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Mechanical alloying and field assisted hot pressing of nanocrystalline B2-NIAl intermetallic compound

机译:纳米B2-NIAl金属间化合物的机械合金化和场辅助热压

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摘要

Ordered B2-NiAI intermetallic compound powder was successfully synthesised by mechanical alloying after 20 h in an attritor mill, starting from elemental Ni and Al powders and without subsequent heat treatment. NiAl powder obtained was homogenous and had a nanocrystalline microstructure. It was consolidated by field assisted hot pressing (FAHP), in a novel configuration with a Gleeble 3800 thermomechanical simulator. The powder was also processed by hot isostatic pressing (HIP) in order to compare both methods. The consolidation was successful by both methods obtaining above 98% of NiAl theoretical density (5.86 g cm~(-3)). The results showed that the consolidation process by FAHP technique is effective and uniform throughout the sample as indicated by homogenous hardness values, obtaining microstructure and properties similar to those obtained with HIP technique, with certain advantages over it. The achieved room temperature yield strength of 850 MPa and fracture strain 26-28% corresponds to the bulk values of NiAl intermetallic.
机译:B20-NiAl金属间化合物的有序粉末是在20个小时后通过磨碎机通过机械合金化成功合成的,从元素Ni和Al粉末开始,无需后续热处理。所获得的NiAl粉末是均质的并且具有纳米晶体的微观结构。它通过现场辅助热压(FAHP)进行了整合,并采用Gleeble 3800热机械模拟器以新颖的配置进行了整合。为了比较这两种方法,还通过热等静压(HIP)对粉末进行了处理。通过两种方法均成功获得了固结的NiAl理论密度的98%(5.86 g cm〜(-3))。结果表明,通过均质硬度值表明,FAHP技术固结过程是有效且均匀的,与HIP技术获得的组织和性能相似,具有一定的优势。达到的室温屈服强度为850 MPa,断裂应变为26-28%,对应于NiAl金属间化合物的体积值。

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