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高效AHV系列电工钢B15AHT1000 0.15*1000
更新时间:2024-11-15 17:49:48 浏览次数:2 公司名称: 鹿程国际贸易有限公司
以下是:高效AHV系列电工钢B15AHT1000 0.15*1000的产品参数
产品参数 | |
---|---|
产品价格 | 2/吨 |
发货期限 | 3天内 |
供货总量 | 50000 |
运费说明 | 电议 |
最小起订 | 1 |
质量等级 | 精品 |
是否厂家 | 是 |
产品材质 | 冷轧 |
产品品牌 | 宝武日本进口 |
产品规格 | 0.08-0.65 |
发货城市 | 上海武汉 |
产品产地 | 上海武汉 |
加工定制 | 粗加工 |
产品型号 | 多种 |
可售卖地 | 全国 |
质保时间 | 一年 |
适用领域 | 电器马达电机变压器磁感器互感器稳压器继电器电磁开关新能源电机电动汽车变压器军工电机发电机组航天造船汽车等 |
是否进口 | 否 |
品名 | 电工钢 冷轧无取向电工钢 冷轧取向电工钢卷冷轧取向硅钢 取向电工钢冷轧无取向硅钢冷轧无取向硅钢 |
规格 | 0.08 0.1 0.05 0.18 0.2 0.23 0.27 0.3 0.35 0.5 0.65 1.0mm |
包装 | 原厂精包装 |
用途 | 电器马达电机变压器磁感器互感器稳压器继电器电磁开关新能源电机电动汽车变压器军工电机发电机组航天造船汽车等 |
以下是:高效AHV系列电工钢B15AHT1000 0.15*1000的图文视频
AHV系列电工钢B15AHT1000 0.15*1000_鹿程国际贸易有限公司,固定电话:13764370568,移动电话:021-56152236,联系人:鹿丙伟,QQ:871956683,宝山区蕰川公路777号宝钢厂区607-609室发货到浙江省 温州市 鹿城区、龙湾区、瓯海区、洞头区、永嘉县、平阳县、苍南县、文成县、泰顺县、瑞安市、乐清市 发货到 浙江省温州市。 浙江省,温州市 温州市,简称“瓯”,浙江省辖地级市,长江三角洲中心区城市,是国务院批复确定的东南沿海重要的商贸城市和区域中心城市,位于浙江省东南部,东濒东海、南毗福建省、西及西北部与丽水市相连、北和东北部与台州市接壤;地势自西向东呈梯状倾斜,为中亚热带季风气候区;截至2021年,全市辖4个市辖区、5个县,代管3个县级市,陆地面积12110平方千米,海域面积8649平方千米;2022年,温州市户籍总人口831.8万人,常住人口967.9万人。
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以下是:AHV系列电工钢B15AHT1000 0.15*1000的图文介绍
电工钢硅钢片:产品的牌号是按照下列给出的次序组成:B公称厚度(mm)的 100 倍用于表示无取向电工钢类型的字符,其中A、浙江温州本地WW:普通型AR:应力退火型AH、浙江温州WH:型(注:普通型 WW、浙江温州型 WH 产品牌号可以使用至2025 年底) 比总损耗名义值 P1.5/50(W/kg)的100 倍宝钢英文名称 Baosteel 的首字母(可缺省)Q/BQB 480-20213示例 1:B35A210 表示公称厚度为 0.35mm 的普通型无取向电工钢, 比总损耗名义值P1.5/50为2.10W/kg;示例 2:B35AR300 表示公称厚度为 0.35mm 的应力退火型无取向电工钢, 比总损耗名义值P1.5/50为3.00W/kg;示例 3:B35AH230 表示公称厚度为 0.35mm 的型无取向电工钢, 比损耗名义值P1.5/50为2.30W/kg。示例 4:35WW210 表示公称厚度为 0.35mm 的普通型 WW 无取向电工钢, 比损耗名义值P1.5/50为2.10W/kg。示例 5:35WH230 表示公称厚度为 0.35mm 的型 WH 无取向电工钢, 比损耗名义值P1.5/50为2.30W/kg
电工钢硅钢片Intro of iron core of automobile driving motor。At present, the motor technology of high-speed punching of stator and rotor iron core at home and abroad has developed rapidly. With the development of stamping equipment, new equipment with high quality, high efficiency and high precision has been provided for the production of motor punching pieces of high-speed punching of stator and rotor iron core at home and abroad, which has brought the motor punching process technology. Therefore, the design technology of new technology and equipment suitable for it has become a new research topic. The simultaneous separation of stator punching groove and stator punching groove of motor high-speed punching stator rotor iron core the simultaneous cutting of air gap between rotor punching and rotor punching groove is a new technological scheme applied to high-speed punching machine. This scheme has been widely used in foreign countries and has just begun research and application in domestic motor industry. Therefore, some discussions are made to realize the design technology of this technology according to the required technological equipment.The influence of motor high-speed punching of stator and rotor iron core: the influence of motor punching process technology of motor high-speed punching of stator and rotor iron core in new product development the traditional process of motor punching in our country is two categories: double punching and single punching, which are analyzed as follows:1) the process scheme of double punching groove: this scheme has good groove shape and uniformity, few processes and few tooling, but the tooling is complex and requires high precision, good equipment conditions, long tooling manufacturing cycle and Cheng Bengao, which is only suitable for mass production and is not conducive to new product development and small batch trial production.2) single-type punching process scheme: this scheme has poor groove shape, many processes, many tooling, many equipments, simple tooling, unstable quality, long production cycle and Cheng