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一种新型微观结构演化模型,用于在自蔓延高温合成过程中由SiO二氧化硅陶瓷分解生长出超细AlO氧化物。

A Novel Microstructural Evolution Model for Growth of Ultra-Fine AlO Oxides from SiO Silica Ceramic Decomposition during Self-Propagated High-Temperature Synthesis.

作者信息

Kopec Mateusz, Jóźwiak Stanisław, Kowalewski Zbigniew L

机构信息

Institute of Fundamental Technological Research, Polish Academy of Sciences, Pawińskiego 5B, 02-106 Warszawa, Poland.

Faculty of Advanced Technologies and Chemistry, Military University of Technology, 00-908 Warsaw 49, Poland.

出版信息

Materials (Basel). 2020 Jun 23;13(12):2821. doi: 10.3390/ma13122821.

Abstract

In this paper, experimental verification of the microstructural evolution model during sintering of aluminum, iron and particulate mullite ceramic powders using self-propagated high-temperature synthesis (SHS) was performed. The powder mixture with 20% wt. content of reinforcing ceramic was investigated throughout this research. The mixed powders were cold pressed and sintered in a vacuum at 1030 °C. The SHS reaction between sintered feed powders resulted in a rapid temperature increase from the heat generated. The temperature increase led to the melting of an aluminum-based metallic liquid. The metallic liquid infiltrated the porous SiO ceramics. Silicon atoms were transited into the intermetallic iron-aluminum matrix. Subsequently, a ternary matrix from the Fe-Al-Si system was formed, and synthesis of the oxygen and aluminum occurred. Synthesis of both these elements resulted in formation of new, fine AlO precipitates in the volume of matrix. The proposed microstructural evolution model for growth of ultra-fine AlO oxides from SiO silica ceramic decomposition during SHS was successfully verified through scanning electron microscopy (SEM), X-ray energy-dispersive spectroscopy (EDS) analysis and X-ray diffraction (XRD).

摘要

在本文中,对使用自蔓延高温合成(SHS)法烧结铝、铁和颗粒状莫来石陶瓷粉末过程中的微观结构演变模型进行了实验验证。在整个研究过程中,对含有20%重量分数增强陶瓷的粉末混合物进行了研究。将混合粉末冷压并在1030℃的真空中烧结。烧结原料粉末之间的SHS反应导致因产生的热量而使温度迅速升高。温度升高导致铝基金属液体熔化。金属液体渗入多孔的SiO陶瓷中。硅原子转移到金属间铁铝基体中。随后,形成了Fe-Al-Si体系的三元基体,并发生了氧与铝的合成。这两种元素的合成导致在基体体积中形成了新的细小AlO沉淀物。通过扫描电子显微镜(SEM)、X射线能谱(EDS)分析和X射线衍射(XRD),成功验证了所提出的关于在SHS过程中由SiO二氧化硅陶瓷分解生长出超细AlO氧化物的微观结构演变模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9424/7345891/bef04e3d40be/materials-13-02821-g001.jpg

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