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Strain rate dependent multiaxial characterization of long fiber reinforced plastic

  • Long-fiber reinforced thermoplastics (LFT) were characterized for automotive applications with high rate experiments in a range of strain rate from 10⁻³s⁻¹ up to 10²s⁻¹. High-speed video imaging with digital image correlation (DIC) and a high-speed infra-red camera are applied to investigate the strain and temperature development during four different testing types. Different states of stress wereLong-fiber reinforced thermoplastics (LFT) were characterized for automotive applications with high rate experiments in a range of strain rate from 10⁻³s⁻¹ up to 10²s⁻¹. High-speed video imaging with digital image correlation (DIC) and a high-speed infra-red camera are applied to investigate the strain and temperature development during four different testing types. Different states of stress were investigated to provide adequate input data for simulation. A new fracture initiation criterion is introduced. Nearly pure shear load could be reached with a specifically designed specimen. It was found that global deformations rise with the strain rate, while local strains decrease. The adiabatic temperature-rise enlarges the deformation zone, impedes strain localization and leads to higher energy absorption at higher strain rates.show moreshow less

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Metadaten
Document Type:Article
State of review:Begutachtet (reviewed)
Zitierlink: https://opus.hs-offenburg.de/9660
Bibliografische Angaben
Title (English):Strain rate dependent multiaxial characterization of long fiber reinforced plastic
Author:Jörg LienhardStaff MemberORCiDGND, Lukas Schulenberg
Year of Publication:2018
Publisher:Elsevier BV
First Page:164
Last Page:173
Parent Title (English):Composites Part B: Engineering
Volume:141
ISSN:1359-8368 (Print)
ISSN:1879-1069 (Online)
DOI:https://doi.org/10.1016/j.compositesb.2017.12.031
Language:English
Inhaltliche Informationen
Institutes:Veröffentlichungen außerhalb der Hochschulzeit
Tag:Adiabatic-heating; High-rate deformation; Infra-red measurement; LFT
Formale Angaben
Open Access: Closed 
Licence (German):License LogoUrheberrechtlich geschützt