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Influence of aluminium content on the microstructure and densification of spark plasma sintered nickel aluminium bronze

机译:铝含量对火花等离子体烧结镍铝青铜微观结构和致密化的影响

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In this study, nickel aluminium bronze alloys (NAB) with appreciable densification and improved microhardness was consolidated via spark plasma sintering technique. The NAB alloy was synthesized from starting elemental powders comprised nickel (4 wt.%), aluminium (6, 8 & 10 wt.%) and copper using dry milling technique. Starting powders were homogeneously milled using gentle ball mill for 8 h at a speed of 150 rpm and a BPR of 10:1. Subsequently, the milled powders were consolidated using the spark plasma sintering technique at 750 under a compressive pressure of 50 MPa and rate of heating (100 /min). Furthermore, the powders and sintered alloys were characterized using SEM and XRD to ascertain the microstructural and phase evolutions during the synthesis of the NAB. The density and microhardness of the alloys were further investigated to ascertain the integrity of the sintered alloys. The results indicated that the increase in aluminium content resulted in the formation of intermetallic and beta phases on the alloy after sintering and the microhardness of the alloys improved with the increase in aluminium content.
机译:在本研究中,通过火花等离子体烧结技术合并具有明显的致密化和改善的微硬度的镍铝青铜合金(NAB)。使用干磨技术,从起始元素粉末合成Nab合金,其中包含镍(4wt.%),铝(6,8和10wt%)和铜。使用温和的球磨机以150rpm的速度和10:1的BPR使用温和球磨机均匀研磨的起始粉末。随后,在50MPa的压缩压力下在750处使用火花等离子体烧结技术和加热速率(100 / min)来固结碾磨粉末。此外,使用SEM和XRD表征粉末和烧结合金以确定NAB合成过程中的微观结构和相进化。进一步研究了合金的密度和显微硬度以确定烧结合金的完整性。结果表明,在烧结后,铝含量的增加导致合金中的金属间和β相的形成,并随着铝含量的增加而改善了合金的显微硬度。

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