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Part A: Materials Science

Atomistic simulation of microtwinning at the crack tip in L12 Ni3Al

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Pages 1542-1553 | Received 23 Jun 2011, Accepted 06 Oct 2011, Published online: 21 Feb 2012

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J. Amodeo, C. Begau & E. Bitzek. (2014) Atomistic Simulations of Compression Tests on Ni3Al Nanocubes. Materials Research Letters 2:3, pages 140-145.
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Articles from other publishers (12)

Sagar Chandra, Alankar Alankar, Mahendra K. Samal & Vivek M. Chavan. (2023) Insights into fracture behavior of Ni-based superalloy single crystals: An atomistic investigation. Journal of Alloys and Compounds 952, pages 169938.
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Lei Ma, Shimin Peng, Changsheng Li & Wangyu Hu. (2022) Atomic simulation of effects of Ʃ5 grain boundary on mechanical properties of Ni3Al. The European Physical Journal B 95:11.
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Lei Ma, Peng Fei, Changsheng Li & Wangyu Hu. (2022) Analysis of fatigue crack propagation mechanism of Ni 3 Al under supergravity at atomic size . AIP Advances 12:6, pages 065223.
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Ronghai Wu, Yunsong Zhao, Qian Yin, Jiapo Wang, Xing Ai & Zhixun Wen. (2021) Atomistic simulation studies of Ni-based superalloys. Journal of Alloys and Compounds 855, pages 157355.
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Jonathan Amodeo & Khalid Lizoul. (2017) Mechanical properties and dislocation nucleation in nanocrystals with blunt edges. Materials & Design 135, pages 223-231.
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Lei Ma, Shifang Xiao, Huiqiu Deng & Wangyu Hu. (2016) Tensile mechanical properties of Ni-based superalloy of nanophases using molecular dynamics simulation. physica status solidi (b) 253:4, pages 726-732.
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Shu-Lan Liu, Chong-Yu Wang & Tao Yu. (2015) Effect of Re and W upon brittle fracture in Ni3Al cracks by atomic simulation. Computational Materials Science 110, pages 261-269.
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Lei Ma, Shifang Xiao, Huiqiu Deng & Wangyu Hu. (2014) Atomic simulation of fatigue crack propagation in Ni3Al. Applied Physics A 118:4, pages 1399-1406.
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J. Wang & H. Sehitoglu. (2014) Dislocation slip and twinning in Ni-based L12 type alloys. Intermetallics 52, pages 20-31.
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J Wang & H Sehitoglu. (2014) Modeling of pseudotwinning in Fe 3 Ga . Modelling and Simulation in Materials Science and Engineering 22:5, pages 055008.
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J. Wang & H. Sehitoglu. (2014) Modeling of pseudoelasticity via reversible slip in Fe3Ga. Computational Materials Science 87, pages 34-42.
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Hongxian Xie, Tao Yu, Fuxing Yin & Chengchun Tang. (2013) The effects of crack orientation on the twin formation from the crack tip in γ′-Ni3Al. Materials Science and Engineering: A 580, pages 99-104.
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