钢厂
微合金元素Sn、Nb、Re对无取向硅钢性能的影响
介绍了微合金元素锡、铌、稀土对无取向硅钢性能的影响,并扼要分析了这些元素对硅钢性能的影响机理:晶界偏聚元素Sn可细化晶粒提高硅钢磁性能;微合金元素Nb细化铁素体晶粒,提高硅钢的强度、韧性和塑性及磁性能;稀土元素(RE)在硅钢中的主要作用包括净化钢液、变质夹杂物、改善铸态组织和性能及微合金化,减少晶界上出现偏析的几率。 The influence of micro-alloy elements on properties of non-oriented silicon steel and the mechanism for effect of the micro-alloy elements including Sn、Nb and RE on the properties of steel are presented and analyzed in this paper.Grain boundary segregation elements Sn in steel can grain refinement and improve the magnetic properties;Micro-alloy elements Nb can refine the ferrite grain,increase the silicon steel strength,toughness and plastic;The main role of the RE in the silicon steel including...
CN202023181220.9一种取向硅钢绝缘涂层液生产用分散机
本实用新型公开了一种取向硅钢绝缘涂层液生产用分散机,包括固定底座,固定底座顶端的一侧固定安装有套筒,套筒的内部滑动设有活塞杆,套筒的内部设有电动液压升降柱,电动液压升降柱的底端固定安装在固定底座顶端的中部,电动液压升降柱的顶端与活塞杆的底端固定连接,活塞杆的顶端固定连接有箱体,箱体底端的一侧固定安装有伺服电机,本实用新型的有益效果是:通过滑块、橡胶块、空心转轴和伺服电机的配合使涂层液搅拌分散的更加均匀,通过固定装置可以将盛有涂层液的桶固定住,防止涂层液桶转动,这样可以使涂层液进行充分搅拌,不需要时刻对其调整固定,这样也可以提升工作效率,提高生产速率,而且操作方便。
RH精炼工艺对无取向硅钢MgO·Al_2O_3夹杂物演变影响及控制
基于BOF→RH→CSP生产工艺,研究了RH精炼过程钢中夹杂物类型演变及MgO·Al2O3夹杂物形成规律,同时对MgO·Al2O3夹杂物的形成条件进行了热力学计算,借助CFD数值模拟软件研究了RH精炼过程卷渣行为。研究发现,RH精炼过程20和30 min时,w([MgO])/w([Al2O3])为0.005~0.020,未发现MgO·Al2O3夹杂物;RH出站后夹杂物w([MgO])/w([Al2O3])为0.3~0.5,且RH精炼结束后MgO·Al2O3夹杂物占夹杂物总量的58.4%;另外,RH精炼过程钢液表面速度CFD模拟结果为0.57 m/s,大于临界卷渣速度0.45 m/s,且顶渣成分与夹杂物成分相近,存在卷渣现象。热力学计算表明,钢液与炉渣平衡时钢中w([Al])为0.31%~0.37%,w([Mg])为0.00024%~0.00028%,在MgO·Al2O3生成区域之内。减少RH处理过程卷渣,浇铸过程下渣及控制顶渣和包衬相中MgO质量分数可抑制MgO·Al2O3夹杂物形成。 Based on the practical production of non-oriented silicon steel, the evolution of inclusion type and the formation of MgO·Al2O3inclusion were analyzed in the process of BOF→RH→CSP. The thermodynamic conditions for forming MgO·Al2O3inclusion were discussed and the behavior of slag entrapment of molten steel was also simulated by CFD software during RH refining. The results showed that the value of w([MgO])/w([Al2O3]) was in the range of 0.005-0.020 and no MgO · Al2O3 inclusion was observed at 20 ...
CN202110006701.6消除取向硅钢单边浪缺陷的方法
本发明公开了一种消除取向硅钢单边浪缺陷的方法,其包括如下步骤:1)、制作专用盖板;所述专用盖板包括环形板,所述环形板外边缘设有多个剪开处;2)、将待装炉的取向硅钢钢卷吊运至高温退火炉炉台;3)、将专用盖板铺于取向硅钢钢卷上端面外圈;4)、将专用盖板上的各剪开处向下弯折,勾住取向硅钢钢卷外沿;5)、扣上内罩,内罩底边砂封;6)、钢卷进炉,完成高温退火过程。本发明能有效保护钢卷边部,防止钢卷上端面翻边;该方法还能将钢卷内部水分排出,避免钢带表面氧化。
低温取向硅钢高温退火抑制剂的演化
取向硅钢利用析出物作为抑制剂,抑制初次再结晶晶粒的长大,抑制剂是取向硅钢发生二次再结晶的基本条件之一。文中通过低温板坯加热技术制备取向硅钢,采用透射电镜(TEM)观察并研究了高温退火阶段抑制剂的演化过程。结果表明,渗氮后形成的非晶态Si3N4析出物不稳定,在700~750℃退火升温阶段转化为(Al,Si)N;(Al,Si)N颗粒在800℃发生团聚,随后长大并粗化;(Al,Si)N是低温取向硅钢主要抑制剂,随退火温度的升高,(Al,Si)N抑制力大幅下降。 Precipitates as inhibitor are used to inhibit the grain growth of primary recrystallization in grain-oriented silicon steel,and inhibitor is one of the basic conditions for occurring of secondary recrystallization.The grain-oriented silicon steel was produced by low temperature slab heating and nitriding technique.The evolution of inhibitor was observed by transmission electron microscopy.The results show that Si3N4 particles are precipitated after nitriding,and Si3N4 particles are amorphous and...
