钢厂
温度及扩散时间对CVD法制备高硅钢的影响
采用CVD法制备6.5%Si高硅钢,介绍了具体的制备工艺过程,研究了温度对渗硅速率和试样质量减轻的影响,同时分析了扩散时间对高硅钢中硅分布的影响。结果表明:在CVD反应过程中,反应温度高于1050℃将大大提高渗硅速率,但当温度大于1200℃后,渗硅速率趋于稳定;渗硅后,试样会减轻、减薄,随着温度升高,试样质量减轻的速率逐渐增大,在1200℃左右趋于稳定;扩散时间越长,硅分布越均匀,结合制备效率进行考虑,满足Δw表-中/b≤5的时间为适宜的扩散时间。 6.5%Si high silicon steel was manufactured by using CVD method and the process was introduced,the influence of temperature on the siliconizing rate and quality reducing rate,diffusion time on silicon distribution were investigated.Results as follows: the siliconizing rate will increase quickly when the temperature is higher than 1050 ℃,but the siliconizing rate will become steadily as the temperature up to 1200 ℃;The quality reducing rate will increase with the elevating of temperature and the r...
硅钢高温退火环形炉炉壳制作与安装技术
硅钢高温退火环形炉炉壳制作与安装精度要求较高,施工时通过对壳体原材料矫正、炉壳板拼焊、下料切割、型钢骨架组装及焊接、骨架及炉壳板矫正、骨架与炉壳板组装及焊接、炉壳矫正、零配件装置、定位钻孔、报验检查、出厂、内侧板安装、外侧板安装、顶板安装等环节的工艺技术控制,能保质高效地完成硅钢高温退火环形炉炉壳制作与安装,为以后同类工程的施工提供可借鉴经验。 The required precision of manufacture and installation technique of the silicon steel high temperature annealing annular-furnace shell is high.During construction , manufacture and installation of the silicon steel high temperature annealing annular-furnace shell could be finished high efficiently through correcting the raw materials of shell , furnace shell plate welding , material cutting , steel frame assembly and welding , skeleton and shell plate correction , skeleton and furnace shell asse...
热处理工艺对含Mn高硅钢热轧带的组织及硬度的影响
研究了热处理工艺(退火温度、保温时间、冷却方式)对含Mn的Fe-6.5wt%Si高硅钢热轧带的显微组织及硬度的影响。结果表明,退火温度对Fe-6.5wt%Si合金的组织和显微硬度均有较大影响,随退火温度升高,平均晶粒尺寸和显微硬度均明显增大。小于1 h退火时,晶粒长大缓慢,而长时间(>1 h)退火时,一些次表层晶粒将发生异常长大。水冷组织比空冷组织略细小,但水冷显著降低了显微硬度。Mn含量提高能抑制850℃退火时晶粒的长大,并且促进退火后高硅钢的软化。 The influences of heat treatment process(annealing temperature,heating time,cooling methods) on the microstructure and microhardness of Fe-6.5wt%Si high silicon steel containing manganese for hot rolled strip were studied.The results show that the annealing temperature has a great effect on the microstructure and microhardness of Fe-6.5wt%Si alloy,and as the annealing temperature increases,the average grain sizes and microhardness will significantly increase.When annealing time for less than 1 h...
脉冲磁场退火对取向硅钢磁性能的影响
通过对取向硅钢进行脉冲磁场退火实验,发现在相同的退火时间(6.0 min)内,低于1 T的脉冲磁场可以在一定程度上提高取向硅钢的磁感(B8),而高于1 T的脉冲磁场则会使取向硅钢的磁性能急剧恶化.同时发现,脉冲直流电加热方式会使取向硅钢的磁性能恶化.研究表明,脉冲磁场退火有望成为一种调控材料微观结构的有效手段. We have carried out experiments of annealing by pulse magnetic field.The results show that a pulse magnetic field with intensity lower than 1 T can promote magnetic induction density(B8) of grain-oriented silicon steel,while the magnetic properties deteriorate sharply when intensity is higher than 1 T.It has also been found that heating by using pulse direct current can cause the magnetic properties to deteriorate,in contrast to the traditional heating using resistance furnace.Our research shows...
卷取工艺对新型冷轧无取向电工钢组织性能的影响
研究了卷取工艺对一种新型含铜无取向电工钢晶粒尺寸、织构演变、铁损和磁感应强度的影响。结果表明,试样织构组分主要为{111}、{112}、{100}和高斯织构,在550℃卷取、保温2~3h,{100}织构有增强趋势,磁感应强度较高,铁损较低。 The effects of coiling process on grain size,texture,core loss and magnetic induction of a new cold rolled non-oriented electrical steel with copper were investigated.The results show that there are mainly {111},{112},{100} and {110}<001> texture.Coiling at 550℃and keeping for 2~3 hours,the {100} texture is enhanced,magnetic induction is higher and core loss is lower.
