The boundary condition of temperature field for waved-edge milling insert is researched based on the heat transfer, fluid dynamics and metal cutting theory.
通过传热学、流体力学、切削理论的综合运用对波形刃铣刀片温度场边界条件进行了研究。
Based on diverse working condition featured by dust, abrasiveness, high temperature and strong magnetic field, two or three layers of insulation is considered when designing.
根据电解车间内多粉尘、磨损性、高温度、强磁场的恶劣工作条件,有针对性地设计了两层至三层绝缘层。
The field experiments prove that based on the motor running condition, this solution can real time continuously adjust its running frequency to reach object of energy saving and efficiency increasing.
现场实验证明,该解决方案能根据电机运行状况实时、连续地调节其运行频率,从而达到节能增效的目的。
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