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本发明提供了一种无取向硅钢RH顶枪喷粉脱硫工艺,RH脱碳结束测温定氧,立即加入铝粒脱氧合金化、之后立即依次连续加入合金进行成分调整,合金加完后立即开始顶枪喷粉;加入铝粒的量=铝粒理论加入量+0.2‑0.4kg/t钢;喷粉时,控制喷粉速度与钢液循环流量相匹配;本发明从真空条件下脱硫热力学和动力学角度出发对具有顶枪喷粉功能的RH脱硫工艺进行改进,提高脱硫率。
2021-11-30 125 6.8

对CSP流程生产的高磁感无取向电工钢50W1300在偏离轧制方向不同角度处的磁性能进行了测试和分析。结果表明:在偏离轧向不同角度处,磁性能差异显著,尤其在α=60°时磁感最低;偏离轧制方向不同角度处的磁性能大小取决于织构类型、强度及分布状态;增强{100}<0vw>和α、η取向的有利织构组分,降低不利的γ取向织构组分,且使有利织构组分分布越漫散,磁各向异性越小。 Magnetic properties of high magnetic induction non-oriented electrical steel 50W1300 produced by CSP processes were investigated with different direction in relation to the rolling direction.The result shows that magnetic properties are significantly different in relation to the rolling direction,in particular,the minimum magnetic induction occurs at 60° in relation to the rolling direction.Magnetic properties of different directions in relation to rolling direction depend on type and distributi... 
2011-04-28 138 5.8

取向硅钢热轧板中织构梯度对发展完善的二次再结晶十分关键,通过添加铜可以显著降低取向硅钢板坯加热温度,从而影响热轧板织构分布。利用X射线衍射仪,分析了实验室模拟薄板坯连铸连轧(TSCR)工艺的3种不同铜含量的取向硅钢热轧板织构。结果表明:不同铜含量热轧板表面到厚度1/4处均为弱的热轧织构,热轧板心部主要为{100}面织构;铜含量约在0.4%时,热轧板次表层的{110}<001>织构比例最高,而热轧板心部的{100}<110>织构比例最低;铜含量对热轧织构中{114}<110>和{001}<100>织构发展有显著影响。 The texture gradient in hot rolled grain oriented silicon steel strip is one of the essential factors to achieve a perfect secondary recrystallization.The addition of copper can significantly reduce the slab reheating temperature of grain oriented silicon steel,so as to impact the texture distribution in the hot rolled strip.The texture of hot rolled grain oriented silicon steel strip as-rolled by thin slab casting and rolling process(TSCR) in laboratory with three different copper contents was ... 
2011-01-28 141 5.8

本发明公开了一种自主学习的高硅钢软磁复合铁芯智能化生产系统及生产方法,属于软磁复合铁芯智能化生产技术领域。本发明的生产系统包括数据输入模块、数据分析模块、数据输出模块、通信模块、数据修正模块;生产方法为:用户通过输入模块选择目标性能参数及生产控制模式,系统生成生产过程关键参数,并由输出模块输出给用户;用户确认后形成控制指令,并发送至生产设备进行生产。本发明的系统不仅能够根据高硅钢铁芯产品的目标性能参数自动生成合理的操作条件,还能根据历史数据和产品检化结果对系统内置的关系模型不断进行优化、完善,能够有效提高产品产量和质量、减少浪费、降低成本。
2021-03-26 135 6.8

取向硅钢热轧板中组织、织构梯度对发展完善的二次再结晶十分关键,通过对2种不同热轧工艺生产取向硅钢的组织、织构进行研究,结果表明:采用后道次大压下热轧工艺时热轧板表层再结区晶粒平均尺寸增加,再结晶区厚度增加,高温退火后二次晶粒尺寸减小;采用后道次大压下热轧工艺热轧时,热轧板中平均等效应变高,热轧板厚度心部{100}〈011〉和{100}〈001〉位向取向强度降低,({111}~{113})〈110〉位向取向强度提高,高温退火后{110}〈001〉位向偏离角降低,磁性能提高。 The texture and microstructure gradient in hot rolled grain oriented silicon steel strip was one of the essential factors to achieve a perfect secondary recrystallization.The texture and microstructure of grain oriented silicon steel strip as-rolled with two different hot rolling parameters was investigated.The results show that with big reduction at the end rolling process,the intensity of {100}〈011〉 and {100}〈001〉 orientation reduces with({111}-{113})〈110〉 orientation intensity enhanced in hot... 
2012-12-28 124 5.8

本发明公开了一种适宜缠绕式加工的低铁损无取向硅钢及其生产方法,属于硅钢生产技术领域。本发明的无取向硅钢包括以下质量百分比的元素:Si:1.5~2.5%,Mn:0.15~1.0%、Als:0.5~1.5%,其余为Fe及不可避免的杂质。其生产工艺步骤为:铁水预处理、转炉冶炼、真空处理、连铸;加热热轧;常化处理;冷轧、退火;保温、冷却;涂覆绝缘层。本发明通过对无取向硅钢的组分及其配比,结合工艺操作进行优化,能够生产得到电磁性能及延伸率均优异的无取向硅钢,从而能够有效满足电工钢缠绕式加工及使用需求,且其制造工序流程短、成本相对较低。
2021-10-25 126 6.8

