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低碳(纳米)钢包衬砖的制备与使用
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作者 陈敏 刘燕霞 晁霞 《山东冶金》 CAS 2016年第4期21-22,共2页
采用降低C含量并加入10 nm以下的纳米液,制备低碳(纳米)钢包衬砖,衬砖的碳含量已降低至7%左右,其显气孔率、体积密度、常温耐压强度均优于普通镁碳砖。应用实践表明,由于纳米粉的比表面积特别大,砖体内的骨料不仅可快速吸收,保护了骨料... 采用降低C含量并加入10 nm以下的纳米液,制备低碳(纳米)钢包衬砖,衬砖的碳含量已降低至7%左右,其显气孔率、体积密度、常温耐压强度均优于普通镁碳砖。应用实践表明,由于纳米粉的比表面积特别大,砖体内的骨料不仅可快速吸收,保护了骨料使之更加耐侵蚀,从而延长了钢包寿命。同时,通过添加非金属氧化物以克服固定碳含量低而产生的热膨胀,防止钢包衬砖在高温下炸裂。 展开更多
关键词 钢包衬砖 低碳 纳米液 蚀损速率 包壳温度
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不烧铝镁质盛钢桶内衬的试用
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作者 王允和 吴金源 +1 位作者 刘山林 张耀璜 《宝钢技术》 CAS 1985年第1期48-54,共7页
本文介绍了在上钢一厂三转炉车间进行的不烧铝镁质盛钢桶内衬的试用情况,试验结果表明:不烧铝镁砖具有使用效果好、寿命长、简化工艺和节约能源的特点,有推广应用价值。
关键词 铝镁砖 盛钢桶 蚀损速率 镁质 内衬
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Three-phase 2D model of long-rod penetrating semi-infinite metal targets considering variation in nose shape
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作者 Yangcun Liu Yongjun Deng +1 位作者 Xiaowei Chenn Yong Yao 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第12期1-14,共14页
The nose shape effect on long-rod penetration was investigated by establishing numerical 2D models with different original nose shapes.The variations in nose shapes and the mass erosion rate of the rods in the transie... The nose shape effect on long-rod penetration was investigated by establishing numerical 2D models with different original nose shapes.The variations in nose shapes and the mass erosion rate of the rods in the transient phase,primary penetration phase,and secondary penetration phase were adequately analyzed by two dimensionless parameters,i.e.,the nose shape factor N* and the diameter ratio of the rod nose and shank n.In general,N*,η and the mass erosion rate of the rod vary distinctly in different phases,i.e.,unsteady in the initial transient and the secondary penetration phases,and quasi-steady in the primary penetration phase.Furthermore,a relationship between the mass erosion of the rod and the variation in the nose shape was established.A three-phase 2D model of long-rod penetration was further constructed by considering the variations in nose shape.This research may provide a reference to improve the theoretical model of long-rod penetration. 展开更多
关键词 Long-rod penetration Nose shape 2D model Initial transient phase Secondary penetration phase
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