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Optimization of process parameters for spark plasma sintering of nano structured SAF 2205 composite

机译:纳米结构SAF 2205复合材料火花等离子体烧结工艺参数的优化

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This research optimized spark plasma sintering (SPS) process parameters in terms of sintering temperature, holding time and heating rate for the development of a nano-structured duplex stainless steel (SAF 2205 grade) reinforced with titanium nitride (TiN). The mixed powders were sintered using an automated spark plasma sintering machine (model HHPD-25, FCT GmbH, Germany). Characterization was performed using X-ray diffraction and scanning electron microscopy. Density and hardness of the composites were investigated. The XRD result showed the formation of FeN0.068. SEM/EDS revealed the presence of nano ranged particles of TiN segregated at the grain boundaries of the duplex matrix. A decrease in hardness and densification was observed when sintering temperature and heating rate were 1200°C and 150°C/min respectively. The optimum properties were obtained in composites sintered at 1150°C for 15min and 100°C/min. The composite grades irrespective of the process parameters exhibited similar shrinkage behavior, which is characterized by three distinctive peaks, which is an indication of good densification phenomena.
机译:这项研究针对烧结氮化钛(TiN)增强的纳米结构双相不锈钢(SAF 2205级)的开发,在烧结温度,保温时间和加热速率方面优化了火花等离子体烧结(SPS)工艺参数。使用自动火花等离子体烧结机(型号为HHPD-25,FCT GmbH,德国)将混合的粉末烧结。使用X射线衍射和扫描电子显微镜进行表征。研究了复合材料的密度和硬度。 XRD结果表明形成了FeN0.068。 SEM / EDS揭示了存在于双相基质的晶界处的TiN纳米级颗粒的存在。当烧结温度和加热速率分别为1200℃和150℃/ min时,观察到硬度和致密化降低。在1150°C烧结15分钟和100°C / min的复合材料中获得了最佳性能。无论工艺参数如何,复合材料等级均表现出相似的收缩行为,其特征在于三个明显的峰,这表明良好的致密化现象。

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