钢厂
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 ...
CN202111012116.3无取向电工钢以及制造方法
本发明提供了一种无取向电工钢,包括:C0.001~0.010%,Si0.5~4.0%,Mn0.05~0.8%,Al0.2~1.5%,P≤0.002%,S≤0.0015%,O≤0.002%,N≤0.0015%,各成分均为质量百分比;还提供一种无取向电工钢制造方法,包括:冶炼钢水、薄带连铸、常化酸洗、冷轧以及退火涂层。本发明中,在冶炼钢水时,控制钢水中C、Si、Mn、Al、P、S、O以及N几种成分的含量,且通过常化工艺,可以有效控制无取向电工钢成品的产品质量,具有较低的铁损以及较高的电磁性能,另外整体制造流程比较短,能够达到节能环保的目的,而通过冷连扎,有利于提高产品的质量、成材率和生产效率。
CN202110332150.2一种宽频率低铁损变频电机用无取向电工钢及制造方法
本发明公开了一种宽频率低铁损变频电机用无取向电工钢及制造方法,属于无取向电工钢领域。针对现有无取向钢在较宽频率范围内电磁性较差的问题,本发明提供一种宽频率低铁损变频电机用无取向电工钢,包括如下重量百分比的各组分:Si:2.80%~3.50%;Als:0.20%~0.60%;Mn:0.20%~0.60%;P:0.01%~0.20%;C:≤0.005%;S:≤0.02%;N:≤0.02%;Ti:≤0.005%;其余为铁和不可避免的杂质;其中C、S、N和Ti的重量百分比满足下式:C%+S%+N%+Ti%≤0.009%。通过控制合金元素的含量达到电工钢电阻率增加、磁滞伸缩减小,涡流和磁滞损耗均降低的目的。通过本发明提供的制造方法在正火过程中选用低温工艺,改善随着合金元素量的增加金属强度增加、塑性降低、冷加工性能降低的问题,使其最终在较宽频率范围内电磁性能优异。
取向硅钢初次再结晶退火工艺正交试验
以试验室模拟CSP工艺生产的Fe-3Si热轧钢带为研究对象,采用正交试验及方差分析的方法,研究了取向硅钢初次再结晶退火工艺对高温退火后获得锋锐的高斯织构的影响。结果表明:取向硅钢两段式初次再结晶脱碳退火工艺参数加热段保温时间及加热温度是高温退火后获得锋锐高斯织构的主要影响因素,其可信度分别在90%和85%以上;在本试验条件下,通过正交试验获得的最佳退火工艺为:冷硬板经600℃保温3 min和850℃保温6 min。 Fe-3Si hot rolled strip was produced by simulating CSP technology in the laboratory.Orthogonal experiment and analysis of variance were carried out to investigate the influence of primary recrystallization on the sharp Goss texture of the oriented silicon steel.The results show that holding time of the heating section and the heating temperature for a sharp Goss texture of the samples annealed has important implications in this experiment conditions,the two-step decarburization annealing process...
CN202123230051.8一种变压器铁芯硅钢片的横剪打磨装置
本实用新型公开了一种变压器铁芯硅钢片的横剪打磨装置,包括出料平台、传送机构和打磨机构,所述出料平台的出料端设置有打磨机构,且两组所述打磨机构对称设置在硅钢片的上下两侧,两组所述打磨机构之间构成打磨通道,所述传送机构靠近于出料平台的出料端设置在出料平台上,且所述出料平台上的硅钢片通过传送机构依次朝向打磨通道内位移,通过两组对称设置的打磨机构对硅钢片的两侧面进行同时打磨,具有较高的打磨效率。
常化温度对热轧无取向硅钢组织与磁性能的影响
为研究常化温度对热轧无取向硅钢组织与织构的影响,采用光学显微镜、背电子散射衍射技术研究了不同常化温度对其影响。结果表明,实验硅钢板在700~850℃温度下常化时,随常化温度的升高,晶粒尺寸增大,有利组分α织构增强,不利组分γ织构降低。对比研究了800℃和850℃常化热轧板CSL晶界分布图与取向差分布图,在本文研究条件下,Goss织构易在Σ=3,9的CSL晶界及晶粒取向差为30°~55°处形成。 The hot strips normalized at different temperatures were investigated by optical microscope and EBSD to study the effect of normalizing temperature on microstructure and texture of hot-rolled non-oriented silicon steel sheets.The results show that the grain size increases,the intensity of α-fibre texture increases,and the γ-fibre texture decreases when the hot strips are normalized at the 700-850 ℃.And CSL boundaries of Σ=3 and 15,and misorientation angles between 30° and 55° are more likely rel...
