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Research Progress on Fabrication, Mechanical Behavior and Shock-induced Energy Release Characteristics of Reactive Tungsten Alloys
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College of Aerospace Science and Engineering, National University of Defense Technology

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    Abstract:

    Reactive tungsten alloys represent a class of metallic energetic structural materials featuring tungsten as a high-density framework reinforced with reactive elements such as Zr and Ti, thereby offering synergistic potential for high-strength load-bearing, kinetic penetration, and shock-induced energy release. This review systematically addresses the compositional design and fabrication methods of reactive tungsten alloys, surveys their typical microstructural characteristics and structure-property relationships, and summarizes penetration behavior and energy release characterization techniques under high-velocity impact conditions. Finally, integrating the need for composition-microstructure-property correlation, future research priorities encompass machine learning-enabled intelligent multi-objective design, development of large-scale component forming technologies with scale-up processing, and in-depth elucidation of multiscale constitutive modeling and penetration-energy release mechanisms, aiming to provide theoretical guidance for the development and engineering implementation of high-performance reactive tungsten alloys.

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张周然,张一鸣,丁艺城,等.活性钨合金设计制备、力学性能及冲击释能特性的研究进展[J].含能材料,2026,34(4):446-465.
ZHANG Zhou-ran, ZHANG Yi-ming, LI Shun, et al. Research Progress on Fabrication, Mechanical Behavior and Shock-induced Energy Release Characteristics of Reactive Tungsten Alloys[J]. Chinese Journal of Energetic Materials,2026,34(4):446-465.

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History
  • Received:February 04,2026
  • Revised:April 09,2026
  • Adopted:April 07,2026
  • Online: April 08,2026
  • Published: