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  1. International Journal of Precision Engineering and Manufacturing
  2. International Journal of Precision Engineering and Manufacturing : Volume 11
  3. International Journal of Precision Engineering and Manufacturing : Volume 11, Issue 1, February 2010
  4. Fracture behaviour of adhesively-bonded composite materials under impact loading
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International Journal of Precision Engineering and Manufacturing : Volume 18
International Journal of Precision Engineering and Manufacturing : Volume 17
International Journal of Precision Engineering and Manufacturing : Volume 16
International Journal of Precision Engineering and Manufacturing : Volume 15
International Journal of Precision Engineering and Manufacturing : Volume 14
International Journal of Precision Engineering and Manufacturing : Volume 13
International Journal of Precision Engineering and Manufacturing : Volume 12
International Journal of Precision Engineering and Manufacturing : Volume 11
International Journal of Precision Engineering and Manufacturing : Volume 11, Issue 6, December 2010
International Journal of Precision Engineering and Manufacturing : Volume 11, Issue 5, October 2010
International Journal of Precision Engineering and Manufacturing : Volume 11, Issue 4, August 2010
International Journal of Precision Engineering and Manufacturing : Volume 11, Issue 3, June 2010
International Journal of Precision Engineering and Manufacturing : Volume 11, Issue 2, April 2010
International Journal of Precision Engineering and Manufacturing : Volume 11, Issue 1, February 2010
Measurement of the sunroof buffeting noise with an automatic deflector-traversing device
Automatic circle pattern extraction and camera calibration using fast adaptive binarization and plane homography
A feasibility study of damage tracking through the diffusive communication of wireless sensors
Position and orientation detection of capsule endoscopes in spiral motion
Development of a 3-axis desktop milling machine and a CNC system using advanced modern control algorithms
A hybrid stress measurement using only x-displacements by phase shifting method with fourier transform (PSM/FT) in laser speckle interferometry and least squares method
Precision control of a piezo-actuated micro telemanipulation system
A dynamic model of humanoid robots using the analytical method
Time-dependent optimal heater control using analytic and numerical methods
Inertia friction welding process analysis and mechanical properties evaluation of large rotor shaft in marine turbo charger
Fracture behaviour of adhesively-bonded composite materials under impact loading
Wear resistance enhancement in cryotreated En 52 and 21-4N valve steels
Characteristic evaluation of friction and wear in the C-N and TiN coated gear
Investigation of short pulse electrochemical machining for groove process on Ni-Ti shape memory alloy
Effect of forming conditions on linear patterning of polymer materials by hot embossing process
Effect of tip geometry of atomic force microscope on mechanical responses of bovine articular cartilage and agarose gel
A study of systemic-to-pulmonary artery shunt deformation shape by CFD (computational fluid dynamics)
A robust and efficient method for direct projection on point-sampled surfaces
A review of focused ion beam sputtering
A review of adhesion and friction models for gecko feet
International Journal of Precision Engineering and Manufacturing : Volume 10

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Fracture behaviour of adhesively-bonded composite materials under impact loading

Content Provider Springer Nature Link
Author Cho, Jae Ung Kinloch, Anthony Blackman, Bamber Rodriguez, Sebastian Cho, Chong Du Lee, Sang Kyo
Copyright Year 2010
Abstract In this paper, a polymeric unidirectional carbon-fibre epoxy-resin composite is both experimentally and numerically investigated to study the nonlinear material behavior of impacted DCB (Double Cantilever Beam) specimens. For the impact analysis, the load and the displacement applied from pin onto end block as well as the crack energy release rate are measured and compared with the finite element analysis results. The energy release rate is a critical measure of the resistance to crack propagation, which can be estimated by the force and displacement at the crack tip. It is found that the energy release rate measured from impact tests on the specimens is well predicted by the suggested finite element model in this study.
Starting Page 89
Ending Page 95
Page Count 7
File Format PDF
ISSN 12298557
Journal International Journal of Precision Engineering and Manufacturing
Volume Number 11
Issue Number 1
e-ISSN 20054602
Language English
Publisher Korean Society for Precision Engineering
Publisher Date 2010-04-17
Publisher Place Springer
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Impact Adhesively bonded specimens Composite Double cantilever beam specimen Crack propagation Energy release rate Equivalent plastic strain Materials Science Industrial and Production Engineering
Content Type Text
Resource Type Article
Subject Industrial and Manufacturing Engineering Mechanical Engineering Electrical and Electronic Engineering
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