CN202111371808.7一种硅钢与碳钢混合生产条件下提高钢带表面清洁度的方法
本发明公开了一种硅钢与碳钢混合生产条件下提高钢带表面清洁度的方法,硅钢与碳钢混合冷轧轧制条件下,通过控制冷轧乳化液指标,轧机工作辊表面粗糙度,退火工序氢气吹扫流量,平整及重分卷工序钢带涂油量等措施,能够提高钢带表面清洁度。
B元素对高牌号无取向硅钢热轧板组织和性能的影响
借助实验室设备研究了B元素对高牌号无取向硅钢热轧板组织和磁性能的影响。结果表明,与无硼钢相比,含硼钢的热轧板晶粒尺寸略小,析出物的类型和尺寸没有区别,主要是AlN和(AlN+MnS)复合析出物,少量的MnS析出物,尺寸集中在1.0~2.5μm范围内。未发现BN析出物。在力学性能方面,B对钢的软化作用不明显。在磁性能方面,含硼钢的铁损为3.215W/kg,磁感为1.710T,综合磁性能比无硼钢差。 Influences of boron on microstructure and properties of hot rolled band in high-grade non-oriented silicon steel are researched in this paper by experimental equipments.Compared with boron-free steel,the result shows that boron-bearing steel has smaller grain size,but the type and size of precipitations have no differences.The main precipitates are AlN,(MnS + AlN) composite precipitate and few MnS,the range of which are between 1.0 μm and 2.5 μm.BN precipitation is not found.With reward to mecha...
表面机械研磨/异步轧制无取向硅钢薄带的渗硅行为
对w(Si)=3%无取向硅钢进行表面机械研磨处理(SMAT)和异步轧制(CSR),获得表面纳米结构,再进行550~650℃、4 h固体粉末渗硅处理,用透射电镜(TEM)、扫描电镜(SEM)和X射线衍射仪(XRD)研究表层组织演变。结果表明:经过SMAT后,w(Si)=3%无取向硅钢表面形成了等轴状、取向呈随机分布的、晶粒尺寸为10 nm的纳米晶组织;异步轧制后,表面纳米晶组织保持不变;550~650℃、4 h渗硅处理后,SMAT+CSR样品表面形成化合物层,其厚度随着温度的升高由17μm增加到52μm;化合物层由Fe3Si和FeSi相组成. Nanostructured surface layer was fabricated on a 3%(mass fraction) non-grain oriented silicon steel by means of surface mechanical attrition treatment(SMAT) and cross-shear rolling(CSR),and then a solid powder siliconizing treatment was carried out for the SMAT+CSR sample at 550~650 ℃ for 4 h.The microstructural evolution was examined by using transmission electron microscopy(TEM),scanning electron microscopy(SEM) and X-ray diffraction(XRD).Experimental results show that: equiaxed nanocrystallin...
CN202110093429.X一种高性能取向硅钢冷轧工艺
本发明涉及一种高性能取向硅钢冷轧工艺,具体涉及取向硅钢制造技术领域。本发明的冷轧工艺包括一次冷轧和二次冷轧,其中,取向硅钢热轧板厚度在2.0~3.0mm,一次冷轧轧制采用4或5道次轧制,轧至厚度0.60~0.62mm,轧制温度为100℃~105℃;二次冷轧轧制采用2道次,轧至厚度0.24~0.26mm,轧制温度为95℃~100℃。本发明通过对一次冷轧和二次冷轧中各道次的压下率、轧制张力、轧制速度、轧制温度进行优化设计,从而能够进一步优化织构,确保二次冷轧板高斯织构含量在0.8~1.5%,且轧制稳定性高,进而有效保证了所得取向硅钢的磁性能。
冷轧无取向硅钢产品标准浅析
聚焦无取向硅钢产品标准,从电磁性能、表面性能、机械性能以及尺寸公差与边部质量等维度对国际标准IEC、EN、JIS、ASTM以及国标GB进行了分析研究。分析得出,各类标准在电磁性能方面要求基本一致;ASTM标准的机械性能要求有别于其他几个标准。 In this paper,non-oriented silicon steel standards of EN,JIS,GB and ASTM were compared and analyzed. It is showed that,all types of standards in electromagnetic performance requirements are basically the same. Surface properties in ASTM standard are expressed in the most detailed. The mechanical properties requirements of the standards,except for ASTM,are basically the same.

