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Effect of CeO2 on Corrosion Resistance of High-Current Pulsed Electron Beam Treated Pressureless Sintering Al-20SiC Composites

机译:CEO2对高电流脉冲电子束耐腐蚀性烧结Al-20sic复合材料的影响

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In this paper, the effect of rare earth Ce on the corrosion resistance of Al-20SiC composites treated with high-current pulsed electron beams is investigated, and the corresponding corrosion mechanism is proposed. The scanning electron microscope (SEM) results show that cracks arise on the surface of Al-20SiC composites prepared by pressureless sintering. After electron beam treatment, the pores on the surface are reduced because of the filling of Al liquid. After adding CeO2 to Al-20SiC composites, the wettability between Al and SiC phases is improved, thus realizing metallurgical bonding of the two phases, and microcracks generated after HCPEB treatment are significantly eliminated. Glancing X-ray diffraction (GIXRD) results show that after electron beam treatment, aluminum grains tend to grow more favorably with the stable and dense crystal plane of Al(111), thus improving corrosion resistance. The electrochemical test results show that the corrosion current density decreases by one order of magnitude with increase in the number of pulses because of rare earth Ce compared to the initial Al-20SiC composite specimens, indicating that the corrosion resistance of the Al-20SiC-0.3CeO2 composite is improved. This is because rare earth not only eliminates microcracks, but also changes the type of corrosion from localized to uniform, thus improving corrosion resistance. The Al-based composite material modified by electron beam and rare earth has many potential applications and development prospects.
机译:本文研究了稀土CE对高电流脉冲电子束处理的铝合金复合材料耐腐蚀性的影响,提出了相应的腐蚀机制。扫描电子显微镜(SEM)结果表明,通过无压烧结制备的Al-20SIC复合材料的表面上出现裂缝。在电子束处理之后,由于Al液体的填充,表面上的孔减小。在将CeO2添加到Al-20SIC复合材料后,改善了Al和SiC相之间的润湿性,从而实现了两相的冶金结合,并且显着消除了HCPEB处理后产生的微裂纹。闪烁的X射线衍射(GixRD)结果表明,在电子束处理后,铝晶粒倾向于与Al(111)的稳定和致密的晶面更有利地生长,从而提高耐腐蚀性。电化学测试结果表明,由于稀土化合物的较罕见的Al-20SIC复合标本,腐蚀电流密度随着较稀土的增加而增加,脉冲数量增加,表明AL-20SIC-0.3的耐腐蚀性CEO2复合材料得到改善。这是因为稀土不仅消除了微裂纹,而且还改变了从局部化到均匀的腐蚀的类型,从而提高了耐腐蚀性。通过电子束和稀土改性的基于铝的复合材料具有许多潜在的应用和发展前景。

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