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针对目前大部分无取向电工钢处理液为含铬处理液、且需在较高温度下固化的情况,在分析成膜物质性质的基础上,试验研究了一种可低温快速固化的电工钢环保绝缘处理液,研究了其涂装工艺,并测定了涂层的附着性、绝缘性、耐热性、耐蚀性等性能。试验结果表明:该处理液可在150~250℃下快速烘干固化,涂层表面光滑且致密均匀,性能优良,可满足中小电机的使用要求。 At present,most of the insulating fluid for non-oriented electrical steel contains chromium,and should be cured at high temperature.On the basis of analyzing the characteristics of the film-forming substance,a kind of eco-friendly insulating fluid with lower curing temperature for non-oriented electrical steel sheet was developed in the experiments.Then its coating process was studied,and the adhesiveness,insulativity,heat resistance,corrosion resistance and other properties of the coating was m... 
2013-04-28 143 5.8

为了解决目前冷轧产线硅钢现有切边技术存在的微裂纹、应力、毛刺和边浪等问题,采用光纤激光器进行了高速切割实验,对激光功率、切割速度、激光模式等影响因素进行了分析,同时对高速切割时的切割前沿形状进行了研究。结果表明,切割最高速度随着功率的增加而增加;随着离焦量的增加,切割质量下降,挂渣增多,切缝宽度增加,切割深度变浅;基模激光器能量密度更高,所以薄板切割时的切割速度高于多模激光器;切割前沿随着切割速度的增加会变得平缓,速度足够大时,切割前沿甚至接近与切割方向平行,此时切缝下部存在挂渣现象。 In order to solve the problems such as micro crack,stress,burr,edge waves and so on,existing in cold rolling production line of silicon steel side cutting,experimentsof high speed laser cutting using fiber laser were carried out.Laser power,cutting speed,laser mode and other factors were analyzed,at the same time,cutting front geometries were studied.The results show that the maximum speed increases with power.And the increases of defocus result in poor quality,wider kerf and shallowerkerf.Energ... 
2013-04-28 120 5.8

为了提升新能源车用驱动电机的功率密度,各大电机厂商都在不断地提升电机转速,随之而来的问题就是电机的铁耗也在不断增高,如何降低电机铁耗成为了电机厂商必须要解决的难题。本文讨论了电机铁耗的组成部分及影响因素,并对1台8极48槽的永磁同步电机分别使用3种不同厚度的材料进行仿真,对比其效率及铁耗分布,推导出驱动电机中硅钢厚度、铁耗及成本的关系,最后对驱动电机选材提出建议。 In order to increase the power density of traction motor for new energy vehicles,major motor manufacturers have been constantly increasing the motor speed.The following problem that manufacturers have to solve is how to reduce the increasing iron loss when the motor speed is increased.The components and influencing factors of motors’ iron loss were discussed in this paper,and an 8-pole 48-slot permanent magnet synchronous motor using three different thickness materials was simulated.To compare i... 
2022-01-28 179 5.8

本发明涉及一种含磷无铝高效无取向硅钢生产方法,生产方法取消常化工艺,具体步骤如下:1)将钢水冶炼至目标成分后,浇铸成坯;2)板坯热装,热装温度≥500℃,热轧板坯加热炉均热段板坯温度1150~1200℃;终轧温度控制在860~930℃,卷取温度700~800℃3)酸洗后冷轧,控制冷轧整体压下率80%以内,至成品厚度;4)连续退火炉快速加热段温度设定1050~1180℃,增加有利织构组织形核,均热段温度设定830~950℃,全氮气干气氛保护,退火工艺速度120~150m/min,满足晶粒度8~4级。本发明不需进行热轧卷常化处理,降低了制造成本。
2021-08-19 171 6.8

为满足用户对无取向电工钢中硫含量的要求,采用CaO-CaF2复合渣系为脱硫剂,利用RH投入法对无取向电工钢进行深脱硫试验。试验结果表明,RH精炼渣成分控制在w CaO43%~51%、w Al2O325%~31%、w MgO4%~6%、w SiO29%~12%、w(FeO+MnO)3%~6%,在脱硫剂加入量为6~8 kg/t时,钢中平均硫含量从32×10-6降低到18×10-6,RH平均脱硫率为43.3%,最高达47.1%。利用KTH模型计算精炼终渣平均硫容量为0.003 1,RH精炼结束时渣-钢间实际平均硫分配比从14增加到52。 In order to satisfy the requirements of consumers on sulfur content in non-oriented electrical steel,taking( CaO-CaF 2) based flux as desulfurizer,industrial experiments on deep desulphurization of non-oriented electrical steel were carried out during RH process. The results show that as the compositions of refining slag are appropriately controlled with w CaO of 43% ~ 51%,w Al2O3 of 25% ~ 31%,w MgO of 4% ~ 6%,w SiO2 of 9% ~ 12%,and w( FeO + MnO) of 3% ~ 6%,and the desulfurizer added are at 6 ~ ... 
2013-06-28 142 5.8

