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Initial solidification phenomena: Factors affecting heat transfer in strip casting.

机译:初始凝固现象:影响带钢连铸过程中传热的因素。

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摘要

In the last few years a few companies have announced the final stage of the commercial development of strip casting of steels.; In strip casting heat extraction and productivity are limited by the thermal resistance at the interface between processed material and moving mold (rolls for twin-roll strip casters). Among many factors influencing interfacial heat transfer, films of various composition, either formed during casting or deposited before casting on the surface of the rolls, melt superheat and gas atmosphere composition can have a significantly positive or negative effect on the achieved heat transfer rate.; From an industrial point view, methods to improve interfacial heat transfer rates must be found, in order to increase productivity.; The objective of this research project is to assess if it is feasible to improve heat transfer rates during solidification of steel in direct contact with a copper mold: (1) by the application of thin coatings on the mold surface; (2) by adding a reactive gas species containing sulfur in the gas shrouding where casting is performed.; To address the former, solidification experiments were performed with the mold surface either kept uncoated or coated with coatings of different compositions. To address the latter, the experiments were performed in gas shrouding atmospheres with or without sulphydric acid. It was observed that the resulting heat extraction rates were improved by the application of certain coatings and by the addition of H2S to the gas atmosphere. These findings prove that the application of coatings and the use of small amounts of reactive gaseous species containing sulfur may be methods to increase productivity in strip casting.; The effect of superheat and the effect of naturally deposited oxides (Mn-oxide) were also evaluated experimentally.; A numerical study of the effect of the critical undercooling on the productivity of a twin-roll strip caster showed that the maximum allowable casting speed can be increased by increasing the critical undercooling, which in turns can be changed by changing the composition of the coating applied on the roll surface; this increase is significant when casting thicknesses are small (less than 1 mm).; Finally, a procedure, based on Scheill's method, vaporization and liquation, to predict the composition of films depositing naturally during solidification, starting from the steel composition, is proposed.
机译:在过去的几年中,一些公司宣布了钢带钢商业化发展的最后阶段。在带钢铸造中,受热材料和生产率受到加工材料和移动模具(双辊带钢连铸机的辊)之间的界面处的热阻的限制。在许多影响界面传热的因素中,各种成分的膜,无论是在流延过程中形成还是在流延之前沉积在辊表面上,熔体过热和气体气氛成分都会对传热率产生明显的正或负影响。从工业角度来看,必须找到提高界面传热速率的方法,以提高生产率。该研究项目的目的是评估在与铜模具直接接触的钢的凝固过程中提高传热速率是否可行:(1)通过在模具表面施加薄涂层; (2)在进行铸造的气体罩中加入含硫的反应性气体。为了解决前者,在模具表面未涂覆或涂覆有不同组成的涂层的情况下进行了固化实验。为了解决后者,在有或没有硫酸的气体覆盖气氛中进行了实验。观察到,通过施加某些涂层和向气体气氛中添加H 2 S,可以提高最终的排热速率。这些发现证明涂层的应用和少量含硫的反应性气态物质的使用可能是提高带钢铸造生产率的方法。还通过实验评估了过热的影响和自然沉积的氧化物(Mn-氧化物)的影响。临界过冷度对双辊带钢连铸机生产率影响的数值研究表明,可以通过增加临界过冷度来提高最大允许铸造速度,而通过改变所施加涂层的成分可以改变最大允许过冷度在辊表面上;当铸件厚度较小(小于1毫米)时,这种增加非常明显。最后,提出了一种基于Scheill方法,汽化和液化的过程,从钢的成分开始,以预测凝固过程中自然沉积的膜的成分。

著录项

  • 作者

    Nolli, Paolo.;

  • 作者单位

    Carnegie Mellon University.;

  • 授予单位 Carnegie Mellon University.;
  • 学科 Engineering Metallurgy.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 275 p.
  • 总页数 275
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;工程材料学;
  • 关键词

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