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The effect of rotating magnetic field on the microstructure of in situ TiB2/Cu composites

机译:旋转磁场对原位TIB2 / Cu复合材料微观结构的影响

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Nano ceramic particulate reinforced metal matrix composites are confronted with the problem Of particle aggregation emerging in the process of solidification. It sharply deteriorates the mechanical properties of the composites. In order to improve the microstructure and particle distribution, in situ TiB2/Cu composites were prepared using Ti and Cu-B master alloys in a vacuum medium frequency induction furnace equipped with a rotating magnetic field (RMF). The effect of RMF magnetic field intensity employed on the microstructure and particles distribution of the TiB2/Cu composites were investigated. The results show that with the applied RMF, TiB2 particles are homogeneously distributed in the copper matrix, which significantly improves the mechanical properties of TiB2/Cu composites. The mechanism of RMF may be ascribed to the following two aspects. On the one hand, the electromagnetic body force generated by appropriate RMF drives forced convection in the equatorial plane of composite melt during solidification. On the other hand, a secondary flow in the meridional plane is engendered by a radial pressure gradient, thus making a strong agitation in the melt. These two effects result in a homogenous dispersion of TiB2 particles in the copper matrix, and hence excellent properties of TiB2/Cu composites were obtained.
机译:纳米陶瓷颗粒增强金属基复合材料面对凝固过程中颗粒聚集的问题。它急剧地降低了复合材料的机械性能。为了改善微观结构和颗粒分布,在配备有旋转磁场(RMF)的真空介质频率感应炉中,使用Ti和Cu-B主合金制备原位TiB2 / Cu复合材料。研究了对微观结构和粒子分布的RMF磁场强度的影响进行了TIB2 / Cu复合材料的分布。结果表明,通过施加的RMF,TIB2颗粒在铜基中均匀分布,从而显着提高了TIB2 / Cu复合材料的机械性能。 RMF的机制可以归因于以下两个方面。一方面,通过适当的RMF产生的电磁体力在凝固过程中强制转动复合熔体的赤道平面中的强制对流。另一方面,子午平面中的二次流动由径向压力梯度发出,从而在熔体中进行强烈的搅拌。这两种效应导致铜基质中TIB2颗粒的均匀分散,因此获得了TIB2 / Cu复合材料的优异性能。

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