This study investigates the potential of metallic composite materials for energy storage applications, emphasizing their high thermal conductivity and energy density. The research focuses on the synthesis of Al-Si/C composite materials using graphite and aluminum-silicon alloy powders. Various characterization techniques, including X-ray diffraction and differential scanning calorimetry (DSC), were employed to analyze the material’s properties, such as latent heat and thermal stability. The study identifies optimal material ratios and processing conditions to enhance performance. The findings suggest that Al-Si/C composites are promising candidates for efficient energy storage solutions.

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Study on High Temperature Form-Stable Metallic Composite Materials for Energy Storage

  • Chaomurilige,
  • Xiaoqiang Zhang,
  • Geng Qiao,
  • Jiaxing Liu,
  • Zhehui Zhao,
  • Jiakang Yao,
  • Guangyao Zhao,
  • Dongliang Guo

摘要

This study investigates the potential of metallic composite materials for energy storage applications, emphasizing their high thermal conductivity and energy density. The research focuses on the synthesis of Al-Si/C composite materials using graphite and aluminum-silicon alloy powders. Various characterization techniques, including X-ray diffraction and differential scanning calorimetry (DSC), were employed to analyze the material’s properties, such as latent heat and thermal stability. The study identifies optimal material ratios and processing conditions to enhance performance. The findings suggest that Al-Si/C composites are promising candidates for efficient energy storage solutions.