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Corrosion behavior of reaction bonded Si3N4-SiC and SiAlON-SiC composites in simulated aluminum smelting conditions

机译:反应键合Si3N4-SiC和SiAlON-SiC复合材料在模拟铝熔炼条件下的腐蚀行为

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composites, which are widely used as sidewall refractories in aluminum smelting cells, have been produced by reaction bonding and their corrosion performance assessed hi simulated aluminum electrochemical cell conditions. Additional samples were produced with the silicon nitride bonding phase replaced by p SiAlON with compositions ranging from Z = 1-4 in Si6-zAlzOzNs-z. The formation of the SisN4 and SiAlON bonding phases were studied by reaction bonding of silicon powders in a nitrogen atmosphere at low temperatures to promote the formation of silicon nitride, followed by a higher heating step to produce P SiAlON composites of different composition. The corrosion performance was studied in a laboratory scale aluminum electrolysis cell where samples were exposed to both liquid attack from molten salt bath and corrosive gas attack. For the Si3N4 bonded samples, the corrosion resistance was shown to be strongly dependent on the environment during corrosion testing, with samples in the gas phase showing higher corrosion than those immersed in the bath. Samples that had been pre-soaked in the bath and then tested in the gas phase showed the highest corrosion due to the combined effects of bath penetration and gas attack. For the SiAlON bonded samples, the corrosion results showed similar trends but were complicated by the presence of a strongly adherent layer on the samples which influenced volume measurements. This layer is believed to be alumina and appears to form through an interaction with the SiAlON and the bath components, since no such layer was observed for the silicon nitride samples.
机译:通过反应结合制备了广泛用作铝冶炼电池侧壁耐火材料的复合材料,并在模拟铝电化学电池条件下评估了它们的腐蚀性能。在Si6-zAlzOzNs-z中,Z值为1-4范围内的氮化硅键合相被p SiAlON代替,生成了其他样品。通过在低温下在氮气氛中硅粉的反应键合以促进氮化硅的形成,然后通过更高的加热步骤来生产不同组成的P SiAlON复合材料,研究了SisN4和SiAlON键合相的形成。在实验室规模的铝电解槽中对腐蚀性能进行了研究,样品在铝电解槽中既暴露于熔融盐浴的液体侵蚀,也遭受腐蚀性气体的侵蚀。对于Si3N4键合样品,在腐蚀测试过程中,其耐腐蚀性与环境密切相关,气相样品的腐蚀程度高于浸入浴中的样品。由于浴液渗透和气体侵蚀的综合作用,预先浸入浴液然后在气相中测试的样品显示出最高的腐蚀。对于SiAlON粘结的样品,腐蚀结果显示出相似的趋势,但由于样品上存在影响体积测量的强粘附层而变得复杂。该层被认为是氧化铝,并且似乎是通过与SiAlON和镀液组分的相互作用而形成的,因为对于氮化硅样品没有观察到这种层。

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