钢厂
CN202120686711.4一种硅钢片抓取平台
本实用新型涉及一种硅钢片抓取平台,其包括抓取框架,包括抓取框架,所述抓取框架上设有多个支架,对应于非切割区域的支架上设有大真空吸盘,对应于切割区域的支架上设有小真空吸盘。本实用新型结构简单,通过多个真空吸盘来进行硅钢片的抓取也不会损坏加工后的硅钢片,还提高了硅钢片的搬运效率。此外,通过气动系统实现对吸盘的自动吸气,提高了对吸盘操作的便利性。
ZnO对无铬无取向硅钢绝缘涂层性能的影响研究
主要研究了氧化锌对以Al(H2PO4)3为基料的无铬无取向硅钢绝缘涂层各项性能的影响.用盐雾实验和动电位极化研究了不同氧化锌含量对硅钢绝缘涂层的耐蚀性和电化学行为的影响.采用SEM和体视显微镜对涂层的表面形貌和附着性能进行研究.结果表明,氧化锌含量为4.0%时,氧化锌能完全中和涂层表面的游离磷酸,涂层的耐蚀性和附着性最好;氧化锌含量过少或过多时,涂层的耐蚀性和附着性都较差. This paper studies the influence of zinc oxide on the performance of chromium-free non-oriented silicon steel insulating coating which based on aluminum dihydrogen phosphate.Salt spray experiment and potentiodynamic polarization were used to study the influence of zinc oxide content on the corrosion resistance and electrochemical behavior of the insulation coating of silicon steel.The surface morphology and adhesion of coating were tested by SEM and stereo microscope.The results show that when t...
CN202111082830.X一种取向硅钢边浪的控制方法、装置、设备和存储介质
本发明涉及取向硅钢技术领域,尤其涉及一种取向硅钢边浪的控制方法、装置、设备和存储介质,该方法包括:在将通过脱碳退火阶段的取向硅钢的带钢进行卷取过程中,在带钢的下端侧上刻上刻痕线,其中,下端侧为带钢与高温退火炉的承托底板接触的一侧,刻痕线平行于带钢轧制的方向;控制卷取后的带钢通过高温退火阶段和热拉伸平整阶段后至精整阶段时,沿着刻痕线,切除带刚的边浪;其中,边浪为在带钢的刻痕线至下端侧的边的部分。该控制方法可显著改善高温退火后取向硅钢边部浪形,有效降低精整切边量,提高取向硅钢的板形质量及成材率,降低生产成本。
CN202111215913.1一种高磁感取向硅钢及其制造方法
本发明公开了一种高磁感取向硅钢,其含有Fe及不可避免的杂质元素,其还含有质量百分含量如下的下述各化学元素:C:0.02~0.08%,Si:2.0~4.5%,Mn:0.02~0.30%,S≤0.0050%,Als:0.01~0.04%,N:0.002~0.01%,Nb:0.0050~0.0600%;以及P:0.01~0.1%,Sn:0.01~0.30%,Cu:0.01~0.50%的至少其中一种。此外,本发明还公开了上述高磁感取向硅钢的制造方法,其包括步骤:(1)制得板坯;(2)板坯加热;(3)热轧,其包括:粗轧、在热卷箱内卷取保温,以及精轧;其中粗轧结束温度高于970℃;卷取温度为800~1050℃,卷取时间为30~200s;精轧开始温度低于1050℃;(4)冷轧;(5)脱碳退火;(6)渗氮;(7)涂覆退火隔离剂;(8)高温退火;(9)涂覆绝缘涂层和激光刻痕。
高硅FeSi合金层对普通取向硅钢磁性能的影响
目的提高硅钢的磁性能。方法采用多弧离子镀技术,在普通取向硅钢薄板两面沉积高硅FeSi合金层制得高硅梯度硅钢,并进行热处理,观察其显微组织,测量磁性能。结果退火态高硅梯度硅钢表面的高硅FeSi合金层与基底结合紧密,均匀致密。高硅梯度硅钢中硅含量呈梯度分布,最表层硅质量分数为11.0%,随着深度增加,硅含量逐渐降低,在距表面20μm处硅质量分数仍能达到6.5%。沉积态高硅梯度硅钢的电阻率ρ、低频铁损P10/50、高频铁损P10/1k及磁感应强度B8分别为68.6μΩ·cm,0.82W/kg,83.3 W/kg和1.73 T,退火后分别为63.1μΩ·cm,0.44 W/kg,54.38 W/kg和1.89 T。结论由于表层高硅FeSi合金层的存在,梯度高硅钢的低频磁学性能良好,但高频损耗需进一步改善。 Objective To improve the magnetic properties of silicon steel. Methods FeSi alloy coatings with high-silicon content were deposited on the surface of common grain-oriented silicon steel by cathodic arc plasma evaporation,and then a kind of high silicon gradient steel was prepared. The morphologies,content and magnetic properties of the samples were tested. Results FeSi alloy coatings were featured with compact microstructures and excellent adhesive quality with the substrates. The silicon conten...
电工钢中柱状晶热压缩时取向的变化及对析出的影响
利用电子背散射衍射(EBSD)技术和场发射电子扫描显微镜(FESEM)研究了电工钢中柱状晶不同初始取向50%热压缩变形后的演变规律及其对粒子析出行为的影响。结果表明:〈100〉晶粒形变后仍为〈100〉取向,只发生绕ND∥〈100〉方向的转动,具有遗传性,粒子析出数量少。柱状晶长轴与压缩轴的偏转度增加,取向的稳定性变差,超过40°,可形成〈111〉取向,期间发生复杂的滑移系交互作用,产生较高的缺陷密度,促进粒子析出。MnS粒子主要在晶内析出,变形温度高、形变量低,粒子均无法充分析出。回复时,形变晶粒内高的储能和缺陷密度是促进粒子进一步析出的必要条件。 The evolution of initial orientations and their influence on precipitation of columnar-grained electrical steel after 50% hot compression deformation were investigated by electron backscatter diffraction technique and field emission scanning electron microscopy.The results indicate that the〈100〉orientated columnar grains remain still〈100〉after hot compression deformation,with only rotation around ND parallel to〈100〉direction,with heredity,and less precipitation.As the deviation angle between the...
