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Publishing Language: Chinese | Open Access

Influence of Temperature on Mechanical Properties and Spall Damage of Invar36 Alloy

Zeming TANG1,2Jianbo HU2Changming HU2( )Sen CHEN2( )
School of Materials and Chemistry, Southwest University of Science and Technology, Mianyang 621010, Sichuan, China
National Key Laboratory of Shock Wave and Detonation Physics, Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang 621999, Sichuan, China
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Abstract

This study systematically investigated the effects of temperature on the spall behavior of Invar36 alloy through plate impact experiments and microstructural characterization techniques. Utilizing a single-stage light gas gun loading platform combined with a high-temperature heating device, the experiments measured free surface velocity profiles and spall strength variations in samples with different segregation orientations within the temperature range of 20 ℃ to 300 ℃. Results demonstrate that the spall strength of Invar36 alloy exhibits a linear decrease with increasing temperature, with elevated temperatures significantly weakening its dynamic tensile resistance. Microstructural damage analysis reveals that at room temperature, voids nucleate and propagate along element segregation bands, while high-temperature damage concentrates at grain boundaries. Elevated temperatures reduce the constraining effect of segregation and facilitate material softening through thermally activated dislocation motion. The research elucidates the central role of temperature in governing spall strength and damage mechanisms, providing a theoretical foundation for failure-resistant design of Invar36 alloys under high-temperature impact conditions.

CLC number: O521.2; O382.3 Document code: A

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Chinese Journal of High Pressure Physics

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Cite this article:
TANG Z, HU J, HU C, et al. Influence of Temperature on Mechanical Properties and Spall Damage of Invar36 Alloy. Chinese Journal of High Pressure Physics, 2026, 40(8). https://doi.org/10.11858/gywlxb.20251057

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Received: 21 March 2025
Revised: 21 April 2025
Published: 05 August 2026
© 2026 Editorial Office of Chinese Journal of High Pressure Physics

This is an open access article under the CC BY-NC-ND license (https://creativecommons.org/licenses/by-nc/4.0/)