Bengao, and is only suitable for medium and small batch production.Requirements for high-speed punching of stator and rotor iron core of motor: 1. Positioning accuracy requirements. In this technological scheme, the two composite processes of punching groove separation and punching groove cutting air gap require the same positioning Benchmark, ensuring that the concentricity of the groove shape of the stator and rotor, the outer circular dove tail groove and shaft hole is not more than 0.02mm, the positioning of the center hole meets the technical requirements of concentricity, and the joint positioning of the small side hole and the center hole meets the requirements of circumferential orientation. 2. Precision requirements of composite process. Punching and groove separation compound process: This process has Groove-shaped convex mold and incision convex mold to complete the progressive blanking process. This process first punches and then cuts to separate the fixed and rotor punching pieces. The Two convex molds act synchronously on the same center track, and the central included angle between the two convex molds is one and a half times the central included angle of the groove. This process equipment is applied to high-speed punching machines, the groove-shaped indexing accuracy is guaranteed by the CAM stepping mechanism on the equipment;Electric vehicle is an economical and clean green vehicle based on electric drive,Environment and other aspects have * competitiveness, and can conveniently use modern control technology to realize its electromechanical integration, with broad development prospects.The motor drive system of the iron core of the automobile drive motor is the power source of the electric vehicle, and is the main body and internal basis for determining various performance indexes of the automobile operation. At present, electric vehicle motors mainly include DC motors, induction motors, permanent magnet brushless motors and switched reluctance motors.Automobile drive motor iron core permanent magnet brushless motor can be divided into two categories: one is permanent magnet synchronous motor with sine wave current,The other is the BLDC motor with rectangular pulse wave current.Two kinds of motors, the rotor is magnet, the motor rotor does not need brush and excitation winding, through stator winding commutation to generate rotating torque. Because the rotor has no excitation winding, no copper consumption, small magnetic flux and very small iron consumption at low load, therefore, the permanent magnet brushless motor has a high "Power/mass" ratio and can run at high speed. At the same time, it is easy to cool down because there is no abrasion of the rotor and the stator winding is the main heat source.The characteristics of the iron core of the automobile driving motor; The permanent magnet brushless motor of the iron core of the automobile driving motor has high reliability and high output power. Compared with other motors with the same rotating speed, it has the characteristics of small volume, light weight, easy maintenance, high efficiency, high power factor, etc. The rotor has small electromagnetic time constant and good dynamic characteristics of the motor. Through adjustment and conduction angle, constant power operation can be realized, and the efficiency of the motor can also be optimized by optimizing control angle, thus obtaining wider constant power operation area and higher efficiency.Overview of motor high speed punching stator and rotor iron core
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 电工钢板通常是以铁芯损耗和磁感应强度作为产品磁性保证值[1] [2] 。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、浙江温州本地涡流损耗(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。
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