Exothermic behavior and microstructure control of porous Ni-Al compounds synthesized by ultrafast self-exothermic reaction

Porous Ni-Al compounds exhibiting distinct reaction behaviors and pore structure characteristics were fabricated via an instantaneous and synchronous self-exothermic reaction. As the heating rate increased from 2 to 20 °C/min, the porosity decreased significantly from 62.8% to 29.4%. The intensity of the self-exothermic reaction increased with increasing heating rate, and when the heating rate exceeded 5 °C/min, noticeable sample deformation occurred. Cyclic oxidation tests revealed that the oxide layer remained relatively continuous and dense, and adhered well to the product matrix. This layer was identified as an Al2O3, formed because the outward diffusion of Al is kinetically favored over that of Ni, which was strongly influenced by both the diffusion rate and oxidation temperature.

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Publication Details

Journal
Materials Science and Technology
Published
2026-10-07
DOI
https://doi.org/10.1177/02670836261492491
Primary Topic
Intermetallics and Advanced Alloy Properties
Type
article
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article

Exothermic behavior and microstructure control of porous Ni-Al compounds synthesized by ultrafast self-exothermic reaction

Feng PeiZhong, Xinyang Jiao, Yu Zhang, Dewu Qin
Materials Science and Technology
Intermetallics and Advanced Alloy Properties
article

Exothermic behavior and microstructure control of porous Ni-Al compounds synthesized by ultrafast self-exothermic reaction

Feng PeiZhong, Xinyang Jiao, Yu Zhang, Dewu Qin
article en

Abstract

Porous Ni-Al compounds exhibiting distinct reaction behaviors and pore structure characteristics were fabricated via an instantaneous and synchronous self-exothermic reaction. As the heating rate increased from 2 to 20 °C/min, the porosity decreased significantly from 62.8% to 29.4%. The intensity of the self-exothermic reaction increased with increasing heating rate, and when the heating rate exceeded 5 °C/min, noticeable sample deformation occurred. Cyclic oxidation tests revealed that the oxide layer remained relatively continuous and dense, and adhered well to the product matrix. This layer was identified as an Al2O3, formed because the outward diffusion of Al is kinetically favored over that of Ni, which was strongly influenced by both the diffusion rate and oxidation temperature.

Materials Science and Technology
China University of Mining and Technology (CN), Suqian University
Openalex Percentile: Top 22%
Intermetallics and Advanced Alloy Properties
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Exothermic behavior and microstructure control of porous Ni-Al compounds synthesized by ultrafast self-exothermic reaction — Feng PeiZhong, Xinyang Jiao, et al. · Materials Science and Technology (2026) | TGRS Research Map | TGRS