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April 22, 2026Materials1 citationsOpen Access

The Effect of Microstructural Evolution on Mechanical Behavior of Carbon/Carbon Composites After Heat Treatment

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ZYZhenyu YuanCentral South UniversityXLXiao LiuCentral South UniversityYYYu Yang

Key Points

  • The study aims to explore how heat treatment affects the microstructure and mechanical behavior of carbon/carbon composites.
  • Analyzed two sample types heat-treated at 2300 °C and 2700 °C.
  • Examined microstructural changes such as cracking, fiber/matrix interface behavior, and fiber bridging.
  • Mechanical properties decreased significantly: compressive strength (-60%), flexural strength (-68%), shear strength (-71%).
  • Fracture strains improved: increased by 52%, 25%, and 19% for corresponding strengths, indicating greater pseudoplasticity.

Abstract

The effect of microstructural evolution on mechanical behavior of carbon/carbon composites after heat treatment has been investigated. Two kinds of samples, heat-treated at 2300 °C and 2700 °C, were used in the current study. As the heat treatment temperature is 2700 °C, the pyrolytic carbon acquires a higher orientation via carbon atomic layer rearrangement, accompanied by microstructural evolution such as self-healing of concentric ring cracks, narrowing of the fiber/matrix interface and bridging between adjacent fibers. This microstructural evolution results in a significant decline in the mechanical properties of the composites: compressive strength, flexural strength, and shear strength decreased by approximately 60%, 68%, and 71%, respectively, while the corresponding fracture strains increased by 52%, 25%, and 19%, respectively, indicating an improvement in pseudoplasticity.

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Cite This Study

Yuan et al. (2026) studied this question.

synapsesocial.com/papers/69e865126e0dea528dde9ad3https://doi.org/10.3390/ma19081640
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