钢厂
多元抑制剂对高磁感取向硅钢性能的影响
介绍在取向硅钢生产中抑制剂的作用以及多元抑制剂的机理和应用情况,分析多元抑制剂方案中各种元素对高磁感取向硅钢性能的影响,并根据生产实践提出了进一步研究的方向. The role of an inhibitor in the production of grain oriented silicon steel,and the mechanism of multiplex inhibitor in the production are described in the present article.In addition,the influence of various elements in the multiplex inhibitor on the performance of grain oriented silicon steel with high magnetic induction is elucidated.Further work needed in this research is also indicated.
退火温度对3.1%Si无取向硅钢组织织构与磁性能的影响
研究了退火温度对3.1%Si无取向硅钢组织和磁性能的影响规律。结果表明:退火温度从940℃提高至1 000℃,平均晶粒尺寸由98μm增加到145μm,铁损P1.5/50从2.576 W/kg降低至2.408W/kg。随着退火温度的升高,γ不利织构组分强度逐渐降低,{111}〈112〉织构组分强度降低约16%,磁感B50逐渐升高,磁性能水平提高。 The effects of annealing temperature on microstructure and texture and magnetic properties of 3.1%Si non-oriented silicon steel were investigated in this paper.The results showed that,when the annealing temperature increased from 940℃ to 1 000℃,the average grain size of metallographic structure increased from 98μm to 145μm,the iron loss value P1.5/50 decreased from2.576 W/kg to 2.408 W/kg.And as the annealing temperature increased,the strength of the unfavorable texture componentγgrad...
氢氧化镁煅烧制备硅钢级氧化镁的研究
以青海盐湖氯化镁为初级原料,采用喷雾热解法制备原料氧化镁。原料氧化镁通过水化制备氢氧化镁。将氢氧化镁过滤、洗涤、烘干、粉碎、煅烧,制备硅钢级氧化镁。本文重点考察煅烧温度、煅烧时间、料层厚度等因素对氧化镁水化率的影响,采用均匀实验设计和DPS数据处理,确定最优煅烧实验条件为:煅烧温度1250℃,煅烧保温时间4小时,料层厚度0.5cm。在此条件下得到的硅钢级氧化镁完全满足硅钢及氧化镁的行业标准。 The magnesium oxide is prepared by Spray pyrolysis process,which magnesium chloride from Qinghai Salt Lake is used as primary raw material,and hydrated to magnesium hydroxide,then obtained silicon steel magnesia through filtering,washing,drying,crushing and calcinations.In this paper,influences of some factors on magnesia hydration rate are studied,such as calcination temperature,calcination time and material thickness.After average experimental design and DPS data processing,optimal calcination...
TSCR试制高强度无取向电工钢
采用固溶强化、细晶强化和位错强化方法,模拟TSCR流程试开发高强度无取向电工钢,试开发钢的主要合金成分为3%Si、0.83%Al和2.99%Mn。分析热轧、常化、退火后的钢板组织,并针对不同的成品板组织,详尽地分析了相应的力学性能和磁性能。试验电工钢平均晶粒直径为12.37μm时,R p0.2为530 MPa,R m为618 MPa;当退火制度为700℃×4 min,成品组织完全为未再结晶的回复组织时,R p0.2为853.5 MPa,R m为895.5 MPa。该成分的电工钢P15/50或P10/400最小时,对应的平均晶粒直径都大于59.67μm;P10/800或P10/1000最小时,对应的平均晶粒直径都处于12.37~59.67μm尺寸区间。 TSCR was simulated to develop high-strength non-oriented electrical steel with 3% of Si,0.83% of Al and 2.99% of Mn by solution strengthening,grain refinement strengthening and dislocation strengthening.The microstructures of hot rolled plates,normalized plates and annealed plates were analyzed.Furthermore,the mechanical properties and magnetic properties of products with different microstructures were detailedly studied.As the average grain diameter of the steel was 12.37 μm,the yield strength ...
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...
