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Bulk Fe-Al-C Nanoalloys Made by Mechanically Alloying with Subsequent Spark Plasma Sintering and Their Mechanical Properties

机译:通过机械合金化的散装Fe-Al-C纳瓦合金,随后的火花等离子体烧结及其机械性能

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Three kinds of bulk nanocrystalline Fe-24at%Al-Xat%C (X=1,2,4) alloy were produced from Fe and Al powders with addition of methanol by MA with subsequent SPS at 1273K under 64MPa. Their microstructure and mechanical properties were investigated. The compacts have the relative densities of 99.97% (1at%C) to 99.6% (4at%C). The structure of compacts with 1at%C is composed of Fe{sub}3Al grains of 1.5μm in diameter and nano k-carbides (Fe{sub}3AlC{sub}0.5) precipitates, while those of compacts with 2 and 4at%C are composed of nanocrystalline Fe{sub}3Al of about 80nm in diameter, nano k-carbides and α-grains of about 1μm in diameter. These structures have the good thermal stability, maintaining the nanostructure even at 973K. The mechanical properties of these compacts were measured by compression tests at R.T. to 973K. The compacts with 1at%C and 2at%C of this work perform the superior mechanical properties (e.g. yield strength of 2.15GPa and rupture strain of 0.14 for compact with 2at%C at R.T.) when compared with the ordinary Fe{sub}3Al casting (e.g. 380MPa and 0.12). They also exhibit no environmental embrittlement, which is one of fatal problems for the ordinary Fe{sub}3Al materials.
机译:用Fe和Al粉末在1273K下在64MPa下加入甲醇,通过Fe和Al粉末制备三种散装纳米晶Fe-24At%Al-XAT%C(X = 1,2,4)合金。研究了它们的微观结构和机械性能。压块的相对密度为99.97%(1A1%)至99.6%(4at%C)。具有1At%C的压块的结构由直径为1.5μm的Fe {sub} 3颗粒组成,纳米K-碳化物(Fe {sub} 3Alc {Sub} 0.5)沉淀物,而具有2和4at%c的压块由直径约80nm的纳米晶Fe {sub} 3组成,直径约1μm的纳米K-碳化物和α-颗粒。这些结构具有良好的热稳定性,即使在973K时也保持纳米结构。通过R.T的压缩测试测量这些压块的机械性能。到973k。与普通Fe {Sub} 3Al铸件相比,具有1At%C和2AT%C的具有1at%C和2AT%C的尺寸的机械性能(例如,在室温下,在室温下的屈服强度为2.15gPa的屈服强度,并且在室温下为尺寸为0.14的破裂菌株) (例如380MPa和0.12)。它们也没有任何环境脆化,这是普通Fe {Sub} 3的致命问题之一。

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