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Effect of consolidation pressure on phase evolution during sintering of mechanically alloyed Al_(86)Ni_8Y_6 amorphous powders via spark plasma sintering

机译:固结压力对机械合金化Al_(86)Ni_8Y_6无定形粉末烧结等离子烧结过程中相变的影响

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摘要

Mechanically alloyed amorphous Al_(86)Ni_8Y_6 powders were consolidated by spark plasma sintering (SPS) and the effect of varying sintering pressure (100-400 MPa) on phase transformation and resulting mechanical property was studied. Fully amorphous Al_(86)Ni_8Y_6 powder obtained via mechanical alloying exhibited good thermal stability with a wide glass transition range of 45 ℃. Higher sintering pressure (400 MPa) during SPS resulted in (ⅰ) better densification (98%) with improved inter-particle bonding and moreover, (ⅱ) retention of higher volume fraction (~92 vol%) of amorphous phase with lower amount of intermetallic nano-precipitates, indicating improvement in thermal stability of the amorphous phase. Vickers microhardness test showed improvement in hardness with increasing sintering pressure attributed to a larger fraction of the retained amorphous phase and better inter-particle bonding. Na-noindentation test exhibited similar trends in hardness and elastic modulus with wide variation in hardness and elastic modulus values attributed to the distribution of comparatively soft nanocrystalline Al and very hard intermetallic precipitates in the amorphous matrix.
机译:机械合金化的非晶态Al_(86)Ni_8Y_6粉末通过火花等离子体烧结(SPS)固结,并研究了改变烧结压力(100-400 MPa)对相变的影响,并研究了所得力学性能。通过机械合金化获得的完全非晶态的Al_(86)Ni_8Y_6粉末具有良好的热稳定性,玻璃化转变温度为45℃。 SPS期间较高的烧结压力(400 MPa)导致(ⅰ)更好的致密化(98%),颗粒间键合得到改善,此外(ⅱ)保留了较高体积分数(〜92 vol%)的非晶相,而杂质含量较低金属间纳米沉淀,表明非晶相的热稳定性得到改善。维氏显微硬度测试表明,随着烧结压力的增加,硬度得到了改善,这归因于所保留的非晶态相的份额更大,并且颗粒间的结合更好。钠压痕试验显示出相似的硬度和弹性模量趋势,硬度和弹性模量值变化很大,这归因于非晶态基体中相对较软的纳米晶体Al和非常坚硬的金属间沉淀物的分布。

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