钢厂
CN202111596893.7一种提高热连轧无取向硅钢厚度精度的方法
本发明涉及一种提高热连轧无取向硅钢厚度精度的方法,包括以下步骤:1)降低粗轧终轧温度和精轧入口温度,减少精轧轧制过程中奥氏体向铁素体相变的体积数,提高轧制力模型预估的精度;2)降低精轧机活套张力,减少因张力带来的厚度扰动。本发明通过降低粗轧终轧温度、精轧开轧温度和调整精轧机张力,可以有效提高精轧机轧制力预估精度,提高厚度精度以及宽度精度。
热轧组织对无取向硅钢织构的影响
采用X射线衍射仪分析无取向硅钢冷轧织构和再结晶退火织构的演化,研究了热轧组织对无取向硅钢织构以及磁性能的影响。结果表明,具有均匀、粗大晶粒组织的热轧板,冷轧形成更多的剪切带,导致成品板形成高的高斯织构组分,并提高了{100}织构强度,降低了γ纤维织构,最终导致成品磁感应强度升高,铁损下降。 The texture evolution of non-oriented silicon steel during cold-rolling and recrystallization annealing was investigated by X-ray diffractometer.The effects of hot band microstructure on the texture and magnetic properties of non-oriented silicon steel were analyzed.The results show that more shear bands appear during cold rolling due to homogeneous coarse grain in hot band.So strong{110}<001> texture after recrystallization annealing forms.At the same time,the {100} texture components inc...
CN202122999248.1一种无取向硅钢喷涂用即时干燥装置
本实用新型公开了一种无取向硅钢喷涂用即时干燥装置,包括干燥箱,所述干燥箱内滑动连接有加热台,所述干燥箱顶部设置有加热箱,所述加热箱左右两侧分别设置有进风管和出风管,所述进风管和出风管均与干燥箱连通,所述加热箱内部从左到有依次固定连接有风机和加热网,所述干燥箱内设有带式传送机,通过带式传送机使喷涂过后的硅钢在干燥箱中移动,首先经过加热台加热,使涂层表面干燥硬化,不会变形,然后再经过加热箱吹出的风对硅钢表面的涂层进行进一步的烘干,从而保证干燥过程中涂层不会起褶皱。
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。
Fe-6.5%Si高硅钢的性能及制备技术
Fe-6.5%Si高硅钢是一种具有高磁导率、低矫顽力和低铁损等优异软磁性能的合金,但是其室温脆性和低的热加工性能严重影响了其在工业领域的应用。综述了Fe-6.5%Si高硅钢的性能,评述了合金的改性法、特殊轧制法、快速凝固法、沉积扩散法、粉末冶金法等制备工艺。 It is well known that 6.5%Si high silicon steel is one kind of soft magnetic materials with higher re-lative permeability,lower coercive force and iron loss than those of conventional industrial silicon steel.However,their room-temperature embrittleness and poor workability limit their practical applications in the industry.The pre-paration technique such as modification treatment on alloy,special rolling,rapid solidification,CVD and powder me-tallurgy is reviewed.
CN202111414457.3一种高磁感取向硅钢实验室轧机一次冷轧方法
本发明公开了一种高磁感取向硅钢实验室轧机一次冷轧方法,包括:1)取样,实验室冷轧材料选取经过常化酸洗后的厚度为2.3mm的取向硅钢试样;2)制样,利用取向硅钢专用剪板机,裁剪试样尺寸为轧向600mm×横向150mm;将试样表层轻涂一层薄薄的轧制油;3)冷轧轧制规程制定,轧前厚度为2.3mm;其中:轧制总道次为6次时轧后厚度为0.35mm,轧制总道次为7次时轧后厚度为0.27mm,轧制总道次为8次时轧后厚度为0.23mm。本发明的目的是提供一种高磁感取向硅钢实验室轧机一次冷轧方法,为工业试制提供一定的技术参考,以及后续工艺研究提供了更加可靠的试样和条件。
高强无取向硅钢组织演变与强化机制
针对新能源汽车的发展,制备了含Ni固溶强化、含Cu析出强化以及含Ni+Cu复合强化3%Si无取向硅钢,研究了强化方式对无取向硅钢组织、织构和性能的影响。结果表明:固溶强化型无取向硅钢热轧板中形成了粗大{221}<221>晶粒,冷轧过程中剪切变形明显并在退火后形成良好再结晶织构。析出强化型无取向硅钢热轧板中心层形成γ取向粗大晶粒,在后续的加工中γ织构逐渐增强并最终得到相对细小的再结晶晶粒。复合强化型无取向硅钢热轧板中保留了强λ取向带状组织,退火后形成了有益的Goss织构和λ织构。固溶强化型与复合强化型无取向硅钢磁感应强度B50分别达到1.742、1.688 T,高于析出强化型无取向硅钢的1.645 T。同时,复合强化型无取向硅钢高频铁损最低,其P1.0/400和P1.0/1 000分别低至20.97、82.69 W/kg,这与其较小的晶粒尺寸和织构改善有关。强度计算结果表明:Ni元素固溶强化对强度的提高有限,屈服强度为468 MPa,纳米Cu析出可显著提高屈服强度(强度增量约200 MPa),且主要来自于模量强... For the development of new energy vehicles, 3%Si non-oriented silicon steel were processed by solid solution strengthening with Ni, precipitation strengthening with Cu, and composite strengthening with Ni and Cu. The effects of different strengthening methods on the microstructure, texture and properties of high-strength non oriented silicon steel were studied.The results show that coarse {221}<221> grains are formed in the hot rolled sheet of solution strengthened non-oriented silicon ste...
