钢厂
水氯镁石制备硅钢级氧化镁
以水氯镁石为原料,采用氨法沉镁-煅烧-添加剂的方法制备硅钢级氧化镁。考察了反应温度、反应pH值、陈化时间对中间体氢氧化镁纯度及转化率的影响;研究了煅烧温度和煅烧时间对氧化镁水化率的影响及添加剂的量对氧化镁悬浮性能的影响。控制实验条件为:反应温度55℃,pH值为9.5,陈化时间2h,煅烧温度1050℃,煅烧时间2h,添加剂量为0.8%,制得氧化镁的纯度为98.99%、水化率为2.92%、悬浮性能为3mm/h,达到硅钢级氧化镁的要求。 Using bischofite as raw material,the preparation of magnesium oxide with silico-steel grade was studied.The effects of reaction temperature,reaction pH value and aging time on the intermediate magnesium hydroxide purity and conversion rate were studied.Calcinations temperature,calcinations time relationship to the hydration rate of MgO and amount of additive to the suspension performance of MgO were investigated.The results indicated that the optimum technological conditions were as follows:reac...
CN202111560157.6一种取向硅钢高温连续退火炉隔离装置
本发明涉及取向硅钢高温连续退火炉领域,尤其涉及一种取向硅钢高温连续退火炉隔离装置,包括安装在炉壳上的隔离炉门及设置在隔离炉门四周的密封井;隔离炉门顶部两侧安装有水冷却装置;水冷却装置上部设有隔离炉门动力牵引装置;密封井包括固定密封井和伸缩密封井,伸缩密封井位于固定密封井内部并与固定密封井滑动连接,伸缩密封井与固定密封井端部连接处设有密封装置。本发明可以确保隔离炉门升降过程中实现无缝全密封状态,提高密封效果,且采用伸缩密封井实际降低了密封井的高度,间接降低了水冷却装置连接管道上升至最高点的净空标高,与传统固定式密封井高度相比可以降低高度50%~80%,从而降低厂房净空标高,节省厂房基建投资。
CN202111195012.0高硅无取向电工钢及其生产方法
本发明揭示了一种高硅无取向电工钢及其生产方法。该方法包括:1)钢水冶炼并连铸成坯;2)加热并保温,之后热轧得到热轧卷板,其中粗轧出口温度940±20℃,精轧终轧温度840±20℃,卷取温度650±20℃;3)常化,常化温度((732~742)+3000[Si])℃,常化时长4min~5min;4)常化后直接进行冷轧,而后连续退火和涂层,退火温度940℃~990℃且退火时长1.5min~3min;5)涂层处理后的钢板加工成型,而后进行去应力退火,退火温度为((761~766)+3000[Si])℃。如此,在保证磁性能的同时,解决了冷轧难度大的问题。
CN202121910597.5硅钢冲压片质量筛查分拣装置
本实用新型涉及一种硅钢冲压片质量筛查分拣装置,包括:第一组传送带机构,第一摄像头,设置于第一组传送带机构的上方,用于对硅钢冲压片的第一表面的残损进行检测;第一机械手机构,设置于第一组传送带机构的上方且位于所述第一摄像头的后方;翻转装置,设置第一组传送带机构的后方,用于对第一组传送带机构传输的初检良品进行翻面并将翻面后的初检良品传输给第二组传送带机构;第二组传送带机构,设置于翻转装置的后方;第二摄像头,设置于第二组传送带机构的上方,用于对硅钢冲压片的第二表面的残损进行检测;第二机械手机构,设置于第二组传送带机构的上方且位于第二摄像头的后方。本实用新型可高效的检测每一个产品的外观质量。
本钢无取向硅钢热轧生产工艺路线的实践
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.
