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Microstructure and properties of melt-spun Si-Al-Ge-transition metal amorphous alloys containing nanocrystalline Ge particles

机译:含纳米晶Ge粒子的熔纺Si-Al-Ge-过渡金属非晶合金的组织与性能

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The effect of Ge addition on the microstructure and some properties was examined for rapidly solidified Si-Al-TM alloys. In particular, the addition of Ge to Si{sub}55Al{sub}20Fe{sub}10Ni{sub}5Cr{sub}5Zr{sub}5 alloy causes a change to a mixedstructure in which fine Ge solid solution particles are dispersed homogeneously in an amorphous matrix. The size, volume fraction and composition of the particles depend on Ge concentration in the alloy. Fine particles, with a size less than 10 nm, wereobtained in the range from 5 to 10 at% Ge. These alloys are characterized by high values of hardness (935-1085 H{sub}v) and electrical resistivity (11.0-12.6μΩm). Owing to the change in the matrix composition, the crystallization temperature increaseswith increasing Ge content and the highest value reaches 767 K. The exclusion of Ge from the amorphous phase resulted from the complicate interaction between constituent elements.
机译:研究了Ge的添加对快速凝固的Si-Al-TM合金的显微组织和某些性能的影响。尤其是,在Si {sub} 55Al {sub} 20Fe {sub} 10Ni {sub} 5Cr {sub} 5Zr {sub} 5合金中添加Ge会导致混合结构发生变化,其中细小的Ge固溶体颗粒均匀分散在无定形基质中。颗粒的大小,体积分数和组成取决于合金中Ge的浓度。获得尺寸小于10nm的细颗粒,其范围为5至10at%的Ge。这些合金的特征在于高硬度值(935-1085 H {sub} v)和电阻率(11.0-12.6μΩm)。由于基体组成的变化,结晶温度随Ge含量的增加而升高,最高达到767K。非晶相中Ge的排除是由于组成元素之间复杂的相互作用所致。

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