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采用硅钢自动测量装置及X射线衍射仪检测出样品在实验前后的磁性能参数和织构强度.结果表明:较低的电压、9 Hz、较长的处理时间以及退火温度为650℃有利于增高铁损降低比例;较低的电压、较高的频率以及退火温度为650℃有利于增加磁感应强度增高比例.最佳的提高磁性能的实验参数是:频率为9 Hz,电压为500 V,处理时间为6 min,退火温度为650℃.通过织构分析可以验证:取向硅钢磁感应强度的变化取决于{110}<001>晶粒取向度值,而{110}<001>取向度值可看成是一个反映总体平均偏离角大小情况的综合值. An automatic measurement system for silicon steel and an X-ray diffraction meter were used for measuring the magnetic property parameters and texture of ex-processed samples and processed samples.It is shown that under the condition of a lower voltage,9Hz,a longer processed time and an annealing temperature of 650℃,the decrease rate of iron loss can be increased;a lower voltage,a higher frequency and an annealing temperature of 650℃ are in favor of improving the increase rate of magnetic inducti... 
2011-08-28 166 5.8

本发明涉及含Cu无取向硅钢的生产方法,转炉炼钢,真空处理过后连铸成坯;铸坯化学成分:1.0≤Si/Cu≤3.0,3.0≤Si+Cu≤5.5%,S≤0.0015%,(Mn+Cu)/S≥3000,其他为Fe,Als,P以及不可避免的杂质元素;对铸坯进行粗轧;粗轧后的中间坯采用热卷机进行强制卷取,开卷后中间坯进入保温箱,控制保温箱内冷却速度≤5℃/s;进入保温箱的中间坯温度T1满足:1000‑(Si+Cu)×103≤T1≤1100‑(Si+Cu)×103;高压除鳞,精轧,层流冷却,卷取;连续酸洗;冷轧到目标厚度,成品退火,涂层;成品卷进行时效处理。成品卷具有较低的中高频铁损,高磁感和高屈服强度。
2021-07-13 225 6.8

试验研究了退火温度(850~950℃)和时间(5~18 min)对2.3 mm热轧硅钢板(/%:0.036C,3.15Si,0.21Mn,0.005P,0.007S,0.032A1)6道次轧制的0.35 mm冷轧板组织和织构的影响。结果表明,退火温度越高,晶粒平均尺寸越大,900℃5 min退火时平均晶粒尺寸41.39μm,试样织构主要集中在γ取向线上的{111}<112>织构组分和{111}<110>织构组分;900℃18 min退火时平均晶粒尺寸为48.08μm,试样的{111}面织构和{112}面织构密度都明显减弱,{001}面织构增强,磁性能较优。 The effect of annealing temperature(850 ~950 ℃) and holding time(5 ~ 18 min) on structure and texture of 0.35 mm sheet by 6 passes cold-rolling from 2.3 mm hot-rolled plate of silicon steel(/%:0.036 C,3.15 Si,0.21 Mn,0.005 P,0.007 S,0.032A1) has been tested and studied.Results show that the higher the annealing temperature the coarser the average grain size;As annealing at 900 ℃ for 5 min the average grain size of steel sheet is 41.39 μm,and the texture in sample is mainly concentrated in y orie... 
2014-06-28 182 5.8

目的提高硅钢的磁性能。方法采用多弧离子镀技术,在普通取向硅钢薄板两面沉积高硅FeSi合金层制得高硅梯度硅钢,并进行热处理,观察其显微组织,测量磁性能。结果退火态高硅梯度硅钢表面的高硅FeSi合金层与基底结合紧密,均匀致密。高硅梯度硅钢中硅含量呈梯度分布,最表层硅质量分数为11.0%,随着深度增加,硅含量逐渐降低,在距表面20μm处硅质量分数仍能达到6.5%。沉积态高硅梯度硅钢的电阻率ρ、低频铁损P10/50、高频铁损P10/1k及磁感应强度B8分别为68.6μΩ·cm,0.82W/kg,83.3 W/kg和1.73 T,退火后分别为63.1μΩ·cm,0.44 W/kg,54.38 W/kg和1.89 T。结论由于表层高硅FeSi合金层的存在,梯度高硅钢的低频磁学性能良好,但高频损耗需进一步改善。 Objective To improve the magnetic properties of silicon steel. Methods FeSi alloy coatings with high-silicon content were deposited on the surface of common grain-oriented silicon steel by cathodic arc plasma evaporation,and then a kind of high silicon gradient steel was prepared. The morphologies,content and magnetic properties of the samples were tested. Results FeSi alloy coatings were featured with compact microstructures and excellent adhesive quality with the substrates. The silicon conten... 
2014-03-28 197 5.8

冷轧无取向硅钢是高技术含量、高附加值产品,工艺复杂,生产周期长,过程控制难度大,被誉为钢铁产品中的\"工艺品\"。热轧生产工艺又是无取向硅钢生产的重中之重,直接决定了硅钢的铁损和电磁性等多项指标。 Cold rolled non-oriented silicon steel is high technology content 、high added value product. Its process is complex, its production cycle is of length, and its process control is difficult, which is known as the iron and steel products \" Arts and crafts\". Hot rolling production process is the top priority of non-oriented silicon steel, which directly determines iron loss of the silicon steel and electromagnetic property,as well as other many index. 
2014-02-28 199 5.8

