Establishment of Design Criteria for Slot Shape Considering Castability of Aluminum Diecasting Process for Large Industrial Motor Rotor

Sung-Mo Lee, D. Kim, T. Park, Y. Yoon
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Abstract

Numerical analysis has been performed to evaluate effect of the shape variables such as core length, slot width and slot length on misrun in aluminum die casting process for motor rotor. The predictive method for misrun in diecasting process was established by comparing the result of numerical analysis and an actual motor rotor. Solidification modulus was introduced to predict quantitatively the castability of aluminum diecasting process for motor rotor. It was found that there are minimum critical solidification modulus and slot width to prevent misrun according to core length through diecasting limit diagram proposed using the predictive method. The critical solidification modulus and slot width increase as core length increases to prevent misrun of aluminum motor rotor in diecasting process. Based on the results, the design criteria of slot shape to prevent misrun of aluminum motor rotor with various core length were established.
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大型工业电机转子铝合金压铸工艺槽形设计准则的建立
对电机转子铝压铸成形过程中芯长、槽宽、槽长等形状变量对失误的影响进行了数值分析。通过数值分析结果与实际电机转子的比较,建立了压铸过程中误跑的预测方法。引入凝固模量定量预测电机转子铝压铸工艺的浇注性能。利用预测方法提出的压铸极限图,发现根据芯长存在防止误跑的最小临界凝固模量和槽宽。为防止铝电机转子在压铸过程中发生误转,临界凝固模量和槽宽随芯长增大而增大。在此基础上,建立了防止不同铁心长度铝电机转子误运转的槽形设计准则。
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