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实验室模拟薄板坯连铸连轧(TSCR)流程制造高磁感取向硅钢,借助电子背散射衍射(EBSD)技术对不同Sn含量的热轧板织构进行了研究。研究结果表明:不同Sn含量热轧板表层及次表层均为高斯织构、铜型织构及黄铜织构的混合织构,中心层为{100}面织构;Sn含量为0.1%时,热轧板表层及次表层高斯织构组分最多,取向密度最大,成品磁感最高,达到1.875 T。 Texture of grain oriented silicon steel hot rolled by thin slab casting and rolling process(TSCR) in laboratory with different Sn contents was analyzed by electron back-scattered diffraction(EBSD).The results show that the hot rolled slabs with different Sn contents have the same texture,i.e.,Goss,Copper and Brass.Specifically,the texture of core layer is {100};While the hot rolled slab with 0.10% Sn,the surface layer and subsurface layer have a sharpness Goss texture and the finished products h... 
2013-11-28 119 5.8

采用轧制法制备出具有低铁损高磁感0.23mm厚6.4%(质量分数)Si高硅钢。沿轧制方向的最终磁性能为B8=1.474 T,B50=1.714 T;P10/50=0.30W/kg,P15/50=0.88W/kg。利用X射线衍射及背散射电子衍射(EBSD)技术分析了高硅钢在轧制及退火过程中的织构演变过程。结果表明,通过采用大压下率热轧,确保热轧板次表层中产生更多的高斯织构,随后进行遗传;温轧板中粗大的晶粒有利于冷轧剪切带的形成;冷轧板经脱碳退火后生成强{210}〈001〉织构及次表层较强的高斯织构是在轧向上获得高磁感的原因,归因于其在{111}〈112〉冷轧形变晶粒内的剪切带优先形核并长大;最终退火后虽出现了随机取向,但以{310}〈001〉织构为代表的η织构得以保留并且增强,进一步提高了磁感。随着退火温度的升高及保温时间的延长,高硅钢薄板晶粒尺寸不断增大,铁损明显降低。 6.4wt%Si high silicon steel sheets(0.23mm thick)with low iron loss and high magnetic induction were successfully produced by rolling process.The final magnetic properties along the rolling direction(RD) were:B8=1.474T,B50=1.714T;P10/50=0.30 W/kg,P15/50=0.88 W/kg.The texture evolution during rolling and annealing was investigated by means of X-ray diffraction and electron backscatter diffraction(EBSD).It was found that more Goss textures formed in the subsurface of hot rolled plates by using larg... 
2014-10-28 152 5.8

本发明涉及电工钢生产技术领域,具体涉及一种冷轧取向电工钢钢带的渗氮处理工艺,旨在解决现有技术渗氮速度慢,渗氮效果不佳,能耗大,生产周期长的问题,包括以下步骤:S1、经过冶炼、连铸后,对铸坯进行热连轧、常化酸洗、冷轧及脱碳退火的工序;S2、在渗氮炉内进行两段渗氮处理:S21、第一段渗氮处理的渗氮温度为750‑950℃,渗氮时间为25‑35s,另外,渗氮介质的喷射压力为0.15‑0.25MPa,渗氮介质的流量为5‑20NL/min;S22、经稀土溶液浸泡1‑2小时后,继续第二段渗氮处理,其渗氮温度为460‑560℃,渗氮时间为10‑25s,另外,渗氮介质的喷射压力为0.15‑0.25MPa,渗氮介质的流量为1‑10NL/min;S3、涂隔离剂、高温净化退火后得到成品。
2021-06-04 110 6.8

目的提高硅钢的磁性能。方法采用多弧离子镀技术,在普通取向硅钢薄板两面沉积高硅FeSi合金层制得高硅梯度硅钢,并进行热处理,观察其显微组织,测量磁性能。结果退火态高硅梯度硅钢表面的高硅FeSi合金层与基底结合紧密,均匀致密。高硅梯度硅钢中硅含量呈梯度分布,最表层硅质量分数为11.0%,随着深度增加,硅含量逐渐降低,在距表面20μm处硅质量分数仍能达到6.5%。沉积态高硅梯度硅钢的电阻率ρ、低频铁损P10/50、高频铁损P10/1k及磁感应强度B8分别为68.6μΩ·cm,0.82W/kg,83.3 W/kg和1.73 T,退火后分别为63.1μΩ·cm,0.44 W/kg,54.38 W/kg和1.89 T。结论由于表层高硅FeSi合金层的存在,梯度高硅钢的低频磁学性能良好,但高频损耗需进一步改善。 Objective To improve the magnetic properties of silicon steel. Methods FeSi alloy coatings with high-silicon content were deposited on the surface of common grain-oriented silicon steel by cathodic arc plasma evaporation,and then a kind of high silicon gradient steel was prepared. The morphologies,content and magnetic properties of the samples were tested. Results FeSi alloy coatings were featured with compact microstructures and excellent adhesive quality with the substrates. The silicon conten... 
2014-03-28 120 5.8

一种电工钢切片用导向装置,涉及电工钢生产装置技术领域,包括导向台、支撑腿、安装块、转轴、辊体、电动机、安装板、滑杆、移动板和导向板;支撑腿设置在导向台底部;安装块设置有两个,两个安装块均设置在导向台横向一侧,两个安装块沿纵向分布;转轴转动设置在两个安装块之间;辊体设置在转轴上,辊体位于两个安装块之间,辊体位于导向台上方;电动机设置在安装块上,电动机与转轴驱动连接;安装板设置有两个,两个安装板分别设置在导向台纵向两侧上部;滑杆设置有两个,两个滑杆均设置在两个安装板之间,两个滑杆沿横向分布。本实用新型能够在电工钢的钢带切片之前进行导向限位工步,使得电工钢切割时不会被切割歪,切片的精度高。
2021-10-23 114 6.8