CN202111182553.X一种多组分{100}织构无取向电工钢的制备方法
本发明涉及冶金技术领域,具体涉及一种多组分{100}织构无取向电工钢的制备方法。本发明通过控制薄带连铸参数制备1.5~2.5mm厚的无取向电工钢铸带,直接冷轧至厚度为0.35~0.50mm后,先进行预回复退火,再进行成品退火,此过程中控制退火温度、时间以及升降温速率。本发明所制备的无取向电工钢具有多组分{100}织构,包括{100}<001>、{100}<012>和{100}<011>,{100}织构组分体积分数达到25~39%,其轧向磁感值1.71~1.78T,横向磁感值1.70~1.76T,板面45°方向磁感值达到1.65~1.67T。本发明通过优化退火工艺,利用{100}变形组织的强回复与再结晶协同作用,从而显著增强{100}退火织构,方法简单有效。
常化对含硅1.6%的无取向电工钢组织和织构的影响
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...
本钢高硬度无取向电工钢50BW600的研发
目前随着电工钢用户冲压设备的升级,冲压速度逐步提高,对电工钢产品的硬度和强度指标提出了更高的要求。与普通硬度级别的无取向硅钢相比,高硬度50BW600的Hv硬度提高15~20,达到125以上,同时对电磁性能指标也有较高要求。本钢通过化学成份和热轧及冷轧连退生产工艺的设计,经过小批量生产试验,满足用户要求。通过对工艺的严格控制,在大批量生产过程中,保证了产品的力学性能和电磁性的检验合格率。 Currently with upgrading of stamping equipment of silicon steel user, gradually increasing of stamping speed, propose higher demand for hardness and strength of silicon steel. Compared with conventional 50BW600, high hardness 50BW600 have higher hardness, reach greater than 125Hv. Through design of chemical composition with hot mill and annealing, production test of small quantities, stamping performance meet user request.
硅钢级氧化镁颗粒度检测工艺的研究
通过对激光粒度分析仪测量硅钢级氧化镁(MgO)的分析条件进行优化,如分散介质、分散方式、样品预处理、仪器暗淡度等,探讨了硅钢级MgO粒度范围测量重现性较好的试验方法,满足硅钢生产过程控制对MgO粒度的要求。 The analysis condition of the laser particle size analyzer on grain oriented silicon-steel grade magnesium oxide is optimized,including the dispersion medium,dispersion methods,sample preparation,and instrument obscuration,etc.Therefore,particle size measurement with good reproducibility for silicon-steel magnesium oxide is discussed,which may meet the requirement of MgO particle size for silicon-steel process control.
退火工艺对普通取向硅钢初次再结晶组织的影响
为研究退火工艺对普通取向硅钢初次再结晶组织的影响,对经不同温度、保温时间和升温速率退火后的材料组织进行了分析。结果表明:在等温退火条件下,加热至600℃时开始发生初次再结晶,800℃以上初次再结晶组织发展完善;而在最终冷轧板直接进行最终高温退火的情况下,加热温度在500~700℃时,将升温速率提高到80℃/h,初次再结晶组织更易于发展完善。 To investigate the influence of annealing process on the recrystallization of common grain oriented silicon steel,microstructures of sheets annealed at different temperature,soaking time and heating rate are observed.Results show that under the condition of isothermal annealing,recrystallization begins at 600℃ and fully develops above 800℃,while in the case that the final cold rolled sheets are directly thrown to final high temperature annealing,recrystallization is likely to develop with the he...
提高热轧硅钢凸度精度的工艺措施
以太钢热连轧厂的硅钢为研究对象,利用凸度仪测量热轧带钢出口凸度值,采用矩阵和失效模式的分析方法了解影响带钢凸度变化的主次因素。研究结果表明:通过有效控制轧制过程中的加热温度、时间及采用合理的辊型,硅钢凸度精度提高了4.34%左右。 In this paper,we take the hot-rolled silicon steelsheet of Taigang as the research symbol,exit profile was measured by convex instrument,the primary and secondary factors that affect the strip profile were measured by using matrix and failure mode analysis methed.The results indicate that convexity accuracy has significantly improved by nearly 4.34% through the effective control of the heating temperature,heating time and the use of correct roller type in the process of hot rolling.