Investigation of crack paths in natural fibre-reinforced composites
Nowadays, fibre-reinforced composite materials are widely used in many fields, e.g. automotive and aerospace. Natural fibres such as flax and hemp provide good density specific mechanical properties. Additionally, the embodied production energy in natural fibres is much smaller than in synthetic o...
Main Authors: | , |
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Format: | Article |
Language: | English |
Published: |
Gruppo Italiano Frattura
2015-10-01
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Series: | Frattura ed Integrità Strutturale |
Subjects: | |
Online Access: | http://www.gruppofrattura.it/pdf/rivista/numero34/numero_34_art_41.pdf |
Summary: | Nowadays, fibre-reinforced composite materials are widely used in many fields, e.g. automotive and
aerospace. Natural fibres such as flax and hemp provide good density specific mechanical properties.
Additionally, the embodied production energy in natural fibres is much smaller than in synthetic ones. Within
this paper the fracture mechanical behaviour of flax fibre-reinforced composites is discussed. Especially, this
paper focuses on the determination and investigation of crack paths in compact tension specimens with three
different fibre directions under a static as well as fatigue load. Differences and similarities in the obtained crack
paths under different loading conditions are presented. Due to the pronounced orthotropic behaviour of those
materials the crack path is not only governed by the stress state, but practically determined by the fibre direction
and fibre volume fraction. Therefore, the well-known stress intensity factor solutions for the standard
specimens are not applicable. It is necessary to carry out extensive numerical simulations to evaluate the stress
intensity factor evolution along the growing crack in order to be able to determine fatigue crack growth rate
curves. Those numerical crack growth simulations are performed with the three-dimensional crack simulation
program ADAPCRACK3D to gain energy release rates and in addition stress intensity factors |
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ISSN: | 1971-8993 1971-8993 |