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鹿程国际贸易(保定市分公司)所生产的 硅钢产品种类齐全、规格多样,价格适中 ,品质优良。其制作流程严格遵守行业生产标准和检验控制,保证了每一件产品质量。


电工钢硅钢片硅钢是一种硅铁合金。用硅钢轧制的片材是电工领域中应用广的软磁材料,因而硅钢片又称电工钢片。硅钢片广泛用于电动机、发电机、变压器、扼流圈、电磁机构、继电器及测量仪表中电机工业大量使用厚度为0.35~0.50mm的硅钢片,用于:中型旋转机,压缩电机,通用马达,小型精密电机,电动汽车,压缩机,通用电机,电源变压器,精密变压器,节能电机,焊机变压器,稳压器,磁性密封器,加速器用电磁铁,汽车电机等;在电信高频技术中常用0.05~0.20mm的薄带钢片,以便更有效地降低涡流损耗。热轧硅钢片厚度为0.35~0.50mm,密度为7.55~7.70g/cm3,多用于大、中、小型交、直流电动机;冷轧无取向硅钢片厚度为0.35~0.50mm,密度为7.65~7.75g/cm3,多用于大型交流发电机、电动机,大、中、小型交、直流电动机;冷轧取向硅钢片厚度为0.23mm 0.27mm 0.3mm 0.35mm,密度为7.65g/cm3,多用于电力变压器、油浸式变压器,干式变压器,电抗器、磁放大器等;冷轧取向薄带厚度为0.05~0.20mm,多用于无线电高频变压器。



电工钢硅钢片从2008年5月15日,宝钢 卷合格取向电工钢成功下线以来,宝钢取向电工钢品种迅速拓展至普通型、河北保定当地高磁感型和细化磁畴高磁感型三大类。本手册综合介绍了宝钢取向电工钢的牌号、河北保定当地品种、河北保定当地规格、河北保定当地应用范围、河北保定当地电磁性能、河北保定当地力学性能、河北保定当地尺寸板形公差、河北保定当地相关的使用技术及广泛的应用业绩,使用户对宝钢取向电工钢产品能进一步了解,进而充分利用宝钢电工钢产品特性,生产出更加优良的下游产品。宝钢可以提供从变压器铁心设计材料选择到变压器制造,包括:核心设计中的材料选择,以控制性能和成本;从成本和性能角度优化钢材和结构;为核心制造提供技术支持,以确保 性能;新产品和新技术,提高变压器产品的竞争力。工作经验:40多年前从事晶粒取向电工钢,具有完整的研发、河北保定当地制造和应用能力产品:产品种类繁多,包括对流、河北保定当地高磁导率、河北保定当地畴细化、河北保定当地低磁致伸缩和无铬酸盐涂层晶粒取向电工钢等级:铁损P1.7/50低于0.55W/kg的 级能力:中国有史以来 家开发出具有制造100%优质晶粒取向电工钢。晶粒取向电工钢产量居世界 。宝钢不断更新和改进性能变压器用产品数据库,为自定义ers提供一系列来自机械性能的全套数据和基本磁性能下的特殊性质工作条件根据不同的要求,宝钢可以为客户提供性能数据原始曲线和其他形式的数据。GB20052-2020新能源效率一级产品S15-M-200/10、河北保定当地S15-M-400/10变压器成功投产用高等级GO电工钢B18R055制造,B20R060,其空载损耗和负载损耗均满足新的1级变压器的要求。宝钢高级晶粒取向电工钢B27R090成功应用于双百万变压器的制造ODFPS-1000000/1000用于超高压交流输电项目包括空载损耗在内的所有变压器特性,空载电流和噪声符合设计要求。宝钢优质晶粒取向硅钢B23R075已成功应用于转炉生产昌吉-古泉±1100kV特高压直流输电变压器 电网项目。空载损耗、河北保定当地空载电流和噪音变压器的各项性能完全符合技术要求。 无机涂层,S/T2 涂层为磷酸盐和二氧化硅为主的无机成分混合物。该涂层具有较高的耐热性,在干的氮气或者干的氮氢混合保护气氛中可以承受 850℃应力退火。对绝缘油、河北保定当地清漆、河北保定当地机械油、河北保定当地制冷气体等有高耐腐性。 无 Cr 环保涂层,H,涂层成分中不含 Cr 元素



