ISSN:1003-8620
CN:42-1243/TF
Governed by: CITIC Pacific Special Steel Group Co., LTD
Sponsored by: Daye Special Steel Co., LTD.
Special Steel ›› 2017, Vol. 38 ›› Issue (6): 53-55.
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Lu Hengchang, Liu Jianhui, Tian Chao, Xu Dexiang, Fan Jianwen , Dong Han
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陆恒昌,刘剑辉,田超,徐德祥,范建文,董瀚
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Abstract: The production process of Ф5.5~15mm wire rod of stainless steel 0Cr13C is 60t medium frequency induction fumace-90t AOD-LF-180mmx180mm billet casting-continuous rolling. The surface “exposed crystal” defect of wire rod of steel 0Cr13C (/%: 0.021C, 0.32Si, 0.35Mn, 0.030P, 0.004S, 12.10Cr) is analyzed by optical and scanning electron microscope to get the defects take its source at mixed crystal due to (a) large overheating extent of casting liquid and small secondary cooling water rate led to larger dendritic inter-planar spacing of ferrite in casting billet and (b) higher temperature in heating furnace led to abnormal growth of ferrite grains in steel. With the process measures including decreasing overheating extent of liquid in tundish to 30℃ from 50℃ , decreasing casting speed of billet to 1.0m/min from original 1.2m/min, improving electromagnetic stirring to 280A-6Hz from original 150A-3Hz, increasing secondary water cooling rate to 0.33L/kg from 0.19L/kg and reducing casting billet heating temperature to 1020℃ from original 1080~1130℃,the surface “exposed crystal” defects of wire rod are avoided.
摘要: 0Cr13C不锈钢Ф5.5~15mm线材的生产工艺为60t中频感应炉-90t AOD-LF-180mm×180mm坯连铸-连轧。通过光学和扫描电子显微镜对表面"裸晶"缺陷0Cr13C钢线材(/%:0.021C,0.32Si,0.35Mn,0.030P,0.004S,12.10Cr)的分析,得出该缺陷源于混晶:(a)连铸钢水过热度大,二冷水量小,造成连铸坯中铁素体枝晶间距较大,(b)加热炉温度过高,使钢中铁素体晶粒异常长大。通过将中间包钢水过热度从50℃降至30℃,拉速由1.2m/min降至1.0m/min,电磁搅拌由150A-3Hz提高至280A-6Hz,二冷水量由0.19L/kg增加至0.33L/kg,以及将铸坯加热温度由1080~1130℃降至1020℃等工艺措施,避免了线材表面"裸晶"缺陷。
关键词: 0Cr13C不锈钢, 线材, 混晶, 表面缺陷, 工艺改进
Lu Hengchang, Liu Jianhui, Tian Chao, Xu Dexiang, Fan Jianwen , Dong Han. Mixed Crystal Surface Defect of Wire Rod of Stainless Steel 0Cr13C and Process Improvement[J]. Special Steel, 2017, 38(6): 53-55.
陆恒昌, 刘剑辉, 田超, 徐德祥, 范建文, 董瀚. 0Cr13C不锈钢线材表面混晶缺陷及工艺改进[J]. 特殊钢, 2017, 38(6): 53-55.
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https://www.specialsteeljournal.com/EN/Y2017/V38/I6/53