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Copper spall fracture under sub-nanosecond electron irradiation

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dc.contributor.author Mayer A.E. en
dc.contributor.author Krasnikov V.S. en
dc.date.accessioned 2018-10-16T06:37:33Z
dc.date.available 2018-10-16T06:37:33Z
dc.date.issued 2011
dc.identifier.issn 137944
dc.identifier.uri http://dspace.susu.ru/handle/0001.74/20458
dc.description.abstract Ultra-short powerful electron beam is a suitable tool for producing of high rate deformation in substance. In paper we present a new model of high rate fracture and use this model for numerical investigation of fracture of copper target at irradiation by sub-nanosecond electron beam. In this model, fracture is considered as a time-dependent process of nucleation and growth of opening mode cracks. The nucleation and growth rates are controlled by specific free energy of crack surface which is sole fitted parameter. Plastic deformations, both in cracks vicinity and total in substance, are described in frames of dislocation theory. For verification of the model, we performed simulations of spall fracture at plate impact and at irradiation by high-current electron beam with pulse duration of tens of nanoseconds, and reasonable agreement with experimental data has been demonstrated. Simulations of the sub-nanosecond electron beam action on target indicate that spall fracture of the irradiated target surface is possible. This fracture takes place at the enclosed energy density slightly below the value, which is sufficient for melting of irradiated substance. Fracture threshold energy density does not depend on the origin dislocation density and it increases with the increase of pulse duration. As a result, at long pulse durations (more than ten nanoseconds) the substance melts before fracture. © 2011 Elsevier Ltd. en]
dc.language.iso English
dc.relation.ispartof Engineering Fracture Mechanics en]
dc.subject Copper target en]
dc.subject Crack surfaces en]
dc.subject Dislocation densities en]
dc.subject Dislocation theory en]
dc.subject Energy density en]
dc.subject Experimental data en]
dc.subject High rate en]
dc.subject High rate deformation en]
dc.subject High-current en]
dc.subject Long pulse durations en]
dc.subject Mixed mode fracture en]
dc.subject Nanosecond electron en]
dc.subject New model en]
dc.subject Nucleation and growth en]
dc.subject Numerical investigations en]
dc.subject Plate impact en]
dc.subject Pulse durations en]
dc.subject Spall fracture en]
dc.subject Specific free energy en]
dc.subject Target surface en]
dc.subject Threshold energy density en]
dc.subject Time-dependent process en]
dc.subject Void grow en]
dc.subject Computer simulation en]
dc.subject Copper en]
dc.subject Cracks en]
dc.subject Deformation en]
dc.subject Electron beams en]
dc.subject Electron irradiation en]
dc.subject Electron optics en]
dc.subject Electrons en]
dc.subject Fracture mechanics en]
dc.subject Nucleation en]
dc.subject Plasticity en]
dc.subject Fracture en]
dc.title Copper spall fracture under sub-nanosecond electron irradiation en
dc.type Article en]
dc.identifier.doi 10.1016/j.engfracmech.2011.02.012
dc.identifier.scopus https://www.scopus.com/inward/record.uri?eid=2-s2.0-79953024984&doi=10.1016%2fj.engfracmech.2011.02.012&partnerID=40&md5=eebeadb050b1904a8400242df5678318


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