期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
铝硅合金粉对钢包下水口性能的影响
1
作者 赵向飞 屈金栋 谷小华 《耐火与石灰》 2024年第2期45-47,共3页
以板状刚玉、烧结莫来石、鳞片石墨为主要原料,热固性酚醛树脂为结合剂,复合添加金属铝粉和金属硅粉与添加铝硅合金粉进行对比研究铝硅合金粉对钢包下水口性能的影响。结果表明:添加铝硅合金粉试样体积密度会降低,气孔率增高,而试样的... 以板状刚玉、烧结莫来石、鳞片石墨为主要原料,热固性酚醛树脂为结合剂,复合添加金属铝粉和金属硅粉与添加铝硅合金粉进行对比研究铝硅合金粉对钢包下水口性能的影响。结果表明:添加铝硅合金粉试样体积密度会降低,气孔率增高,而试样的中温、高温强度有明显的增强,同时抗热震性也有显著提高。添加铝硅合金粉要优于复合添加金属铝粉和金属硅粉。 展开更多
关键词 铝硅合金粉 钢包下水口 金属 金属
下载PDF
纳米硅/导电聚合物复合负极的制备与性能 被引量:2
2
作者 陈启多 韩凯 +1 位作者 程君 叶红齐 《电池》 CAS CSCD 北大核心 2019年第1期3-7,共5页
以商业低成本铝硅合金粉为硅源,利用酸蚀法制备纳米硅(Si)颗粒,通过原位聚合法制得3种纳米硅/导电聚合物复合材料:硅/聚吡咯(Si@PPy)、硅/聚苯胺(Si@PANl)和硅/聚3,4-乙烯二氧噬吩(Si@PEDOT)等导电聚合物包覆不仅可为硅颗粒提供导电网络... 以商业低成本铝硅合金粉为硅源,利用酸蚀法制备纳米硅(Si)颗粒,通过原位聚合法制得3种纳米硅/导电聚合物复合材料:硅/聚吡咯(Si@PPy)、硅/聚苯胺(Si@PANl)和硅/聚3,4-乙烯二氧噬吩(Si@PEDOT)等导电聚合物包覆不仅可为硅颗粒提供导电网络,而且能够缓冲硅颗粒在充放电过程中的体积膨胀以500mA/g妁电流,在0.005-1.500V充放电,Si@PPy、Si@PANI和Si@PEDOT的首次可逆比容量分别为1526mAh/g、845mAh/g和592mAh/g,第100次循环的比容量分别为1265mAh/g,610mAh/g和558mAh/g,平均库仑效率约99%,比容量与循环性能较未包覆的纯硅得到改善. 展开更多
关键词 铝硅合金粉 酸蚀法 纳米 导电聚合物 负极材料
下载PDF
Possibilities and prospects for producing silumins with different silicon contents using amorphous microsilica
3
作者 M.P.KUZ′MIN M.Yu.KUZ′MINA P.B.KUZ′MIN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第5期1406-1418,共13页
The main objective of this work is to research complex physical-chemical processes of Al(l)-SiO2 interface and develop a new technology for producing foundry silumins based on amorphous microsilica obtained from silic... The main objective of this work is to research complex physical-chemical processes of Al(l)-SiO2 interface and develop a new technology for producing foundry silumins based on amorphous microsilica obtained from silicon production waste. Effective methods for producing hypoeutectic, eutectic, and hypereutectic silumins using amorphous microsilica were developed. Alloys with a silicon content of 7 wt.% were obtained by blowing preheated amorphous microsilica into the aluminum melt(t=900 ℃) along with the stream of argon followed by intense mixing. Alloys with a silicon content of 21 wt.% were manufactured by induction melting of a silicon-containing mixture(60% Si O2, 40%Al + 20%3 Na F·2 Al F3) subjected to the presintering when the amorphous microsilica was reduced to crystalline silicon. It is found that crystalline silicon, which is formed during the roasting of the tableted burden, is smoothly absorbed by the aluminum melt. Aluminum oxide, obtained during the redox reaction, dissolves in cryolite, after which aluminum and silicon are fused together and transferred to the melt. The calculation of the economic efficiency of producing silumins using amorphous microsilica demonstrates a quick project payback period, as well as a high level of its profitability. 展开更多
关键词 ALUMINUM SILICON silumins MICROSILICA silicon dioxide
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部