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Please use this identifier to cite or link to this item: http://hdl.handle.net/10016/11953

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Title: Temperature measurements on ES steel sheets subjected to perforation by hemispherical projectiles
Author(s): Rodríguez-Martínez, José Antonio
Rusinek, Alexis
Chevrier, P.
Bernier, R.
Arias Hernández, Ángel
Publisher: Elsevier
Issued date: Jul-2010
Citation: Rodriguez-Martinez, J.A.; Rusinek, A.; Chevrier, P; Bernier, R.; Arias, A. “Temperature measurements on ES steel sheets subject to perfornation by hemispherical projectiles". International Journal of mechanical sciences, 2010, vol. 37, n. 7, p. 828-841
URI: http://hdl.handle.net/10016/11953
ISSN: 0734-743X
DOI: http://dx.doi.org/10.1016/j.engfracmech.2009.12.005
Abstract: In this paper is reported a study on the behaviour of ES mild steel sheets subjected to perforation by hemispherical projectiles. Experiments have been conducted using a pneumatic cannon within the range of impact velocities 5m/s<=V0<=60m/s. The experimental setup allowed evaluating initial velocity, failure mode and post-mortem deflection of the plates. The tests have been recorded using high speed infrared camera. It made possible to obtain temperature contours of the specimen during impact. Thus, special attention is focussed on the thermal softening of the material which is responsible for instabilities and failure. Assuming adiabatic conditions of deformation, the increase of temperature may be related to the plastic deformation. The critical strain leading to target-failure is evaluated coupling temperature measurements with numerical simulations and with analytical predictions obtained by means of the Rusinek-Klepaczko constitutive relation [Rusinek, A., Klepaczko, J.R. Shear testing of sheet steel at wide range of strain rates and a constitutive relation with strain rate and temperature dependence of the flow stress. Int J Plasticity. 2001; 17, 87-115]. It has been estimated that the process of localization of plastic deformation which leads to target-failure involves local values close to for the boundary value problem approached. Subsequently, this failure strain level has been applied to simulate the perforation process and the numerical results obtained show satisfactory agreement with the experiments in terms of ballistic limit, temperature increase and failure mode of the target.
Sponsor: The researchers of the University Carlos III of Madrid are indebted to the Comunidad Autónoma de Madrid (Project CCG08 UC3M/MAT 4464) and to the Ministerio de Ciencia e Innovación de España (Project DPI/2008 06408)
Review: PeerReviewed
Publisher version: http://dx.doi.org/10.1016/j.engfracmech.2009.12.005
Keywords: Perforation
RK model
Infrared thermography
Dynamic failure
Rights: © Elsevier
Appears in Collections:DMMCTE - DFEE - Artículos de revistas

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