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首页> 外文期刊>Materials transactions >Mechanical properties of bulk amorphous Zr-Al-Cu-Ni-Ag alloys containing nanoscale quasicrystalline particles
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Mechanical properties of bulk amorphous Zr-Al-Cu-Ni-Ag alloys containing nanoscale quasicrystalline particles

机译:含有纳米准晶颗粒的块状非晶Zr-Al-Cu-Ni-Ag合金的力学性能

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摘要

Nanoscale icosahedral quasicrystalline particles were found to precipitate at high volume fractions of nearly 100% as a metastable phase in the crystallization process of bulk amorphous Zr{sub}65Al{sub}7.5Cu{sub}17.5Ni{sub}10Ag{sub}x (x=5 and 10 at%) alloys. The icosahedral particles precipitate from the supercooled liquid and have a spherical morphology. The average particle size is in the range of 30 to 40 nm and tends to decrease with increasing Ag content. The maximum volume fraction (V{sub}f) of the icosahedral phase is about 85% for the 5%Ag alloy and nearly 100% for the 10%Ag alloy. The mixed amorphous plus icosahedral phases change into an equilibrium structure of Zr{sub}2Cu+Zr{sub}2Ni+Zr{sub}2Al{sub}3 phases with a further increase in temperature. Tensile fracture strength (σ{sub}f) of the bulk amorphous rod is 1650 MPa at V{sub}f=0%, increases to 1900 MPa at V{sub}f=45% and then decreases with further increasing V{sub}f. The increase in σ{sub}f is due to the suppression effect of the nanoscale icosahedral particles on the shear deformation of the amorphous matrix. The finding that the tensile strength of the bulk amorphous alloys is improved by the precipitation of high volume fraction of nanoscale icosahedral particles points to the future development of bulk nanoquasicrystalline amorphous alloys for applications.
机译:发现纳米二十面体准晶体颗粒在大块非晶Zr {sub} 65Al {sub} 7.5Cu {sub} 17.5Ni {sub} 10Ag {sub} x的结晶过程中以近100%的高体积分数沉淀为亚稳相。 (x = 5和10 at%)合金。二十面体颗粒从过冷的液体中沉淀出来并具有球形形态。平均粒径在30至40nm的范围内,并且倾向于随着Ag含量的增加而减小。二十面体相的最大体积分数(V {sub} f)对于5%Ag合金约为85%,而对于10%Ag合金约为100%。随着温度的进一步升高,混合的非晶相和二十面体相变成Zr {sub} 2Cu + Zr {sub} 2Ni + Zr {sub} 2Al {sub} 3相的平衡结构。非晶态棒的拉伸断裂强度(σ{sub} f)在V {sub} f = 0%时为1650 MPa,在V {sub} f = 45%时增加至1900 MPa,然后随着V {sub的进一步增加而降低}F。 σ{sub} f的增加归因于纳米级二十面体颗粒对非晶基质剪切变形的抑制作用。纳米级二十面体颗粒的高体积分数的沉淀提高了块状非晶态合金的拉伸强度的发现,指出了用于应用的块状纳米准晶态非晶态合金的未来发展。

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