锰铁合金

  • 网络Ferromanganese alloy;ferro manganese alloy;Ferro Mn
锰铁合金锰铁合金
  1. 对高碳锰铁合金用CaO渣系进行了氧化脱磷的热力学研究。

    Oxidation dephosphorization in HC FeMn with CaO slags is thermodynamically researched .

  2. 锰铁合金碳含量对BaO-BaF2-MnO渣和锰铁合金熔体间P,Mn平衡分配的影响

    Effect of Carbon Contents in Ferro-Manganese Melts on the Equilibrium Partitions of P and Mn Between BaO-BaF_2-Mn Slags and Ferro-Manganese Melts

  3. 低磷钢是纯净钢生产的重要部分,从钢包回磷控制和脱磷、锰铁合金脱磷两方面开展低磷钢冶炼的相关理论及工艺研究。

    Low phosphorus steel is an important part of clean steels .

  4. 铸造方法对锰铁合金组织和相的影响

    Effect on phase and structure of manganese ferroalloy through different casting means

  5. 采用硅钙合金对锰铁合金进行了还原脱磷的实验研究。

    Silico - calcium alloy was used for experimental Study of dephosphorization .

  6. 锰铁合金脱硅和脱磷的联动试验

    Linkage test on desilication and dephosphorization of ferromanganese alloy

  7. 对锰铁合金渣进行处理,变废为宝,已经成为重要的研究课题。

    Thus , many researches have been performed on ferromanganese slag for recycling .

  8. 锰铁合金氧化脱磷的热力学分析

    Thermodynamic Analysis on Oxidizing Dephosphorization of Fe-Mn Alloys

  9. 锰铁合金炉灰资源化利用的试验研究

    Study on utilization of ferro-manganese alloy cinder

  10. 锰铁合金脱磷的新进展

    New development in dephosphorization of ferromanganese

  11. 对锰铁合金生产过程中产生的锰渣和烟道灰进行了粉磨性能试验。

    Grindability experiments for the manganese slag and the off gas ash from ferromanganese alloy factory were carried out .

  12. 锰铁合金渣具有潜在的水硬性和火山灰性,可用作混凝土掺合料和水泥混合材料。

    Ferromanganese slag has the latent hydraulicity and volcanic ash , it can be used to build concrete admixtures and cement .

  13. 人们在钢水轻炉倒进钢水桶时,放进一些锰铁合金。

    An alloy of ferromanganese is added to the molten metal as it is poured from the converter into the ladle .

  14. 通过热力学分析和已有的实验结果说明了锰铁合金氧化脱磷的可能性。

    Possibility of oxidizing dephosphorization for Fe-Mn alloys is discussed on the basis of thermodynamic analysis and the previous experimental data .

  15. 高结晶水锰矿粉球团还原冶炼高碳锰铁合金工艺及机理研究

    Investigation on Technology and Mechanism of High Carbon Ferromanganese Alloys by Pelletization-Reducing Smelting Process Using Manganese Ore Fines Containing High Combined Water

  16. 富锰渣是由贫锰矿富集得到的,其锰含量约为35%~45%,我国富锰渣年产量在20~25万吨,目前主要是作为冶炼锰铁合金的原料。

    Rich-manganous slags are enriched from poor-manganous mineral , and the content of manganese is about 35 % ~ 45 % . The output of rich-manganous slags , the main material of smelting manganese-iron alloy these years , is 200 ~ 250 kt in our country .

  17. 低碳铝镇静钢铝锰铁脱氧合金化试验

    Experiment on Fe-Al-Mn deoxidizing and alloying of low-carbon aluminium killed steel

  18. 介绍了攀钢用铝锰铁脱氧合金化生产高级别冷轧薄板用钢的可行性和脱氧合金化生产低碳铝镇静钢的工艺路线。

    The feasibility of producing quality cold rolled sheets through deoxidizing and alloying with Fe-Al-Mn alloy and a process of producing low-carbon aluminium killed steel through deoxidizing and alloying are introduced .

  19. 采用铝锰铁脱氧合金化后,低碳铝镇静钢的炼成率从现工艺的85%提高到99%以上,并且冷轧薄板的表面质量有了大幅度的提高。

    Yield of smelting low-carbon aluminium killed steel is increased from 85 % up to 99 % and more . Meanwhile , the surface quality of cold rolled sheet is improved obviously .

  20. 制备的中锰铁基合金熔覆层组织致密,涂层与基体呈冶金结合,熔覆层硬度较高、具有较好的耐磨和抗接触疲劳性能。

    The microstructure of medium manganese Fe-based alloy laser cladding coating is dense , and the coating and the substrate is metallurgical bond . The cladding coating has good property of hardness , wear resistance and contact fatigue resistance .

  21. 留铁法冶炼高碳锰铁和锰硅合金

    Remained ferroalloy process in smelting high carbon ferro-manganese and ferromanganese-silicon smelting