低温高磁感取向硅钢高温退火过程织构及析出物的演变行为
对低温法生产的以AlN为主抑制剂的Hi-B取向硅钢高温退火过程进行了中断实验,借助EBSD及TEM技术对高温退火连续升温过程中织构与析出物的演变进行了研究。实验结果表明,800℃时ODF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;950~1 000℃时高斯晶粒异常长大,偏离角3~6°;高温退火过程析出物主要有球形、规则立方形及不规则多面体形3种形貌,由于渗N的影响,Zener因子先增大再减小,并且析出物在高斯晶界前沿优先粗化。 The annealing process at high temperature of Hi-B silicon steel using low slab reheat temperature and with AlN as the inhibitor has been studied by interrupting test,and the evolution of texture and precipitates during continuous heating-up in the annealing process at high temperature was analyzed by EBSD and TEM. The results showed that Goss texture appears in ODF at 800 ℃,but the intensity of Goss texture was very weak and the deviation angle was more than10°. Goss grains grow abnormally durin...
CN202123232884.8一种高磁感低铁损取向硅钢加工用预热装置
本实用新型公开了一种高磁感低铁损取向硅钢加工用预热装置,包括加工台和预热箱,所述预热箱固定连接在加工台上端中间位置,所述加工台上端且位于预热箱内开设有一个驱动槽,所述驱动槽内转动连接有一组驱动转轴,所述驱动转轴上均固定连接有一个驱动辊,所述预热箱内滑动连接有一个升降板,所述升降板上且与驱动辊相对应位置均开设有一个安装槽,所述安装槽内均转动连接有一个加热转辊,本实用新型的有益效果是:通过驱动辊的转动,可以使金属板位于预热箱内滑动,并且通过加热转辊与金属板表面加热,实现对金属板的预热,利用加热转辊与金属板直接接触,使热传递更加迅速,从而缩短了预热时间。
CN202121494829.3一种高精度硅钢片加工用多向定位组件
本实用新型公开了一种高精度硅钢片加工用多向定位组件,包括底板、安装板、橡胶轮组一和橡胶轮组二,所述底板上端两侧对称设置有U型的所述安装板,所述安装板内底端中部安装有安装架二,所述安装架二上安装有所述橡胶轮组二。有益效果在于:本实用新型通过螺杆、调节套、安装架一、安装架二、橡胶轮组一、橡胶轮组二、弹簧以及连接柱的设计,能够实现高精度硅钢片在加工时的有效夹紧定位,避免了高精度硅钢片在加工时的晃动滑移,提高了高精度硅钢片的加工质量,通过电推杆、滑块以及滑槽的设计,能够根据高精度硅钢片的尺寸来调节安装板之间的间距,以满足也不同尺寸高精度硅钢片的加工需求,提高了定位组件使用的灵活性。
罩式炉常化工艺对热轧硅钢50W350组织和性能的影响
研究了罩式炉常化工艺对50W350硅钢热轧板组织、夹杂物和性能的影响。研究结果显示,罩式炉常化工艺在温度一定的情况下,随着保温时间延长,硅钢晶粒逐步再结晶并长大,同时析出物也在聚集长大。通过制定合理的罩式炉常化工艺,可以实现硅钢晶粒的再结晶和长大,从而达到连续退火炉常化工艺产品技术要求。 The influence of normalization process with a bell furnace on the structure,inclusions and properties of 50W350electrical steel hot-rolled sheet was studied.The research results showed that:when the steel was normalized at a certain temperature in the bell furnace,the silicon steel grains gradually recrystallized and grew up with the extension of the annealing holding time,and at the same time,the precipitates also gathered and grew up.The recrystallization and growth of the silicon steel grains...
轧制复合法制备硅浓度梯度高硅钢薄带的织构演变
采用\"热轧复合+冷轧减薄+退火\"方法成功制备了0.20mm厚的硅浓度梯度高硅钢薄带,并采用SEM和X射线衍射技术对制备过程中组织和织构演变进行了研究。热轧复合板微观组织呈明显层状分布,复合界面为紧密冶金结合且经过83%的大冷轧变形未开裂。热轧和冷轧复合板带中均形成强α和γ织构,再结晶退火后形成强γ织构。冷轧和退火织构沿板厚呈显著的梯度分布特征,其主要来自于复合界面两侧硅浓度和初始热轧织构的差异性以及冷变形的不均匀性。 Gradient high silicon steel thin sheets with thickness of 0.20 mm were successfully produced by the rolling and annealing method,including hot rolling bonding,cold rolling,and annealing.Microstructure and texture evolution was investigated by means of SEM and X-ray diffraction.Microstructure of hot-rolling-bonding shows obviously layered distribution,the composite interface was closely metallurgical bonding and no cracking appears even after 83%cold rolling.Strongαandγfibers develop in the hot a...

