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Effect of rare earth oxide addition on microstructures of ultra-fine WC-Co particulate reinforced Cu matrix composites prepared by direct laser sintering

机译:稀土氧化物对直接激光烧结制备超细WC-Co颗粒增强Cu基复合材料微观结构的影响

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This paper presents a detailed investigation into the influence of the rare earth (RE) oxide (La_2O_3) addition upon the densification and the resultant microstructural characteristics of the submicron WC-Co paniculate reinforced Cu matrix composites prepared by direct laser sintering. It is found that the relative density of the laser sintered sample with 1 wt.% La_2O_3 addition increased by 11.5% as compared with the sample without RE addition. The addition of RE element favored the microstructural refinement and improved the particulate dispersion homogeneity and the particulate/matrix interfacial coherence. The metallurgical functions of the RE element in improving the sinterability were also addressed. It shows that due to the unique properties of RE element such as high surface activity and large atomic radius, the addition of trace RE element can decrease the surface tension of the melt, resist the grain growth coarsening and increase the heterogeneous nucleation rate during laser sintering.
机译:本文详细研究了稀土(RE)氧化物(La_2O_3)的添加对直接激光烧结制备的亚微米WC-Co颗粒增强铜基复合材料致密化的影响以及所得的微结构特征。发现与未添加RE的样品相比,添加了1重量%La_2O_3的激光烧结样品的相对密度增加了11.5%。 RE元素的加入有利于微结构的细化并改善了颗粒分散体的均匀性和颗粒/基质界面的相干性。还讨论了稀土元素在改善可烧结性方面的冶金功能。结果表明,由于稀土元素的独特性质,如高表面活性和大原子半径,添加微量稀土元素可以降低熔体的表面张力,防止晶粒长大,并提高激光烧结过程中的不均匀成核率。 。

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