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Optimization of Sintering Temperature On Microwave Sintering of The Composite Iron-Chromium Reinforced with Alumina Particles.

机译:用氧化铝颗粒加固复合铁 - 铬微波烧结烧结温度的优化。

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Microwave sintering technology has become attractive and gained interest among material researchers due its capability and advantages over conventional sintering. Since two decades ago, intensive researches on microwave sintering have been carried out to sinter ferrous and non -ferrous material purposely to produce composites with enhanced properties not achievable via conventional sintering. In this research, the effect of sintering temperature on the microstructure and properties of the sintered 84Fe-11Cr-5Al_O_3 composite was investigated. Sintering was carried out in a tubular microwave furnace HAMiLab-V3 under N_2 atmosphere. The sintering temperatures were selected between 1100°C to 1400°C with increment of 100°C. A study of microstructure and physical properties was carried out on sintered samples. It was observed that, relative density and porosity was slightly changed with increasing sintering temperature and hardness increased tremendously at sintering temperature of between 1300°C to 1400°C.However, the results showed that the optimum sintering temperature was at 1400°C.
机译:微波炉烧结技术在材料研究人员之间变得有吸引力,并且在传统烧结的能力和优势的情况下获得了兴趣。自二十年前以来,已经在用常规烧结中产生了对微波烧结的密集研究,以产生具有增强性能的复合材料,通过常规烧结可以实现增强性能。在该研究中,研究了烧结温度对烧结84FE-11CR-5AL_3复合材料的微观结构和性质的影响。在N_2大气下的管状微波炉Hamilab-V3中进行烧结。烧结温度在1100℃至1400℃之间,增量为100℃。在烧结样品上进行了微观结构和物理性质的研究。观察到,随着烧结温度的增加,在1300℃至1400℃的烧结温度下,相对密度和孔隙率随着烧结温度的增加而略微增加,结果表明,最佳烧结温度为1400℃。

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