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Pretreatment process of SiC particles and fabrication technology of SiC particulate reinforced Zn-Al alloy matrix composite

机译:SiC颗粒的预处理工艺及SiC颗粒增强Zn-Al合金基复合材料的制备工艺

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摘要

In the present paper, a novel pretreatment process for SiC particulate and a new mechanical - electromagnetic combination stirring process for fabricating Zn - Al(ZA27)/SiC_p composites are described. The optimal pretreatment route and the most appropriate SiC particle parameters were experimentally determined. The pretreated SiC particles were easily incorporated and dispersed in the ZA27 alloy melt and were not agglomerated before addition to the melt. The surface status of the SiC particles before and after pretreatment was observed and analysed by scanning electron microscopy, energy dispersive spectroscopy, X-ray diffraction, and transmission electron microscopy. It was found that gas existing on the SiC particle surfaces by physical and chemical absorption was a significant hindrance to the incorporation and dispersion of SiC particles in the alloy melt. The gas absorption was induced by ultrafine SiC powders, fracture steps, and ions existing on the SiC particle surfaces. The carbon, silicon, and oxygen contents on the SiC surface were varied with different pretreatment techniques. Moreover, a dense layer of amorphous SiO_2, which improves wetting of SiC particles in the ZA27 melt, was formed owing to calcination of SiC particles in air. The new combined stirring process exploits the advantages of both mechanical and electromagnetic stirring of the melt at the different processing stages during fabrication. The microstructural characteristics of the resulting composites are: homogeneously distributed SiC particles, fewer macro gas blows and inclusions, and little shrinkage porosity in comparison to composites fabricated by a mechanical stirring process. Finally, the mechanisms of degassing and reducing the porosity and the number of oxide inclusions are discussed.
机译:本文介绍了一种新型的SiC颗粒预处理工艺和一种新的机械-电磁组合搅拌工艺,以制备Zn-Al(ZA27)/ SiC_p复合材料。实验确定了最佳的预处理途径和最合适的SiC颗粒参数。预处理后的SiC颗粒易于掺入并分散在ZA27合金熔体中,并且在添加到熔体中之前不会聚结。通过扫描电子显微镜,能量分散光谱,X射线衍射和透射电子显微镜观察并分析了SiC颗粒在预处理之前和之后的表面状态。已经发现,通过物理和化学吸收存在于SiC颗粒表面上的气体显着阻碍了SiC颗粒在合金熔体中的结合和分散。气体吸收是由超细SiC粉末,断裂台阶和SiC颗粒表面上存在的离子引起的。 SiC表面上的碳,硅和氧含量随不同的预处理技术而变化。此外,由于空气中的SiC颗粒煅烧,形成了一层致密的非晶SiO_2层,可改善ZA27熔体中SiC颗粒的润湿性。新的混合搅拌工艺利用了制造过程中不同加工阶段的熔体机械和电磁搅拌优势。与通过机械搅拌工艺制造的复合材料相比,所得复合材料的微观结构特征为:均匀分布的SiC颗粒,较少的宏观气体吹入和夹杂物以及较小的收缩孔隙率。最后,讨论了脱气,降低孔隙率和氧化物夹杂物数量的机理。

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