钢厂
新钢1580取向硅钢宽度窄尺原因分析
取向硅钢因其高磁导率、低矫顽力和大电阻系数等特性,被广泛应用于大中型变压器和大型电动机铁芯的制造。因取向硅钢性能和成分控制严格,生产工艺复杂,故其产品代表了钢铁企业特殊钢生产的最高水平。本文介绍了新钢公司卷板厂1580热连轧线生产取向硅钢过程中出现的窄尺问题,研究了取向硅钢产品的特点,分析了热轧过程中的组织转变,并结合生产实际提出了改进措施。通过对加热炉钢坯加热模式、粗轧轧制策略、精轧轧制工艺、二级模型等方面的优化和改进,取向硅钢窄尺情况明显好转,提高了产品的成材率和市场口碑。 The oriented silicon steel is widely used in the iron core manufacture of large and mediumsized transformers and large motors because of its high permeability, low coercivity and large resistance coefficient. Due to the performance and composition control of oriented silicon steel is strict, the production process is complex,therefore, its products represent the highest level of special steel production in iron and steel enterprises. This paper introduces the problem of narrow gauge in the produ...
CN202022991858.2一种去角硅钢片铁芯加工用的吊装装置
本实用新型提供了一种去角硅钢片铁芯加工用的吊装装置,包括安装板,所述安装板下设有防护筒,所述防护筒包括左半筒和右半筒,所述安装板上设有移动组件,所述移动组件包括气缸,所述气缸连接有伸缩杆,所述伸缩杆另一端连接有安放框架;所述左半筒和右半筒底壁皆设为开口状且侧壁上设有连通槽,所述左半筒和右半筒上分别设有防护组件,所述防护组件包括异型板和连接盒,所述异型板底部连接有固定板,所述固定板和连接盒之间连接有挤压弹簧,所述挤压弹簧内部设有传动杆,所述左半筒和右半筒内部两侧分别设有防护板。本实用新型可以有效挂住硅钢片,不会挤压坏封胶,且具有防护措施。
初次再结晶退火工艺对3%Si取向硅钢组织和织构的影响
试验研究了0.3 mm取向硅钢冷轧板(/%:0.046C,3.07Si,0.09Mn,0.029P,0.004S,0.005A1)的退火温度(760~880℃7 min)和退火时间(820℃3~9 min)对该钢的晶粒尺寸,再结晶和织构的影响。结果表明,最佳初次再结晶退火工艺为820℃5 min,该钢的平均晶粒尺寸为14.20μm,完全再结晶率为92%,不利{111}<110>结构含量为3.16%,有利织构{111}<112>,{012}<001>和高斯织构含量分别0.40%,4.73%和2.46%。 The effect of annealing temperature(at 760 ~ 880 X.for 7 min) and time(at 820℃ for 3~9 min) on grain size,recrystallization rate and texture of 0.3 mm cold-rolled sheet of oriented silicon steel(/%:0.046C,3.07Si,0.09Mn,0.029P,0.004S,0.005Al) has been tested and studied.Results show that with optimum recrystallized annealing at 820℃ for 5 min,the silicon steel average grain size is 14.20 fun,the complete recrystaUization rate is 92%,the unfavourable-texture {111}< 110 > content in steel is ...
CN202120015915.5一种硅钢片模具产品的吸料装置
本实用新型提供一种硅钢片模具产品的吸料装置,包括固定架、电动伸缩杆、微型吸气泵、操作台、吸气机构以及放置机构,所述固定架上表面设有电动伸缩杆,所述固定架上表面设有微型吸气泵,所述微型吸气泵右端面设有吸气口,所述吸气口右端设有气管,所述电动伸缩杆底部设有吸气机构,所述吸气机构底部设有操作台,所述操作台上表面设有固定柱,所述固定柱前表面设有放置机构,与现有技术相比,本实用新型具有如下的有益效果:通过设置的橡胶套,代替手进行硅钢片的取料,通过设置固定杆,实现橡胶套的自动放料,更安全,通过设置的放置机构,实现硅钢片倾斜放置,方便进行硅钢片的拿取进行变压器装配。
CN202123207749.8硅钢卷放卷辅助装置
本实用新型公开了一种硅钢卷放卷辅助装置,包括支撑板、摆臂、气缸和连动杆,所述摆臂一端通过第一转轴枢接在支撑板上,所述连动杆的一端通过第二转轴枢接在摆臂的中部,另一端通过转轴与气缸的输出端连接,所述气缸的缸筒固定在支撑板上,所述摆臂远离支撑板的一端设置有承载座,所述承载座上开设有弧形槽口,所述槽口处设置有滚动组件;所述滚动组件包括设置在承载座上的第一支撑架和可转动设置在第一支撑架上的滚柱。其可有效防止硅钢卷从辊筒上掉落,保证了生产的安全性。
取向硅钢生产工艺技术分析和发展趋势
介绍了普通取向硅钢(CGO)和高磁感取向硅钢(Hi-B)铸坯高温加热两次冷轧、一次冷轧和铸坯低温加热两次冷轧、一次冷轧法4种成熟生产工艺的主要技术参数,取向硅钢理论研究(Goss晶核和抑制剂)和生产技术现状。取向钢的发展趋势为:提高(110)[001]晶粒取向度,降低取向硅钢铁损,发展铸坯低温加热(≤1 300℃)和薄板坯连铸连轧流程生产取向硅钢工艺。 Main technology parameters of four developed process:cast bloom higher temperature heating-double cold rolling or single cold rolling,lower temperature heating-double cold rolling or single rolling process for production of common grain oriented silicon steel(CGO) and high magnetic induction grain oriented silicon steel(Hi-B),theory research on grain oriented steel(Goss nucleus and inhibitor) and present situation of process are summarized in this paper.The development trend of grain oriented si...
