Determination of Dynamic Stress in Fibre Reinforced Materials under Impact Load

The investigations reported in this paper are intended to obtain knowledge about stress concentrations within fibre reinforced plastics due to impact loadings below the damage threshold of the anisotropic material. The paper focuses on presenting the application of a dynamic photoelastic technique m...

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Main Authors: D.H. Müller, Th. Franz, A. Tenzler
Format: Article
Language:English
Published: Wiley 1998-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/1998/952023
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author D.H. Müller
Th. Franz
A. Tenzler
author_facet D.H. Müller
Th. Franz
A. Tenzler
author_sort D.H. Müller
collection DOAJ
description The investigations reported in this paper are intended to obtain knowledge about stress concentrations within fibre reinforced plastics due to impact loadings below the damage threshold of the anisotropic material. The paper focuses on presenting the application of a dynamic photoelastic technique more than on providing extensive and detailed experimental data. Thus, a brief summary of the experimental part is given. The potential value of the developed experimental method is demonstrated exemplary for an arbitrary composite.
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spelling doaj-art-4b4dc95aee7d481d98a1dab9798e8b722025-08-20T02:38:33ZengWileyShock and Vibration1070-96221875-92031998-01-015426727210.1155/1998/952023Determination of Dynamic Stress in Fibre Reinforced Materials under Impact LoadD.H. Müller0Th. Franz1A. Tenzler2Bremer Institut für Konstruktionstechnik (BIK), University of Bremen, 28359 Bremen, GermanyBremer Institut für Konstruktionstechnik (BIK), University of Bremen, 28359 Bremen, GermanyBremer Institut für Konstruktionstechnik (BIK), University of Bremen, 28359 Bremen, GermanyThe investigations reported in this paper are intended to obtain knowledge about stress concentrations within fibre reinforced plastics due to impact loadings below the damage threshold of the anisotropic material. The paper focuses on presenting the application of a dynamic photoelastic technique more than on providing extensive and detailed experimental data. Thus, a brief summary of the experimental part is given. The potential value of the developed experimental method is demonstrated exemplary for an arbitrary composite.http://dx.doi.org/10.1155/1998/952023
spellingShingle D.H. Müller
Th. Franz
A. Tenzler
Determination of Dynamic Stress in Fibre Reinforced Materials under Impact Load
Shock and Vibration
title Determination of Dynamic Stress in Fibre Reinforced Materials under Impact Load
title_full Determination of Dynamic Stress in Fibre Reinforced Materials under Impact Load
title_fullStr Determination of Dynamic Stress in Fibre Reinforced Materials under Impact Load
title_full_unstemmed Determination of Dynamic Stress in Fibre Reinforced Materials under Impact Load
title_short Determination of Dynamic Stress in Fibre Reinforced Materials under Impact Load
title_sort determination of dynamic stress in fibre reinforced materials under impact load
url http://dx.doi.org/10.1155/1998/952023
work_keys_str_mv AT dhmuller determinationofdynamicstressinfibrereinforcedmaterialsunderimpactload
AT thfranz determinationofdynamicstressinfibrereinforcedmaterialsunderimpactload
AT atenzler determinationofdynamicstressinfibrereinforcedmaterialsunderimpactload