钢厂
化学气相沉积法制备6.5%Si高硅钢的研究
采用化学气相沉积(CVD)渗硅处理工艺连续制备6.5%Si高硅钢,具有优质的软磁性能,通过理论研究化学反应并且用简单的试验设备做进一步的探讨。根据试验的结果对连续制备6.5%Si高硅钢的CVD工艺构造提出全面、有效的建议,实现制备6.5%Si高硅钢系统。 CVD method for continuously manufacturing 6.5%Si Steel Sheet has excellent soft magnetic.Carried out a theoretical study of related chemical reaction and performing basic research with a simple test apparatus.Based on the results,finally proposed an overall process configuration to realize such a production-CVD method for continuously manufacturing 6.5%Si Steel Sheet.
浅谈无底层取向电工钢的多种应用
介绍了国内无底层取向电工钢生产技术水平、产量和用途,简述了无底层取向电工钢作为取向电工钢超/极薄带母料及应用于制作大型发电机组铁心、风电等电机铁心和变压器铁心等的情况。 The production technology level,output and application of domestic glassless grainoriented electrical steel were introduced,and the application of glassless grain-oriented electrical steel as parent material of ultra-thin strip of grain-oriented electrical steel and in making large-scale electric generator cores,wind power motor cores and transformer cores were briefly described.
CN202111062928.9一种适合冷连轧的高效变频压缩机用无取向硅钢及生产方法
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。
真空感应炉熔炼高硅电工钢脱氧工艺的研究
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...
电工钢极薄带生产现状及市场应用
介绍了国内、外电工钢极薄带的生产现状及市场应用的情况,以及典型生产企业的生产规模、产品性能和应用领域,指出扩大高牌号无取向电工钢生产、提高产品质量是目前电工钢发展的迫切要求。 The production situation and market application of ultra thin electrical steel strip at home and abroad were described.The production capability,product property and application area of typical corporation were introduced.The results indicate that the urgency needed of electrical steel development is expanding high-grade non-oriented electrical steel production and improving products quality at present.
CN202110347327.6改善含Cu高强度无取向硅钢冷轧质量的方法
本发明涉及无取向硅钢生产技术领域,公开了一种改善含Cu高强度无取向硅钢冷轧质量的方法,包括如下步骤:A)含Cu高强度无取向硅钢热轧卷化学成分(wt,%):Si:2.0~3.5%,Als≤1.5%,Cu:1~3%,其他为Fe,Als,Mn以及不可避免的杂质元素,对热轧卷进行常化酸洗处理,常化温度T常满足:T常≤1620‑(0.5Als+1.5Si+Cu)%×104,单位℃;B)将常化后的热轧卷在电磁感应加热炉内进行加热;C)在冷轧机组开卷机进行开卷,冷轧第一道次开卷温度T冷轧满足:1.5×(Si+Cu)%×103‑T室温≤T冷轧≤40+2×(Si+Cu)%×103,单位℃,式中,T室温为室温;D)按照4‑6道次冷轧到目标厚度。本发明改善含Cu高强度无取向硅钢冷轧质量的方法,在采用传统常化工艺路线,保证较高的强度和磁性水平前提下,改善冷轧质量,提高成品成材率。
CN202111662527.7一种低温高磁感取向硅钢的热轧方法
一种低温高磁感取向硅钢的热轧方法:经转炉冶炼并浇注成坯;对铸坯加热后进行粗轧:首先确定粗轧减宽量;根据所确定的粗轧减宽量进行粗轧;进行精轧;常规进行下工序。本发明采用低温板坯加热技术,降低了板坯烧损和修炉负担,且边裂发生率比现有技术的不低于18%的基础上能降低5%以上,由此节约资源及降低能耗。
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。
电感耦合等离子体质谱法测定硅钢中痕量铜和镍
研究了应用电感耦合等离子体质谱法(ICP-MS)测定硅钢中痕量铜和镍的分析方法。采用硝酸分解样品,通过内标校正和基体匹配消除了基体干扰的影响,同时根据测量时存在的质谱干扰情况,选择同位素65Cu和60Ni作为测定元素和通过调节仪器参数使双电荷离子的产率最低,以减少带来的干扰。该方法用于硅钢中痕量铜和镍的测定,所得的结果与ICP-AES法测定结果完全吻合,各元素测定结果的RSD值小于5%,加标回收率为97.3%~100.3%。 A method for the determination trace copper and nickel in silicon steel by inductively coupled plasma mass spectrometry(ICP-MS) was studied.The samples were dissolved in HNO3.The effect of matrix interference was eliminated by internal standard correction and matrix matching.Meanwhile,according to the mass spectral interferences in determination,the isotopes including 65Cu and 60Ni were used as measuring elements.The yield of double-charge ions were minimized by adjusting instrumental parameters...
CN202110291809.4一种提高无取向硅钢铁损均匀性的方法
本发明提供了一种提高无取向硅钢铁损均匀性的方法,所述方法包括,对无取向硅钢板坯进行加热和粗轧,获得中间坯;将所述中间坯精轧后以620‑750℃的温度进行卷取,获得热轧卷;将所述热轧卷进行酸洗和冷轧,获得冷轧卷;对所述冷轧卷升温至900‑960℃的温度保温50‑90s的时间,进行退火,获得铁损均匀性良好的无取向硅钢。本发明提供的方法,其铁损P1.0/50为1.379‑2.721W/kg,P1.5/50为2.751‑5.438W/kg,B5000为1.706‑1.741T,在线P1.0/50极差为0.062‑0.188W/kg,无取向硅钢的铁损更均匀。
CN202111157344.X一种适用于无取向硅钢极薄带表面涂覆的涂液及其制备方法与应用
本发明公开了一种适用于无取向硅钢极薄带表面涂覆的涂液,它由水溶性丙烯树脂、成膜助剂、耐盐雾助剂、流平剂、纳米氢氧化锆、消泡剂、水按质量比100:(2~8):(1~3):(1~5):(0~1):(0.1~0.5):(70~130)组成。将该涂液在无取向硅钢极薄带表面可表现出良好的涂覆性,经烘烤固化后形成的绝缘涂层表面透明光滑,附着性和绝缘性能优良,可有效提升无取向硅钢极薄带的综合性能,适合推广应用。

