Qingyang Qiu, Yuntao Sun
Microwave sintering, an advanced materials processing technique, has garnered substantial attention due to its distinctive heating mechanism, which facilitates more uniform and efficient heating of materials, such as metal powders. This study constructs a comprehensive analytical framework for metallic microwave sintering across diverse material systems, covering the trajectory from initial physical response to final microstructural evolution. By integrating fundamental electromagnetic loss mechanisms with multivariable coupled control logic, it offers essential theoretical support for the advancement of microwave metal processing. This paper emphasizes the fundamental principles of microwave-material interaction, incorporating key parameters like penetration depth and absorbed power. Furthermore, the impact of various factors on the sintering process, including metal powder particle size, sintering power, heating rates, sintering temperature, and sintering time was explored.
@article{4f19c674-c64d-4f05-9ee0-92565460c574,
title={A review of heating mechanisms, process parameters, and defect-minimized densification applications of microwave sintering in metals},
author={Qingyang Qiu and Yuntao Sun},
year={2026},
language={en}
}TY - JOUR TI - A review of heating mechanisms, process parameters, and defect-minimized densification applications of microwave sintering in metals AU - Qingyang Qiu AU - Yuntao Sun PY - 2026 LA - en ER -
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