Research of TE behaviour and compression property of porous Ni–Al–Cr intermetallic compounds in the β phase region
Journal article, 2023

Ni–Al–Cr alloys in the β phase (B2–NiAl) region exhibit remarkable stability and mechanical property. Through thermal explosion (TE) reaction, Ni–Al–Cr intermetallic compounds with high porosity can be obtained. In this study, the focus lies on analyzing the macroscopic morphology, microstructure, phase distribution, TE behaviour, and the mechanical property of porous Ni–Al–Cr in the β phase region. Following the TE reaction, the Al-rich sintered product demonstrates a uniform phase composition and high porosity, reaching 44.39%. The vigorous TE reaction promotes the formation of interconnected pores, while the high porosity structure compromises the mechanical properties of the sample. Conversely, the Al-poor sintered product, due to a moderate TE reaction and low porosity structure, maintains its complete morphology and exhibits excellent compression resistance (yield stress reaching 538 MPa). This study offers valuable insights for the fabrication of porous Ni–Al–Cr materials with exceptional structure and performance.

Porosity

β phase region

Thermal explosion reaction

Porous Ni–Al–Cr intermetallic compounds

Compression resistance

Author

Yang Yu

China University of Mining and Technology

Baojing Zhang

China University of Mining and Technology

Xiaoping Cai

Tsinghua University

Zhejian Cao

Chalmers, Life Sciences, Systems and Synthetic Biology

Farid Akhtar

Luleå University of Technology

Xinyang Jiao

Suqian University

Xueding Chai

China University of Mining and Technology

Peizhong Feng

China University of Mining and Technology

Journal of Materials Research and Technology

22387854 (ISSN) 22140697 (eISSN)

Vol. 25 3537-3550

Subject Categories

Materials Chemistry

DOI

10.1016/j.jmrt.2023.06.173

More information

Latest update

7/17/2023