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Effect of particle size particle surface modification pressing pressure and sintering temperature on microstructure and mechanical properties P/M AI-B_4C composites

机译:粒径颗粒表面改性压力和烧结温度对P / M AI-B_4C复合材料显微组织和力学性能的影响。

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In the present work, effect of particle size, particle surface modification, pressing pressure and sintering temperature on microstructure and mechanical properties were investigated at B4C reinforced aluminium matrix composites produced with powder metallurgical route. In order to improve the matrix/reinforcement interface bonding, prior to processing, electroless nickel coating and partial oxidation were performed on the B4C particles. Three different B4C particle sizes (10, 32 and 66 μm) were used and three different sintering temperatures (550, 590 and 630 ℃) were performed for three different sintering time (2, 4 and 6 h) to produce the composites. Microstructures were characterised by using optical microscope and field emission gun SEM (FEG-SEM) equipped with energy dispersive analysis (EDS). Compression strength, hardness, density and porosity values were determined. After microstructural and mechanical investigations, is has seen that optimum values were obtained from fine particles modified with electroless nickel coating, sintered at 630℃ for 6 hours.
机译:在本工作中,研究了粉末冶金路线生产的B4C增强铝基复合材料的粒径,颗粒表面改性,压制压力和烧结温度对组织和力学性能的影响。为了改善基体/增强界面的结合,在加工之前,对B4C颗粒进行了化学镀镍和部分氧化处理。使用三种不同的B4C粒径(10、32和66μm),并在三种不同的烧结时间(2、4和6 h)下进行三种不同的烧结温度(550、590和630℃)以生产复合材料。通过使用配备了能量色散分析(EDS)的光学显微镜和场发射枪SEM(FEG-SEM)对微结构进行表征。测定抗压强度,硬度,密度和孔隙率值。经过微观结构和力学研究,可以看出,经化学镀镍改性的细颗粒在630℃下烧结6小时,可获得最佳值。

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