Młynarek-Żak Katarzyna, Dhiman Indu, Matus Krzysztof, Kądziołka-Gaweł Mariola, Łoński Wojciech, Radoń Adrian, Czeppe Tomasz, Babilas Rafał
Department of Engineering Processes Automation and Integrated Manufacturing Systems, Silesian University of Technology, Konarskiego 18a St., 44-100, Gliwice, Poland.
Budapest Neutron Centre, Konkoly-Thege Miklos 29-33 St., Budapest, 1121, Hungary.
Sci Rep. 2023 Dec 3;13(1):21322. doi: 10.1038/s41598-023-48282-3.
The low glass-forming ability of aluminium-based metallic glasses significantly limits their development and preparation. This paper updates the current state of knowledge by presenting the results of structural studies of two newly-developed AlNiFeY and AlNiFeY alloys with a reduced aluminium content (< 80 at.%). The alloys were produced by conventional casting (ingots) and melt-spinning (ribbons). Structural characterization was carried out for bulk ingots first, and then for the melt-spun ribbons. The ingots possessed a multiphase crystalline structure, as confirmed by X-ray diffraction and scanning electron microscopy observations. The amorphous structure of the melt-spun ribbons was determined by X-ray diffraction and transmission electron microscopy. SEM observations and EDX element maps of the cross-section of melt-spun ribbons indicated a homogeneous elemental composition. Neutron diffraction revealed the presence of nanocrystals in the amorphous matrix of the melt-spun ribbons. DSC data of the melt-spun ribbons showed exothermic events corresponding to the first crystallization at temperatures of 408 °C and 387 °C for AlNiFeY and AlNiFeY, respectively.
铝基金属玻璃的低玻璃形成能力显著限制了它们的发展和制备。本文通过展示两种新开发的铝含量降低(<80 at.%)的AlNiFeY和AlNiFeY合金的结构研究结果,更新了当前的知识状态。这些合金通过传统铸造(铸锭)和熔体纺丝(薄带)制备。首先对块状铸锭进行结构表征,然后对熔体纺丝带进行表征。如X射线衍射和扫描电子显微镜观察所证实,铸锭具有多相晶体结构。通过X射线衍射和透射电子显微镜确定了熔体纺丝带的非晶结构。熔体纺丝带横截面的扫描电子显微镜观察和能谱仪元素图表明元素组成均匀。中子衍射揭示了在熔体纺丝带的非晶基体中存在纳米晶体。熔体纺丝带的差示扫描量热数据显示,AlNiFeY和AlNiFeY分别在408℃和387℃出现对应于首次结晶的放热事件。