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铁损
    New Fe-Based Amorphous Alloys with High Initial Permeability,Low Coercivity and Low Core Loss
    新型的高起始磁导率低矫顽力低铁损铁基非晶态合金
    Large Electric Generator Stator Core Loss Test
    大型电动发电机定子铁损试验
    The results show that the normalizing enables the grain size and precipitate size to become larger and consequently leads to the magnetic induction B50 slightly higher and the core loss P15/50 obviously lower.
    结果表明,正火处理使冷轧退火后材料的晶粒尺寸和析出物尺寸增大,从而使磁感应强度B50略有增高,铁损P15/50有较明显的降低。
    The core loss behavior of nanocrystalline alloy Fe72.5Cu|Nb1.5Mo1.5V1Si13.5B9 under the condition of Bm=0.05-1.0T and f=20-1000kHz was discussed in this paper.
    分析了纳米晶Fe72.5Cu1Nb1.5Mo1.5V1Si13.5B9合金在Bm=0.05-1.0T,f=20-1000kHz范围内的铁损行为。
    In addition, the relationship between core loss and f and Bm was also investigated.
    简要阐述了铁损与f和Bm之间的关系以及在固定的Bmf值情况下给出铁损大小估算的关系式。
    Study on Reducing Core Loss of Silicon Steel Sheet by ECM
    电化学加工法降低硅钢片铁损的研究
    Residual deformation analysis of grain oriented silicon steel sheets with lowered core loss using laser processing
    用激光加工硅钢片降低铁损残余变形的云纹干涉法测量研究
    Optimal-efficiency Control of Asynchronous Motor Taking Core Loss Into Account
    考虑铁损时异步电动机的最佳效率控制
    Behavior of core loss in nanocrystal line Fe_73Cu_1Nb_2V_(1.5)Si_(13.5)B_9 alloy with high B_r(I)Behavior of low -frequency loss
    高B_r纳米晶Fe_(73)Cu_1Nb_2V_(1.5)Si_(13.5)B_9合金的铁损行为(I)低频损耗行为(英文)
    Behavior of core loss in nanocrystalline Fe_(73)Cu_1Nb_2V_(1.5)Si_(13.5)B_9 alloy with hig h B_r(Ⅱ) Behavior of medium-and high-frequency loss
    高B_r纳米晶Fe_(73)Cu_1Nb_2V_(1.5)Si_(13.5)B_9合金的铁损行为(II)中、高频损耗行为(英文)
    Analysis on High-speed Vector Model Taking Core Loss into Account
    考虑铁损时异步电机高速性能的矢量模型分析
    Analysis of PT Core Loss Effects on Ferroresonance
    PT铁损对铁磁谐振的影响分析
    The Taguchi parameter design of armature core loss in permanent magnetism DC micro-motor
    基于永磁直流微电动机电枢铁损的Taguchi参数设计
    The magnetic properties result of the sample state that the ultimate 800℃-treated mixed sample has the coercive of 4.01Oe and the core loss at W10/50 of 3.28W/kg.
    样品的磁性能的结果表明,800℃混料样品最终的矫顽力为4.01Oe,铁损W10/50为3.28W/kg。
    Assuming that average core loss is decreased 0.3W/kg, 3.6×10~8 kilowatt-hours of electric power can be saved per 10~5 tons of silicon steel sheets produced.
    按平均铁损降低0.3W/kg计算,每生产10万吨,可节电3.6亿度.
    Under certain heating and rolling conditions, the process to control cooling speed, and then annealing at 700-725℃ was adopted. It is possible that core loss of hot-rolled dynamo steel sheets can be sharply decreased. P(16/50) value of electric steel sheet made by this process is 0.18-1.11 watt per kilogram lower than eommon pack cooling process.
    在一定的加热条件和轧制制度下,采用控制冷却处理,再经700~725℃退火热处理,能够显著地降低热轧电机硅钢板的铁损,其P_(15/50)值比原随垛冷却工艺降低0. 18~1.11W/kg.
    high saturation magnetic flux density of B800A ·m, = 1.22 T under the optimum performance with annealing at 535C , the optimum values of core loss have reached P5 ·10k = 5.6W / kg, P5 ·20k= 17.4W / kg, P5· 50k = 80W / kg.
    =1.22T,最佳铁损分别为P_(5 10K)=5.6W/kg,P_(5 20K)=17.4W/kg,P_(5 50K)=80W/kg.
    The levels of high-frequency core loss of the alloy with x = 2are as follows.
    x=2合金的高频铁损为:P_(3/100K)=468KW/m~3;
    The levels of high-frequency core loss of the alloy with x=2.0 are as follows: P3/100k=468 kW /m3, P2/200 k=706kW/m3;
    x=2的合金的高频铁损水平为:p3/100k=468kw/m3:P2/200k=706kW/m3;
    According to the IEEE56-1977 Standards the core loss test has been conducted on the stator of the first 300 MW generating unit for the Tianhuangping Pumped-storage Power Station.
    按IEEE56-1977标准,对天荒坪抽水蓄能电站第一台300MW大型电动发电机组进行定子铁损试验。
 

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