钢厂
电解清洗装置在电工钢生产线上的应用
介绍了电工钢生产线连退机组的表面处理工艺,特别是电解清洗系统的工作机理、设备构造、生产工艺及各种影响因素。 This paper introduces the technology of surface treatment of continuous annealing unit in electrical steel production line,in particular the working mechanism,structure of equipment,production techniques and various influence factors of the electrolytic cleaning system.
新钢1580取向硅钢宽度窄尺原因分析
取向硅钢因其高磁导率、低矫顽力和大电阻系数等特性,被广泛应用于大中型变压器和大型电动机铁芯的制造。因取向硅钢性能和成分控制严格,生产工艺复杂,故其产品代表了钢铁企业特殊钢生产的最高水平。本文介绍了新钢公司卷板厂1580热连轧线生产取向硅钢过程中出现的窄尺问题,研究了取向硅钢产品的特点,分析了热轧过程中的组织转变,并结合生产实际提出了改进措施。通过对加热炉钢坯加热模式、粗轧轧制策略、精轧轧制工艺、二级模型等方面的优化和改进,取向硅钢窄尺情况明显好转,提高了产品的成材率和市场口碑。 The oriented silicon steel is widely used in the iron core manufacture of large and mediumsized transformers and large motors because of its high permeability, low coercivity and large resistance coefficient. Due to the performance and composition control of oriented silicon steel is strict, the production process is complex,therefore, its products represent the highest level of special steel production in iron and steel enterprises. This paper introduces the problem of narrow gauge in the produ...
无取向电工钢表面线状缺陷的影响因素分析
结合扫描电镜和大样电解研究了CSP流程W800牌号无取向电工钢表面线状缺陷中夹杂物成分及来源,采用SPSS软件回归分析了生产过程各因素对表面线状缺陷的影响。研究表明:稳态浇铸过程铸坯中大型夹杂物含量为5.39 mg/10 kg。引起无取向电工钢表面线状缺陷的大型夹杂物主要为脱氧产物、镁铝尖晶石和钢包顶渣,主要类型为Al2O3、MgO-Al2O3、CaO-Al2O3-MgO和CaO-Al2O3-SiO2。非稳态浇铸过程钢水洁净度明显降低,热轧板表面线状缺陷比例上升。影响表面线状缺陷的主要因素为RH出站时顶渣的w(CaO)/w(Al2O3)、RH脱氧结束氧位及中间包最低吨位。 Combining scanning electron microscopy and large sample electrolysis, the composition and source of inclusions in the surface linear defects of W800 grade non-oriented electrical steel in the CSP process were studied. SPSS software was used to regress and analyze the main factors which affected the surface linear defects in the steelmaking process. Research shows that the content of large inclusions in the steady state casting process is 5.39 mg/10 kg. The large inclusions which cause linear def...
CN202110562242.X一种控制无取向电工钢横向同板差的装置及方法
本发明公开了一种控制无取向电工钢横向同板差的装置,包括热轧机、圆盘剪、冷轧机和输送辊道,圆盘剪安装在输送辊道两侧且位于热轧机和冷轧机之间,无取向电工钢在输送辊道的运输下依次经过热轧机、圆盘剪和冷轧机,设定热轧机对无取向电工钢的楔形和凸度进行控制,控制无取向电工钢的楔形在20微米内、凸度为20~45微米,冷轧机的工作辊设有倒角。冷轧机为UCM五连轧轧机,UCM五连轧轧机中1#和2#轧机工作辊的单边设有倒角,1#和2#轧机中上工作辊的操作端设有倒角,下工作辊的传动端设有倒角。倒角的深度为0.2~0.3mm,倒角在工作辊上的起始位置到工作辊端面的距离为265‑285mm。本发明还公开了一种控制无取向电工钢横向同板差的方法。
CN202110495952.5一种薄规格中高牌号无取向硅钢酸轧生产工艺
一种薄规格中高牌号无取向硅钢酸轧生产工艺,属于无取向硅钢冷轧成型技术领域,该生产工艺在焊接前对焊缝预加热和焊接后对焊缝两次后加热,采用五机架六辊冷连轧机组轧制,其压下率分别为35%‑45%、35%‑45%,30%‑36%,25%‑30%,1%‑10%,第一二冷轧机间、第二三冷轧机间、第三四冷轧机间、第四五冷轧机间的单位张力分别为120‑130KN/mm2、130‑140KN/mm2、150‑160KN/mm2和160‑180KN/mm2,本发明的有益效果是,本发明通过对冷连轧的工艺进行改进优化,提高了薄规格中高牌号无取向硅钢带的轧制效率,提高了同板差的合格率,降低了轧制的断带率和轧烂率。
CN202110496191.5一种中高牌号无取向硅钢无焊丝焊接的方法
一种中高牌号无取向硅钢无焊丝焊接的方法,属于无取向硅钢激光焊接技术领域,该焊接的方法,包括1)将低牌号无取向硅钢的带尾与中高牌号无取向硅钢的带头对中接触相连;2)激光焊接前对引带和母材之间的焊缝进行预热处理,然后采用激光焊机焊接,焊接完成后对焊缝高温回火处理;3)焊接完成后,将中高牌号无取向硅钢和低牌号无取向硅钢按照上述步骤交替焊接,本发明的有益效果是,本发明通过合理选择引带、在焊接前预加热和焊接后回火处理的工艺、适当调整连轧机组的轧制参数,实现了中高牌号无取向硅钢的无焊丝焊接,提高了焊缝的质量,降低了断带率,保证了焊缝的可连续轧制,提高了轧制的效率。
CN202120958201.8一种无取向硅钢用轧制工作辊
一种无取向硅钢用轧制工作辊,属于轧机工作辊技术领域,该轧制工作辊,包括锥形曲面段和平直段,锥形曲面段包括弧形段Ⅰ和弧形段Ⅱ,弧形段Ⅰ的弧面内凹,弧形段Ⅱ的弧面外凸,弧形段Ⅱ和平直段与带钢接触,弧形段Ⅰ的一端水平向外延伸,弧形段Ⅰ的另一端与弧形段Ⅱ的一端相切,弧形段Ⅱ的另一端与平直段相切,本实用新型的有益效果是,该工作辊整体结构简单,轧制效率高,降低了辊耗,消除了工作辊边部的急剧弹性压扁、弹性变形,降低了轧制断带的风险,可有效控制钢带边部的边降和形状。
无取向硅钢热轧卷结疤缺陷产生的原因及控制
针对不同牌号的无取向硅钢产生结疤缺陷的难易程度和表面结疤缺陷的外形特征及分布规律,分析了该缺陷产生的原因。通过调整剪前导板的对中度,设置精轧侧导板开度余量及短行程数值,及时修补与更换侧导板,减少带坯与侧导板挤撞程度,有效地降低了结疤缺陷发生率。 This article analyses the cause of the scab defects according to the defects appearance characters and distribution law,degree of difficulty to form scar of non-oriented silicon steel. It can effectively decrease the scabs by different methods,such as adjusting the center line of guide plate,setting the opening margin and short stroke value of the side guide on finishing mill,timely repairing and replacing of side guide,decreasing the collision between the strip and side guide.