为开发高效电机用冷轧无取向电工钢,借助实验室薄板坯连铸连轧模拟设备及扫描电镜、透射电镜等检验手段研究了成分、组织、织构和析出物等对无取向电工钢磁性能的影响规律;结果表明:常化处理使组织均匀化并增加有利于磁性提高的织构组分;采用CSP流程开发的高效电机用无取向电工钢铁损平均值3.4 0 W/kg,磁感≥1.68 T。 In order to develop electrical steel for high efficiency motor,effect of components,microstructure,texture and precipitation on magnetic property of electrical steel are analyzed.From the result,normalizing treatment makes microstructure uniform and increases component of favorable texture.Iron loss of electrical steel developed by CSP line is 3.40W/kg and magnetic induction is more than 1.68T. 
2011-01-28 146 5.8

对高牌号无取向电工钢国内生产情况、工艺技术、产品性能及应用领域等进行了阐述,并探讨了高牌号无取向电工钢产品的发展趋势。 This paper introduces basic facts on the production status,process technology and products’ properties and their applications of non-oriented electrical steel with high grade at home,and then discusses the development trend on technology for producing the non-oriented electrical steel with high grade. 
2011-02-28 125 5.8

研究了常化对CSP流程生产的wSi=1.6%的无取向电工钢组织、织构和成品磁性能的影响。结果表明,经CSP流程生产,且在相同的冷轧及退火制度下,经1 000℃×2min常化处理的wSi=1.6%的无取向电工钢热轧板,其最终退火成品的铁损P15/50比不常化试样下降了10.5%,磁感B50比不常化试样提高了2.5%;常化使wSi=1.6%的无取向电工钢成品的平均晶粒尺寸增大,成品铁损P15/50相应减小;同时,常化使wSi=1.6%的无取向电工钢成品中高斯织构的强度增加,γ纤维织构的强度减弱,这有利于成品磁感B50的提高。 The effect of normalizing on microstructure,texture and magnetic properties of non-oriented electrical steel with wSi=1.6% produced by CSP process was investigated.The results show that,under the same cold rolling and annealing system,the iron loss(P15/50) of annealed samples whose hot bands has been normalized by 1 000 ℃×2 min process decreases by 10.5% and magnetic induction(B50) increases by 2.5% compared with the samples whose hot bands was not normalized.The average grain size of non-orient... 
2012-11-28 143 5.8

本发明涉及无取向硅钢技术领域,尤其涉及一种改善高牌号无取向硅钢冷轧断带的控制方法。按重量百分比计:[Si+Al]≥4.0%;Mn、S含量满足:S≤0.0015,[Mn]/[S]:200~400;1)热轧过程中使用保温罩,热轧轧制时投入边部加热,头尾100米内卷曲温度提高15~30℃;2)常化机组圆盘剪进行边部剪边前增加加热装置,剪切后增加毛刺打磨装置,采用煤气明火加热,保证钢板温度在韧脆转变温度以上;3)圆盘剪间隙满足关系式:ds=(0.15~0.45)d0ds:圆盘剪间隙,μm;d0:常化板板厚,mm;4)常化采用快速加热,控制钢带的预热段升温速度320~380℃/min,机组速度20~30m/min;5)常化工艺后,控制边部小于20μm的晶粒占比在5%以内。有效的减少了冷轧断带的发生,提高成材率1.30%以上,降低了生产成本。
2021-09-13 124 6.8

本发明涉及一种取向硅钢热轧钢带的板形控制方法,所述取向硅钢热轧钢带的工艺流程包括铸坯加热过程、轧制过程及层流冷却过程;其中轧制过程中采取取向硅钢与普钢交叉轧制的方式;粗轧过程采取R1轧制1道次、R2轧制5道次的1+5轧制工艺,并控制轧制工艺参数;精轧过程中控制F1~F7轧制工艺参数。本发明通过设定合理的交叉轧制工艺及取向硅钢热轧工艺,使取向硅钢的轧制稳定性大幅提高,取向硅钢带形控制良好,凸度控制在30~50μm之内,楔形控制在30μm之内,板形平坦度控制在25iu之内;从而为冷轧工序提供了优质原料。
2021-03-18 119 6.8

对CSP流程生产的无取向电工钢M50W800不同尺寸样品的磁性能进行了测试和分析,结果表明:采用不同单片检测的磁性能结果与标准的Epstein方圈样品检测对比,存在明显的偏差;且同一尺寸的单片纵横向样品之间相比较,对应的磁性能差异性也较大。几种不同尺寸的单片样品,以320mm×30mm尺寸的纵横向平均值最接近标准Epstein方圈样的性能值,其铁损偏差最小。 The magnetic properties of M50W800 non-oriented electrical steel produced by CSP process were tested and analyzed with samples of different sizes,showing that significant deviation existed compared to that of Epstein square circle sample.In particular,obvious difference in magnetic properties also existed between longitudinal and transverse samples of the same size.For test samples of different sizes,the average magnetic properties of 320mm×30mm samples are the closest to that of Epstein square ... 
2013-01-28 132 5.8

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