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304不锈钢连铸过程中结晶器渣圈形成机制
引用本文:任磊,张立峰,王强强,赵星. 304不锈钢连铸过程中结晶器渣圈形成机制[J]. 钢铁, 2016, 51(8): 35-40. DOI: 10.13228/j.boyuan.issn0449-749x.20160071
作者姓名:任磊  张立峰  王强强  赵星
作者单位:北京科技大学冶金与生态工程学院,北京 100083
基金项目:国家自然科学基金资助项目(51274034,51334002,51404019)
摘    要: 在连铸过程中,结晶器易结渣圈是造成铸坯产生缺陷的主要原因之一。对304不锈钢板坯连铸过程中结晶器保护渣原渣、距开浇60 min时的液渣和渣圈的化学组成、理化性能、结晶矿相以及渣圈形貌结构进行对比分析。结果表明,连铸过程中TiO2和Cr2O3从钢液进入液渣生成高熔点氧化物,使液渣和渣圈的完全熔化温度和黏度显著增大,碱度、转折温度降低。液渣与渣圈的物相以枪晶石和钙铝黄长石为主。高熔点相钙铝黄长石的大量析出以及TiO2和Cr2O3进入液渣使液渣黏度增大是渣圈形成并长大的重要原因。

关 键 词:304不锈钢  板坯  连铸  结晶器保护渣  渣圈  形成机理  
收稿时间:2016-03-01

Formation mechanism of slag rim in 304 stainless steel continuous casting mold
REN Lei,ZHANG Li-feng,WANG Qiang-qiang,ZHAO Xing. Formation mechanism of slag rim in 304 stainless steel continuous casting mold[J]. Iron & Steel, 2016, 51(8): 35-40. DOI: 10.13228/j.boyuan.issn0449-749x.20160071
Authors:REN Lei  ZHANG Li-feng  WANG Qiang-qiang  ZHAO Xing
Affiliation:(School of Metallurgical and Ecological Engineering,University of Science and Technology Beijing,Beijing 100083,China)
Abstract:Formation and growth of slag rim in continuous casting mold is one of the important causes to worse slab quality. In this article,the chemical ingredient,physical-chemical properties,crystallized mineralogical phases,composi-tion and structure of slag rim,original mold flux and mold flux for 304 stainless steel after 60 min from casting start were studied. The results show that TiO2 and Cr2O3 in molten steel moved into the mold flux and generated some oxides with high melting point during continuous casting process,during which the completely melting temperature and viscosi-ty of mold liquid flux and slag rim increased obviously,while the basicity and break temperature decreased. The mold liquid flux and slag rim were mainly composed of cuspidine and gehlenite. The precipitation of high-melting-point phase gehlenite and the increasing of mold flux viscosity caused by TiO2 and Cr2O3 are the main causes to form the slag rim in mold.
Keywords:304 stainless steel  slab  continuous casting  mold flux  slag rim  formation mechanism
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