通过热力学计算及实验室研究,对钙处理前后50W600无取向硅钢退火冷轧板中夹杂物的类型、数量及尺寸进行了系统分析。结果表明,50W600无取向硅钢经钙处理后(w(Ca)=0.002 6%),钙在1 600℃的钢液中主要以固态的CaO·2Al2O3、CaO·6Al2O3及溶解钙的形式存在。在钢液的凝固过程中,钢中的溶解钙和硫反应生成了CaS和CaS-MnS复合夹杂,有效抑制了MnS的弥散析出,减少了钢中微细夹杂物的数量。同时钙处理促进了钢中微细夹杂物的聚合长大,导致显微夹杂物的数量增加。 Based on thermodynamic calculation and laboratory experiment,the type,quantity and size of inclusions in annealed cold-rolled steel sheets of 50W600 non-oriented silicon steel before and after calcium treatment were systematically studied.Results showed that after calcium treatment(w(Ca) = 0.002 6%),calcium was mainly in the form of CaO·2Al2O3,CaO·6Al2O3 and dissolved calcium in steel at 1 600 ℃.Dissolved calcium could combine with sulfur to form CaS inclusions and compound CaS-MnS inclusions du... 
2014-01-28 153 5.8

以能量平衡和辐射换热理论为基础,通过合理假定,建立了硅钢无氧化加热炉数学模型。采用数值计算的方法,通过自编程序,完成对带钢加热过程温度场的仿真。结果显示:数学模型能够反映带钢在无氧化炉内的加热过程,其升温曲线能够与工艺曲线相吻合;现行炉温分布并非最优,数学模型能够为炉温分布的优化、炉段的设计提供理论依据。 Mathematical model of NOF Section of Continuous Annealing Furnace is established based on energy balance and radiation heat exchange. The temperature field of steel is simulated by mathematical computation. The simulating results show that the mathematical model can reflect the heating process of silicon steel in NOF section, and the heat-up curve is coincide with the processing curve. From the results,it is known that the current furnace temperature gradient is not the best, and the mathematica... 
2013-06-28 172 5.8

本实用新型涉及变压器技术领域,具体为一种变压器铁芯的硅钢片加工装置,包括工作台,工作台的顶端靠两侧的位置均开设有滑槽,工作台的底端内壁靠两侧的位置均固定安装有两组伸缩杆,两组伸缩杆的顶端均与滑板的底端外表面相固定,滑板的顶端靠两侧的位置均贴合有滑块,两组滑块的顶端均固定安装有螺纹套,两组螺纹套的内部均与双向螺纹杆的外表面相活动螺接,双向螺纹杆的一端固定安装有摇把,双向螺纹杆的外表面靠中间的位置设置有限位块,摇把的顶端固定安装有固定块。两组弧形板和若干组凸块的设置可对硅钢片进行实时校准的作用,并使得叠加的硅钢片始终保持在同一垂直水平线上从而方便后续操作。
2020-12-26 145 6.8

本实用新型提出一种EI型硅钢片,所述EI型硅钢片呈长方形,其包括两个E形片和两个I形片,所述两个E形片开口相对且对称设置,所述两个I形片分别连接于两个E形片相接形成的两个空挡内,所述长方形的长度A为120mm,宽度B为88mm;其中,E形片的高度C为60mm,中间舌部宽度D为29.5mm,舌部高度E为44mm,其上两侧边柱宽度F为13.25mm;I形片宽度G为16mm,长度H为88mm。本实用新型采用两个E形片和两个I形片对称设置,在冲压时充分利用材料,不会造成多余废料,且其与现有EI90型硅钢片相比,其面积为EI90型硅钢片面积的97.78%,即硅钢材料重量也为EI90的97.78%,减少了硅钢用量。
2021-09-24 164 6.8

本实用新型涉及硅钢生产设备技术领域,具体公开了硅钢冷轧用厚壁套筒,包括外筒和内筒,所述外筒与内筒之间固定有若干连接板,所述外筒上开设有插缝槽,所述外筒的内壁上设有靠近插缝槽设置的限位件,所述限位件包括锁止板和弹性件,弹性件一端固定在外筒的内壁上,另一端固定在锁止板的顶部,所述锁止板上设有朝向插缝槽的斜面。本专利中通过外筒与内筒设置,既提高了整个套筒的厚度,使其能够承受硅钢带卷绕时的压力,同时也减少因提高套筒厚度使得套筒的重量增加的问题,这样设置整个套筒的质量较轻。
2020-12-29 134 6.8

本发明属于钢铁冶炼技术领域,涉及一种超低铝极低硫无取向硅钢的冶炼方法,包括如下步骤:KR铁水预处理→BOF复吹转炉冶炼→RH真空炉精炼→LF精炼→连铸;采用本发明中的冶炼方法,铁水脱后硫可以适当放宽,转炉出钢温度可以适当降低,RH工序无需采用OB法升温,也无需RH顶枪喷粉或者加入合成渣脱硫,LF只需实现微调成分、调节温度、平衡炉机节奏以及适当脱硫。此种冶炼方法充分利用并发挥了各工序优势,避免了在某一工序完成所有冶炼任务,一旦发生事故,容易造成生产中断,产品质量难以保证。
2021-09-24 175 6.8

本发明公开了一种基于硅钢服役特性的立体卷铁心单框损耗测量方法及系统,根据硅钢片在立体卷铁心中的服役特性,获得测量铁心单框所需的非正弦励磁电压波形,通过所述立体卷铁心的心柱绕组电压和单框绕组电压之间的关系,确定所述被测立体卷铁心单框所需的电压有效值,再通过计算机、数据采集卡D/A转换器、功率放大器、隔离变压器和示波器,直接在所述立体卷铁心单框上加载励磁电压,利用功率表测量立体卷铁心单框损耗。本发明利用硅钢的服役特性,获得测量立体卷铁心单框所需的非正弦励磁电压波形和电压有效值,再将励磁电压直接加载到被测立体卷铁心单框,测量立体卷单框铁心损耗。
2021-08-31 186 6.8

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