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银铜合金铸态球晶组织的研究
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作者 张国良 向雄志 夏静 《黄金》 CAS 2020年第7期7-11,共5页
银铜合金铸态组织中球晶的获得,将为低银高铜的银铜合金制备电接触材料提供可能。试验在银铜合金(w(Cu)=50.0%)中添加了Co、Si元素,采用金相显微镜、扫描电子显微镜对银铜合金的金相和显微结构进行分析。试验结果表明:单独添加Co、Si元... 银铜合金铸态组织中球晶的获得,将为低银高铜的银铜合金制备电接触材料提供可能。试验在银铜合金(w(Cu)=50.0%)中添加了Co、Si元素,采用金相显微镜、扫描电子显微镜对银铜合金的金相和显微结构进行分析。试验结果表明:单独添加Co、Si元素不会产生球晶组织;复合添加Co-Si元素时,富铜相树枝晶被打断,晶粒球化,出现球晶组织。该球晶组织由3层结构组成,黑色核心的CoSi x化合物颗粒、灰色区域的富铜相和白色包围带的富银相。 展开更多
关键词 银铜合金 球晶组织 铸态组织 树枝 富铜相
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Structural characteristics of spherical Ni(OH)_2 and its charge/discharge process mechanism 被引量:2
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作者 彭美勋 沈湘黔 +1 位作者 王零森 危亚辉 《Journal of Central South University of Technology》 2005年第1期5-8,共4页
Spherical Ni(OH)2 particles were prepared by an aqueous solution precipitation route. The structure of spherical Ni(OH)2 was investigated by scanning electron microscopy and transmission electron microscopy and co... Spherical Ni(OH)2 particles were prepared by an aqueous solution precipitation route. The structure of spherical Ni(OH)2 was investigated by scanning electron microscopy and transmission electron microscopy and compared with that of traditional Ni(OH)2. The results show that the spherical nickel hydroxide consists of (Ni(OH)2) spheres with a reticulate structure of platelet-like, which is almost arranged radially and the crystalline grains intervene and connect with each other to form a three-dimensional net. The spherical Ni(OH)2 particle is full of pores, crannies between cleave planes. It is supposed that this structure is beneficial to the structural stability for the spherical particles during the charge/discharge processes and can improve the cycle life of the electrode; the pores and the crannies in spherical particles can shorten the proton diffusion distance and speed its velocity, which may result in that the local polarization is lowered. The electrochemical performances of the spherical Ni(OH)2 are improved by enhancing the conducting properties of the crystalline lattice due to its quick proton diffusion. 展开更多
关键词 structure CRYSTALLINITY spherical Ni(OH)_2 proton diffusion charge/discharge process
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