50W600无取向硅钢钙处理的热力学分析及实验研究
通过热力学计算及实验室研究,对钙处理前后50W600无取向硅钢退火冷轧板中夹杂物的类型、数量及尺寸进行了系统分析。结果表明,50W600无取向硅钢经钙处理后(w(Ca)=0.002 6%),钙在1 600℃的钢液中主要以固态的CaO·2Al2O3、CaO·6Al2O3及溶解钙的形式存在。在钢液的凝固过程中,钢中的溶解钙和硫反应生成了CaS和CaS-MnS复合夹杂,有效抑制了MnS的弥散析出,减少了钢中微细夹杂物的数量。同时钙处理促进了钢中微细夹杂物的聚合长大,导致显微夹杂物的数量增加。 Based on thermodynamic calculation and laboratory experiment,the type,quantity and size of inclusions in annealed cold-rolled steel sheets of 50W600 non-oriented silicon steel before and after calcium treatment were systematically studied.Results showed that after calcium treatment(w(Ca) = 0.002 6%),calcium was mainly in the form of CaO·2Al2O3,CaO·6Al2O3 and dissolved calcium in steel at 1 600 ℃.Dissolved calcium could combine with sulfur to form CaS inclusions and compound CaS-MnS inclusions du...
铸坯热装温度对无取向硅钢中AlN和MnS析出行为的影响
通过固溶度积公式计算及热模拟实验,对不同热装和加热温度条件下的无取向硅钢铸坯中析出相进行了研究.在低于950℃热装时,铸坯中AlN的析出量和尺寸不再变化,但MnS和AlN-MnS的数量及平均尺寸随着热装温度降低而进一步增加,并在温度低于600℃时达到最大值后保持不变.与1200℃相比,1100℃加热的铸坯中AlN、MnS的总固溶量相对更少.相比850℃热装,600℃热装再加热到1100℃的铸坯中AlN和MnS的总固溶量更少,且AlN和MnS尺寸更大.合适的热装温度和加热温度分别为600℃和1100℃. Based on solubility product calculation and thermal simulation experiments,precipitated phases in continuous casting slabs of non-oriented silicon steel were systematically studied at different hot charging and heating temperatures.When the hot charging temperature is below 950 ℃,the content and size of AlN remain unchanged,but the quantity and size of MnS and AlN-MnS increase when the hot charging temperature decreases,reach maximum and remain unchanged when the hot charging temperature is belo...
210 t BOF-RH-CC炼钢过程无取向硅钢XG800WR洁净度的试验研究
两炉次无取向硅钢XG800WR(/%:0.003~0.004C、0.71~0.75Si、0.32~0.33Mn、0.004~0.007S、0.016P)的炼钢流程为铁水预处理(KR)-210 t顶底复吹转炉-钢包吹氩-RH脱碳精炼-230mm×1220 mm板坯连铸。53 t中间包钢水过热度为25~30℃,钢包到中间包采用长水口全程吹氩保护浇铸,中间包至结晶器采用浸入式水口浇铸。结果表明,在RH、中间包、结晶器过程中钢中总氧以及夹杂物数量和尺寸均明显降低;但在钢包到中间包过程T[O]、[N]和钢中夹杂物数量增加,说明长水口浇铸过程存在二次氧化。连铸坯中T[O]、[N]平均他分别为11×10-6和30×10-6,显微夹杂物数量平均为4个/mm2。铸坯中的显微夹杂物主要为3~5μm的AlN,同时存在少量的MnS、Al2O3·AlN和Al2O3·MgO·MnS。 The steelmaking flow sheet for two heats non-oriented silicon steel XG800WR(/%:0.003~0.004C. 0.71~0.75Si,0.32~0.33Mn,0.004~0.007S,0.016P) is hot metal pretreatment(KR)-210 t top and bottom combined blown converter-ladle argon blowing-RH decarburization refining-230 mm×1 220 mm slab casting.The superheating extent of liquid in 53 t tundish is 25~30℃,whole casting is shielded by blowing argon with long nozzle from ladle to tundish and the submerged nozzle is adopted in casting from tundish to mold...
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