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Acta Armamentarii ›› 2025, Vol. 46 ›› Issue (7): 240613-.doi: 10.12382/bgxb.2024.0613

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Research on Fracture Failure of NEPE Propellant Based on Peridynamics

LIU Hanwen, FU Xiaolong*(), WANG Jiangning, MENG Saiqin   

  1. Xi’an Modern Chemistry Research Institute, Xi’an 710065, Shaanxi, China
  • Received:2024-07-23 Online:2025-08-12
  • Contact: FU Xiaolong

Abstract:

The mechanical response,crack morphology and evolutionary path of NEPE propellant during the crack propagation are investigated through single-edge notched tension (SENT) experiment at a tensile rate of 100mm/min.Based on the bond-based peridynamic (BBPD) theory,the failure process of crack propagation in NEPE propellant is simulated,the critical stress intensity factor of fracture toughness is calculated,and a fracture criterion considering the burning rate of the propellant is proposed.Experimental results show that a blunting fracture occurs in NEPE propellant during crack propagation.Prior to macroscopic crack propagation,an internal damage takes place in the propellant.The BBPD method can accurately simulate the crack propagation process of NEPE propellant,compute the stress intensity factor,and visualize the internal damage.This suggests that the peridynamic technique provides a new approach to simulate the fracture process of NEPE propellant.

Key words: NEPE propellant, fracture property, peridynamics, crack propagation, stress intensity factor