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Effect of Bottom Ash and Fly Ash as a Susceptor Material on The Properties of Aluminium Based Composites Prepared by Microwave Sintering

机译:底灰和粉煤灰作为感受器材料对微波烧结铝基复合材料性能的影响

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The use of aluminium as a single material in automotive applications is not suitable without a mixture with reinforcement materials that can support the properties at high temperature. In this study, aluminium based composite were prepared with weight percentage of SiC reinforcement, varying from 5 to 20 wt%. Aluminium powder and reinforcement materials were mixed using ball milling machine with speed of 100 rpm for 2 hours. The powder mixture were then compressed at pressure 4 tonnes with 5 minutes holding time. The compact samples were sintered using microwave sintering technique. Microwave sintering techniques in this study using two different types of susceptor materials that are bottom ash and fly ash. Sintered aluminium based composites using bottom ash susceptor material involving the sintering temperature of 526 °C for 30 minutes whereas for the samples sintered using fly ash susceptor material, involving a temperature of 523 °C for 15 minutes. From the result, the sintered samples using fly ash susceptor material, showed higher density with a value of 2.1933 g/cm3 compared to bottom ash 2.0002 g/cm3 and having the higher hardness value 72.1315 HV compared to bottom ash 50.0511HV. The using of fly ash could affect the heating rate during the sintering process which could influence the properties of aluminium based composites. In conclusion, the type of susceptor could affect the physical and mechanical properties of aluminum-based composite reinforced with silicon carbide.
机译:如果不将铝与可在高温下保持性能的增强材料混合,则在汽车应用中将铝用作单一材料是不合适的。在这项研究中,制备的铝基复合材料的SiC增强材料的重量百分比为5至20 wt%。使用球磨机将铝粉和增强材料以100 rpm的速度混合2小时。然后将粉末混合物在4吨压力下压缩5分钟。使用微波烧结技术烧结压实样品。在这项研究中,微波烧结技术使用了两种不同类型的基座材料:底灰和粉煤灰。使用底灰粉感受体材料的烧结铝基复合材料,其烧结温度为526°C,持续30分钟;而使用粉煤灰感受体材料,烧结的样品,其温度为523°C,持续15分钟。从结果可以看出,使用粉煤灰感受器材料的烧结样品比底灰2.0002 g / cm3的密度更高,值为2.1933 g / cm3,与底灰50.0511HV相比,硬度值更高,为72.1315 HV。粉煤灰的使用会影响烧结过程中的加热速率,从而影响铝基复合材料的性能。总之,基座的类型可能会影响碳化硅增强的铝基复合材料的物理和机械性能。

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