钢厂
电工钢边缘降控制研究
以马鞍山钢铁集团公司电工钢板形优化控制研究项目为背景,系统地研究了热轧、冷连轧和单机架轧机在电工钢生产过程中的边缘降控制问题。通过现场数据采集、工况数值模拟计算和工业化大生产试验,设计出适用、合理的电工钢板形控制的辊型优化曲线,满足了不同工序、不同机型的板形控制策略要求,解决了电工钢板形质量问题,取得了显著的经济效益。 Based on the project of electric steel strip shape optimization control,problem of edge drop control was systematically studied in production of electric steel of hot-rolling mill,cold-rolling mill and single stand mill.Roll optimization contour was designed out in point and reasonable by collection of work condition data,numerical simulation and test of industrial production.The shape control system can meet with the different working steps and difference mills,and quality problem of electric s...
冲剪加工对无取向硅钢边缘组织和磁性能的影响
通过观察冲剪边缘组织,测量冲剪边缘的显微硬度、残余应力的分布情况和磁性能的变化研究了冲剪加工对无取向硅钢50WW800边缘组织和磁性能的影响。对冲剪后硅钢片进行750℃退火,分析退火对组织和磁性能的影响。结果表明,硅钢片剪切边缘会存在0.4 mm的形变硬化层,边缘应力大,铁损增加。退火后变形减小,形变硬化层变小,残余应力大幅度减少,铁损减少。 The influence of punching process on cutting edge microstructure and magnetic properties of non-oriented silicon steel 50WW800was studied by observing microstructure and measuring microhardness near cutting edge.The residual stress distribution in the silicon steel tooth and magnetic properties were measured.Effect of annealing at 750 ℃ on microstructure and magnetic properties of the silicon steel was analyzed.The results show that a cut-edge hardening layer up to 0.4 mm is observed,residual st...
CN202110083086.9一种无铝低合金无取向硅钢氧含量控制方法
本发明提供一种无铝低合金无取向硅钢氧含量控制方法,属于钢铁冶炼技术领域。该无取向硅钢化学成分按质量百分比为C≤0.005%,Si:0.2%‑0.6%,Mn:0.20%‑0.50%,P:0.03%‑0.08%,S≤0.005%,Als≤0.005%,余量为Fe及不可避免的杂质。其工艺流程为:KR铁水预处理→转炉冶炼→RH真空精炼→连铸。转炉出钢严格控制下渣量,加石灰、萤石、高铝渣面脱氧剂控氧调渣;RH真空精炼脱碳结束后,加低碳低硫硅铁、金属锰、磷铁等脱氧合金化,循环5min后,再加入金属铝终脱氧,同时向钢包渣面加入高铝渣面脱氧剂对炉渣进行脱氧,成分全部达标后净循环时间≥8min,破空、出钢;连铸进行全程保护浇注。使用本发明提供的操作方法,可以得到自由氧含量≤15ppm,总氧含量≤35ppm的钢水,提高钢水洁净度。
Al含量对2.2%Si无取向硅钢组织、织构和磁性能的影响
通过实验室25 kg真空感应炉冶炼和锻轧研究了0.26%~0.95%Al含量对0.5 mm 2.2%Si无取向硅钢冷轧板组织、织构和磁性能的影响。试验结果表明,0.26%~0.81%Al含量时,随钢中Al含量的增加,成品退火钢板的晶粒尺寸增加同时铁损减少;当Al含量大于0.81%时,随Al含量增加,钢板的晶粒尺寸减小,同时铁损增加。Al含量对硅钢板磁感的影响没有明显的规律。2.2%Si无取向硅钢的合适Al含量为0.48%~0.81%。 The effect of 0.26%~0.95%Al content on structure,texture and magnetic performance of 0.5 mm cold rolled sheet of 2.2%Si non-oriented silicon steel has been studied by a 25 kg vacuum induction furnace smelting,and forging -rolling in laboratory.Results show that as 0.26%~0.81%Al,with increasing Al content in steel the grain size of annealed finished sheet increases while iron loss of sheet decreases,and as Al content in steel is more than 0.81%,the grain size of sheet decreases while iron loss in...
大压下率冷轧无取向硅钢织构演变及性能
组织和织构是影响无取向硅钢性能的重要因素。为改善产品性能,研究了冷轧压下率(71.7%~87.0%)对高牌号无取向硅钢组织、织构、磁性能和力学性能的影响。结果表明,随冷轧压下率的增加,退火晶粒平均尺寸先减小后增大;高斯和立方织构强度减弱,γ纤维织构增强,α纤维织构转变为较强的α*({h, 1, 1}〈1/h, 1, 2〉)织构,并随冷轧压下率的增加而增强,同时其峰值逐渐向{111}面移动;工频铁损P1.5/50、高频铁损P1.0/400和磁极化强度J5000同时降低,屈服强度变化不大,表面硬度逐渐增加。当冷轧压下率由84.7%增至87.0%、厚度减至0.30 mm时,高频铁损降幅是工频铁损的11倍,表面硬度增幅变大。以上研究成果对硅钢减薄后织构及组织的优化提供了很好的指导。 Microstructure and texture are critical factors on non-oriented silicon steel properties. In order to improve product properties, this paper studied the effect of cold rolling reduction rate(71.7%-87.0%) on microstructure, texture, magnetic properties and mechanical properties of high-grade non-oriented silicon steel. The results show that with the increase of cold rolling reduction rate, the average size of annealing grain decreases first and then increases. The intensity of Goss and λ fiber te...
