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Perforation mechanics of 2024 aluminum protective plates subjected to impact by different nose shapes of projectiles

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Material Includes

  • Package Includes the following items:
  • Simulation files:
  • Abaqus files (The INP files are applicable to all versions):
  • CAE
  • INP
  • JNL
  • Instructional video:
  • Concise 25-minute guide to model setup and outputs for ballistic perforation of aluminum plates.

Audience

  • Civil Engineers
  • Mechanical Engineers
  • Engineering students

About Course

Papers abstract:

This paper focuses on the mechanical behavior of aluminum alloy 2024-T351 under impact loading. This study has been carried out combining experimental and numerical techniques. Firstly, experimental impact tests were conducted on plates of 4 mm of thickness covering impact velocities from 50 m/s to 200 m/s and varying the stress state through the projectile nose shape: conical, hemispherical and blunt. The mechanisms behind the perforation process were studied depending on the projectile configuration used by analyzing the associated failure modes and post-mortem deflection. Secondly, a numerical study of the mechanical behavior of aluminum alloy 2024-T351 under impact loading was conducted. To this end, a three-dimensional model was developed in the finite element solver ABAQUS/Explicit. This model combines Lagrangian elements with Smoothed Particle Hydrodynamics (SPH) elements. A good correlation was obtained between numerical and experimental results in terms of residual and ballistic limit velocities.

Product Overview:
This simulation tutorial replicates the impact and perforation behavior of AA2024-T351 aluminum plates when struck by projectiles of various shapes. The model is based on a published ISI paper and enhanced through a video tutorial that incorporates damage modeling, absent in the original research. Key simulation steps include:

  • Creating plate and projectile parts using exact geometry from the paper
  • Assigning materials with and without Johnson-Cook damage
  • Meshing the impact zone with refined elements
  • Applying contact properties and initial projectile velocity
  • Running explicit dynamic steps and visualizing failure modes.

In this tutorial, ballistic impacts from blunt, hemispherical, and conical projectiles are simulated, according to data from the work of Rodriguez-Millan et al.

Course Content

Simulation Files

  • Tutorial Video
    00:00
  • Modeling Files

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30,00 50,00
24 people watching this product now!

Material Includes

  • Package Includes the following items:
  • Simulation files:
  • Abaqus files (The INP files are applicable to all versions):
  • CAE
  • INP
  • JNL
  • Instructional video:
  • Concise 25-minute guide to model setup and outputs for ballistic perforation of aluminum plates.

Audience

  • Civil Engineers
  • Mechanical Engineers
  • Engineering students

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