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一种适合冷连轧的高效变频压缩机用无取向硅钢,其化学成分及wt%为:C:≤0.0025%、Si:2.4~2.8%、Mn:0.35~0.65%、Al:0.5~0.8%、S:≤0.0020%、N:≤0.0025%、P:≤0.03%、Sb或Sn:0.03~0.08%;生产方法:冶炼浇注;对铸坯加热;粗轧;精轧;卷取;常化;经酸洗后冷连轧;退火;涂敷及精整。本发明产品性能既保证产品磁性能又提高生产效率、提高成材率和降低生产成本的效果,五机架连轧机只需要一次轧过即可,且连轧机相比单机架轧机减少了来回轧制的带头带尾切废量,因而可提高成材率,生产效率和成材率提高,自然降低生产成本。
2021-09-10 179 6.8

本发明公开了一种改善取向硅钢内外圈和边部表面质量的方法及环形炉,在一次冷轧工序中,采用错边卷曲,卷曲张力按渐变张力进行控制且头尾的卷曲张力大、中部的卷曲张力小,MgO的涂覆量与卷曲张力同步变化且头尾的涂覆量少、中部的涂覆量多;在高温退火工序中,环形炉的底板上增设一层由若干扇形块绕中心均布形成的垫层,相邻扇形块之间存在空隙,环形炉的内罩内钢卷的上端加盖通风式的盖板,盖板底面的内圈间隙伸入钢卷孔、外圈间隙套在钢卷上、中间通过绕中心均布的导流槽支撑在钢卷端面上,导流槽呈螺旋状且入口与盖板内圈上的开口一一对应连通、出口延伸至盖板底面外圈内侧。本发明可显著减少表面缺陷,明显改善表面质量和磁性,操作容易。
2021-11-16 216 6.8

本发明公开了一种可替代高磁感取向硅钢常化退火的热处理方法。该方法包括对所述取向硅钢的铸坯依次进行热轧、酸洗和冷轧,省去了常化酸洗工序中的常化退火工艺。所述热轧工序包括加热、粗轧和精轧过程,所述精轧过程中,热轧板离开精轧机最后一个机架时的温度达到1000~1050℃;或者,所述酸洗工序后,对热轧板进行通电加热至1000~1050℃;然后,对热轧板采用短时通电加热控制冷却速度,通电加热2‑5s使热轧板的温度降至940~960℃。采用该热处理方法得到高磁感取向硅钢常化板等效织构,满足生产高磁感取向硅钢的织构组分条件,其简化了高磁感取向硅钢的制造工艺,降低了生产成本和能耗,提高了生产效率。
2021-01-14 177 6.8

本文中简要介绍了武汉钢铁有限公司采用薄板坯连铸连轧CSP(compact strip production, CSP)工艺生产中低牌号无取向硅钢的实践情况.CSP工艺生产的硅钢具有成品磁性均匀、板形好的优势,但是在利用该技术生产中低牌号无取向硅钢时,常存在成品板表面瓦楞状缺陷严重、连铸生产效率低等问题.通过优化炼钢成分、热轧等相关工艺,可消除热轧板厚度方向中心的粗大形变组织,从源头上避免了粗大{100}<011>纤维组织的出现,消除了瓦楞状缺陷;通过提升冶炼效率和控制钢中夹杂物总量,可优化隧道炉的加热温度与在炉时间,大幅度提升了连铸生产效率,实现了中低牌号无取向硅钢的批量稳定制造,使CSP产线成为中低牌号无取向硅钢热轧板原料的主要供给生产线.如何进一步提升钢水纯洁度、提高连铸生产效率、降低生产成本,以及挖掘该产线生产薄带钢的技术优点,是未来工作的重点. This paper briefly introduces the practice of producing medium and low grade non oriented silicon steel(NGO) with CSP(compact strip production, CSP)technology in Wuhan Iron and Steel Co., Ltd.. This technology has the inherent advantages of uniform magnetic properties and good shape for silicon steel finished strip. However, in the actual production process, there are serious corrugated defects on the surface of silicon steel finished strip, and production efficiency of continuous casting is low... 
2023-01-28 225 5.8

本发明提出一种预判取向硅钢冷轧脆断发生的方法,将酸洗带头20‑30cm进行剪切取样,在取到的样板上面注明工作侧和传动侧;将取好的样板送至焊缝检测冲压机处,通过冲压机对样板进行冲压,根据不同钢带厚度,设定不同冲孔机压力,对样板进行冲压后,通过观察裂纹形貌,预判常化卷在冷轧轧制过程中是否会发生脆断,本发明使带钢在冷轧前能够制定相应的对策措施,从而降低冷轧断带所产生的损失。
2021-03-05 180 6.8

