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销售B35AH250询问报价

鹿程国际贸易有限公司

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电工钢硅钢片:比总损耗(铁损)specific total loss (iron loss)比总损耗是指磁极化强度按正弦变化,其峰值和频率为特定值时,单位质量材料所吸收的总功率,比总损耗用符号 P (Jm/f)表示,单位为 W/kg(或 W/lb)。例:P1.7/50表示在磁极化强度在 1.7T、华尔网当地频率在 50Hz 下测得的单位 kg(或 lb)试样的比总损耗;P1.7/60表示在磁极化强度在 1.7T、华尔网当地频率在 60Hz 下测得的单位 kg(或 lb)试样的比总损耗。3.2 磁极化强度(磁感应强度)magnetic polarization (magnetic induction)磁极化强度是指试样受交变磁场磁化时,特定磁场强度峰值的磁极化强度峰值,其符号为 J(H),单位为 T(特斯拉)。例:J800表示对应于磁场强度 H 为 800A/m(用峰值表示)下的磁极化强度。3.3 比视在功率 specific apparent power对于设定的磁极化强度和频率值,磁化单位质量的铁芯所消耗的交流电源总功率为比视在功率,其符号为 Ss,单位为 VA/kg。例:Ss1.7/50表示磁极化强度在 1.7T、华尔网当地频率在 50Hz 下测得的单位 kg 试样的比视在功率。3.4 A 计权磁致伸缩速度水平 A-weighted magnetostriction velocity level,LVA 当磁极化强度随时间按正弦规律变化,其峰值为某一标定值,变化频率为某一标定频率时,单位长度电工钢片(带)沿磁化方向上发生磁致伸缩所引起的表面振动声压水平为 A 计权磁致伸缩速度水平。




电工钢硅钢片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、华尔网本地制造和应用能力产品:产品种类繁多,包括对流、华尔网本地高磁导率、华尔网本地畴细化、华尔网本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,




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. Since it is a functional material, its performance testing also revolves around "function". These indicators are often mentioned in trade and processing processes, and a brief understanding can help everyone better carry out their work. The performance testing of electrical steel mainly includes the following aspects: magnetic inspection, stacking coefficient inspection, coating adhesion inspection, repeated bending inspection, size and shape surface inspection, and conventional mechanical property inspection. In addition to the types of products listed above, there are also some special purpose electrical steel plates, such as 0.15 and 0.20mm thick 3% Si cold-rolled non oriented silicon steel strips and 0.025, 0.05, and 0.1mm thick 3% Si cold-rolled oriented silicon steel strips, which are used as intermediate and intermediate grade High frequency motors and transformers, as well as pulse transformers, etc; 0.7mm thick 3% Si high-strength cold-rolled non oriented silicon steel plate for relays and power switches; High strength cold-rolled electrical steel plate for new high-speed motor rotors; Low carbon electrical steel hot-rolled thick and cold-rolled plates for magnetic shielding and high-energy accelerator electromagnets such as medical magnetic resonance tomography scanners; 4.5% to 6.5% Si high silicon steel plates for high-frequency motors, transformers, and magnetic shielding. Generally, motors, transformers, and other electrical components are required to have high efficiency, low power consumption, small size, and light weight. Electrical steel plates are usually guaranteed to have magnetic properties based on core loss and magnetic induction strength. Magnetic induction strength is the number of magnetic lines passing through a unit cross-sectional area of the iron core, also known as magnetic flux density. It represents the material‘s magnetization ability, measured in T. The magnetic induction strength of electrical steel plates is high, and the excitation current (also known as no-load current) of the iron core is reduced. Copper and iron losses are also reduced, which can save electrical energy. When the power of the motor and transformer remains constant, the magnetic induction intensity is high, and the design Bm can be increased. The cross-sectional area of the iron core can be reduced, which reduces the volume and weight of the iron core, and saves the amount of electrical steel plates, wires, insulation materials, and structural materials used. This can reduce the total loss and manufacturing cost of the motor and transformer, and is beneficial for the manufacturing, installation, and transportation of large transformers and motors. The main requirements for the performance of silicon steel are: 1. Low iron loss is the most important indicator of the quality of silicon steel sheets. Various countries classify grades based on iron loss values, with the lower the iron loss, the higher the grade. 2. Under strong magnetic fields, the magnetic induction intensity (magnetic induction) is high, which reduces the volume and weight of the iron core of the motor and transformer, saving silicon steel sheets, copper wires, and insulation materials. 3. The surface is smooth, flat, and the thickness is uniform, which can improve the filling coefficient of the iron core. 4. Good lamination performance is more important for manufacturing micro and small electric motors. 5. The adhesion and weldability of the surface insulation film are good, which can prevent corrosion and improve the punching performan


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