采用非水溶液电解方法来提取无取向硅钢中夹杂物。通过扫描电镜(SEM)观察结果表明:无取向硅钢中主要夹杂物为六棱柱的AlN、不规则硅酸盐及球状的铁的硫化物和氧化物,其中AlN夹杂尺寸在1~5μm,数量较多,还有部分AlN的复合夹杂。进一步研究了AlN复合夹杂形成机理,采用了Thermo-Calc热力学计算软件计算出该钢样中AlN、MnS析出温度分别为1 240℃、1 200℃,而Al2O3析出温度大于1 800℃,从而为AlN复合夹杂形成机理提供了一个理论依据。 Extracting inclusions from non-oriented silicon steel in non-aqueous electrolysis is a nondestructive method to gain inclusions.Scanning electron microscopy shows that the main inclusions in non-oriented silicon steel were hexagonal AlN,which was of large quantity,irregular silicate,spherical iron sulfide and oxide.The size of AlN inclusions ranged from 1to 5μm,and there were some duplex inclusions of AlN.To further study the formation mechanism of AlN duplex inclusions,Thermo-Calc thermodynamic... 
2014-01-28 124 5.8

采用XRD、SEM和激光粒度仪等手段,观察并研究了不同特性氧化镁在硅钢表面形成硅酸镁底层形貌特点,并结合热力学和差热-失重分析了MgO-SiO2的反应机理。研究结果表明:粒度小,活性值高的特种氧化镁在高温退火过程中与基体表面氧化物生成的硅酸镁底层,界面中硅酸镁底层嵌入基体较多,表面致密,颗粒细小,有利于形成附着性能优良的硅酸镁底层。 Surface microstructure of Mg2SiO4 coatings formed on the surface of oriented silicon steel coated with different kinds of MgO was investigated by XRD and SEM.The reaction mechanism between MgO and SiO2 was analyzed by TG-DSC and thermodynamic calculation.Results revealed that when the MgO with finer microstructure size and higher activity is employed,a dense Mg2SiO4 layer with finer microstructure and good binding to the steel substrate can be obtained.The results are very helpful for the prepar... 
2011-10-28 120 5.8

本发明公开了一种硅钢高温加热炉用铬基高氮合金垫块及其制备方法,所述合金垫块含有Cr、Mo、N、La、Ce和Fe,不含有钨;所述合金垫块在高温抗氧化性能和高温抗蠕变性能上,优于现有技术的铬铁合金;本发明可以优化替代现有的硅钢高温加热炉用铬铁合金垫块,满足硅钢在加热炉中的加热需求,大规模工厂化生产,拥有极高的使用价值和广阔的应用市场。
2021-07-08 117 6.8

对低温加热工艺生产的以AlN为主抑制剂的高磁感取向硅钢高温退火过程进行中断实验,借助电子背散射衍射技术对高温退火过程中高斯晶粒的演变进行了研究.在升温过程中高斯晶粒平均尺寸先减小再增大.800℃时取向分布函数图出现高斯织构组分,但强度很弱,高斯晶粒偏离角在10°以上;900℃时高斯晶粒平均生长速率超过其他晶粒;950~1000℃时高斯晶粒异常长大,偏离角3°~6°;在1000℃之前高斯取向晶粒相比于其他晶粒没有尺寸优势. The high-temperature annealing process of high permeability grain-oriented silicon steel with AlN as an inhibitor was studied by interrupting test.The evolution of Goss texture in this process was analyzed by electron back-scattered diffraction.It is found that the Goss grain size first decreases and then increases with the rise of temperature.Goss texture appears in the orientation distribution function at 800 ℃,but the intensity is very weak and the deviation angle is more than 10°.The average... 
2014-03-28 146 5.8

本发明提供一种退火隔离剂及退火隔离剂悬浮液的制备方法与无底层低温高磁感取向硅钢的制备方法。所述退火隔离剂按照重量份包括如下组分:CaO:1‑5份,Al2O3:50‑58份,Ca(AlO2)2:1‑5份,MgO:30~38份,添加剂:1‑2份。本发明的退火隔离剂不仅能够起到高温退火时钢板之间的隔离作用,而且能够在升温过程中保护抑制剂对二次再结晶晶粒的抑制能力,确保二次再结晶晶粒稳定长大,成品磁性能优异,进而稳定制备出表面光洁,边部完全无底层的低温取向硅钢成品。
2021-12-31 210 6.8

本发明涉及冶金技术领域,具体涉及一种高牌号硅钢用连铸结晶器保护渣及其制备方法和应用。本发明提供的连铸结晶器保护渣,所述保护渣包括如下质量百分比的化学成分:SiO2:40‑45%、CaO:20‑27%、MgO:1.0‑2.5%、Al2O3:1‑3%、Na2O:12‑16%、F:10‑13%、C:1‑3%,其余为不可避免的杂质;其中所述保护渣的二元碱度CaO/SiO2为0.5‑0.6,熔点为950‑1000℃,1300℃下的粘度为0.25‑0.35Pa·s。本发明提供的连铸结晶器保护渣,通过低碱度、低熔点、低粘度的保护渣可有效抑制高牌号硅钢材料在连铸时铸坯表面易出现凹陷和裂纹的现象。
2021-11-04 119 6.8

适用范围 本标准规定了700 MW及以上级大电机用冷轧无取向电工钢带的术语和...
2023-05-25 1.32k 8.6

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