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诸工艺条件对超粗颗粒硬质合金中Co池的影响 被引量:1
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作者 廖文廷 《福建冶金》 2022年第2期32-35,共4页
在硬质合金制造生产过程中,尤其是超粗颗粒的合金牌号,容易生成Co池,钴池的存在降低了合金的机械性能,为了减少或避免超粗颗粒硬质合金Co池的产生,本文从多个角度入手,研究了Co池产生与具体工艺条件的关联,发现RTP粒子的化学成分偏析对C... 在硬质合金制造生产过程中,尤其是超粗颗粒的合金牌号,容易生成Co池,钴池的存在降低了合金的机械性能,为了减少或避免超粗颗粒硬质合金Co池的产生,本文从多个角度入手,研究了Co池产生与具体工艺条件的关联,发现RTP粒子的化学成分偏析对Co池的产生也有一定影响。 展开更多
关键词 超粗颗粒 co池 喷雾法 化学成分偏析
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Effect of Sn substitution for Co on microstructure and electrochemical performance of AB_5 type La_(0.7)Mg_(0.3)Al_(0.3)Mn_(0.4)Co_(0.5-x)Sn_xNi_(3.8)(x=0-0.5) alloys 被引量:1
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作者 Julio Cesar Serafim CASINI Zai-ping GUO +3 位作者 Hua Kun LIU Eliner Affonso FERREIRA Rubens Nunes FARIA Hidetoshi TAKIISHI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第2期520-526,共7页
The effects of substitution of Sn for Co on the microstructure, hydrogen storage and electrochemical discharge capacity of La0.7Mg0.3Al0.3Mn0.4Co0.5-xSnxNi3.8 (x=0, 0.1, 0.2, 0.3 and 0.5) alloys were investigated us... The effects of substitution of Sn for Co on the microstructure, hydrogen storage and electrochemical discharge capacity of La0.7Mg0.3Al0.3Mn0.4Co0.5-xSnxNi3.8 (x=0, 0.1, 0.2, 0.3 and 0.5) alloys were investigated using X-ray diffraction (XRD), pressure composition isotherm (PCT) and electrochemical discharge cycle. XRD, scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) tests showed that all of alloys are mainly composed of LaNi5 and MgNi2 phases, but when increasing the content of Sn in alloys, the LaNiSn phase appears and microstructure is refined. The PCT showed that increasing substitution of Sn for Co results in decrease of the maximum hydrogen storage capacity from 1.48% (x=0) to 0.85% (x=0.5). The electrochemical tests indicated that the maximum discharge capacity decreases from 337.1 mA-h/g (x=0) to 239.8 mA.h/g (x=0.5); however, the discharge capacity retention at the 100th cycle increases from 70.2% (x=0) to 78.0% (x=0.5). 展开更多
关键词 hydrogen storage alloys MICROSTRUCTURE Ni-MH batteries SN CO substitution
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Possibility of Using Ni-Co Alloy As Catalyst for Oxygen Electrode of Fuel Cell
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作者 Pawel Piotr Wlodarczyk Barbara Wlodarczyk 《Chinese Business Review》 2015年第3期159-167,共9页
In recent years, the scale of use of fuel cells (FCs) has been increasing continuously. One of the essential elements that affect their work is a catalyst. Precious metals (mainly platinum) are known for their hig... In recent years, the scale of use of fuel cells (FCs) has been increasing continuously. One of the essential elements that affect their work is a catalyst. Precious metals (mainly platinum) are known for their high efficiency as FC catalysts. However, their high cost holds back the FCs from application on a large scale. Therefore, catalysts that do not contain precious metals are sought. Studies are focused mainly on the search for fuel electrode catalysts, but for the efficiency of FCs also the oxygen electrode catalyst is of great significance. The paper presents an analysis of the possibilitiesof using Ni-Co alloy as a catalyst for the oxygen electrode of the FC. 展开更多
关键词 fuel cell (FC) renewable energy sources Ni-Co alloy CATALYST ELECTROREDUCTION oxygen electrode
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Synthesis of Li-doped Co_3O_4 truncated octahedra with improved performances in CO oxidation and lithium ion batteries
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作者 JIN Hong CUI ZhiMin +2 位作者 ZHOU Wei GUO Lin YANG ShiHe 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第1期8-12,共5页
Single-crystalline Li-doped Co3O4 truncated octahedra with different doping contents were synthesized by a simple combustion method with the fuel of multi-walled carbon nanotubes(MWCNTs).Controlled experiments showed ... Single-crystalline Li-doped Co3O4 truncated octahedra with different doping contents were synthesized by a simple combustion method with the fuel of multi-walled carbon nanotubes(MWCNTs).Controlled experiments showed that the pristine well-defined Co3O4 octahedra were obtained with exposed surfaces of {111} planes without lithium doping.In comparison with the octahedra,the truncated Co3O4 octahedra were composed of original {111} planes and extra {100} planes.It could be attributable to the selective adsorption of lithium ions on the {100} planes,making these planes with higher surface energy coexist with the crystal faces of {111}.Furthermore,the Li-doped truncated octahedra and undoped octahedra were used as catalysts in CO oxidation and as anode materials for Li-ion batteries(LIBs).The measurements exhibited that the Li-doped octahedra with added {100} crystal faces showed improved catalytic activity and electrochemical property because of the exposure of the higher energy faces of {100} and enhanced conductivity by Li doping. 展开更多
关键词 truncated octahedron high-energy face doping CO oxidation Li-ion battery
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