所有分类
  • 所有分类
  • 未分类

本发明揭示了一种高硅无取向电工钢及其生产方法。该方法包括:1)钢水冶炼并连铸成坯;2)加热并保温,之后热轧得到热轧卷板,其中粗轧出口温度940±20℃,精轧终轧温度840±20℃,卷取温度650±20℃;3)常化,常化温度((732~742)+3000[Si])℃,常化时长4min~5min;4)常化后直接进行冷轧,而后连续退火和涂层,退火温度940℃~990℃且退火时长1.5min~3min;5)涂层处理后的钢板加工成型,而后进行去应力退火,退火温度为((761~766)+3000[Si])℃。如此,在保证磁性能的同时,解决了冷轧难度大的问题。
2021-10-14 155 6.8

采用传统的轧制和退火工艺制备了0.30mm厚的6.5%(质量分数)Si高硅电工钢薄板,采用X射线衍射技术对退火过程中的再结晶织构进行了研究。冷轧高硅钢薄板700℃退火形成以{111}〈112〉为峰值的γ织构(〈111〉∥ND)和以{001}〈210〉为峰值的{001}织构;而900℃以上温度退火则形成强{001}〈210〉织构。进一步的研究表明是在晶粒长大过程中{001}〈210〉发展成为主要再结晶织构组分。 High silicon steel thin sheets with thickness of 0.3mm were successfully produced by conventional rolling and annealing methods.Recrystallization texture was investigated by means of X-ray diffraction.It is found that recrystallization texture is mainly composed of γ fiber(〈111〉∥ND)with peak at {111}〈112〉 and {001} fiber with peak at {001}〈210〉 after annealing at 700℃,while strong {001}〈210〉 component dominates recrystallization texture after annealing above 900℃.It is during grain growth that {... 
2011-11-28 155 5.8

利用加热炉模拟、动态再结晶以及热模拟等试验方法以及扫描电镜、金相显微镜等分析观察手段对无取向硅钢边裂的成因进行了探讨。结果表明,长时间加热使得板坯边部晶粒异常长大,晶界氧化并脱碳,轧制过程中边部温度过低,动态再结晶过程变弱,使得板坯边部延伸性能变差,是导致硅钢边裂的主要原因。建议通过适当降低铸坯加热温度、缩短保温时间、提高终轧温度来改善硅钢边裂缺陷。 The behaviors of high temperature oxidation,dynamic recrystallization,and hot ductility,microstructure evolution were investigated on the non-oriented electrical steel sheets to discuss the formation of edge crack.The key causes of cracking was found to be the coarse as-cast microstructure,grain boundary oxidation and decarburization in reheating furnace,as well as reduced temperature at strip edge region during hot rolling process resulting in reduced hot ductility and lack of enough dynamic re... 
2013-02-28 155 5.8

薄带连铸流程下取向硅钢粗大λ晶粒(〈100〉//ND,normal direction)的“遗传”会导致磁性能恶化.为解决这一问题,针对取向硅钢的热轧孪生行为开展研究,结果表明:凝固组织粗大的取向硅钢在650℃热轧时可产生大量{112}〈111〉形变孪晶,这与具有高层错能的硅钢在较高温度下难以孪生变形的传统认知不同.热轧过程中复杂的应力状态降低了变形孪晶的取向依赖性,由于具有更高的储存能,孪晶界/孪晶界及孪晶界/晶界交叉点成为再结晶形核的优先位置,大大提高了常化过程中的再结晶率,受沿孪晶界应变分布及孪晶间距离的限制,沿孪晶界形核的再结晶晶粒通常呈“饼状”,最终形成以细小且取向漫散的再结晶晶粒为主的常化组织,消除了初始凝固组织中有害的粗大λ晶粒. In strip casting grain-oriented silicon steels, the inheritance of coarse λ grains(〈100〉//ND, normal direction) can deteriorate their magnetic properties. To solve the problem, twinning behaviors in strip casting grain-oriented silicon steels during hot rolling were investigated in this work. It is found that after rolling at 650 ℃, a number of {112}〈111〉deformation twins are formed in the coarse solidification microstructure of the steels, in contrast to the well-accepted view that it is diffic... 
2022-02-28 155 5.8

本发明涉及薄规格高牌号无取向硅钢冷轧领域。一种提高超薄规格高牌号无取向硅钢厚度精度的冷轧方法,硅钢成品厚度规格在0.15mm~0.25mm,坯料采用常化酸洗切边后的硅钢卷,初始厚度为2.0~2.3mm,采用二十辊单机架轧机轧制,在轧制过程中,对整个轧制过程进行控制。本发明的有益效果是:解决二十辊轧机超薄规格无取向冷轧硅钢纵向厚度波动同时减小横向同板差的方法。
2021-11-18 154 6.8

对硅钢板材分别进行异步和同步轧制,研究了轧制参数包括速比、压下量和道次对板材表面显微组织的演变的作用.结果表明,异步轧制硅钢板材表面形成了晶粒尺寸为10~50 nm,取向接近随机分布的纳米晶,而同步轧制板材的表面只形成了位错胞,证明异步轧制可以诱发表面纳米化.异步轧制板材表面纳米晶的形成过程为:在剪切力的反复作用下,高密度位错形成、滑移、湮灭和重组形成亚微米尺度的亚微晶/位错胞.随着压下量和轧制道次增加,高密度位错重复以上过程使晶粒尺寸减小、取向差增大,最终形成取向接近随机分布的纳米晶组织.大压下量和多道次是异步轧制诱发板材表面纳米化的关键,而速比的增加可以加快纳米化进程. Surface nanocrystallization(SNC) can effectively enhance the surface and global properties of the metallic materials,such as microhardness,intensity,fatigue,wear and corrosion resistances,therefore provides more promising practical industrial applicability.Up to now,several SNC treatment methods were developed based either on the principles of ball impactions or friction sliding,however,difficulty still exists for the surface treatment of large-dimensional samples with high efficiency.Recently,m... 
2014-09-28 154 5.8

