钢厂
基于爱泼斯坦方圈组合和损耗加权处理技术的取向电工钢磁性能扩展模拟
提出了一种基于爱泼斯坦方圈族(包括标准25cm爱泼斯坦方圈、缩比的17.5cm和20cm爱泼斯坦方圈)和二级加权处理方法对爱泼斯坦测试数据,包括有效磁路长度、比损耗、励磁功率,进行处理的晶粒取向电工钢磁性能扩展模拟方法。详细地考察了励磁频率、试样剪切角度和环境温度对爱泼斯坦方圈测量结果的影响。研究结果表明,利用本文提出的爱泼斯坦方圈组合以及二级加权处理技术,可以有效地建立取向电工钢损耗模拟模型,从而更加准确地确定了取向电工钢的损耗,改善并提高了爱泼斯坦磁性能测试数据的应用价值。 The extended modeling of the magnetic properties of GO(grain oriented) electrical steel is presented in this paper which is based on a set of standard and scaled-down Epstein frames and a proposed two-level weighted processing of Epstein data, including the mean magnetic path length, specific magnetization loss and exciting power. The effects of excitation frequency, strip angle and ambient temperature on the results obtained from the Epstein frames are investigated. It is shown that using the p...
CN202120497890.7一种变压器用硅钢板滑石丸粘接加工设备
本实用新型公开了一种变压器用硅钢板滑石丸粘接加工设备,用于对变压器用硅钢片进行贴片,其结构包括:机械臂、抓取头、分道排序机构,所述抓取头位于机械臂的末端,用于抓取滑石丸,在抓取头上能够同时抓取多个滑石丸,配合机械视觉系统,就能够更精确的确定贴片位置,并完成贴片,提高了生产效率;所述分道排序机构包括:振动盘、排料板,振动盘中储存有一定的滑石丸,振动盘顶部的出料口与排料板连接,工作时振动盘中的滑石丸依次从出料口进入排料板中,在排料板上的物料通道中运动,物料通道的末端是多条分支,且末端向外敞开,抓取头能够在物料通道末端同时抓取多个滑石丸。
硅元素对Fe-(4.5~7.0)%Si高硅钢组织和性能的影响
通过Axio Imager金相显微镜考察4.5%~7.0%硅(质量分数)对高硅钢材料组织形貌的影响,并利用Fe-6.5%Si高硅钢薄板制备方法对其进行轧制,通过DDL50电子万能试验机对阶段产品进行力学性能测试。结果证明,硅含量为5.58%的高硅钢在实验硅含量区间内存在最大延伸率及最小铸态组织晶粒尺寸。 An investigation about the influence of 4.5%-7.0% Si on microstructure and mechanical properties of high-silicon steel was presented.SEM was adopted to take an observation towards microstructure during fabrication,and DDL50electronic universal testing machine was applied into the detection of tensile curves.The results show that silicon steel with 5.58% Si provides the maximum elongation and minimum grain size as cast.
CN202122627090.5一种变压器铁芯硅钢板的剪切装置
本实用新型涉及硅钢片切割设备领域,具体涉及一种变压器铁芯硅钢板的剪切装置,包括操作台,操作台的顶部安装有传送辊,传送辊的侧部安装有限位装置,限位装置的侧部依次安装有送料装置和切割装置,切割装置包括固定座,固定座的顶部固定连接有底板,底板的两侧固定连接有导向柱,导向柱的顶部安装有顶板,导向柱上且位于顶板的下方滑动设置有刀架,刀架上安装有切割刀,顶板上安装有液压缸,液压缸的自由端的端部与刀架的顶部固定连接;解决现有的硅钢片切割效率低的问题。
资源节约型高强度电工钢SXRC的开发
日本住友金属成功地开发了一种资源节约型高强度无取向电工钢SXRC,这种电工钢是通过固溶铌适度抑制位错的合并对消而得到一种特殊的微观组织,因此兼具很高的力学性能和磁性,特别适用于HEV、EV驱动电机转子。而且,不使用昂贵的镍就可以达到期望的强度,合金成本可控,是一种优越的资源节约型产品。 Sumitomo metal industries ltd of Japan successfully developed a type of high strength non-orientation electrical steel SXRC of resources-saving.The steel has both high mechanical performance and good magnetic property thanks to the special microstructure produced by the formation of Nb solid solution serving to appropriately inhibit the combination and cancellation of dislocations.The material is,in particular,suitable for manufacturing rotors of HEV and EV driving motors.Besides,expected streng...
