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Densification Mechanism of Soft Magnetic Composites Using Ultrasonic Compaction for Motors in EV Platforms

机译:电动汽车平台中超声波压实软磁复合材料的致密化机理

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摘要

In this paper, the densification mechanism of ultrasonic compaction was analyzed using a force balance model. Ultrasonic compaction is quite a promising way to solve the lower mechanical property problem of green compact in the compaction process, although it has some obstacles to overcome for its various applications. Our model proposes that the resultant density is achieved as the applied and resistance forces reach the equilibrium state. Based on the proposed model, the ultrasonic compaction increases the density of green compact by reducing the internal friction between the powder and compaction die, as well as the internal friction among particles themselves. It was also found that during the powder compaction, the ultrasonic vibration mostly contributes to slipping and the rearrangement of the particles.
机译:本文使用力平衡模型分析了超声压实的致密化机理。超声波压实是解决压实过程中压坯较低机械性能问题的一种很有前途的方法,尽管它在各种应用中有一些障碍需要克服。我们的模型提出,当施加的力和阻力达到平衡状态时,可以达到最终的密度。基于所提出的模型,超声压实通过减少粉末与压实模具之间的内部摩擦以及颗粒自身之间的内部摩擦来增加生坯的密度。还发现在粉末压实过程中,超声振动主要有助于滑动和颗粒的重排。

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