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Oxidation Resistance of Materials Based on Ti3AlC2 Nanolaminate at 600 °C in Air

机译:基于Ti3AlC2纳米层压板的材料在600°C的空气中的抗氧化性

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摘要

The oxidation behavior of Ti3AlC2-based materials had been investigated at 600 °C in static air for 1000 h. It was shown that the intense increase of weight gain per unit surface area for sintered material with porosity of 22 % attributed to oxidation of the outer surface of the specimen and surfaces of pores in the bulk material. The oxidation kinetics of the hot-pressed Ti3AlC2-based material with 1 % porosity remarkably increased for the first 15 h and then slowly decreased. The weight gain per unit surface area for this material was 1.0 mg/cm2 after exposition for 1000 h. The intense initial oxidation of Ti3AlC2-based materials can be eliminated by pre-oxidation treatment at 1200 °C in air for 2 h. As a result, the weight gain per unit surface area for the pre-oxidized material did not exceed 0.11 mg/cm2 after 1000 h of exposition at 600 °C in air. It was demonstrated that the oxidation resistance of Ti3AlC2-based materials can be significantly improved by niobium addition.
机译:在600摄氏度的静态空气中研究了Ti3AlC2基材料的氧化行为1000小时。结果表明,孔隙率为22%的烧结材料的单位表面积重量增加极大,这归因于样品外表面和散装材料中孔表面的氧化。孔隙率为1%的热压Ti3AlC2基材料的氧化动力学在开始的15小时内显着增加,然后缓慢降低。暴露1000小时后,该材料的单位表面积重量增加为1.0 mg / cm 2 。通过在1200°C的空气中进行2小时的预氧化处理可以消除Ti3AlC2基材料的强烈初始氧化。结果,在空气中于600°C暴露1000 h后,预氧化材料的单位表面积重量增加不超过0.11 mg / cm 2 。结果表明,添加铌可以显着提高Ti3AlC2基材料的抗氧化性。

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