CHINESE JOURNAL OF ENERGETIC MATERIALS
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Multifactor Analysis of Mechanical Response of PTFE/Al/SiC Based on Factorial Design
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Affiliation:

1.College of Field Engineering, Army Engineering University of PLA;2.Xi''an Rare Metal Materials Research Institute Co, Ltd, Xi''an , China

Fund Project:

Grant support: National Natural Science Foundation of China (No. 51673213)

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    Abstract:

    To investigate the influence of SiC mass fraction, SiC particle size, Al particle size, and their interactions on the mechanical properties of PTFE/Al/SiC (PAS) reactive materials, a 23 factorial design criterion was employed to design and prepare eight different compositions of PTFE/Al/SiC reactive materials, and quasi-static compression tests and split Hopkinson pressure bar (SHPB) experiments were conducted. Significant factors were selected using the t-value ranking method, and their contribution rates and disturbance trends were analyzed. Additionally, response surface methodology was employed to analyze significant interaction effects. The results indicate that a higher SiC mass fraction positively impacts the mechanical properties of PAS materials. With a sudden change of strain rate, SiC particle size exhibits opposite disturbance trends on the material mechanical response. The effect of Al particles on the mechanical response of the PAS material system is limited. Strong interaction effects between factors should not be overlooked. With low strain rate loading, the interaction between SiC mass fraction and SiC particle size is significant. When the SiC mass fraction is high and the particle size is small, the particle dispersion state and interfacial bonding strength can be optimized, thereby improving material mechanical response. With high strain rate loading, PAS materials with a higher SiC mass fraction exhibit higher dynamic mechanical response, and the interaction between SiC particle size and Al particle size is significant. When the particle sizes of SiC and Al are close, the dynamic response of the material can be effectively improved.

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王瑞琪,李裕春,宋佳星,等.基于析因设计的PTFE/Al/SiC力学响应多因素分析[J].含能材料,2023,31(12):1224-1234.
WANG Rui-qi, LI Yu-chun, SONG Jia-xing, et al. Multifactor Analysis of Mechanical Response of PTFE/Al/SiC Based on Factorial Design[J]. Chinese Journal of Energetic Materials,2023,31(12):1224-1234.

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History
  • Received:July 17,2023
  • Revised:October 23,2023
  • Adopted:October 11,2023
  • Online: October 13,2023
  • Published: December 25,2023