退火工艺对3.15%Si冷轧无取向硅钢组织和织构的影响
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...
无取向硅钢钙处理前后夹杂物的行为研究
研究了无取向硅钢钙处理前后夹杂物的行为,重点考察了钙处理前后夹杂物的成分、类型、形貌和尺寸研究的变化情况,为实际生产中无取向硅钢的钙处理提供理论指导。试验发现:钙处理前夹杂物主要以Al2O3、Al2O3-MgO为主,且在夹杂物表面有AlN析出,钙处理后夹杂物以Al2O3-MgO-CaS-CaO系复合夹杂物为主,还含有少量的SiO2或AlN;钙处理前后,夹杂物形貌由多边形或不规则形逐渐向球形或近似球形转变,并且夹杂物尺寸不断增大;钙处理前后,含钙夹杂物的比例发生突变,由10%增大到74.5%,且随着钙处理时间的延长,含钙夹杂物比例下降,表明钙处理使夹杂物变性后易聚集长大并上浮去除。 Behavior of inclusions before and after calcium treatment in non-oriented silicon steel was researched by investigating changes of compositions,types,shapes and sizes of inclusions before and after calcium treatment,for the purpose of providing theoretical guidance for calcium treatment of non-oriented silicon steel in actual situation. Results indicated that Al2O3 and Al2O3-MgO were main types of inclusions before calcium treatment,sometimes AlN maybe precipitate in the outer of inclusions. Al2...
双辊薄带连铸3.98%Si-0.71%Al无取向硅钢的组织、织构和磁性能
采用双辊薄带连铸工艺制备了厚度为2.4mm的3.98%Si-0.71%Al无取向硅钢带,经常化、冷轧、不同温度退火后,对其显微组织、析出物、织构和磁性能进行了检测分析。结果表明:随着退火温度的提高,退火板晶粒尺寸增大,组织均匀性提高;退火板析出物主要是AlN和MnS与AlN复合析出物,尺寸较粗大,达0.5~2.5μm;退火板织构沿厚度方向变化明显,表层和1/2层存在较强的{100}织构,1/2层还存在较强的{111}织构,1/4层主要是{112}织构;随退火温度的升高相应的铁损和磁感应强度均降低。 Using twin roll thin strip continuous casting technique,the 3.98%Si-0.71%Al no-oriented silicon steel strip in thickness of 2.4mm was produced.The microstructure,precipitates,texture,and magnetic properties of the sheet after normalizing,cold rolling and annealing at different temperatures were studied.The results show that with annealing temperature increase,the grain size and uniformity of annealed sheet increased.The main precipitates in coarse size of 0.5-2.5μm in annealed sheet were AlN and...
CN202110008865.2一种通过粉末烧结制备高磁性能含磷硅钢薄片的方法
一种通过粉末烧结制备高磁性能含磷硅钢薄片的方法,属于粉末冶金技术领域。本发明通过真空熔炼气雾化制备成分范围为Fe‑(3‑6.5)wt.%Si‑(0.05‑1)wt.%P的合金粉,将其放置在陶瓷坩埚中均匀振实并放置重物压住,随后进行高温烧结使其冶金结合,再经热轧、冷轧、退火等处理后,得到具有优异性能的含磷硅钢薄片。本发明在硅钢材料体系中加入P元素,能够有效降低铁损、优化磁性能并促进活化烧结;采用气雾化粉末能够很好地保证产品的少夹杂和纯净度;在低熔点P元素及粉末压烧的协同作用下解决了球形气雾化粉末难以成形的缺陷,并避免了需添加成形剂导致的工艺复杂性及后续的脱胶残碳问题,有效缩短制备工艺流程,具有操作简单、生产效率高、工艺流程短、性能优异等优点。
CN202111181650.7一种CSP流程生产高效冷轧无取向电工钢及生产方法
本发明提供了一种CSP流程生产高效冷轧无取向电工钢及生产方法,成分:C≤0.0030%、Si 1.00‑1.70%、Als≤0.0050%、Mn 0.10‑0.30%、Sn0.01‑0.3%、P≤0.050%、S≤0.0080%、N≤0.0030%、Nb≤0.0030%、V≤0.0030%、Ti≤0.0030%,其余为Fe以及不可避免的杂质。与现有技术相比,本发明CSP流程生产高效冷轧无取向电工钢的方法,通过控制钢中的化学成分,并采用合适的生产工艺,实现了表面质量优良,低铁损、高磁感、低制造成本且生产高效。

