2013•International Journal of Applied Ceramic TechnologyRequires access

Preparation of F e 3 S i‐ A l 2 O 3 Nanocomposite Powders by Mechanochemical Reaction of F e 3 O 4 ‐ S i‐ A l Powder Mixtures

Jiangang Jia, Tieming Guo, Shufang Ren, Jinjun Lü, Qin Ma

Open publisher page 3 citations

Abstract

Phase evolution and morphology of F e 3 O 4 ‐ S i‐ A l powder mixtures during ball milling from 30 min to 20 h were investigated. A 3‐h critical milling was necessary for the occurrence of mechanically activated combustion reaction. The reaction results in the formation of F e ( S i), F e 3 S i, and α‐ A l 2 O 3 . During ball milling from 3 to 20 h, F e ( S i) and F e 3 S i were combined into disordered F e 3 S i intermetallic and F e 3 S i‐ A l 2 O 3 composite powder was formed. The presence of in situ formed alumina leads to a decrease in crystallite and particle sizes. The F e 3 S i‐ A l 2 O 3 particles after milling for 20 h had a crystalline size of 10~12 nm.

About this research paper

What this paper is about

Phase evolution and morphology of F e 3 O 4 ‐ S i‐ A l powder mixtures during ball milling from 30 min to 20 h were investigated. A 3‐h critical milling was necessary for the occurrence of mechanically activated combustion reaction. The reaction results in the formation of F e ( S i), F e 3 S i, and α‐ A l 2 O 3 . During ball milling from 3 to 20 h, F e ( S i) and F e 3 S i were combined into disordered F e 3 S i intermetallic and F e 3 S i‐ A l 2 O 3 composite powder was formed. The presence of in situ formed alumina leads to a decrease in crystallite and particle sizes. The F e 3 S i‐ A l 2 O 3 particles after milling for 20 h had a crystalline size of 10~12 nm.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Phase evolution and morphology of F e 3 O 4 ‐ S i‐ A l powder mixtures during ball milling from 30 min to 20 h were investigated. A 3‐h critical milling was necessary for the occurrence of mechanically activated combustion reaction. The reaction results in the formation of F e ( S i), F e 3 S i, and α‐ A l 2 O 3 . During ball milling from 3 to 20 h, F e ( S i) and F e 3 S i were combined into disordered F e 3 S i intermetallic and F e 3 S i‐ A l 2 O 3 composite powder was formed. The presence of in situ formed alumina leads to a decrease in crystallite and particle sizes. The F e 3 S i‐ A l 2 O 3 particles after milling for 20 h had a crystalline size of 10~12 nm.

Key concepts: Materials science, Nanocomposite, Chemical engineering, Nanotechnology, Engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
Preparation of F e 3 S i‐ A l 2 O 3 Nanocomposite Powders by Mechanochemical Reaction of F e 3 O 4 ‐ S i‐ A l Powder Mixtures — Research Paper | ScholarLens