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Simulation of Impact Phenomena in Kevlar Composite by FEM


Affiliations
1 Mech Engg Dept, North Eastern Regional Institute of Science and Technology (Deemed University), Nirjuli-791109, Arunachal Pradesh, India
2 Mech Engg Dept, Bengal Engg and Science University, Shibpur, Howrah-71103, West Bengal, India
     

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Advanced composite structures have been used widely in many applications such as aerospace, sport equipments and automobile parts. These are very susceptible to transverse impact. These may cause significant damage in terms of matrix cracking and delamination. In the present research the stress history by impact on kevlar composite plates are obtained using general-purpose commercial FEM software Like ANSYS LS-DYNA. The stresses are then substituted in the appropriate failure criterion from which the damage is obtained as a result of impact. Necessary codes (in FORTRAN and MATLAB Environment) have been developed to read the ANSYS/LS-DYNA results to find and image the damaged zone.

Keywords

Impact, Delamination, FEM and Fibre Reinforced Plastics.
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  • Simulation of Impact Phenomena in Kevlar Composite by FEM

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Authors

S. Samanta
Mech Engg Dept, North Eastern Regional Institute of Science and Technology (Deemed University), Nirjuli-791109, Arunachal Pradesh, India
D. Datta
Mech Engg Dept, Bengal Engg and Science University, Shibpur, Howrah-71103, West Bengal, India

Abstract


Advanced composite structures have been used widely in many applications such as aerospace, sport equipments and automobile parts. These are very susceptible to transverse impact. These may cause significant damage in terms of matrix cracking and delamination. In the present research the stress history by impact on kevlar composite plates are obtained using general-purpose commercial FEM software Like ANSYS LS-DYNA. The stresses are then substituted in the appropriate failure criterion from which the damage is obtained as a result of impact. Necessary codes (in FORTRAN and MATLAB Environment) have been developed to read the ANSYS/LS-DYNA results to find and image the damaged zone.

Keywords


Impact, Delamination, FEM and Fibre Reinforced Plastics.