所有分类
  • 所有分类
  • 未分类

轧制力是影响冷轧带钢厚度精度的关键因素。为实现高精度的冷轧带钢厚度控制,通过优化变形抗力模型参数和摩擦系数模型参数提高冷轧轧制力模型计算精度,并使用指数平滑法的自学习算法保证轧制力精度的稳定性。在首钢股份公司迁安钢铁公司20辊森基米尔轧机生产线进行S12硅钢钢种轧制力优化试验,将优化的模型参数应用于L2并投入现场生产,结果表明该优化方法不仅提高了轧制力设定精度,而且减小了冷轧硅钢的厚度超差长度,提高了成材率。 The rolling force is the key factor which influences the accuracy of cold-rolling strip thickness. To implement high precision control of cold-rolling strip thickness,we optimize the deformation resistance model parameters and friction coefficient model parameters to improve the calculation precision of cold-rolling force model,and use exponential smoothing self-learn algorithm to ensure the stability of rolling force accuracy. In Shougang Qiangang 20-high Sendzimir mill single stand production ... 
2014-05-28 168 5.8

本发明涉及一种罩式中间退火高牌号无取向硅钢50BW350的生产方法,包括钢水化学成分设计、热轧工艺、冷轧工艺和退火工艺等步骤;钢水化学成分包括C≤0.004%、Si1.80‑2.1%、Mn0.70‑0.90%、Als0.30‑0.45%、P≤0.015%、S≤0.0030%、O≤0.0020%、N≤0.0025%、Sb0.06‑0.12%,余量为Fe。本发明通过特殊的化学设计,添加Sb元素,通过优化产品的结构组织提高电磁性能,适当降低Si含量,并提高Mn元素含量,通过二次冷轧法消除热轧粗大纤维组织的影响,得到了没有表面瓦楞缺陷的高牌号无取向硅钢产品,与传统高牌号生产方法相比,成本较低,生产出的硅钢电磁性能优良。
2021-12-30 257 6.8

本实用新型公开了一种高磁感低铁损取向硅钢切割用废屑清理装置,包括激光切割台,所述激光切割台上端滑动连接有一个滑动导轨,所述滑动导轨上滑动连接有一个切割主机,所述激光切割台上端均匀固定连接有一组锯齿板,相邻两个所述锯齿板之间均固定连接有一个导流板,所述导流板两端高度低于中间位置高度,所述激光切割台上端且与导流板两侧相对应位置均开设有一个收集槽,所述收集槽内均卡接有一个收集框,所述收集槽底部侧壁固定连接有循环水管,本实用新型的有益效果是:通过循环水泵使水在循环水管和排水管之间循环流动,从而可以使切割废屑顺着水流进入收集框内进行收集,避免切割废屑粘附在锯齿板之间难以清理的情况。
2021-12-22 206 6.8

通过固溶度积公式计算及热模拟实验,对不同热装和加热温度条件下的无取向硅钢铸坯中析出相进行了研究.在低于950℃热装时,铸坯中AlN的析出量和尺寸不再变化,但MnS和AlN-MnS的数量及平均尺寸随着热装温度降低而进一步增加,并在温度低于600℃时达到最大值后保持不变.与1200℃相比,1100℃加热的铸坯中AlN、MnS的总固溶量相对更少.相比850℃热装,600℃热装再加热到1100℃的铸坯中AlN和MnS的总固溶量更少,且AlN和MnS尺寸更大.合适的热装温度和加热温度分别为600℃和1100℃. Based on solubility product calculation and thermal simulation experiments,precipitated phases in continuous casting slabs of non-oriented silicon steel were systematically studied at different hot charging and heating temperatures.When the hot charging temperature is below 950 ℃,the content and size of AlN remain unchanged,but the quantity and size of MnS and AlN-MnS increase when the hot charging temperature decreases,reach maximum and remain unchanged when the hot charging temperature is belo... 
2013-08-28 168 5.8

研究了CSP流程试制50W270高牌号无取向硅钢热轧→常化→冷轧→退火过程中织构的演变.利用电子背散射衍射技术对全流程织构进行测量和分析.发现热轧板织构在厚度方向上存在较大差异,表层主要为铜型、黄铜和高斯织构,1/4层存在微弱的高斯织构和旋转立方织构,中心层以γ纤维织构和旋转立方织构为主,还含有较弱的α纤维织构.与热轧板相比,常化板表层和1/4层织构变化不大,中心层旋转立方织构和α纤维织构增强.冷轧板各层均具有α纤维织构和γ纤维织构.与冷轧板相比,成品板各层中α纤维织构基本消失,还出现了立方织构和高斯织构. This article focuses on texture evolution in 50W270 high-brand non-oriented silicon steel produced by CSP in hot rolling,normalizing,cold rolling,and annealing processes.The texture in the whole process was measured and analyzed by electron back-scatter diffraction.It is found that the texture along the thickness direction in hot-rolled strips changes obviously;there are mainly copper,brass,and Goss textures in the surface layer;the 1/4 layer has weak Goss texture and rotating cube texture;γ-fib... 
2014-09-28 178 5.8

