Academic Journal

Effects of Voids in Tensile Single-Crystal Cu Nanobeams

Λεπτομέρειες βιβλιογραφικής εγγραφής
Τίτλος: Effects of Voids in Tensile Single-Crystal Cu Nanobeams
Συγγραφείς: Ahadi, Aylin
Πηγή: MODID-6d55e02e354:IntechOpen
Στοιχεία εκδότη: IntechOpen
Έτος έκδοσης: 2018
Θεματικοί όροι: Computers / Computer Simulation, bisacsh:COM072000
Περιγραφή: Molecular dynamic simulations of defect nanosized beams of single-crystal Cu, loaded in displacement controlled tension until rupture, have been performed. The defects are square-shaped, through-the-thickness voids of different sizes, placed centrally in the beams. Three different cross section sizes and two different crystallographic orientations are investigated. As expected, the sizes of the beam cross section and the void as well as the crystal orientation strongly influence both the elastic and the plastic behaviors of the beams. It was seen that the strain at plastic initiation increases with beam cross section size as well as with decreasing void size. It is further observed that the void deformed in different ways depending on cross section and void size. Sometimes void closure, leading to necking of the beam cross section followed by rupture occurred. In other cases, the void elongated leading to that the two ligaments above and below the void ruptured independently.
Τύπος εγγράφου: article in journal/newspaper
Περιγραφή αρχείου: application/pdf
Γλώσσα: English
ISBN: 978-1-78923-524-1
1-78923-524-3
DOI: 10.5772/intechopen.74169
Διαθεσιμότητα: https://openresearchlibrary.org/viewer/f580696d-1e01-46ca-9c13-56624fc8840b
https://openresearchlibrary.org/ext/api/media/f580696d-1e01-46ca-9c13-56624fc8840b/assets/external_content.pdf
https://doi.org/10.5772/intechopen.74169
Rights: https://creativecommons.org/licenses/by/4.0/legalcode
Αριθμός Καταχώρησης: edsbas.EE637CD9
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  Data: Effects of Voids in Tensile Single-Crystal Cu Nanobeams
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  Data: Molecular dynamic simulations of defect nanosized beams of single-crystal Cu, loaded in displacement controlled tension until rupture, have been performed. The defects are square-shaped, through-the-thickness voids of different sizes, placed centrally in the beams. Three different cross section sizes and two different crystallographic orientations are investigated. As expected, the sizes of the beam cross section and the void as well as the crystal orientation strongly influence both the elastic and the plastic behaviors of the beams. It was seen that the strain at plastic initiation increases with beam cross section size as well as with decreasing void size. It is further observed that the void deformed in different ways depending on cross section and void size. Sometimes void closure, leading to necking of the beam cross section followed by rupture occurred. In other cases, the void elongated leading to that the two ligaments above and below the void ruptured independently.
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