CN202180042912.3电磁钢板用涂布组合物、粘接用表面被覆电磁钢板以及层叠铁芯
该电磁钢板用涂布组合物含有环氧树脂、酚类固化剂(A)、以及从芳香族胺和双氰胺中选择的一种以上的胺类固化剂(B),所述酚类固化剂(A)的含量相对于所述环氧树脂100质量份为1~40质量份,所述胺类固化剂(B)的含量相对于所述环氧树脂100质量份为0.5~5质量份。
CN202080089018.7取向电工钢板及其磁畴细化方法
根据本发明的一个实施例的取向电工钢板,其中存在于电工钢板表面的沟槽以及与沟槽底部相连的再结晶和其他再结晶的平均取向度差为0.5°至10°。
CN202011620576.X取向硅钢绝缘涂层液
本发明涉及涂层液技术领域,且公开了取向硅钢绝缘涂层液,其配比为:二氧化硅10‑15%、硼酸5‑8%、磷酸二氢盐2‑5%、金属溶胶20‑25%、氢氧化铝占5‑6%、有机酸处理的复合盐溶液20‑30%、分散剂0.5‑1%,其余为水,采用硅溶胶作为辅助成膜物,粘结力较强,对附着性影响很大。硅溶胶能够很均匀地包裹在被胶结物质的表面,通过自干成膜,保持了很高的常温结合强度;而磷酸盐涂层的固化是通过受热分解,脱水聚合完成的,低温强度差,中温强度高,充分利用了硅溶胶低温的结合强度和磷酸盐中、高温时的结合性能,消除了常规涂层烘烤时容易出现的收缩、起泡现象,阻止了微气孔的形成,提高了涂层的表面光滑度,粘结强度和稳定性同时保持绝缘涂层的光泽、光滑和稳定性。
硅钢轧制过程中乳化液流量数学模型研究及应用
目前高磁感冷轧硅钢生产过程中,采用经验方法确定的乳化液流量设定值往往会造成硅钢产品的磁感性能达不到预期目标,针对此情况,基于轧机轧制机理研究了的乳化液流量数学模型,确定了乳化液流量设定值。实践表明,使用该数学模型输出的乳化液流量设定值,可提高轧制过程中乳化液流量控制精度,从而提高高磁感冷轧硅钢的轧制性能。 In view of the current production process of high magnetically inductive cold-rolled silicon steel, the mathematical model of emulsified fluid flow based on mill rolling mechanism is studied in view of the situation in which the magnetic sensing performance of silicon steel products is often not up to the expected target by using empirical method to determine the emulsified liquid flow setting. Practice shows that the emulsified fluid flow setting value output from this mathematical model improv...
日本取向电工钢生产工艺最新研发进展
根据相关的取向电工钢典型专利技术,概述了日本高磁感低铁损取向电工钢低温板坯加热、抑制剂合理调节、关键成分Mn、C、Sn和Sb调节与利用、新型退火剂和绝缘溶液的制备及细化磁畴等生产工艺最新动态和进展情况,并提出了国内企业申请取向电工钢专利时应当借鉴之处。 According to related typical patent technology for grain-oriented electrical steel sheets,the recent trends and progress situation for production process of grain-oriented electrical steel sheets with high magnetic flux density and low core loss in Japan are summarized including low temperature slab heating,suitably regulating inhibitors,adjusting and utilizing key element Mn,C,Sn and Sb,manufacturing for new annealing agent and insulating solutions,and fining magnetic domain,and some suggestion...
低牌号无取向电工钢磁时效行为分析
选取了三种50W 800无取向电工钢,分析了化学成分、晶粒尺寸、织构、以及200℃时效处理48 h前后的磁性能和第二相粒子析出状态的变化。结果表明,钢板中第二相粒子的分布密度对钢板铁损有最重要的影响。降低钢中C、N元素含量,或改进钢板热加工参数以降低成品钢板中第二相粒子形成元素的过饱和度均有利于明显降低钢板磁时效过程中的铁损增幅。钢板中对磁性能有利的织构也有利于降低钢板铁损的时效幅度。 The evolution of chemical composition,grain size,texture,as well as magnetic property after aging treatment at 200 ℃ for 48 h and distribution of second phase particles precipitation in three selected 50W800 non-oriented electrical steels were analyzed.The results show that the distribution density of second phase particles has great influence on core loss.Reducing C and N content,or improving hot-working parameters to reduce the supersaturation of elements forming second phase particles in prod...
CN202110525177.3CD型硅钢片铁芯性能测试工装
本发明涉及硅钢片铁芯性能测试技术领域,公开了CD型硅钢片铁芯性能测试工装,包括:机台,上部后侧固定有竖直向上的后侧板;托板,水平设置在所述机台上方;夹持机构,设置在所述机台上,所述夹持机构包括:第二气缸,其驱动杆端部固定套接有夹持块,夹持块外端部固定有橡胶缓冲块;橡胶垫,固定在所述托板右侧上部。本发明通过设置第一气缸驱动连接于托板,可以先根据硅钢片的厚度,通过操作气缸控制器控制第一气缸工作带动托板在机台上进行升降高度,从而调整托板与夹持块的高度差,提高装置的实用性和广泛性,较为实用,适合广泛推广和使用。