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Investigation of the structural and mechanical properties of micro-/nano-sized Al2O3 and cBN composites prepared by spark plasma sintering

机译:通过火花等离子体烧结制备的微/纳米尺寸Al2O3和CBN复合材料的结构和力学性能研究

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Alumina-cubic boron nitride (cBN) composites were prepared using the spark plasma sintering (SPS) technique. Alpha-alumina powders with particle sizes of similar to 15 um and similar to 150 nm were used as the matrix while cBN particles with and without nickel coating were used as reinforcement agents. The amount of both coated and uncoated cBN reinforcements for each type of matrix was varied between 10 to 30 wt%. The powder materials were sintered at a temperature of 1400 degrees C under a constant uniaxial pressure of 50 MPa. We studied the effect of the size of the starting alumina powder particles, as well as the effect of the nickel coating, on the phase transformation from cBN to hBN (hexagonal boron nitride) and on the thermo-mechanical properties of the composites. In contrast to micro-sized alumina, utilization of nano-sized alumina as the starting powder was observed to have played a pivotal role in preventing the cBN-to-hBN transformation. The composites prepared using nano-sized alumina reinforced with nickel-coated 30 wt% cBN showed the highest relative density of 99% along with the highest Vickers hardness (H-v2) value of 29 GPa. Because the compositions made with micro-sized alumina underwent the phase transformation from cBN to hBN, their relative densification as well as hardness values were relatively low (20.9-22.8 GPa). However, the nickel coating on the cBN reinforcement particles hindered the cBN-to-hBN transformation in the micro-sized alumina matrix, resulting in improved hardness values of up to 24.64 GPa.
机译:使用火花等离子体烧结(SPS)技术制备氧化铝 - 立方氮化硼(CBN)复合材料。 α-氧化铝粉末粉末尺寸类似于15μm,类似于150nm的粉末作为基质,而具有和不含镍涂层的CBN颗粒作为增强剂。每种基质的涂覆和未涂覆的CBN增强件的量在10至30wt%之间变化。在50MPa的恒定单轴压力下在1400℃的温度下烧结粉末材料。我们研究了起始氧化铝粉末颗粒的尺寸的影响,以及镍涂层的效果,对来自CBN至HBN(六边形氮化硼)和复合材料的热力学性能的相变。与微尺寸的氧化铝相反,观察到作为起始粉末的纳米尺寸氧化铝的利用在预防CBN-〜HBN转化方面发挥了关键作用。使用用镍涂覆的30wt%CBN加固的纳米氧化铝制备的复合材料显示出最高相对密度为99%,以及最高的维氏硬度(H-V2)值为29GPa。因为用微尺寸氧化铝制备的组合物从CBN达到HBN的相变,它们的相对致密化以及硬度值相对较低(20.9-22.8GPa)。然而,CBN增强颗粒上的镍涂层阻碍了微尺寸的氧化铝基质中的CBN- HBN转化,导致高达24.64GPa的改善硬度值。

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