B元素对高牌号无取向硅钢热轧板组织和性能的影响
借助实验室设备研究了B元素对高牌号无取向硅钢热轧板组织和磁性能的影响。结果表明,与无硼钢相比,含硼钢的热轧板晶粒尺寸略小,析出物的类型和尺寸没有区别,主要是AlN和(AlN+MnS)复合析出物,少量的MnS析出物,尺寸集中在1.0~2.5μm范围内。未发现BN析出物。在力学性能方面,B对钢的软化作用不明显。在磁性能方面,含硼钢的铁损为3.215W/kg,磁感为1.710T,综合磁性能比无硼钢差。 Influences of boron on microstructure and properties of hot rolled band in high-grade non-oriented silicon steel are researched in this paper by experimental equipments.Compared with boron-free steel,the result shows that boron-bearing steel has smaller grain size,but the type and size of precipitations have no differences.The main precipitates are AlN,(MnS + AlN) composite precipitate and few MnS,the range of which are between 1.0 μm and 2.5 μm.BN precipitation is not found.With reward to mecha...
CN202111616384.6一种降低无取向硅钢W800头部窄尺的控制方法
本发明公开了一种降低无取向硅钢W800头部窄尺的控制方法,步骤1、筛选板坯长度,并使板坯进入加热炉后头部均朝向轧机方向;步骤2、控制板坯头部温差小于10℃;步骤3、固定粗轧到精轧区间内的轧机机架轧制速度;步骤4、固定相变机架,使板坯的奥氏体‑铁素体相变发生在F2和F3机架中;步骤5、调整精轧机架间的负荷分配,降低F2和F3机架的压下量;步骤6、调整活套张力,降低F2和F3机架的活套单位张力补偿;步骤7、降低模型AGC增益,降低F2和F3机架的AGC补偿的辊缝波动量。本发明通过控制固定相变机架、优化相变机架的负荷分配、AGC补偿系数、活套张力等,使秒流量保持平衡,减少无取向硅钢W800头部窄尺。
CN202123144024.9转盘式硅钢片转运装置
本实用新型公开了转盘式硅钢片转运装置,属于硅钢片转运领域,包括本体,所述本体的顶部设置有收纳箱,所述本体的内部水平设置有横板,所述横板的两侧分别与本体内腔的两侧固定连接,所述横板的底部设置有平移机构,所述横板横向活动套接在连接杆,所述连接杆顶端与收纳箱的底部固定连接,所述连接杆的底端固定连接有转动盘,所述转动盘的底部固定连接有固定杆,所述固定杆上活动套接有套筒,通过设置平移机构,平移机构带动铰接杆,铰接杆拉动固定杆,固定杆带动转动盘,转动盘通过连接杆带动收纳箱,使得收纳箱可以进行旋转,将远离工作人员的一侧,调整至靠近工作人员的一侧,从而方便进行安放硅钢片。
CN202111448726.8一种硅钢生产线上的牵引装置
一种硅钢生产线上的牵引装置,包含有底座(1)、支架(2)、平移机构(3)、上压板(4)、下托板(5)、气缸(6)、转向辊(7)和对中摄像头(8);所述的平移机构(3)包含有长条齿轮(14)、齿轮(15)、电机(16)和滚轮轴承(17);其特征在于:所述的齿轮(15)固定在电机(16)的输出轴上,并且与长条齿轮(14)啮合;使得平移机构(3)可以由电机(16)驱动在导轨(10)上左右滑动。本发明通过气缸(6)驱动上压板(4)和下托板(5)夹紧钢带(9),由平移机构(3)带动钢带(9)进行左右平移,避免了原先夹送辊刮伤钢带(9)表面涂层,减少了带头的浪费。
CN202111369195.3一种电力变压器硅钢片自动叠片生产设备
本发明公开了一种电力变压器硅钢片自动叠片生产设备,包括支撑板和叠片立板,其中一组所述支撑板的表面安装有叠片立板,另一组所述支撑板的顶部安装有检测立板;所述叠片立板的背面安装有连杆,所述连杆的尾端连接有限位环,所述限位环的内部等距贯穿安装有第一电动伸缩杆,所述第一电动伸缩杆的尾端表面套接有橡胶套,所述叠片立板的背面设有滑槽,所述滑槽的底壁安装有缓冲弹簧,所述滑槽的顶壁安装有第二电动伸缩杆,所述第二电动伸缩杆的尾端连接有拦截条,两组所述支撑板的顶部均安装有立块。本发明通过设置有叠片立板、限位环、拦截条以及缓冲弹簧的配合,可简化本叠片设备的整体占地面积,简化叠片加工程序。