Investigation on the In-Situ Reaction Mechanism of Ti2alc/Tial Composite Prepared by Spark Plasma Sintering

21 Pages Posted: 27 Aug 2022

See all articles by Zhenbo Wang

Zhenbo Wang

Henan University of Science and Technology

Pei Liu

Henan University of Science and Technology

Bo Hou

Henan University of Science and Technology

Feng Ye

University of Science and Technology Beijing

Aiqin Wang

Henan University of Science and Technology

Jingpei Xie

Henan University of Science and Technology

Abstract

Ti 2 AlC/TiAl composite has shown great potential for the lightweight high-temperature structural materials applied in the new generation of aerospace engines. Understanding the in-situ reaction mechanism of Ti 2 AlC/TiAl composite has been a long-standing challenge with great scientific and practical importance. In this work, Ti 2 AlC/TiAl composites were fabricated via spark plasma sintering at different temperature using Ti powders, Al powders and graphene nanosheets as raw materials. The state-of-the-art analytical tools were employed to give an in-depth investigation on the in-situ reaction mechanism of Ti 2 AlC/TiAl composite. It is innovatively found that the Ti 2 AlC is initially formed by the direct reaction between TiAl and TiC, and the growth of Ti 2 AlC is governed by a Ti 2 AlC prismatic plane-to-TiAl plane incoherent interface, which could provide atomic diffusion channel and promote the reaction between TiAl and TiC. These results could provide the theoretical guideline for the material design and performance optimization of Ti 2 AlC/TiAl composite.

Keywords: Metal-matrix composites, Interface/interphase, Microstructures, Electron microscopy

Suggested Citation

Wang, Zhenbo and Liu, Pei and Hou, Bo and Ye, Feng and Wang, Aiqin and Xie, Jingpei, Investigation on the In-Situ Reaction Mechanism of Ti2alc/Tial Composite Prepared by Spark Plasma Sintering. Available at SSRN: https://ssrn.com/abstract=4201884 or http://dx.doi.org/10.2139/ssrn.4201884

Zhenbo Wang

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Pei Liu (Contact Author)

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Bo Hou

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Feng Ye

University of Science and Technology Beijing ( email )

30 Xueyuan Road, Haidian District
beijing, 100083
China

Aiqin Wang

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Jingpei Xie

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

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