通过线圈直径变化来提高感应电动机性能

Yudhi Agussationo, Politeknik Jambi
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引用次数: 0

摘要

各种线径三相感应电动机的测试。首先,找出感应电动机上理想的导线尺寸。第二,不同绕组线尺寸的感应电动机的功率比。第三,找出不同绕组尺寸的异步电动机产生的转矩。然后,分别取两台直径为0.6 mm和0.5 mm绕组线的电机所使用的功率数据、转速数据和直径为0.6 mm和0.5 mm的异步电机产生的转矩进行感应电机测试。因此,我们可以得到结果的感应电动机直径0.6毫米线使用的最大功率549.10瓦特或超过了感应电动机直径0.5毫米的线绕只使用最大功率345.95瓦特,感应电动机绕组线直径0.6毫米产生最大转矩的746.92 Nm或大于一个感应电动机绕组线的直径0.5毫米,只产生383.97 Nm的最大扭矩。因此,可以得出结论,每分钟(RPM)的转数越多,产生的扭矩就越小,然后,产生的扭矩越大,使用的功率就越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Peningkatan Kinerja Motor Induksi Melalui Variasi Diameter Lilitan Kawat
Testing of 3 phase induction motors with a variety of wire diameters. First, find out the ideal wire size on an induction motor. Second, ratio of the power used on an induction motor with different winding wire sizes. Third, to find out the torque produced by an induction motor with different wire winding sizes. Then, The induction motor test was performed by taking the power data used on two motors with a diameter of 0.6 mm and 0.5 mm winding wire, RPM data and torque produced by an induction motor with a diameter of 0.6 mm and 0.5 mm. So, we can get the results the induction motor with a diameter of 0.6 mm wire uses as maximum power of 549.10 Watt or more than the induction motor with a diameter of a wire wound of 0.5 mm which only uses a maximum power of 345.95 Watt, the wire diameter induction motor winding 0.6 mm produces a maximum torque of 746.92 Nm or greater than an induction motor with a diameter of 0.5 mm winding wire which only produces a maximum torque of 383.97 Nm. So, It can be conclude that the more number of revolutions per minute (RPM), the torque produced will be smaller, then, the greater the torque produced, the more power is used.
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