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Investigating the Dynamic Compressive and Tensile Properties of Polymer Binder Explosive Based on the Split-Hopkinson Bar Technique

  • Chen Yang Fan
  • , You Cai Xiao*
  • , Xiang Dong Xiao
  • , Zhi Xiong Hong
  • , Zhi Jun Wang
  • , Yi Sun
  • *Corresponding author for this work
  • Science and Technology on Electromechanical Dynamic Control Laboratory
  • North University of China

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

Split Hopkinson bar technique was often used to measure the dynamic mechanical properties of engineering materials. In this paper, the dynamic tensile and compression mechanical properties of polymer explosive bonded (PBX) under different strain rates were obtained by using split Hopkinson pressure/tension bar. The thickness of the specimen and the shape of the incident wave are designed to ensure the rationality of the experimental results. By comparing the experimental results, it was found that the PBX had different dynamic tensile and compression properties. The PBXs have been tested and shown tensile and compressive strengths ratios that range between 5 and 7. A constitutive relation is developed for modeling the dynamic mechanical response of PBX-I by using the Boltzmann superposition principle with a Prony series representation. The parameters of the PBX-I were fitted by using least square method. A finite element model was used to simulate the dynamic compressive and tensile behavior of PBX-I, and the numerical simulation results were in good agreement with the experimental results, which proved that the linear viscoelastic constitutive relation can be applied to the PBX-I.

Original languageEnglish
Title of host publicationSolid State Phenomena
PublisherTrans Tech Publications Ltd
Pages113-120
Number of pages8
DOIs
StatePublished - 2022

Publication series

NameSolid State Phenomena
Volume335
ISSN (Print)1012-0394
ISSN (Electronic)1662-9779

Keywords

  • Constitutive relation
  • Dynamic compressive properties
  • Dynamic tensile properties
  • Numerical simulation
  • PBX

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