... Ni-Fe/Cu/Co/Cu multilayered nanowire arrays were electrodeposited into anodic aluminum oxide template by using dual-bath method at room temperature. Scanning electron microscopy and transmission electron microscopy were used to characterize the morphology and structure of the multilayered nanowire arrays. Vibrating sample magnetometer and physical property measurement system were used to measure their magnetic and giant magnetoresistance (GMR) properties. The effect of sub-layer thickness on the magnetic and GMR properties was investigated. The results indicate that magnetic properties of electmdeposited nanowires are not affected obviously by Cu layer thickness, while magnetic layers (Ni-Fe and Co layers) have significant influence. In addition, GMR ratio presents an oscillatory behavior as Cu layer thickness changes. The magnetic and GMR properties of the multilayered nanowire arrays are optimum at room temperature for the material structure of Ni-Fe (25 nm)/Cu (15 nm)/Co (25 nm)/Cu (15 nm) with 30 deposition cycles. 展开更多
关键词 Electrochemistry Ni-Fe/Cu/Co/Cu multilayered nanowires Sub-layer thickness Magnetic property Giant magnetoresistance
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Effect of reduction-oxidation treatment on structure and catalytic properties of ordered mesoporous Cu-Mg-Al composite oxides 被引量:1
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作者 Jingting Lu Yan Zhang +6 位作者 Chengli Jiao Suresh Kumar Megarajan Dong Gu Guocheng Yang Heqing Jiang Chunjiang Jia Ferdi Schiith 《Science Bulletin》 SCIE EI CAS CSCD 2015年第12期1108-1113,I0003,共7页
Ordered mesoporous Cu-Mg-A1 composite oxides were synthesized via the one-pot evaporation-in- duced self-assembly strategy. Using this method, copper was first homogeneously incorporated into the ordered mesoporous sp... Ordered mesoporous Cu-Mg-A1 composite oxides were synthesized via the one-pot evaporation-in- duced self-assembly strategy. Using this method, copper was first homogeneously incorporated into the ordered mesoporous spinel matrix. After H2 reduction treatment, according to X-ray diffraction (XRD) and transmission electron microscopy (TEM) results, copper existed as metallic nanoparticles with the size of 6-10 nm that well decorated the parent mesoporous skeleton. The metallic nanoparticles were then re-oxidized to copper oxide when exposed to air or during CO oxidation reaction at low temperatures. Thus, copper migrated from bulk spinel phase to the surface after the reduction-oxidation treat- ment. Moreover, the copper on the surface was re-incor- porated into the bulk spinel phase by further thermal treatment at much higher temperature in the presence of air. The correlation between the state of copper in the mesoporous composite oxides and the catalytic perfor- mance toward CO oxidation was studied. It was found that copper existed as oxide nanoparticles on the surface of mesoporous Mg-Al skeleton is much more active than that existed as lattice Cu ions in spinel phase. 展开更多
关键词 Cu-Mg-Al oxides Evaporation-induced self-assembly Mesoporous materials Migration CO oxidation
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Thermally Radiative Rotating Magneto-Nanofluid Flow over an Exponential Sheet with Heat Generation and Viscous Dissipation:A Comparative Study 被引量:1
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作者 M.Sagheer M.Bilal +1 位作者 S.Hussain R.N.Ahmed 《Communications in Theoretical Physics》 SCIE CAS CSCD 2018年第3期317-328,共12页
This article examines a mathematical model to analyze the rotating flow of three-dimensional water based nanofluid over a convectively heated exponentially stretching sheet in the presence of transverse magnetic field... This article examines a mathematical model to analyze the rotating flow of three-dimensional water based nanofluid over a convectively heated exponentially stretching sheet in the presence of transverse magnetic field with additional effects of thermal radiation,Joule heating and viscous dissipation.Silver(Ag),copper(Cu),copper oxide(Cu O),aluminum oxide(Al_2O_3)and titanium dioxide(Ti O_2)have been taken under consideration as the nanoparticles and water(H_2O)as the base fluid.Using suitable similarity transformations,the governing partial differential equations(PDEs)of the modeled problem are transformed to the ordinary differential equations(ODEs).These ODEs are then solved numerically by applying the shooting method.For the particular situation,the results are compared with the available literature.The effects of different nanoparticles on the temperature distribution are also discussed graphically and numerically.It is witnessed that the skin friction coefficient is maximum for silver based nanofluid.Also,the velocity profile is found to diminish for the increasing values of the magnetic parameter. 展开更多
关键词 magnetohydrodynamics nanofluid viscous dissipation thermal radiation rotating flow
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