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NICKEL/ALUMINA METAL MATRIX NANOCOMPOSITES OBTAINED BY HIGH-ENERGY BALL MILLING AND SPARK PLASMA SINTERING

机译:高能球磨和火花等离子体烧结获得的镍/铝金属基纳米复合材料

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Metal matrix nanocomposites (MMNCs) are anticipated to offer significantly better performance than existing superalloys. Nickel/alumina nanocomposite samples were fabricated with a powder metallurgy method, combining high-energy ball milling (HEBM) and spark plasma sintering (SPS). The objective of this research is to determine the effect of alumina nanoparticle fraction and HEBM parameters on the powder preparation and sintering processes, and resultant microstructure and properties. Nickel-based powders containing various fractions (1, 5 and 15 vol.%) alumina nanoparticles were prepared by HEBM. The initial particle sizes were 44 μm and 50 nm for nickel and alumina, respectively. The milling process was conducted by starting with mixing at 250 rpm for 5 min, followed by cycling operation at high and low speeds (1200 rpm for 4 min and 150 rpm for 1 min). Samples at different milling times (30, 60, 90 and 120 min) of each composition were obtained. Scanning electron microscopy (SEM) was used to evaluate the dispersion of nanoparticles in the powders at different milling times. SPS technique was used for consolidation of the prepared powders. SEM images showed that alumina nanoparticles are homogeneously dispersed in the metal matrix in the sample containing 15 vol.% alumina. Hardness measurements in cross sections of SPSed samples showed higher values for Ni/Ak03 MMNC compared to pure Ni.
机译:预计金属基质纳米复合材料(MMNC)的性能将比现有的超级合金好得多。镍/氧化铝纳米复合材料样品是采用粉末冶金法结合高能球磨(HEBM)和火花等离子体烧结(SPS)制成的。这项研究的目的是确定氧化铝纳米粒子分数和HEBM参数对粉末制备和烧结过程的影响,以及由此产生的微观结构和性能。通过HEBM制备包含各种级分(1、5和15体积%)氧化铝纳米颗粒的镍基粉末。镍和氧化铝的初始粒径分别为44μm和50 nm。研磨过程是通过以250 rpm混合5分钟开始,然后以高低速循环操作(1200 rpm 4分钟和150 rpm 1分钟)来进行的。获得了每种组合物在不同研磨时间(30、60、90和120分钟)的样品。扫描电子显微镜(SEM)用于评估在不同研磨时间下纳米颗粒在粉末中的分散性。 SPS技术用于固结所制备的粉末。 SEM图像显示氧化铝纳米颗粒均匀地分散在含有15体积%氧化铝的样品中的金属基质中。与纯Ni相比,SPSed样品横截面的硬度测量结果显示Ni / Ak03 MMNC的值更高。

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