火花源原子发射光谱法在线测定电工钢中的超低碳
采用火花源原子发射光谱分析测定电工钢中超低C,研究试样制备方法、Ar纯度和压力等条件对分析结果的影响,并对工作曲线进行了优化,实现了一次分析同时测定电工钢的多种元素,满足炉前和精炼在线分析的要求。 Ultra-low carbon in electrical steel is determined with spark-source atom emission spectrum.It is researched the influence of sample making method,purity of Ar,and pressure on analysis result.The work curve is optimized.The determination of many elements in electrical steel only in one analysis is realized.It meets demands of on-line analysis for blast furnace and refining.
CN202111677985.8一种软磁性高硅钢极薄带及其制备方法
本发明涉及硅钢带的制备技术领域,具体公开一种软磁性高硅钢极薄带及其制备方法。所述软磁性高硅钢极薄带的制备方法包括熔炼、包覆CaF2和TiB2偶合涂层、微波热压成型、酸洗、渗氮、一次退火、三道热轧、二次退火、三次温轧和三次退火。本发明提供的软磁性高硅钢极薄带的制备方法制得的软磁性高硅钢极薄带的晶粒细化程度高、组织均匀,改变了传统的相析出路径,有效消除了有序相的形成,使其具有优异的延展性,并具备更高的磁感和更低的铁损。
CN202123177516.8一种可变距硅钢片吸附抓具
本实用新型涉及变压器铁芯全自动叠装产线技术领域,具体为一种可变距硅钢片吸附抓具,包括:第一铝型材,所述第一铝型材的底端两侧均安装有直线导轨,所述第一钣金连接件的一端与第二直推气缸的动力输入端相连接,所述第二直推气缸通过安装座固定安装在第一铝型材上,所述第一钣金连接件远离直线导轨的一端固定安装有第一气动吸盘;装配块,其设置在所述第二直推气缸远离直线导轨的一侧,所述第二钣金连接件的底端安装有第二气动吸盘。本实用新型通过设置的第二直推气缸能够推动第一气动吸盘在第一铝型材上滑动,如此能够改变第一气动吸盘的所在位置,从而能实现对不同长度的硅钢片的抓取,提高该种吸附抓具的适用范围。
CN202111458743.X一种超短流程稀土取向硅钢及其制备方法
本发明属于冶金技术领域,涉及一种超短流程稀土取向硅钢及其制备方法,化学组成及其重量百分比为Si:2.0~4.5%,C:≤0.003%,Y:0.001~0.05%,Mn:0.15~0.35%,Al:0.03~0.04%,Cu:0~0.5%,S:0.025~0.04%,N:0.011~0.013%,其余为Fe和不可避免的杂质元素。制备工艺包括:钢水冶炼、薄带连铸、冷轧、再结晶退火。与常规生产方式相比,取消了连铸、粗轧、热连轧、常化和脱碳退火等工序,极大简化了生产流程。通过添加稀土元素钇,促进了抑制剂的析出,还显著细化了薄带连铸硅钢的凝固组织,提高组织均匀性,获得了均匀细小的等轴晶,优化了取向硅钢的性能。
CN202111375916.1一种超薄取向硅钢用的半有机绝缘涂料
本发明公开了一种超薄取向硅钢用的半有机绝缘涂料。该半有机绝缘涂料,按质量百分比计,包括以下组分:10~25%磷酸盐,1~10%含有环氧基的硅烷耦合剂,0.2~2.0%有机硅烷,1~10%铬酐,1.5~6%二氧化硅粒子,0.3~5%碱,余量为水;其中二氧化硅粒子的粒径为100~300nm。该半有机绝缘涂料应用于超薄取向硅钢表面时,既提高了涂层与基体的附着性,又保证了涂层的绝缘性和耐热性,涂层附着性为A级,叠片系数大于0.96,可耐900℃高温,并且涂层较薄(小于1μm)时,钢板的绝缘电阻大于30Ω·cm2/片,绝缘性能优异,可满足超薄取向硅钢的应用需求。

