blast smelting furnace

英 [blɑːst ˈsmeltɪŋ ˈfɜːnɪs] 美 [blæst ˈsmeltɪŋ ˈfɜːrnɪs]

网络  鼓风熔炉

机械



双语例句

  1. Blast Furnace CT for Testing the Internal Condition in Iron smelting Furnace
    炼铁高炉内部情况检测的高炉CT方法
  2. It analyses reduction machanism of silicon in FeMn blast furnace, basic conditions, ways and technological measures to smelt low silicon blast furnace FeMn, points out the technical and economical advantages of smelting low silicon FeMn in Blast furnace.
    分析了锰铁高炉内硅还原机理、冶炼低硅高炉锰铁的基本条件、途径和工艺措施,指出了高炉冶炼低硅锰铁的技术经济优势。
  3. According to physics-chemistry character of molten slag, on the basis of production experience of blast furnace Smelting Lead, the paper describe the way of lowering Lead containing in Lead blast furnace slag.
    分析了熔融炉渣的物理化学性质,在认真总结鼓风炉炼铅生产实践经验的基础上,指出降低铅鼓风炉炉渣含铅的途径。
  4. The paper studies influence of blast furnace smelting process caused by cohesive zone through the numerical simulation of the gas flow around the cohesive zone of blast furnace and the temperature of charging inside blast furnace what carried out by a two-dimensional axial symmetry mathematical model.
    通过软熔带对高炉冶炼过程影响的数学模型研究,建立高炉内煤气流动的二维轴对称数学模型得到了倒V型软熔带附近的气体流动及其炉内炉料温度分布。
  5. Gas flow distribution is correlative with the temperature distribution in blast furnace, the shape of the cohesive zone, the smooth state of blast furnace and using status of gas flow, finally influence the smelting index of blast furnace.
    煤气流的分布关系到炉内温度分布、软熔带结构、炉况顺行和煤气的利用状况,最终影响到高炉冶炼指标。
  6. In accordance with technical reguirements of blast furnace reduction lead smelting and fuming furnace blowing high zinc slag, detriment of high zinc materials on lead smelting blast furnace was analyzed. Specific measure of processing high zinc materials in production practice were adopted
    针对鼓风炉铅还原熔炼的技术与烟化炉吹炼所需的高锌熔渣间的矛盾,分析了高锌物料对炼铅鼓风炉的危害,及在生产实践中处理高锌物料采取的具体措施
  7. However, because of the complexity of blast furnace smelting, blast furnace internal temperature cannot be measured directly. There was not any temperature model can completely describe the blast furnace smelting process and reflect the state of blast furnace temperature timely.
    但是由于高炉冶炼的复杂性,高炉内部温度无法直接测量,同时没有一个温度模型能够很好地从整体上描述高炉冶炼过程,实时反映高炉炉内温度状态。
  8. To reduce energy consumption in the blast furnace smelting process and achieve the stability and optimization of iron making production demand timely and accurate judgment and forecast to the status of blast furnace, adopt various adjustment measures in a timely and appropriate manner.
    降低高炉能耗,实现炼铁生产稳定和优化,必须及时准确地预报高炉炉况,使运行人员能及时采取措施。
  9. The regenerative reheating furnace is an important assistant equipment of the blast furnace smelting. Its task is to supply hot air stably for the blast furnace.
    蓄热式热风炉是高炉炼铁重要的配套设备,其主要任务是稳定地向高炉提供热风。
  10. Sintering practice can remove some harmful impurities, which provides sinter with good metallurgical property for blast furnace smelting and greatly improve economic and technical index of blast furnace production.
    烧结生产能去除某些有害杂质,为高炉冶炼提供具有良好冶金性能的烧结矿从而使高炉技术经济指标大大改善。