首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Densification, Microstructure, and Tribomechanical Performance of SPS-Processed 27R-SiAlON Polytype-Reinforced AlN: A Comparison Between Continuous and Pulsed Direct Current Mode
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Densification, Microstructure, and Tribomechanical Performance of SPS-Processed 27R-SiAlON Polytype-Reinforced AlN: A Comparison Between Continuous and Pulsed Direct Current Mode

机译:SPS处理的27R-SiAlon Polytype-Contiforced ALN的致密化,微观结构和纤维学性能:连续和脉冲直流模式的比较

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The effects of current conduction modes of spark plasma sintering (SPS) (within the temperature range of 1800 degrees C to 2000 degrees C) on densification, microstructure, and tribomechanical properties of indigenously processed, additive-free AlN reinforced with 27R-SiAlON polytype (prepared by carbothermal-reduction-nitridation technique) have been reported. Sintering curves and density data of sintered specimens under pulsed direct current mode (PM) show improved densification over continuous direct current mode. The reason for enhanced density under PM may be due to the enhanced electrical discharge within the capacitor banks formed on the insulating surface of SiAlON particles. Low-temperature sintered specimen principally contained equiaxed grains, while higher sintering temperature promoted elongation in grains. The denser composite (maximum being sintered at 2000 degrees C) offered much improved Vickers hardness and indentation fracture toughness in comparison to those for less dense specimens. Composites sintered under PM show the existence of elongated 27R-SiAlON grains. These elongated grains facilitate enhanced energy dissipation through crack bridging and deflection, which are the key factors behind obtaining the higher toughness of the dense composite. Unlubricated linear scratch experiments also indicated better wear resistance of the higher temperature sintered specimen. The present study establishes the suitability of using PM during SPS processing of AlN composite reinforced with 27R-SiAlON polytype that offers satisfactory tribomechanical performance. (C) The Minerals, Metals & Materials Society and ASM International 2019
机译:电流传导模式的火花等离子体烧结(SPS)(在1800℃至2000℃的温度范围内)的致密化,微观结构和染色机械性能,用27R-Sialon Polytype加强了无抗原的无添加剂Aln(已经报道了通过Carbothotmal-Rexing-氮化技术制备的)。脉冲直流模式(PM)下烧结样品的烧结曲线和密度数据显示了连续直流模式的改进致密化。 PM下的增强密度的原因可以是由于在锡亚顿颗粒的绝缘表面上形成的电容器组内的增强的放电。低温烧结样品主要含有等轴晶粒,而较高的烧结温度促进晶粒伸长率。与较少致密样本的人相比,更密集的复合材料(在2000摄氏度烧结时烧结)提供了大量改善的维氏硬度和压痕断裂韧性。下午烧结的复合材料显示了细长的27R-Sialon颗粒的存在。这些细长的晶粒通过裂缝桥接和偏转有助于提高能量耗散,这是获得致密复合材料较高韧性的关键因素。非螺母线性划痕实验还表明较高温度烧结样品的耐磨性更好。本研究规定了使用27R-Sialon Polytype的ALN复合材料的SPS加工过程中使用PM的适用性,提供令人满意的纤维组件。 (c)2019年矿物质,金属和材料协会和ASM国际

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