电工钢硅钢片硅钢性能指标电工钢叠片铁芯与铜线通过电磁感应做功,铁芯通过形成交变磁场发挥作用。铁芯运行过程中自身耗能和铁芯磁化能力决定电器设备核心性能,如功率、河北保定本地体积、河北保定效率、河北保定质量以及综合运行成本。所以,电工钢的性能指标要求有下列几项:1) 铁芯损耗P:电工钢铁芯在励磁与退磁过程中额外消耗电能转化成热量称为铁损,单位为W/kg,是划分产品牌号的主要依据。铁损由磁滞损耗Ph、河北保定涡流损耗Pe和反常损耗Pa组成。三种铁损分别与晶粒尺寸、河北保定有利织构比例和板带质量对应。所以,取向和无取向电工钢中这三种损耗占比不同,如无取向硅钢的铁损以Ph为主,取向硅钢中则以Pe为主。根据使用条件不同,无取向硅钢的铁损保证值取P1.5/50,即硅钢片在50Hz交变磁场下磁化到1.5T时所消耗的电能,而取向硅钢相应的铁损保证值为P1.7/50。



电工钢硅钢片Electrical steel, also known as silicon steel sheet, is an indispensable metal material in the power, electronics, and military industries, and is also the largest functional material in production. It is mainly used as the iron core for various motors, generators, and transformers. Specific total loss (iron loss) is the total power consumed per unit mass of material when the magnetic polarization waveform remains sinusoidal, with a specific peak and frequency. The specific total loss is represented by the symbol P (Jm/f), in W/kg. Example: P1.5/50 represents the specific total loss at a maximum magnetic polarization intensity of 1.5T and a frequency of 50Hz. 3.2 Magnetic Polarization Q/BQB 480-20212 Magnetic polarization intensity refers to the peak magnetic polarization intensity of a specific magnetic field intensity when a sample is subjected to alternating magnetization. Its symbol is J (H), and the unit is T (Tesla). Example: J5000 represents the peak magnetic polarization intensity corresponding to a magnetic field intensity peak of 5000A/m. The material grades in this document are classified based on the nominal maximum specific total loss P1.5/50 (W/kg) at a magnetic polarization strength of 1.5T and a frequency of 50Hz, as well as the nominal thickness of the material. They are further divided into three categories based on product characteristics: ordinary type, stress relief annealing type, and high-efficiency type. Example 1: B35A210 represents a common non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific total loss value P1.5/50 is 2.10W/kg; Example 2: B35AR300 represents a stress relieved annealed non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific total loss value P1.5/50 is 3.00W/kg; Example 3: B35AH230 represents an efficient non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific loss value P1.5/50 is 2.30W/kg. Example 4: 35WW210 represents a normal type WW non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific loss value P1.5/50 is 2.10W/kg. Example 5: 35WH230 represents an efficient WH non oriented electrical steel with a nominal thickness of 0.35mm, and the maximum nominal specific loss value P1.5/50 is 2.30W/kg. The classification and code of insulation coatings shall comply with the provisions of Table 2. Table 2 Classification and Code of Insulation Coatings Type Code Characteristics of Insulation Coatings Semi organic Thin Coating A Improves Punching Performance and Has Good Weldability Semi organic Thick Coating H has Good Punching Performance and High Interlayer Resistance Semi organic Chromium Free Thin Coating K does not contain chromium and has good weldability Semi organic Chromium Free Thick Coating M does not contain chromium and has good insulation performance Semi organic Chromium Free Extreme Thick Coating J does not contain chromium and has excellent insulation performance Semi organic Chromium Free Ultra Thick Coating L does not contain chromium and has extremely high insulation performance Self adhesive Coating




