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Low velocity impact of GLARE fibre-metal laminates

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dc.contributor.author Tsamasphyros, GJ en
dc.contributor.author Bikakis, GS en
dc.date.accessioned 2014-03-01T02:53:20Z
dc.date.available 2014-03-01T02:53:20Z
dc.date.issued 2011 en
dc.identifier.uri https://dspace.lib.ntua.gr/xmlui/handle/123456789/36248
dc.relation.uri http://www.scopus.com/inward/record.url?eid=2-s2.0-84858373914&partnerID=40&md5=81f9b1382ea5ce9d3730351d74798d6f en
dc.subject Circular plate en
dc.subject Fiber-metal laminate en
dc.subject GLARE en
dc.subject Low velocity impact en
dc.subject.other Circular plates en
dc.subject.other Energy-time en
dc.subject.other Fiber metal laminates en
dc.subject.other Fibre Metal Laminates en
dc.subject.other Impact variables en
dc.subject.other Low velocity impact en
dc.subject.other Spring-Mass model en
dc.subject.other Unloading paths en
dc.subject.other Computer aided engineering en
dc.subject.other Differential equations en
dc.subject.other Environmental engineering en
dc.subject.other Laminates en
dc.subject.other Plate metal en
dc.subject.other Unloading en
dc.subject.other Glare en
dc.title Low velocity impact of GLARE fibre-metal laminates en
heal.type conferenceItem en
heal.publicationDate 2011 en
heal.abstract This paper deals with the response of circular GLARE fiber-metal laminates subjected to low velocity impact. Using a spring-mass model, the differential equations of impact motion are derived and solved analytically. Published formulas [1, 2] concerning indentation of GLARE are used during loading. Here, an equation for the unloading path is derived and used during unloading. Expressions for calculation of load, position, velocity and kinetic energy time histories are derived and critical impact variables are determined. These expressions are applied to GLARE 4-3/2. The predicted impact variables agree well with published experiment. No other solution of this problem is known. © Civil-Comp Press, 2011. en
heal.journalName Proceedings of the 13th International Conference on Civil, Structural and Environmental Engineering Computing en


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