Saksl Karel, Jóvári Pál, Franz Hermann, Zeng Q S, Liu J F, Jiang J Z
HASYLAB am Deutschen Elektronen Synchrotron, DESY, Notkestrasse 85, D-22603 Hamburg, Germany.
J Phys Condens Matter. 2006 Aug 16;18(32):7579-92. doi: 10.1088/0953-8984/18/32/007. Epub 2006 Jul 25.
Atomic structures of amorphous Al(89)La(6)Ni(5), prepared by single-roller melt spinning, and pre-annealed at 493 and 588 K for 1 h, were characterized by differential scanning calorimetry, x-ray diffraction with a large wavevector transfer value, La L(3)-edge and Ni K-edge x-ray absorption fine structure and the reverse Monte Carlo technique. In the as-prepared amorphous alloy, our study reveals that the Ni-Al distance is 2.38 ± 0.02 Å coupled with a coordination number as low as 6.2. The Al-Al distance was found to be ∼4.5% shorter than the nominal atomic diameter of aluminium and the coordination number to be ∼39% less than expected from the dense random packing model. Crystallization of the Al(89)La(6)Ni(5) glassy alloy at high temperatures can be described as follows: [amorphous alloy] [Formula: see text] [fcc-Al] + [bcc-(AlLa)] + residual amorphous [Formula: see text] [fcc-Al] + [o-Al(3)Ni ] + [o-La(3)Al(11) ].
通过单辊熔体纺丝制备并在493 K和588 K下预退火1小时的非晶态Al(89)La(6)Ni(5)的原子结构,采用差示扫描量热法、大波矢转移值的x射线衍射、La L(3)边和Ni K边x射线吸收精细结构以及反向蒙特卡罗技术进行了表征。在制备态非晶合金中,我们的研究表明,Ni-Al距离为2.38±0.02 Å,配位数低至6.2。发现Al-Al距离比铝的标称原子直径短约4.5%,配位数比致密随机堆积模型预期的少约39%。Al(89)La(6)Ni(5)玻璃态合金在高温下的结晶过程可描述如下:[非晶合金][化学式:见原文][面心立方-Al]+[体心立方-(AlLa)]+残余非晶态[化学式:见原文][面心立方-Al]+[o-Al(3)Ni]+[o-La(3)Al(11)]。