首页> 外文期刊>Journal of nanomaterials >Applied pressure on altering the nano-crystallization behavior of Al _(86)Ni_6Y_(4.5)Co_2La_(1.5) metallic glass powder during spark plasma sintering and its effect on powder consolidation
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Applied pressure on altering the nano-crystallization behavior of Al _(86)Ni_6Y_(4.5)Co_2La_(1.5) metallic glass powder during spark plasma sintering and its effect on powder consolidation

机译:施加压力改变火花等离子体烧结过程中Al _(86)Ni_6Y_(4.5)Co_2La_(1.5)金属玻璃粉末的纳米结晶行为及其对粉末固结的影响

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摘要

Metallic glass powder of the composition Al_(86)Ni _6Y_(4.5)Co_2La_(1.5) was consolidated into 10 mm diameter samples by spark plasma sintering (SPS) at different temperatures under an applied pressure of 200 MPa or 600 MPa. The heating rate and isothermal holding time were fixed at 40°C/min and 2 min, respectively. Fully dense bulk metallic glasses (BMGs) free of particle-particle interface oxides and nano-crystallization were fabricated under 600 MPa. In contrast, residual oxides were detected at particle-particle interfaces (enriched in both Al and O) when fabricated under a pressure of 200 MPa, indicating the incomplete removal of the oxide surface layers during SPS at a low pressure. Transmission electron microscopy (TEM) revealed noticeable nano-crystallization of face-centered cubic (fcc) Al close to such interfaces. Applying a high pressure played a key role in facilitating the removal of the oxide surface layers and therefore full densification of the Al_(86)Ni_6Y _(4.5)Co_2La_(1.5) metallic glass powder without nano-crystallization. It is proposed that applied high pressure, as an external force, assisted in the breakdown of surface oxide layers that enveloped the powder particles in the early stage of sintering. This, together with the electrical discharge during SPS, may have benefitted the viscous flow of metallic glasses during sintering.
机译:通过在200℃或600MPa的施加压力下在不同温度下通过火花等离子体烧结(SPS),将组成为Al_(86)Ni_6Y_(4.5)Co_2La_(1.5)的金属玻璃粉末固结为10mm直径的样品。加热速度和等温保持时间分别固定为40℃/ min和2min。在600 MPa的压力下,制造了无颗粒间界面氧化物和纳米结晶的完全致密的块状金属玻璃(BMG)。相反,当在200 MPa的压力下制造时,在颗粒-颗粒界面(富含Al和O)中检测到残留的氧化物,表明在低压下进行SPS时氧化物表面层的去除不完全。透射电子显微镜(TEM)揭示了靠近这种界面的面心立方(fcc)Al的明显纳米结晶。施加高压在促进氧化物表面层的去除以及因此使Al_(86)Ni_6Y_(4.5)Co_2La_(1.5)金属玻璃粉末的完全致密化而没有纳米结晶的过程中起着关键作用。提出了施加高压作为外力来辅助在烧结的早期阶段破坏包围粉末颗粒的表面氧化物层。这与SPS期间的放电一起可能有益于烧结期间金属玻璃的粘性流动。

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