钢厂
提高硅钢卷材下料利用率的几种方法
阐述了影响硅钢卷材下料利用率的因素,并结合具体事例利用计算机排样系统进行了详细分析,对提高硅钢卷材的利用率具有一定的指导作用。 It describes the factors influenceing the the utilization ratio of the roll of Silicon steel,and analyzes it in detail combined with concrete examples by a computer arrangement system,which can give a guide for increasing the utilization ratio of the roll of Silicon steel.
我国冷轧无取向硅钢涂层专利技术分析
对1990~2010年在我国申请的冷轧无取向硅钢涂层的专利数量、专利技术领域分布进行了统计,对典型涂层专利技术进行了分析,探讨了无取向硅钢涂层的发展趋势。统计分析结果表明,目前无取向硅钢涂层典型的专利技术主要有自粘结涂层、无铬含稀土元素涂层、含钼酸盐环保涂层及采用有机-无机纳米杂化材料为主成膜物形成的涂层等。无取向硅钢涂层发展的趋势主要是无铬环保的半无机、半有机型涂层。 The patent quantity of cold-rolled non-oriented silicon steel coating and distribution of technology fields applied in China in 1990-2010 were summarized.The analysis results indicate that typical patent technologies include self-adhesion coating,chromium-free and with rare earth element coating,environment-friendly and with molybdate coating,coatings with organic-inorganic hybrid materials as main forming agent and so on.The main development trends of coatings on silicon steel are among semi-in...
CN202110876533.6高效无取向硅钢极薄带的工业连续化生产方法
本发明公开了一种高效无取向硅钢极薄带的工业连续化生产方法,其包括异步轧制、脱脂、热处理、急速冷却、涂绝缘层、烘干烧结、卷取收集各工序;其中,异步轧制中的异步比为1:1.05~1:1.24;脱脂、热处理、急速冷却、涂绝缘层、烘干烧结、卷取收集工序为连续化生产工艺;热处理工序中,第一步为预热,预热温度为500℃~720℃,预热时间20秒~125秒;第二步为相变热处理,相变热处理温度为840℃~940℃,相变热处理时间100秒~600秒;急速冷却工序中,30秒内将钢带温度降温至350℃以下。优点在于:实现工业化连续生产无取向硅钢极薄带,有效提高产能,生产的无取向硅钢极薄带具备高磁感、低铁损等磁性能。
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...
CN202123198150.2一种取向硅钢全氢式高温罩式炉外罩
本实用新型涉及一种取向硅钢高温退火设备,尤其涉及一种取向硅钢全氢式高温罩式炉外罩,从外至内包括圆柱形外壳和耐火保温层,所述耐火保温层内壁铺设有电阻带;所述圆柱形外壳上部设有外罩顶盖;所述耐火保温层由陶瓷纤维模块堆砌而成,所述电阻带通过钉子铺设在陶瓷纤维模块上;电阻带头一端通过接线棒引出炉壳外,另一端中性点在炉内短接。本实用新型保温层内层采用模块化的高纯度陶瓷纤维代替耐火砖,该材料具有重量轻、蓄热少,低导热性能带来高的节能效果,具有抵抗热冲击的能力,加上模块化的结构,安装快捷,衬体无需烘干和养护,所以安装好以后便可立即投入使用。
CN202110083111.3一种超低铝无取向硅钢夹杂物控制方法
本发明提供一种超低铝无取向硅钢夹杂物控制方法。该钢种化学成分质量百分比为C≤0.005%,Si:0.25%‑1.50%,Mn:0.15%‑0.55%,P:0.02%‑0.06%,S≤0.005%,Als≤0.005%,余量为Fe及不可避免的杂质。工艺流程为:KR→BOF→RH→连铸。转炉出钢严格控制下渣量,出钢结束加石灰、渣面脱氧剂调渣;RH脱碳结束后,先加低碳低硫硅铁、金属铝或铝钙铁合金复合脱氧,最后加入金属锰、磷铁进行合金化,然后净循环6‑10min,破空出钢运至连铸浇注。得到钢水中主要为SiO2‑Al2O3系夹杂,避免了生成低熔点SiO2‑MnO系夹杂,轧制延展变长,影响晶粒长大;同时也避免了生成高SiO2组分类酸性夹杂,导致耐材的侵蚀。可显著改善钢中非金属夹杂物类型,提高无取向硅钢的性能,并提高了钢水浇注性能。
CN202110288522.6一种防止低温加热取向硅钢热轧边裂的方法
本发明涉及一种防止低温加热取向硅钢热轧边裂的方法,包括:1)控制取向硅钢铸坯进入加热炉前的表面温度;2)控制加热段各段炉气温度;3)二加热段采用加速加热;4)控制总加热时间;5)控制出炉温度;6)控制精轧道次及侧压量;7)控制精轧道次及终轧温度;8)精轧前对钢带边部进行加热补偿。本发明通过合理制定取向硅钢的加热温度、加热时间和轧制工艺制度,避免或消除了低温加热取向硅钢热轧边裂问题。
CN202110407389.1一种具有低应力结构的硅钢片、转子和电机
本发明涉及电机技术领域,具体涉及一种具有低应力结构的硅钢片、转子和电机。包括硅钢片、开设在硅钢片上的磁钢槽和嵌设在所述磁钢槽内的磁钢组件,所述磁钢组件包括多个磁钢组,所述磁钢组包括靠近转子边缘的一对小永磁体和靠近转子内侧的一对大永磁体,所述硅钢片在转子轭部沿周向分布有径向开槽,且所述径向开槽从硅钢片的中心向边缘延伸。其通过在转子轭部沿周向分设置从硅钢片的中心向边缘延伸的径向开槽,能降低大永磁体左右两侧铁芯刚度差距,从而有效降低隔磁桥处的应力,防止磁钢和铁芯产生形变而断裂。其无需改变电机转子外圆结构,在保证转矩输出的前提下,防止高速旋转时带来空气啸叫声。
电工钢中柱状晶尺寸及退火工艺对{100}织构的影响
