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电机转子鼠笼铸件铸造过程数值模拟 被引量:1
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作者 朱灿 黄晓华 +2 位作者 杨弟洲 丁志辉 殷水忠 《铸造技术》 CAS 北大核心 2016年第9期2008-2013,共6页
依据实际生产中压铸工艺参数,采用Procast软件对电机转子鼠笼的充型过程和凝固过程进行数值模拟。根据对充型过程分析结果,研究充型过程中铝液速度变化以及型腔内的气压分布。通过对凝固过程分析,研究铸件凝固特性和铝液温度变化规律,... 依据实际生产中压铸工艺参数,采用Procast软件对电机转子鼠笼的充型过程和凝固过程进行数值模拟。根据对充型过程分析结果,研究充型过程中铝液速度变化以及型腔内的气压分布。通过对凝固过程分析,研究铸件凝固特性和铝液温度变化规律,并预测可能出现的缺陷。结果表明,在铝液温度为710℃,模具预热温度为200℃,浇注速度为2 m/s时,缩松、缩孔主要集中在转子端环部位。最后提出结构优化方案并进行模拟,改善缩松、缩孔分布情况,并运用至实际生产进行验证。 展开更多
关键词 电机转子鼠笼 数值模拟 充型分析 凝固分析
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高压电机转子鼠笼条开裂异常分析改进及应用
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作者 罗元平 《中文科技期刊数据库(文摘版)工程技术》 2021年第2期138-139,共2页
本案例对高压电机出现周期性异常声音和振动现象,转子鼠笼条在短路环处开裂进行检查、分析,将电机转子鼠笼条在短路环处焊接成一整体,护环加固。提高了电动机运行可靠性,有效降低电机烧毁的风险。
关键词 转子鼠笼 开裂 断条 护环
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同步磁阻电机分析与设计(连载之十三) 自起动同步磁阻电机的研究
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作者 沈建新 蔡顺 +2 位作者 周桂煜 郝鹤 金孟加 《微电机》 2017年第4期86-92,共7页
通过分析不同运行阶段的转矩成分,研究自起动同步磁阻电机的起动特性和稳态运行特性,进而指出电机设计要点。优化设计两种转子形式自起动同步磁阻电机,其导条分别位于转子磁障外和磁障内。研究该两种形式自起动同步磁阻电机的性能特点,... 通过分析不同运行阶段的转矩成分,研究自起动同步磁阻电机的起动特性和稳态运行特性,进而指出电机设计要点。优化设计两种转子形式自起动同步磁阻电机,其导条分别位于转子磁障外和磁障内。研究该两种形式自起动同步磁阻电机的性能特点,总结自起动同步磁阻电机的特性。 展开更多
关键词 同步磁阻电机 自起动 异步起动 转子鼠笼 磁障
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Parameters identification of the compound cage rotor induction machine based on linearized Kalman filtering
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作者 王铁成 李伟力 孙建伟 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2003年第2期133-136,共4页
A mathematical model has been built up for compound cage rotor induction machine with the rotor resistance and leakage inductance in the model identified through Kalman filtering method. Using the identified parameter... A mathematical model has been built up for compound cage rotor induction machine with the rotor resistance and leakage inductance in the model identified through Kalman filtering method. Using the identified parameters, simulation studies are performed, and simulation results are compared with testing results. 展开更多
关键词 compound cage rotor parameter identification Kalman filter
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IE3 Efficiency Induction Motors with Aluminum and Copper Rotor Cage: Technical and Economic Comparison
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作者 Francesco Parasiliti Marco Villani 《Journal of Energy and Power Engineering》 2014年第5期902-910,共9页
The aim of this study was to design three-phase induction motors with aluminum and copper cage, in the range 0.75 ÷22 kW, to fulfill the 1E3 efficiency level according to typical performance and standard constrai... The aim of this study was to design three-phase induction motors with aluminum and copper cage, in the range 0.75 ÷22 kW, to fulfill the 1E3 efficiency level according to typical performance and standard constraints. The proposed study has concerned TEFC ( totally Enclosed Fan-Cooled ), 400 V, 50 Hz, SI duty three phase squirrel-cage induction motors only. The motors' designs, with AI and Cu cage, have been optimized in order to reach the minimum efficiency level IE3 at lowest active material costs and satisfy the physical and performance constraints of the designs, which are the motor specifications. A suitable optimization procedure has been used which allowed to find the "best design" by chancing the geometric dimensions of the stator, rotor shape, the stator winding and the stack length. In order to guarantee the goodness and feasibility of the optimized designs, several constrains have been imposed. 展开更多
关键词 Induction motors EFFICIENCY copper rotor design optimization.
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Time-stepping finite element analysis on the influence of skewed rotors and different skew angles on the losses of squirrel cage asynchronous motors 被引量:4
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作者 ZHAO HaiSen LIU XiaoFang +2 位作者 LUO YingLi CHEN WeiHua Peter BALDASSARI 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第9期2511-2519,共9页
To study the influence of skewed rotors and different skew angles on the losses of squirrel cage asynchronous motors,a 5.5-kW motor was taken as an example and the multi-sliced field-circuit coupled time stepping fini... To study the influence of skewed rotors and different skew angles on the losses of squirrel cage asynchronous motors,a 5.5-kW motor was taken as an example and the multi-sliced field-circuit coupled time stepping finite element method(T-S FEM)was used to analyze the axially non-uniform fundamental and harmonic field distribution characteristics at typical locations in the stator and rotor cores.The major conclusions are:firstly the skewed rotor exhibits a decrease in the harmonic copper losses caused by slot harmonic currents in the stator winding and rotor bars.Secondly,the skewed rotor shifts the non-uniform distribution of field in the axial direction,which leads to more severe saturation and an increase in iron losses.The heavier the load,the more pronounced the increase in iron losses.Furthermore,the influences of different skew angles on motor losses are studied systematically,with skew angles from 0.5 to 1.5 stator tooth pitch.It is found that the lowest total loss occurs at 0.8 stator tooth pitch,and the slot harmonics can be decreased effectively. 展开更多
关键词 squirrel cage asynchronous motors skewed rotors LOSSES time-stepping finite element method (T-S FEM)
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