Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Ataş, Akın

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (21/21 displayed)

  • 2022Strain rate effect on the tensile properties of plain weave aramid, carbon, and glass fabric reinforced monolithic and hybrid composites5citations
  • 2021Effect of quasi-static and intermediate strain rates on the tensile properties of hybrid polymer composites2citations
  • 2018Bolted joints in quasi-unidirectional glass-fibre NCF composite laminates12citations
  • 2018Compression after low velocity impact tests of marine sandwich composites: Effect of intermediate wooden layers32citations
  • 2018Experimental investigation of pinned joints in NCF Glass-Fibre reinforced composite plates3citations
  • 2016Bolted joints in three axially braided carbon fibre/epoxy textile composites with moulded-in and drilled fastener holes9citations
  • 2016Damage and failure analysis of bolted joints in composite laminates3citations
  • 2015Open hole compressive strength and damage mechanisms14citations
  • 2014Application of cohesive zone elements in damage analysis of composites23citations
  • 2014Strength prediction of bolted joints in CFRP composite laminates using cohesive zone elements54citations
  • 2013Subcritical damage mechanisms of bolted joints in CFRP composite laminates66citations
  • 2013Failure analysis of bolted joints in cross-ply composite laminates using cohesive zone elementscitations
  • 2012Modelling delamination onset and growth in pin loaded composite laminates37citations
  • 2012Effect of clamping force on the delamination onset and growth in bolted composite laminates22citations
  • 2012Effect of geometric parameters on the stress distribution in Al 2024-T3 single-lap bolted joints13citations
  • 2012Progressive failure analysis of bolted joints in composite laminates13citations
  • 2012Strength prediction of bolted joints in cross-ply laminates based on subcritical damage modellingcitations
  • 2011A qualitative comparison of stresses at aircraft bolted joint holes under initial clamping force2citations
  • 2009Failure analysis of laminated composite plates with two parallel pin-loaded holes29citations
  • 2009The effect of curing conditions and fiber end shapes on the mechanical properties of composites1citations
  • 2008İki eksenli gerilme altındaki kompozit plakalarda dairesel delik çevresindeki gerilme dağılımlarıcitations

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Demircioglu, Tk
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Balikoglu, F.
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Diler, Ea
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Demircioglu, Tayfur K.
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Balikoglu, Fatih
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Diler, Ege A.
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İnal, Oğuzcan
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Demircioğlu, T. K.
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Balıkoğlu, F.
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Arslan, N.
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Potluri, Prasad
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Gautam, Mayank
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Soutis, Costas
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Mohamed, G. F.
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Keikhosravy, Mehdi
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Oskouei, Reza Hashemi
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Soltani, Payam
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Hodzic, A.
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Arslan, Nurettin
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Sen, Faruk
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Özdemir, Zafer
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Türkbas, Selim
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Demircioglu, T. Kerem
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Co-Authors (by relevance)

  • Demircioglu, Tk
  • Balikoglu, F.
  • Diler, Ea
  • Demircioglu, Tayfur K.
  • Balikoglu, Fatih
  • Diler, Ege A.
  • İnal, Oğuzcan
  • Demircioğlu, T. K.
  • Balıkoğlu, F.
  • Arslan, N.
  • Potluri, Prasad
  • Gautam, Mayank
  • Soutis, Costas
  • Mohamed, G. F.
  • Keikhosravy, Mehdi
  • Oskouei, Reza Hashemi
  • Soltani, Payam
  • Hodzic, A.
  • Arslan, Nurettin
  • Sen, Faruk
  • Özdemir, Zafer
  • Türkbas, Selim
  • Demircioglu, T. Kerem
OrganizationsLocationPeople

article

Strength prediction of bolted joints in CFRP composite laminates using cohesive zone elements

  • Soutis, Costas
  • Ataş, Akın
Abstract

A strength prediction method is developed for bolted joints in CFRP composite laminates using cohesive zone elements (CZEs). Three-dimensional finite element models were developed with one element per laminate layer using the ANSYS software (ANSYS, 2009) [1]. CZEs were embedded into the subcritical (matrix based) damage locations that were determined from the X-ray radiographs as detailed in Atas and Soutis (2013) [2]. CZEs use a strength-based failure criterion to predict the onset of damage and a fracture mechanics based approach to predict its growth. The material properties required to simulate the subcritical damage modes were the interfacial strength, fracture energies and the nonlinear shear stress-strain behaviour of the particular material system used. The strength of the joints was determined through the load-displacement curves of the cross-ply laminates and by a simple maximum stress criterion for the quasi-isotropic specimens. It has been shown that the effect of various joint geometries and laminate lay-ups on the joint strength was accounted for by the method developed.

Topics
  • impedance spectroscopy
  • polymer
  • strength
  • stress-strain behavior
  • composite
  • isotropic
  • interfacial
  • finite element analysis
  • joining
  • ultraviolet photoelectron spectroscopy
  • polymer-matrix composite