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Notice of Retraction Stability of hollow constructions repaired with carbon fiber-reinforced polymer

ICACTE 2010 - 2010 3rd International Conference on Advanced Computer Theory and Engineering, Proceedings(2010)

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Abstract
Notice of Retraction After careful and considered review of the content of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE's Publication Principles. We hereby retract the content of this paper. Reasonable effort should be made to remove all past references to this paper. The presenting author of this paper has the option to appeal this decision by contacting TPII@ieee.org. The buckling investigation of hollow cylinder constructions by carbon fiber reinforced polymer laminates subjected to axial compression load was explored adopting finite element method and analytical methods. The finite element model of simulating repair was established for hollow damage cylinder with carbon fiber-reinforced polymer laminates under ideal bonding condition by constraint equations. The analytical formula of buckling loads for hollow cylinder with CFRP under compression load was also derived based on energy theory. The finite element results approximately coincide with the analytical formula by numerical examples. The effect upon increasing the buckling load of hollow construction is remarkable by bonding CFRP and improving the CFRP layer parameters also can raise the buckling load. The results show the proposed design approach is conservative and acceptable.
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Key words
buckling,carbon fibre reinforced composites,construction industry,finite element analysis,laminates,mechanical stability,shapes (structures),cfrp,axial compression load,bonding condition,buckling load,carbon fiber reinforced polymer laminates,constraint equation,energy theory,finite element method,hollow construction,hollow damage cylinder,carbon fiber-reinforced polymer,finite element,repair,stability
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