运用EBSD和光学显微镜,研究了0.25%~0.45%Cu对无取向电工钢热轧板显微组织,成品板显微组织、织构和磁性能的影响。实验结果表明:卷取过程中Cu元素在热轧板表层的偏聚作用显著阻碍了热轧板表层再结晶晶粒长大,导致热轧板表层晶粒尺寸随着Cu含量增加而逐渐较小,但热轧板中间晶粒尺寸变化不大。同时发现Cu元素能够明显改善织构类型,使有利织构组分增加,不利织构组分减少,同时减弱织构强度。从实验结果可知0.35%Cu能够显著改善电工钢的磁性能,铁损P15/50最低达到4.1 W/kg,磁感B50最高值达到1.8 T。 Effects of high content Cu on microstructure of hot rolled plates and microstructure,texture and magnetic properties of annealed finish product plates of non-oriented electrical steel were examined by means of EBSD technique and optical microscope. The results show that surface segregation of Cu significantly hindered recrystallized grain growth of surface layer in hot rolled plate during the coiling,as a result,the surface grain sizes of the hot-rohed plates decrease with the increase of Cu con... 
2013-11-28 153 5.8

根据本发明的一个实施例的双取向电工钢板,以重量%计,所述钢板包含Si:2.0至4.0%、Al:0.01至0.04%、S:0.0004至0.02%、Mn:0.05至0.3%、N:0.01%以下且0%除外、C:0.005%以下且0%除外、P:0.005至0.15%、Ti:0.001至0.005%、Ca:0.0001至0.005%和Mg:0.0001至0.005%,余量包含Fe和其他不可避免的杂质,具有从{100}<001>起15°以内的取向的晶粒的面积分数为60至99%,具有从{100}<025>起15°以内的取向的晶粒的面积分数为1至30%。
2020-12-17 191 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... 
2014-06-28 165 5.8

对低温加热工艺生产的以AlN为主抑制剂的高磁感取向硅钢高温退火过程进行中断实验,借助电子背散射衍射技术对高温退火过程中高斯晶粒的演变进行了研究.在升温过程中高斯晶粒平均尺寸先减小再增大.800℃时取向分布函数图出现高斯织构组分,但强度很弱,高斯晶粒偏离角在10°以上;900℃时高斯晶粒平均生长速率超过其他晶粒;950~1000℃时高斯晶粒异常长大,偏离角3°~6°;在1000℃之前高斯取向晶粒相比于其他晶粒没有尺寸优势. The high-temperature annealing process of high permeability grain-oriented silicon steel with AlN as an inhibitor was studied by interrupting test.The evolution of Goss texture in this process was analyzed by electron back-scattered diffraction.It is found that the Goss grain size first decreases and then increases with the rise of temperature.Goss texture appears in the orientation distribution function at 800 ℃,but the intensity is very weak and the deviation angle is more than 10°.The average... 
2014-03-28 192 5.8

本实用新型公开了一种用于硅钢板带的表面清理装置,包括机体,所述机体的内部设置有转动机构,所述转动机构的内部安装有固定机构,所述机体的外表面一侧固定连接有驱动电机,所述驱动电机的输出端固定连接有螺杆,所述螺杆的外部设置有螺纹套,且螺纹套在螺杆上螺纹转动连接,所述螺纹套的底部固定连接有电动推杆,所述电动推杆的输出端固定连接有连接板。本实用新型,利用转动机构可很好的进行翻转,便于对两面进行清理,从而提高了一定的工作效率,相比人工翻转清理时效果更好,具有一定的实用性,利用固定机构可很好对于成硅钢板带进行固定,可方便进行清理,提高清理时的工作效率,实用性较强。
2021-08-25 159 6.8

【作者】 刘玲月; 李军辉; ...
2011-02-28 163 5.8

根据本发明的一个实施例的取向电工钢板的制造方法,其包含:对板坯进行热轧,以制造热轧钢板的步骤;对热轧钢板进行热轧板退火的步骤;对热轧板退火后的热轧钢板进行一次冷轧的步骤;对一次冷轧后的钢板进行一次脱碳退火的步骤;对完成脱碳退火的钢板进行二次冷轧的步骤;对完成二次冷轧的钢板进行二次脱碳退火的步骤;以及对二次脱碳退火后的钢板进行连续退火的步骤。
2020-12-17 162 6.8

站点公告

网站试运行,请大家关注本站公众号,多提宝贵意见!

显示验证码
没有账号?注册  忘记密码?