CN202180031699.6线状槽形成方法和方向性电磁钢板的制造方法
本发明提供在金属带钢表面以所希望的槽宽度形成线状槽进而磁特性极其优异的方向性电磁钢板。在金属带钢的至少单面形成抗蚀剂被膜,接着,对上述抗蚀剂被膜一边在横穿上述金属带钢的轧制方向的方向进行扫描一边照射激光,除去经上述激光照射的部分的上述抗蚀剂被膜,接着,对上述金属带钢的除去了上述抗蚀剂被膜的部分实施蚀刻处理而形成线状槽,上述抗蚀剂被膜以固体成分换算计含有20质量%以上的无机化合物,在上述金属带钢表面,上述激光具有长轴直径与短轴直径之比为5.0以上的椭圆状的射束形状,并且扫描正交方向的射束直径为10μm~100μm。
正火对双辊薄带连铸5.28%Si-1.11%Al无取向高硅钢磁性能的影响
采用双辊薄带连铸工艺试制了2.6 mm厚5.28%Si-1.11%Al高硅钢薄带,对比了1050℃×5 min正火及不正火铸带280℃冷轧至0.5 mm后,再经900~1100℃退火的磁性能。结果表明,高硅钢铸带显微组织为等轴晶组织,正火后铸带边部晶粒长大,中心层晶粒变化较小。成品中析出物主要为较粗大的AlN和AlN+MnS复合析出物,尺寸为0.5~2.5μm。与不正火试样相比,正火试样成品铁损大幅降低,磁感小幅下降;随退火温度的升高,两种工艺下铁损和磁感都是先降低后升高,在1050℃出现最低值。 2.6 mm thickness 5.28% Si-1.11% Al non-oriented high silicon steel was produced by twin roll thin strip casting.Magnetic property of the strip un-normalized and normalized at 1050 ℃×5 min was contrasted after cold rolled to 0.5 mm at 280 ℃ and 900-1100 ℃ final annealing.The results show that microstructure of the strip is equiaxed crystal.The surface grain is coarsened and the center layer grain has little change of the normalized strip.The main precipitates are AlN and MnS+AlN with 0.5-2.5 μm s...
我国冷轧无取向硅钢涂层专利技术分析
对1990~2010年在我国申请的冷轧无取向硅钢涂层的专利数量、专利技术领域分布进行了统计,对典型涂层专利技术进行了分析,探讨了无取向硅钢涂层的发展趋势。统计分析结果表明,目前无取向硅钢涂层典型的专利技术主要有自粘结涂层、无铬含稀土元素涂层、含钼酸盐环保涂层及采用有机-无机纳米杂化材料为主成膜物形成的涂层等。无取向硅钢涂层发展的趋势主要是无铬环保的半无机、半有机型涂层。 The patent quantity of cold-rolled non-oriented silicon steel coating and distribution of technology fields applied in China in 1990-2010 were summarized.The analysis results indicate that typical patent technologies include self-adhesion coating,chromium-free and with rare earth element coating,environment-friendly and with molybdate coating,coatings with organic-inorganic hybrid materials as main forming agent and so on.The main development trends of coatings on silicon steel are among semi-in...
无取向电工钢退火工艺研究现状
综述了退火温度、时间对无取向电工钢磁性的影响。退火温度主要影响无取向电工钢不同织构的占有率,退火时间主要影响晶粒尺寸的大小,晶粒尺寸的变化对织构的形成也有一定的影响。磁感最高点出现在纤维组织完全消失,(111)面织构组分较弱的组织状态。铁损的降低主要依赖于磁滞损耗的降低,织构的影响不大。 The effects of annealing temperature and time on the non-oriented electrical steel magnetic properties were reviewed.Annealing temperature and time mainly affects the different textures share and the grain sizes of non-oriented electrical steel respectively.Changes of the grain sizes also have a certain effect on textures formation.The highest point of the magnetic induction value in the fibrous tissue completely disappears and{111} plane texture has a lower state of the component content.Iron l...
无取向硅钢钢液增钛原因分析
对无取向硅钢炼钢全流程钢液增钛的原因进行了分析,认为铁水钛含量、转炉出钢温度、转炉下渣量、精炼渣TiO2含量、钢水罐及RH浸入管混钢种生产是影响钢液增钛的主要原因。通过采取低钛铁水冶炼,减少转炉下渣量,提高出钢温度,添加白灰改质精炼渣等措施,均能够降低钢液中的钛含量。 After analyzing the causes leading to increased content of titanium in molten nonoriented silicon steel during whole steelmaking process, it was concluded that such factors as content of titanium in hot metal, tapping temperature from converter, quantity of roughing slag entered into the ladle from converter, content of TiO2 in refining slag, molten steel ladle car,carrying out the steelmaking of different steel grades by the same ladle and same RH immersion tube were the main causes ...
CN202011508234.9一种带有紧固硅钢带的非晶合金铁心制造方法
本发明公开了一种带有紧固硅钢带的非晶合金铁心制造方法,包括以下步骤:步骤(1):切割非晶带材片和紧固硅钢带;步骤(2):对所述非晶带材片和紧固硅钢带进行套装与成型,每组非晶带材片两端搭接,紧固硅钢带设置于非晶带材片之间,得到成型铁心;步骤(3):对所述成型铁心进行磁场热处理;步骤(4):对所述成型铁心进行表面涂封。通过本发明提供的方法生产非晶合金铁心,操作方便、提升非晶合金铁心的结构稳定性,并且进一步降低铁心因磁致伸缩产生的噪声。
CN202110494444.5一种物理喷砂方式制备取向硅钢薄带无底层原料的方法
本发明公开了一种物理喷砂方式制备取向硅钢薄带无底层原料的方法,步骤包括:S1、坯料预处理;S2、涂覆隔离剂,后进行高温退火;S3、拉伸热平整;S4、表面喷砂处理,去除底层;S5、去应力退火;本发明优点在于,采用喷砂的物理办法制备取向硅钢薄带无底层原料,代替了传统的用酸去除取向硅钢涂层或硅酸镁底层,结合退火去应力,显著改善了加工质量,使整个加工过程更加环保,也有利于控制成本。

