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Numerical prediction of the low-velocity impact damage and compression after impact strength of composite laminates

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Version 2 2024-06-18, 03:20
Version 1 2015-01-01, 00:00
conference contribution
posted on 2024-06-18, 03:20 authored by W Tan, BG Falzon, NS CHIU, M Price
Low-velocity impact damage can drastically reduce the residual mechanical properties of the composite structure even when there is barely visible impact damage. The ability to computationally predict the extent of damage and compression after impact (CAI) strength of a composite structure can potentially lead to the exploration of a larger design space without incurring significant development time and cost penalties. A three-dimensional damage model, to predict both low-velocity impact damage and compression after impact CAI strength of composite laminates, has been developed and implemented as a user material subroutine in the commercial finite element package, ABAQUS/Explicit. The virtual tests were executed in two steps, one to capture the impact damage and the other to predict the CAI strength. The observed intra-laminar damage features, delamination damage area as well as residual strength are discussed. It is shown that the predicted results for impact damage and CAI strength correlated well with experimental testing.

History

Related Materials

Location

St Asaph, United Kingdom

Open access

  • Yes

Language

eng

Publication classification

E1.1 Full written paper - refereed

Copyright notice

2015, The Authors

Editor/Contributor(s)

Unknown

Volume

74

Pagination

1-7

Start date

2014-04-07

End date

2014-04-09

ISSN

1757-8981

eISSN

1757-899X

Title of proceedings

IOP : Proceedings of the 2014 IOP Conference Series on Materials Science and Engineering

Event

Materials Science and Engineering. IOP Conference Series (1st : 2014 : St Asaph, United Kingdom)

Issue

1

Publisher

IOP Publishing

Place of publication

Bristol, United Kingdom

Series

Advanced Materials for Demanding Applications

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