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A Multi-Function Planar Inductor Based on 3D Printing and Its Optimization

机译:基于3D打印的多功能平面电感及其优化

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摘要

Nowadays, Planar magnetics are being widely used in industry due to its low profile, machine manufacturing accessibility, controllability, and reduction in AC winding loss. There are many ways to manufacture planar magnetics, including printed circuit boards (PCB), thick film, folded copper, etc. However, all the above manufacturing technologies are limited on two-dimensional (2D) plane. This paper proposed a multi-function planar inductor based on 3D printing, which has high efficiency and reliability. The copper winding of the proposed inductor is manufactured by 3D printing technology. The shape of the winding is designed to have dual functions of conducting current and dissipating heat. For PCB planar inductor, the spaces above and below the PCB footprint stretching out of the magnetic core are often wasted. The proposed inductor makes full use of the wasted spaces with winding occupying the spaces, causing a decline of copper loss with no more taking up spaces. One winding is divided into several cooling fins for enlarging heat dissipation area, further reducing maximum winding temperature and increasing reliability. One-dimensional calculation models of both DC resistance (DCR) and maximum temperature rise were established in this paper. Based on the models, the dimension of the winding can be optimized, including the number of fins in finned winding.
机译:如今,由于其较低的轮廓,机器制造等离感,可控性和交流绕组损失降低,平面磁力被广泛用于工业中。有许多方法可以制造平面磁性,包括印刷电路板(PCB),厚膜,折叠铜等。然而,所有上述制造技术都限制在二维(2D)平面上。本文提出了一种基于3D打印的多功能平面电感,具有高效率和可靠性。所提出的电感器的铜绕组由3D印刷技术制造。绕组的形状设计成具有导电电流和散热的双重功能。对于PCB平面电感器,通常浪费在磁芯的PCB占地面积上方和下方的空间通常浪费。所提出的电感充分利用浪费的空间占用空间,造成铜损失的下降,没有更多的占用空间。一个绕组分为几个冷却翅片,用于扩大散热区域,进一步降低最大绕组温度和增加的可靠性。本文建立了直流电阻(DCR)的一维计算模型和最大温度升高。基于模型,可以优化绕组的尺寸,包括翅片绕组中的翅片的数量。

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