通过对取向硅钢进行脉冲磁场退火实验,发现在相同的退火时间(6.0 min)内,低于1 T的脉冲磁场可以在一定程度上提高取向硅钢的磁感(B8),而高于1 T的脉冲磁场则会使取向硅钢的磁性能急剧恶化.同时发现,脉冲直流电加热方式会使取向硅钢的磁性能恶化.研究表明,脉冲磁场退火有望成为一种调控材料微观结构的有效手段. We have carried out experiments of annealing by pulse magnetic field.The results show that a pulse magnetic field with intensity lower than 1 T can promote magnetic induction density(B8) of grain-oriented silicon steel,while the magnetic properties deteriorate sharply when intensity is higher than 1 T.It has also been found that heating by using pulse direct current can cause the magnetic properties to deteriorate,in contrast to the traditional heating using resistance furnace.Our research shows... 
2011-01-28 154 5.8

本发明公开了一种含铝电工钢连铸高效生产的方法,其中CSP连铸连轧包括以下步骤:利用普通硅铁合金中的残余钙元素进行钙处理,钢水中Al2O3夹杂物得到球化;转炉终点氧含量加入改质剂;根据连铸拉速设定结晶器电磁制动电流参数,并制定不同拉速条件下的二冷修正系数;采用低粘度低转折温度消耗量为0.30kg/t高拉速结晶器保护渣,本发明连铸拉速从最高的4.2m/min提高至5.8m/min,提升幅度达到了38%,实现了薄板坯连铸连轧工艺技术条件下含铝电工钢50W1300的高效低耗生产。
2021-12-21 154 6.8

叠片系数是冷轧无取向电工钢的重要质量指标。为了提高叠片系数,必须保证无取向电工钢板形良好以及横向厚差小。针对攀钢冷轧厂4机架HC轧机轧制无取向电工钢的边部减薄问题,以无取向电工钢横向厚差最小作为目标函数,建立了一套针对无取向电工钢边部减薄控制的辊型曲线优化数学模型,开发了无取向电工钢专用辊型曲线,使无取向电工钢横向厚差从25μm降低到10μm以下,取得了良好的控制效果。 The lamination factor is an important quality index of non-oriented silicon steel strip.Considering the lamination factor,the non-oriented silicon steel must have a good shape and a smaller transverse thickness difference.In order to solve the edge thinning of non-oriented silicon steel strip in Panzhihua Steel,a mathematic model for designing the roll shape is built.In the model,the transverse thickness difference of non-oriented silicon steel strip is taken as the objective function.Based on t... 
2011-01-28 154 5.8

本实用新型公开了一种无取向硅钢厚涂层涂层液生产用纯水制水机,包括底板,底板顶端的两侧分别固定设有固定座和存水筒,固定座顶端的中部设有蒸馏组件,蒸馏组件包括球形釜,球形釜设置在固定座的顶部,球形釜的外部固定套设有导热层,导热层的内部固定嵌设有电热丝,导热层的外部固定套设有隔热层,本实用新型的有益效果是:通过设置的电热丝通过导热层对球形釜内部的水进行加热,球形釜提供更加均匀的受热效果,水蒸气通过V形管进入L形管,通过设置的环状冷却管内部的液氮对水蒸气进行冷却,便于提供更高效的蒸馏处理,通过设置的防腐蚀磁铁网格滤板、无纺布滤层、活性炭滤层和高密度滤网层,便于提供更好的过滤效果。
2020-12-26 153 6.8

本发明涉及一种取向硅钢连续高温罩式退火炉及其退火工艺,其包括梯度窑炉,所述梯度窑炉包括A1段退火炉、B段退火炉、C段退火炉、D1段退火炉、A2段退火炉和D2段退火炉;所述A1段退火炉、B段退火炉、C段退火炉、D1段退火炉、A2段退火炉和D2段退火炉依次连接;其中,A1段退火炉、B段退火炉、C段退火炉和D1段退火炉炉顶高度不同,A1段退火炉与A2段退火炉炉顶高度相同,D1段退火炉与D2段退火炉炉顶高度相同。上述在炉顶结构上根据生产工艺,采用的梯度分层次布局,使其在炉顶形成障碍,减缓气流的流通速度达到节能的目的,同时对各个工艺段炉窑内温度的均匀性有提升,并且能够提高产品的质量。
2021-06-03 153 6.8

本实用新型公开了一种高磁感低铁损取向硅钢生产用切割装置,包括激光切割台,所述激光切割台上端滑动连接有一个滑动导轨,所述滑动导轨上滑动连接有一个切割主机,所述激光切割台上端且与切割主机相对应位置均匀固定连接有一组锯齿板,所述激光切割台上端且与锯齿板相对应位置活动连接有一个升降板,所述升降板上且与锯齿板相对应位置均开设有一个穿孔,所述升降板上端均匀转动连接有一组滚珠,本实用新型的有益效果是:通过螺纹杆的转动,可以使螺纹套和滑动块滑动,从而利用连接转杆的传动,可以将升降板顶起,使待切割的板材可以在滚珠上滑动,方便对板材位置的调节,并且将升降板下降后,不会影响板材的正常切割。
2021-12-23 153 6.8

站点公告

网站试运行,请大家关注本站公众号,多提宝贵意见!

显示验证码
没有账号?注册  忘记密码?