1) infinite-micro heat sources furnace
无限微热源冶炼炉
1.
Temperature mechanism of infinite-micro heat sources furnace which is use to be prepared β-SiC will be researched.
对无限微热源法制备β-SiC 粉体的冶炼炉进行温度机理研究,根据传热形式、传热模型推导出无限微热源冶炼炉的导热微分方程,采用 Galerkin 法对方程进行变分并得出平面非稳态导热温度场分布方程,利用有限元思想对方程进行推导,再采用有限差分方法求解温度矩阵以得到炉内各个时刻温度的变化情况。
3) blast furnace / liningless ironmaking
高炉/无炉衬冶炼
4) infinite-mini-heat sources furnace
无限微热源法
1.
Using the infinite-mini-heat sources furnace, the effects of the raw materials、gradation of raw materials、electric power and time on productive rate of β-SiC ultrafine powder were studied, the grain size and XRD of β-SiC ultrafine powder is analyzed too.
采用无限微热源法从原料、原料级配、供电功率和供电时间对合成β-SiC微粉产品的产率和品率的影响进行了探讨,并对合成β-SiC微粉产品进行了粒度测试和XRD分析。
5) refining furnace slag
冶炼炉渣
1.
The present status of the research of glass-ceramics by industrious solid waste as materials such as industrial slag, tailings, and refining furnace slag was s ummarized.
概述了以工业废渣、尾矿尾砂、冶炼炉渣等工业固体废弃物为原料制备微晶玻璃的研究现状。
6) BF ironmaking
高炉冶炼
1.
Divide the Si series into equal-length windows, according to the calculation of the characterization between these windows, the dynamic abrupt changes in BF ironmaking process are detected.
然后,在关联积分的基础上,定义了衡量不同时间序列间动力学相似性的"距离",通过等分采集得到的[Si]序列,计算子序列间的"距离",发现了高炉冶炼过程中存在显著的动力学结构突变性,最后应用DVV算法分析动力学性质变动下,高炉铁水含硅量[Si]的可预测性。
补充资料:日处理铜精矿1500t的闪速炉(贵溪冶炼厂)
日处理铜精矿1500t的闪速炉(贵溪冶炼厂)
聂 日处理铜精矿1500t的闪速炉(贵溪冶炼厂)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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