低温高磁感取向硅钢连铸与均热过程AlN与MnS析出的热力学
针对薄板坯连铸连轧流程结合\"获得抑制剂法\"所制备的低温高磁感取向硅钢,通过热力学计算研究了AlN与MnS在连铸与均热过程中的析出规律与行为。计算结果表明,连铸过程中AlN在凝固后的高温α相中便可能析出,而MnS仅可能在凝固后的α+γ两相区内析出。钢中AlN与MnS在均热过程中均处于部分固溶与部分析出的状态。后续高温渗氮处理后初次晶粒的异常长大并不明显,表明渗氮处理前钢中固有抑制剂的数量相对充足。 The precipitation behavior of MnS and AlN in low-temperature high magnetic induction grain-oriented silicon steel produced by thin slab casting and rolling process with\"acquired inhibitor method\"during continuous casting and soaking was studied by thermodynamic calculation.The calculated results show that AlN is likely to precipitate in ferrite after solidification.However,MnS can precipitate only in the two phase region of ferrite and austenite.Meanwhile,MnS and AlN in the steel can not be comp...
CN202011628888.5一种硅钢片铁芯叠片机构
本发明公开了硅钢片铁芯叠片机构,包括送料装置和叠片装置,送料装置包括有磁性传送带、送料件和第一定位杆,磁性传送带用于将已剪切的硅钢片传送至送料件,送料件安装于磁性传送带的下方,并且可沿磁性传送带的正交方向平行伸出,第一定位杆安装于送料件上,用于定位硅钢片,叠片装置设置于送料件的伸出的一方,包括有叠放台、第二定位杆和机械手,叠放台用于叠放硅钢片,第二定位杆用于定位硅钢片,机械手用于将送料件的硅钢片搬运至叠放台上,机械手包括有转动臂和取料单元,取料单元安装于转动臂的端部,包括有电永磁铁,电永磁铁用于吸取硅钢片。根据本发明的硅钢片铁芯叠片机构,可有效提高叠片速度,降低能耗,提高生产效率。
本钢无取向硅钢热轧生产工艺路线的实践
冷轧无取向硅钢是高技术含量、高附加值产品,工艺复杂,生产周期长,过程控制难度大,被誉为钢铁产品中的\"工艺品\"。热轧生产工艺又是无取向硅钢生产的重中之重,直接决定了硅钢的铁损和电磁性等多项指标。 Cold rolled non-oriented silicon steel is high technology content 、high added value product. Its process is complex, its production cycle is of length, and its process control is difficult, which is known as the iron and steel products \" Arts and crafts\". Hot rolling production process is the top priority of non-oriented silicon steel, which directly determines iron loss of the silicon steel and electromagnetic property,as well as other many index.
CN202121571206.1一种直流力矩电机的定子硅钢片固定结构
本实用新型公开了一种直流力矩电机的定子硅钢片固定结构,包括设置于外壳内的硅钢片组,所述硅钢片组的后端被所述外壳的后端的内壁抵顶住,所述硅钢片组的前端被设置于所述外壳前端的可动压圈压紧固定。本实用新型所述的直流力矩电机的定子硅钢片固定结构中,通过在外壳内壁的前端和后端分别设置阶梯台,以对硅钢片组前后两端进行限制抵顶,可令散片形式的多个硅钢片组牢固的设置于外壳之内。
CN202111195012.0高硅无取向电工钢及其生产方法
本发明揭示了一种高硅无取向电工钢及其生产方法。该方法包括:1)钢水冶炼并连铸成坯;2)加热并保温,之后热轧得到热轧卷板,其中粗轧出口温度940±20℃,精轧终轧温度840±20℃,卷取温度650±20℃;3)常化,常化温度((732~742)+3000[Si])℃,常化时长4min~5min;4)常化后直接进行冷轧,而后连续退火和涂层,退火温度940℃~990℃且退火时长1.5min~3min;5)涂层处理后的钢板加工成型,而后进行去应力退火,退火温度为((761~766)+3000[Si])℃。如此,在保证磁性能的同时,解决了冷轧难度大的问题。
基于GTN损伤模型对含边部缺陷硅钢薄板冷轧时边裂的预测
采用拉伸试验和显微组织观测的方法确定了GTN损伤模型中的9个损伤参数,运用GTN损伤模型对冷轧硅钢薄板边部缺陷的扩展及边裂的产生进行了有限元模拟,并与预置缺口的钢板轧制试验进行对比。结果表明:轧制过程中边部缺陷是造成钢板边部裂纹萌生和扩展的一个重要原因,GTN损伤模型可用来预测含边部缺陷硅钢薄板在冷轧过程中边裂的产生;预测结果与试验结果基本一致。 The crack initiation and propagation of silicon steel strip with edge defect during cold rolling process was studied by using GTN damage model in this paper.Nine damage parameters in GTN model were identified by tensile testing and microstructure observing,and then the FE simulation of edge defect evolution of silicon steel strip during rolling process was conducted on the base of GTN damage model,and then the results were compared with rolling experimental results.The results show that the edge...
CN202110219142.7快速判断取向硅钢初次再结晶晶粒直径的方法
本发明涉及取向硅钢制造技术领域,公开了一种快速判断取向硅钢初次再结晶晶粒直径的方法,包括如下步骤:选取取向硅钢热轧来料,进行生产,对产出的钢板在同部位各取若干个拉伸试样,加工拉伸和分析,取得屈服强度,在拉伸试样部位两侧连续制取金相试样,计算对应拉伸试样的平均晶粒直径D,将性能数据和平均晶粒直径进行统计分析,建立屈服强度与晶粒直径的对应关系,实际生产时,在产出的钢板上取判断试样,取得判断试样的屈服强度,进而取得判断试样的晶粒直径。本发明快速判断取向硅钢初次再结晶晶粒直径的方法,通过机械性能检验,来间接指示初次晶粒的大小,检测速度快,评价更准确。

