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以下是:硅钢小型精密电机用武汉50WH310的图文介绍


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电工钢硅钢片半有机无铬超厚涂层L C6 C-6 EC-6 C-7涂层以有机成分为基础,添加较多的无机填料,以提高涂层绝缘性。涂层通常用于全工艺无取向电工钢,特别是大直径电机,如电站发电机。涂层可以改善钢的冲片性能,适合冲压叠片。涂层具有较高的层间电阻,能承受 300-550℃的涂层烧除处理,可用于重建电机定子时,去除电机定子绕组的绝缘层,也可用于风冷式或油浸式。涂层不能承受正常的应力退火。用户选择该涂层时,应考虑到在焊接过程中或涂层用于高温环境时,涂层会分解放出气体的情况。用户可以和供方协商确定该类涂层的层间电阻范围




电工钢硅钢片对电工钢板性能的要求如下:铁芯损耗(PT)低铁芯损耗是指铁芯在≥50Hz交变磁场下磁化时所消耗的无效电能,简称铁损,也称交变损耗,其单位为W/kg。这种由于磁通变化受到各种阻碍而消耗的无效电能,通过铁芯发热既损失掉电能,又引起电机和变压器的温升。电工钢的铁损(PT)包括磁滞损耗、当地涡流损耗(Pe)和反常损耗(Pa)三部分。电工钢板铁损低,既可节省大量电能,又可延长电机和变压器工作运转时间,并简化冷却装置。由于电工钢板的铁损所造成的电量损失占各国全年发电量的2.5%~4.5%,因此各国生产电工钢板总是千方百计设法降低铁损,并以铁损作为考核产品磁性的重要指标,按产品的铁损值作为划分产品牌号的依据。冷轧取向电工钢:冷轧取向电工钢是电工钢中的高端产品,与冷轧无取向电工钢相比,磁性具有强烈的方向性;在易磁化的轧制方向上具有优越的高磁导率与低损耗特性。取向钢带在轧制方向的铁损仅为横向的1/3,磁导率之比为6:1。用途:冷轧取向硅钢带主要的用途是用于变压器制造。




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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