Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement

S. Shamsuddin, S. B. Jamaludin, Zuhailawati Hussain, Z. Ahmad
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引用次数: 1

Abstract

Fe-Cr matrix composites reinforced with Al2O3 particulates fabricated by powder metallurgy (PM) method offer potential for cheaper wear resistance materials and high temperature application. The influence of Al2O3 amount on densification, micro-hardness, wear resistance and strength of the composites were evaluated. The results showed that Al2O3 yield good influence on Fe-Cr matrix composites. Increases the amount of Al2O3 to more than 5 wt% decreases composite's relative density. The micro-hardness and wear resistance of the composites improved with increasing amount of Al2O3 to 20 wt%. Beyond 10 wt% Al2O3 addition, the strength properties began to decrease with an increase in Al“2”O3 addition. Overall, the composites reinforced with 5 wt% Al2O3 exhibited the best results.
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添加和不添加Al2O3的Fe-Cr基复合材料的干滑动磨损和抗压强度
粉末冶金(PM)方法制备的Al2O3颗粒增强Fe-Cr基复合材料为廉价耐磨材料和高温应用提供了潜力。考察了Al2O3用量对复合材料致密化、显微硬度、耐磨性和强度的影响。结果表明,Al2O3对Fe-Cr基复合材料的产率有很好的影响。当Al2O3含量增加到5 wt%以上时,复合材料的相对密度降低。当Al2O3添加量增加到20%时,复合材料的显微硬度和耐磨性得到改善。Al2O3添加量超过10 wt%后,随着Al“2”O3添加量的增加,强度性能开始下降。总体而言,添加5 wt% Al2O3的复合材料表现出最好的增强效果。
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