锻造过程中电机轮毂功率及参数建模

Run Xu
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引用次数: 1

摘要

随着电机车轮直径和应力的增大,施加在电机车轮上的功率会成比例增大,这意味着电机在锻造过程中会形成较大的功率。此外,随着高度和旋转的增加,它也可能增加。通过建立功率方程,可以在制作前进行性能设计和校核。根据它们之间的曲线计算轮毂功率需要详细值。轮毂的应力是首先要考虑的因素,其次是轮毂的直径和高度。转速为10r/m,高度为350mm ~ 150mm时功率较大,分别为12KW和35KW。这意味着在这个场的范围内,能量可能足够大。当继续倾斜高度时,功率不会改变。时间随直径和高度的增加而增加。时间会随着旋转的减少而倾斜。
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The Modeling of Power and Parameters on Wheel Hub for Motor in Forging Process
With the increasing diameter and stress the power applied to motor wheel may increase in proportional, which means the big power will be formed in forge process of motor. Furthermore with increasing height and rotation it may increase as well. So that through power equation to be established the properties may be designed and checked before made. Detail value is needed to calculate the hub power according to the curves between them. The stress of hub is the first factor to consider and then its diameter and height which is second factor. The bigger power is 12KW and 35KW when rotation is 10r/m and height is from 350mm to 150mm respectively. That means that in the scope of this field the power may be bigger enough. When continuing to incline height the power will no change. The time increases as diameter and height inclines. The time will incline as the rotation declines.
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