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Journal Abstract Search


199 related items for PubMed ID: 35080686

  • 1. The impact of misorientation on the grain boundary energy in bi-crystal copper: an atomistic simulation study.
    Wang K, Zhang W, Xu J, Dan W.
    J Mol Model; 2022 Jan 26; 28(2):47. PubMed ID: 35080686
    [Abstract] [Full Text] [Related]

  • 2. Concurrent atomistic and continuum simulation of bi-crystal strontium titanate with tilt grain boundary.
    Yang S, Chen Y.
    Proc Math Phys Eng Sci; 2015 Mar 08; 471(2175):20140758. PubMed ID: 25792957
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  • 3. Low-energy, Mobile Grain Boundaries in Magnesium.
    Liu X, Wang J.
    Sci Rep; 2016 Feb 19; 6():21393. PubMed ID: 26891595
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  • 4. Atomistic structures of 〈0001〉 tilt grain boundaries in a textured Mg thin film.
    Zhang S, Xie Z, Keuter P, Saood S, Abdellaoui L, Zhou X, Cautaerts N, Breitbach B, Aliramaji S, Korte-Kerzel S, Hans M, Schneider JM, Scheu C.
    Nanoscale; 2022 Dec 15; 14(48):18192-18199. PubMed ID: 36454106
    [Abstract] [Full Text] [Related]

  • 5. A grain boundary model considering the grain misorientation within a geometrically nonlinear gradient-extended crystal viscoplasticity theory.
    Alipour A, Reese S, Svendsen B, Wulfinghoff S.
    Proc Math Phys Eng Sci; 2020 Mar 15; 476(2235):20190581. PubMed ID: 32269484
    [Abstract] [Full Text] [Related]

  • 6. The Effects of Grain Boundary Misorientation on the Mechanical Properties and Mechanism of Plastic Deformation of Ni/Ni3Al: A Molecular Dynamics Study.
    Ding J, Zhang SL, Tong Q, Wang LS, Huang X, Song K, Lu SQ.
    Materials (Basel); 2020 Dec 15; 13(24):. PubMed ID: 33333827
    [Abstract] [Full Text] [Related]

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  • 8. Microscopic and Macroscopic Characterization of Grain Boundary Energy and Strength in Silicon Carbide via Machine-Learning Techniques.
    Guziewski M, Montes de Oca Zapiain D, Dingreville R, Coleman SP.
    ACS Appl Mater Interfaces; 2021 Jan 20; 13(2):3311-3324. PubMed ID: 33412001
    [Abstract] [Full Text] [Related]

  • 9. Grain boundary and misorientation angle-dependent thermal transport in single-layer MoS2.
    Xu K, Liang T, Zhang Z, Cao X, Han M, Wei N, Wu J.
    Nanoscale; 2022 Jan 27; 14(4):1241-1249. PubMed ID: 34994370
    [Abstract] [Full Text] [Related]

  • 10. In situ atomic scale mechanical microscopy discovering the atomistic mechanisms of plasticity in nano-single crystals and grain rotation in polycrystalline metals.
    Han X, Wang L, Yue Y, Zhang Z.
    Ultramicroscopy; 2015 Apr 27; 151():94-100. PubMed ID: 25576291
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  • 12. Atomistic Study of Interactions between Intrinsic Kink Defects and Dislocations in Twin Boundaries of Nanotwinned Copper during Nanoindentation.
    Hu X, Ni Y, Zhang Z.
    Nanomaterials (Basel); 2020 Jan 28; 10(2):. PubMed ID: 32012856
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  • 17. Understanding Grain Boundary Electrical Resistivity in Cu: The Effect of Boundary Structure.
    Bishara H, Lee S, Brink T, Ghidelli M, Dehm G.
    ACS Nano; 2021 Oct 26; 15(10):16607-16615. PubMed ID: 34605639
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  • 20. Grain rotation mediated by grain boundary dislocations in nanocrystalline platinum.
    Wang L, Teng J, Liu P, Hirata A, Ma E, Zhang Z, Chen M, Han X.
    Nat Commun; 2014 Jul 17; 5():4402. PubMed ID: 25030380
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