A finite element approach to model high-velocity impact on thin woven GFRP plates

Author:

Alonso L.,Martínez-Hergueta F.,Garcia-Gonzalez D.,Navarro C.,García-Castillo S.K.,Teixeira-Dias F.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Ocean Engineering,Safety, Risk, Reliability and Quality,Aerospace Engineering,Automotive Engineering,Civil and Structural Engineering

Reference41 articles.

1. Systemes D. Abaqus 6.14 User’s manual;Abaqus6.14,2014

2. Analytical models for the perforation of thick and thin thicknesses woven-laminates subjected to high-velocity impact;Alonso;Composites Part B,2018

3. Experimental study of woven-laminates structures subjected to high-velocity impact;Alonso;Mechanics of Advanced Materials and Structures,2018

4. An experimental and finite element investigation of the ballistic performance of laminated GFRP composite target;Ansari;Composites Part B: Engineering,2017

5. ASTM-Standard-D3410/D-3410M-95. Standard test method for compressive properties of polymer matrix composite materials with unsupported gage section by shear loading. 2010.

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