利用EBSD技术研究了电工钢中不同的柱状晶尺寸及退火工艺下{100}织构的演变规律。结果表明,初始晶粒尺寸的影响最显著。细小柱状晶热轧后经过常化处理,组织已均匀,但中心层有强{100}织构。粗大柱状晶中{100}织构的遗传性强,常化及中间退火后,中心层仍有粗大的以{100}取向为主的晶粒;脱碳退火后才能完成组织均匀化和织构梯度的弱化。常化时的升温速度也对织构演变存在影响,低的升温速度有利于{100}织构的保留,但升温速度的影响没有初始晶粒尺寸及退火次数的影响显著。细小柱状晶样品经过热轧及三次退火工艺适合制备取向电工钢。 Evolution of {100} texture of different columnar grains and annealing process was investigated in electrical steels with the help of EBSD technique.The results show that the effect of initial grain size is the strongest.The initial fine-grained specimen shows uniform microstructure after the normalizing process,while {100} grains appear preferentially in the central layer of sheets.The heredity of {100} texture in the initial coarse-grained specimen is more significant.{100} mainly-oriented coar...
高强度无取向电工钢疲劳性能及断裂机制
测试了高强无取向电工钢的S-N曲线,并借助光学显微镜、扫描电子显微镜、透射电子显微镜分析了实验钢组织,疲劳断口形貌和位错结构。结果表明:室温条件下,频率为20Hz,应力比R为0.1,循环10~7周次时,实验钢的疲劳强度为360MPa,疲劳裂纹萌生于实验钢的次表面,裂纹萌生点附近有沿晶开裂现象,疲劳裂纹扩展区域有解理台阶与疲劳条纹,瞬间断裂区是韧性断裂,有大量韧窝。实验钢在循环应力作用下基体中产生了大量位错,并有驻留滑移带终止在晶界位置。 The S-N curve of a high strength non-oriented electrical steel was tested.The microstructure and fatigue fracture morphology and dislocation were analyzed by optical microscope,scanning electron microscope,transmission electron microscope.The results showed that:at room temperature and the frequency of 20 Hz and the stress ratio Rof 0.1,the fatigue strength of the experimental steel was 360 MPa when the cycle was 10~7 cycles.The fatigue crack initiation at the surface of the steel and the interg...
电脉冲对取向硅钢凝固组织的影响研究
对取向硅钢熔融态钢液进行处理,对比研究了不同脉冲参数的作用效果。结果表明,电脉冲对钢锭晶粒组织具有明显的细化作用,凝固组织等轴晶比例大幅上升。在脉冲电容、频率、处理时间和电压中,影响等轴晶比例的最显著性因素为脉冲频率;最优正交实验参数为:电容1 200μF,脉冲频率1 Hz,处理时间5 s,脉冲电压800 V;随着输入能量的增大,等轴晶率先增大后减小,脉冲输入能量为某值时,等轴晶率最大,通过经典形核理论和热力学对这一现象进行了解释。 Research on the influence of the electric pulse on the solidification structure of oriented silicon steel was preformed.Electric pulses in different parameters were applied to molten steel and results were compared.The result shows that solidification structure of oriented silicon steel can be improved by the electric pulse,and the equiaxed crystal ratio increases obviously.Among the four parameter factors of electric capacity,frequency,applied time and voltage,the most effective factor is frequ...
冷轧无取向硅钢产品标准浅析
聚焦无取向硅钢产品标准,从电磁性能、表面性能、机械性能以及尺寸公差与边部质量等维度对国际标准IEC、EN、JIS、ASTM以及国标GB进行了分析研究。分析得出,各类标准在电磁性能方面要求基本一致;ASTM标准的机械性能要求有别于其他几个标准。 In this paper,non-oriented silicon steel standards of EN,JIS,GB and ASTM were compared and analyzed. It is showed that,all types of standards in electromagnetic performance requirements are basically the same. Surface properties in ASTM standard are expressed in the most detailed. The mechanical properties requirements of the standards,except for ASTM,are basically the same.

