首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Fabrication of in situ Ni(W)-WC nano composites via mechanical alloying and spark plasma sintering
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Fabrication of in situ Ni(W)-WC nano composites via mechanical alloying and spark plasma sintering

机译:机械合金化和放电等离子体烧结原位制备Ni(W)-WC纳米复合材料

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摘要

Microstructural and mechanical properties of spark plasma sintered Ni-30 wt% W powders fabricated via mechanical alloying (MA) for 48 h were reported in the present study. Due to the intensive WC contamination during MA, the synthesized powders are termed as Ni(W)-WC nanocomposit.es. The MA'd powders were sintered at temperatures between 800 and 1000 °C via spark plasma sintering (SPS) technique and high density (~97%) Ni(W)-WC composite compacts having high micro hardness values (~4.30 GPa) and high elastic modulus (~270 GPa) were obtained. The effects of sintering temperature, duration and hBN spraying of the graphite die on the phase compositions, i.e. WC content, microstructure and mechanical properties were investigated systematically by using X-ray diffractometer (XRB), Rietveld analyses, scanning electron microscopy (SEM), microhardness and depth-sensing indentation techniques. The crystallite sizes of both the Ni(W) solid solution and the WC phases increased with increasing sintering temperature and durations: An average crystallite size of 39 nm for the Ni(W) solid solution phase in the SPS-800 sample increased to 86 nm for the SPS-1000-5 min sample, likewise, about 14 nm crystallite size of WC phase in the SPS-800 sample increased to 78 nm for the SPS-1000-5 min sample. The SPS-1000-hBN sample had the highest relative density and microhardness values of 97.33% and 4.35 GPa, respectively.
机译:在本研究中报道了通过机械合金化(MA)制备48小时的火花等离子体烧结的Ni-30 wt%W粉末的显微组织和力学性能。由于在MA期间WC受到严重污染,因此合成的粉末被称为Ni(W)-WC纳米复合材料。通过火花等离子体烧结(SPS)技术和高密度(〜97%)具有高显微硬度值(〜4.30 GPa)的高密度Ni(W)-WC复合压块烧结MA'd粉末获得高弹性模量(〜270 GPa)。利用X射线衍射仪(XRB),Rietveld分析,扫描电子显微镜(SEM)系统地研究了烧结温度,持续时间和石墨模具的hBN喷涂对相组成的影响,即WC含量,显微组织和力学性能。显微硬度和深度感应压痕技术。 Ni(W)固溶体和WC相的微晶尺寸均随着烧结温度和持续时间的增加而增加:SPS-800样品中Ni(W)固溶体相的平均微晶尺寸为39 nm。同样,对于SPS-1000-5 min样品,SPS-800-5样品中WC相的约14 nm晶粒尺寸增加到78 nm。 SPS-1000-hBN样品的最高相对密度和显微硬度值分别为97.33%和4.35 GPa。

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