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Effects of ball milling and annealing of an alloy in the Al-Fe-Cu system: implications for phase equilibria

机译:Al-Fe-Cu系统中球磨和合金退火的影响:对相平衡的影响

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An icosahedral quasicrystalline alloy in the Al-Fe-Cu system has been mechanically milled in a high-energy ball mill (Szegvari attritor) for 1, 3, 6 and 10 h. Samples were characterized by X-ray diffraction and transmission electron microscopy. The evolution of nanosize crystallites of the disordered B2 phase (bcc; a = 0.29 nm), coexisting with either the parent icosahedral phase or an amorphous phase, occurs during milling. Isothermal heat treatment of milled powder at various temperatures (200, 500, 600, 700, 800 and 850 ℃) leads in all cases, except at 200 ℃, to the transformation from disordered B2 and amorphous phases to an ordered B2 phase with a high degree of long-range ordering. The maximum degree of superlattice ordering was found after isothermal treatment at 800 ℃. The implications of these results are discussed with reference to phase equilibria existing between crystalline and quasicrystalline phases in the Al-Fe-Cu system.
机译:Al-Fe-Cu系统中的二十面体准结晶合金已在高能球磨机(Szegvari研磨机)中机械研磨了1,3,6和10 h。通过X射线衍射和透射电子显微镜对样品进行表征。在研磨过程中会发生无序B2相(bcc; a = 0.29 nm)的纳米级微晶与母体二十面体相或非晶相共存的情况。在各种温度(200、500、600、700、800和850℃)下对磨粉进行等温热处理,除200℃外,在所有情况下均导致从无序B2相和无定形相向有序B2相的高转变。远程订购的程度。经过800℃的等温处理后发现了最大晶格有序度。参照存在于Al-Fe-Cu系统中晶相和准晶相之间的相平衡来讨论这些结果的含义。

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