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Experimental characterization of the properties of double-lap needled and hybrid joints of carbon/epoxy composites

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Date
2015
Author
Arnautov, Aleksandr K
Nasibullins, Aleksej
Gribniak, Viktor
Blumbergs, Ilmars
Hauka, Maris
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Abstract
The effect of through-thickness reinforcement by thin 1 mm steel needles (z-pins) on the static tensile strength of double-lap joints of a carbon/epoxy composite was investigated. Two types of joints—z-pinned and hybrid (including glued ones)—were considered. The joints were reinforced in the overlap region with 9, 25, or 36 z-pins. Comparing mechanical properties of the double-lap joints with the corresponding characteristics of their unpinned counterparts, the z-pins were found to be highly effective: the strength and stiffness of the pinned joints increased up to 300% and 280%, respectively. These improvements were due to a transition in the failure mechanism from debonding of the joint in the absence of z-pins to pullout or shear rupture of z-pins or to the tensile failure of laminate adherends, depending on the volume content of the pins.
Issue date (year)
2015
URI
https://etalpykla.vilniustech.lt/handle/123456789/114142
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  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources [7946]

 

 

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