压下率对取向硅钢热轧板织构的影响
采用X-射线衍射分析技术测定了取向硅钢热轧板在不同压下率下不同厚度处的织构。结果表明,在压下率低于80%的情况下,几乎所有试样的不同厚度处的织构均为旋转立方织构类型{100}<011>,但不同压下率、不同厚度处的织构强度存在很大差异;在压下率大于80%的情况下,不同试样的不同厚度处的织构类型发生了变化,其织构类型为旋转立方织构或高斯织构{011}<100>,且当织构类型为旋转立方织构时,织构强度存在很大差异,而当织构类型为高斯织构时,织构强度差异相对较小。 The texture of the grain oriented silicon steel hot rolled plate at different compressibility has been measured.The experimental results have shown that the texture of all samples at different thickness is {100}<011> when the compressibility is below 80%,and its intensity at different compressibility and thickness is difference.The texture of all samples at different thickness is variable when the compressibility is above 80%,it is {100}<011> or {011}<100>,and the intensity of ...
微合金元素Sn、Nb、Re对无取向硅钢性能的影响
介绍了微合金元素锡、铌、稀土对无取向硅钢性能的影响,并扼要分析了这些元素对硅钢性能的影响机理:晶界偏聚元素Sn可细化晶粒提高硅钢磁性能;微合金元素Nb细化铁素体晶粒,提高硅钢的强度、韧性和塑性及磁性能;稀土元素(RE)在硅钢中的主要作用包括净化钢液、变质夹杂物、改善铸态组织和性能及微合金化,减少晶界上出现偏析的几率。 The influence of micro-alloy elements on properties of non-oriented silicon steel and the mechanism for effect of the micro-alloy elements including Sn、Nb and RE on the properties of steel are presented and analyzed in this paper.Grain boundary segregation elements Sn in steel can grain refinement and improve the magnetic properties;Micro-alloy elements Nb can refine the ferrite grain,increase the silicon steel strength,toughness and plastic;The main role of the RE in the silicon steel including...
冷轧无取向硅钢表面麻面缺陷成因分析及其控制措施
针对某厂DMS森吉米尔轧机生产无取向硅钢表面麻面缺陷的问题,根据生产实际,对其形成原因从乳化液及工作辊两方面因素进行了分析。结果表明:乳化液对麻面缺陷的产生有一定影响,但不是主要因素,主要原因是由于二十辊森吉米尔轧机工作辊辊径较小,轧制相同长度带钢轧辊运转周期较大,容易产生疲劳失效而导致。为此,提出通过调整冷轧工序成品轧制道次的压下率以减小轧制力,从而减小工作辊的磨损疲劳;通过对轧制乳化液浓度、温度的合理控制,以改善润滑效果、提高轧制速度,而进一步缓解轧辊疲劳的改进措施,使该钢厂无取向硅钢麻面缺陷发生率由原来的18%降至0.8%,带钢表面质量明显改善。 For the problem of surface pockmarks of non-oriented silicon steel strip produced by a DMS Sendzimir mill, based on the production practice, the formation causes were analyzed from two aspects of emulsion and working roll. The results show that the emulsion has a certain effect on the formation of surface pockmarks defects, but it is not the main factor. The main reason is that the working roll diameter of the 20-high Sendzimir mill is small, and the running period of the roll rolling the same l...
CN202122397369.9高牌号取向硅钢生产用辊轧机
本实用新型公开了高牌号取向硅钢生产用辊轧机,包括辊轧机本体和夹送辊,所述辊轧机本体的底端安置于承托组件的顶端,且承托组件的两侧对称设置有机架,所述辊轧机本体一侧的机架顶端对称安装有两个换向机构,且两个换向机构顶部的一侧共同设置有上下两个夹送辊。该种高牌号取向硅钢生产用辊轧机中不仅能够通过两个液压缸同步伸缩,带动横担的两端反向旋转,从而灵活调节夹送辊的相对水平高度,进而提高了钢带输送角度的调节效率;而且在夹送辊旋转输送钢带时,换热介质经由两组导液管、旋转接头在夹送辊中输入、输出,通过直接接触进行全面换热,如此循环往复,进一步提高了对钢带的冷却效率。
CN202110640634.3一种硅钢片叠装用上料系统
本发明涉及一种硅钢片叠装用上料系统,包括放置板,设置于硅钢片横剪线的出料端处,用于接收硅钢片并堆放;供料板,设置于硅钢片叠装线的上料端处,用于接取放置板并对进行初定位;输送单元,设置于硅钢片横剪线的出料口处,用于放置板并实现放置板的输送;转运单元,设置于输送单元的出料口处,用于接取放置板并将放置板输送给供料板;上料单元,设置于硅钢片叠装线的上料端处,用于接取供料板并为硅钢片叠装线进行供料。本发明的优点在于:通过放置板、供料板、输送单元、转运单元、上料单元之间的相互配合,从而将硅钢片横剪线裁切好的硅钢片送至硅钢片叠装线处进行叠装,整个过程无需再由人工搬运,大大降低了人工劳动。

