期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
谈提高板材硅钢片的利用率
1
作者 吴江涛 《电机技术》 1991年第2期34-35,共2页
板材硅钢片在电机的冲片制造中应用相当广泛,由于其长度方向尺寸的限制,在裁料时无法象卷材那样在尺寸上作任意的选择,往往形成图1所示的“┘”废料,利用率普遍较低,一般只有68%左右。提高板硅钢片的利用率是电机制造工艺中一个值得探... 板材硅钢片在电机的冲片制造中应用相当广泛,由于其长度方向尺寸的限制,在裁料时无法象卷材那样在尺寸上作任意的选择,往往形成图1所示的“┘”废料,利用率普遍较低,一般只有68%左右。提高板硅钢片的利用率是电机制造工艺中一个值得探讨的课题,也是降低电机制造成本的有效途径。在此就提高板材硅钢片的利用率问题谈一点见解。 展开更多
关键词 硅钢片 电机 裁材 利用率
下载PDF
Composites of sodium manganese oxides with enhanced electrochemical performance for sodium-ion batteries: Tailoring properties via controlling microstructure 被引量:3
2
作者 HUANG JiaJia LUO Jian 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第7期1042-1047,共6页
Composites of Na_(0.44)Mn O_2, Na_(0.7)Mn O_(2.05), and Na_(0.91) Mn O_2 were synthesized by facile solid-state reaction, ball milling, and annealing methods. Two different composites of identical overall composition ... Composites of Na_(0.44)Mn O_2, Na_(0.7)Mn O_(2.05), and Na_(0.91) Mn O_2 were synthesized by facile solid-state reaction, ball milling, and annealing methods. Two different composites of identical overall composition but drastically different morphologies and microstructures were synthesized. A composite of a hierarchical porous microstructure with primary and secondary particles(i.e., a "meatball-like" microstructure) achieved an excellent stable capacity of 126 m A h g^(-1) after 100 cycles. The rate capability of the composite could be dramatically enhanced by another round of high-energy ball milling and reannealing; subsequently, a composite that was made up of irregular rods was obtained, for which the capacity was improved by more than 230% to achieve ~53 m A h g^(-1) at a particularly high discharge rate of 50 C. This study demonstrated the feasibility of tailoring the electrochemical performance of electrode materials by simply changing their microstructures via facile ball milling and heat treatments, which can be particularly useful for optimizing composite electrodes for sodium-ion batteries. 展开更多
关键词 sodium-ion battery cathode material composite electrode microstructure morphology
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部