本发明公开了一种可替代高磁感取向硅钢常化退火的热处理方法。该方法包括对所述取向硅钢的铸坯依次进行热轧、酸洗和冷轧,省去了常化酸洗工序中的常化退火工艺。所述热轧工序包括加热、粗轧和精轧过程,所述精轧过程中,热轧板离开精轧机最后一个机架时的温度达到1000~1050℃;或者,所述酸洗工序后,对热轧板进行通电加热至1000~1050℃;然后,对热轧板采用短时通电加热控制冷却速度,通电加热2‑5s使热轧板的温度降至940~960℃。采用该热处理方法得到高磁感取向硅钢常化板等效织构,满足生产高磁感取向硅钢的织构组分条件,其简化了高磁感取向硅钢的制造工艺,降低了生产成本和能耗,提高了生产效率。
2021-01-14 167 6.8

本实用新型公开了一种用于硅钢片叠装的工装,包括安装底座,所述安装底座上设置有限位装置,所述限位装置包括多个水平限位柱和多个竖直限位柱;各个水平限位柱之间的缝隙的尺寸等于其对应放置的硅钢片的宽度,各个竖直限位柱与安装底座的底边之间的距离等于其对应放置的硅钢片的总长度;所述各个竖直限位柱设置在各个水平限位柱之间的缝隙所正对的位置;采用多个水平限位柱和多个竖直限位柱进行水平和竖直方向上均对硅钢片进行定位;使用此工装叠装出来的成品,长短一致,侧面相当整齐;本实用新型,结构简单,操作方便。
2021-02-02 174 6.8

本实用新型提供一种定子铁心硅钢片固定结构,包括硅钢片堆叠结构、扣片,所述硅钢片堆叠结构由多个硅钢片层层堆叠而成,所述硅钢片沿边缘处设有多个凹槽,多个硅钢片堆叠后,其凹槽形成一条条通槽,所述扣片扣在通槽上,其扣片的两端设有弯折面将硅钢片堆叠结构的两端卡住,利用扣片的方式进行硅钢片固定,减少硅钢片导通现象,达到减少涡流损失的目的,扣片有极易更换的方便性,可轻易改变硅钢叠片的厚度,只需要更换扣片长度即可。
2021-06-11 146 6.8

采用非水溶液电解方法来提取无取向硅钢中夹杂物。通过扫描电镜(SEM)观察结果表明:无取向硅钢中主要夹杂物为六棱柱的AlN、不规则硅酸盐及球状的铁的硫化物和氧化物,其中AlN夹杂尺寸在1~5μm,数量较多,还有部分AlN的复合夹杂。进一步研究了AlN复合夹杂形成机理,采用了Thermo-Calc热力学计算软件计算出该钢样中AlN、MnS析出温度分别为1 240℃、1 200℃,而Al2O3析出温度大于1 800℃,从而为AlN复合夹杂形成机理提供了一个理论依据。 Extracting inclusions from non-oriented silicon steel in non-aqueous electrolysis is a nondestructive method to gain inclusions.Scanning electron microscopy shows that the main inclusions in non-oriented silicon steel were hexagonal AlN,which was of large quantity,irregular silicate,spherical iron sulfide and oxide.The size of AlN inclusions ranged from 1to 5μm,and there were some duplex inclusions of AlN.To further study the formation mechanism of AlN duplex inclusions,Thermo-Calc thermodynamic... 
2014-01-28 182 5.8

本实用新型公开了一种硅钢炉底辊套管生产用沥青浸煮装置,包括机身底座和支撑腿,所述机身底座顶部表面中间位置固定安装有浸煮机构,所述浸煮机构两侧内部中间位置固定安装有电热丝。本实用新型通过,采用了生产框、搅拌桨,在实际使用过程中,代加工工件可以放置到生产框内部,然后进行沥青浸煮作业,通过搅拌桨可以对沥青进行持续不断的搅拌,使得沥青与工件的接触面积增大,提高浸煮效果,当浸煮完成之后,通过液压缸将生产框向上移动,使得生产框两侧卡接在电动伸缩套内部,然后通过振动电机运转带动生产框进行左右震动,使得工件表面残留的沥青得以掉落,提高工件表面的整洁度,便于后续使用,具有浸煮效果好、沥青无残留的优点。
2021-10-13 154 6.8

采用双辊薄带连铸技术试制了3.98%Si-0.71%Al无取向硅钢铸带,研究了二次冷轧法对硅钢组织和磁性能的影响。结果表明:硅钢铸带显微组织为等轴晶组织,铸带再结晶较完全,常化对铸带显微组织影响较小。二次冷轧工艺和一次冷轧工艺下,最终退火后成品显微组织为等轴晶组织,二次冷轧法最终退火后的晶粒尺寸小于一次冷轧法。二次冷轧法能够提高成品磁性能. Effect of double cold rolling on magnetic properties and microstructure of 3.98%Si-0.71%Al non-oriented silicon Steel Sheets cast by twin-roll thin strip casting process were investigated.The results show that the structure of the thin strip is equiaxed crystal,the recrystallization is complete and normalizing has lesser effect on microstructure.Using both cold rolled and double cold rolled process,the microstructure is equiaxed grain after final annealing.The average grain size of annealed shee... 
2013-10-28 179 5.8

本发明涉及一种百吨级超低氮硅钢大钢锭的制造方法,涉及硅钢的制造技术领域,包括以下步骤:取优质废钢、生铁配料作为炉料,电炉冶炼,电炉冶炼,LF精炼、两次VD脱气,精炼包真空吹氩直注的工艺方法。其优点在于,本发明提供的百吨级超低氮硅钢大钢锭的制造方法,采用本方法制造的百吨级大型超低氮硅钢钢锭,成分全部满足规范要求,其中氮含量控制在25ppm以下,氧含量控制在10ppm以下,氢含量控制在0.7ppm以下,硫含量控制0.002%以下,磷含量控制0.006%以下,铝含量控制0.020%以下。
2021-12-08 177 6.8

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