【机构】 武钢研究院; ...
2013-06-28 143 5.8

在50Kg氧化镁坩埚真空感应炉上进行高硅电工钢的脱氧试验。结果表明,通过控制原料的成分、高真空下的碳氧反应和炉衬分解向钢液中的供氧,可使钢液的总氧含量≤15×10-6;在维持高温高真空条件下,当钢液中的反应达到一定程度后,延长精炼时间并不能降低钢液的总氧含量;完成精炼后加入硅钙合金沉淀脱氧可进一步降低钢液的总含氧量,但脱氧效果有限。 The test of high-silicon electric steel deoxidation has been carried out in 50Kg vacuum induction furnace with magnesium oxide crucible.Results show that the total oxygen could be ≤15×10-6in molten steel by controlling material components,carbon-oxygen reaction in high vacuum and oxygen contamination from crucible materials on molten steel;And when the reaction was carried through to a certain extent,total oxygen in molten steel could not be reduced by the extension of refining period in high va... 
2011-02-28 204 5.8

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... 
2014-03-28 203 5.8

通过对激光粒度分析仪测量硅钢级氧化镁(MgO)的分析条件进行优化,如分散介质、分散方式、样品预处理、仪器暗淡度等,探讨了硅钢级MgO粒度范围测量重现性较好的试验方法,满足硅钢生产过程控制对MgO粒度的要求。 The analysis condition of the laser particle size analyzer on grain oriented silicon-steel grade magnesium oxide is optimized,including the dispersion medium,dispersion methods,sample preparation,and instrument obscuration,etc.Therefore,particle size measurement with good reproducibility for silicon-steel magnesium oxide is discussed,which may meet the requirement of MgO particle size for silicon-steel process control. 
2011-02-28 212 5.8

采用EBSD技术研究了有、无拉应力作用下无取向硅钢在晶粒长大过程中织构转变及晶界变化的规律。结果表明:在晶粒生长期间,无应力作用下的硅钢中,{111}〈112〉,{111}〈110〉织构组分强化,而{100}〈001〉织构组分弱化;与无拉应力作用下的情况相比,施加5MPa的拉应力时,{111}〈112〉,{111}〈110〉织构组分强化的速率下降,{100}〈001〉织构组分变化不明显。对于在晶粒生长期间持续变化的{111}〈112〉,{111}〈110〉和{100}〈001〉织构组分而言,虽然有、无拉应力作用下硅钢的{111}〈112〉和{111}〈110〉织构组分的高取向差角度晶界频率均下降,而{100}〈001〉织构组分的高取向差角度晶界频率则上升,但当有拉应力作用后,{111}〈112〉和{111}〈110〉织构组分的高取向差角度晶界频率下降的速率变小,{100}〈001〉织构组分的高取向差角度晶界频率上升的速率稍有变小。通过对无取向硅钢在晶粒长大过程中织构转变及晶界变化规律的研究,分析了合金原子在晶界的偏聚行为。 The rules of texture and grain boundary transformation in the nonoriented silicon steel under applied stress or without applied stress during grain growth were investigated by EBSD.The results show that the {111}〈112〉 and {111}〈110〉 components in the nonoriented silicon steel without stress are strengthened during grain growth whereas {100}〈001〉 component is weakened,but the growth rate of {111}〈112〉 and {111}〈110〉 component decreases,while the area fraction of {100}〈001〉 component doesn’t chang... 
2012-09-28 184 5.8

某厂对电工钢的轧制策略进行了优化,粗轧道次由“1+5”改为“1+3”。在优化后的生产过程中,每次变换钢种,烫辊材就会出现窄尺现象,而紧随其后的电工钢板则出现超宽现象。文中针对该问题,介绍了宽度设定模型和宽度自适应模型的原理,阐述了该问题出现的原因及解决方案,并通过对宽度自适应模型的应用研究及优化攻关,有效地解决了问题,大幅提升了实物质量,降低了宽度封锁率。 The rolling strategy of electrical steel was optimized in a factory,and the rough rolling pass was changed from “1+5”to“1+3”.Subsequently,the following problems were occurred in the production process:when the steel grade changed,the roasting roller steel before the electrical steel appeared the narrow width phenomenon,and then the electrical steel appeared the ultra-wide phenomenon.This paper introduced the principle of width setting model and width adaptive model,and expounded the causes and s... 
2022-02-28 189 5.8

本发明公开了一种高牌号硅钢的穿带激光焊接方法,包括:将焊缝中硅含量降低到Si焊<1.9%。采用激光+填丝焊接,填丝ER50‑6碳钢焊丝;根据焊缝截面积和激光焊接速度;激光填丝焊接时,激光线能量应足够大,达到填丝在熔池中充分混合,均匀分布,不至于填丝的成分浮在熔池的上半部分。采用此方法使焊缝组织从粗大铁素体变成细小、致密的无碳贝氏体,晶内沉淀相和晶间脆性相相对大幅减少,提高了焊缝韧性和成形性能,保证了高硅硅钢带的穿带焊接和连续生产。
2021-05-12 168 6.8

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