A C1 Incompatible Mode Element Formulation for Strain Gradient Elasticity

Author:

Glüge Rainer

Publisher

Springer International Publishing

Reference21 articles.

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2. Astaf’ev VI, Radaev YN, Stepanova LV (2001) Nelineinaia mekhanika razrusheniia [Nonlinear Mechanics of Damage]. Izdatel’stvo “Samarskii universitet”

3. Busov VL (2007) Rasseianie ul’trazvukovykh voln na mikrotreshchinakh v fragmentirovannykh polikristallakh [ultrasonic wave scattering by microcracks in the fragmented polycrystals]. Akustichnii vestnik Acoustic Bulletin 10(3):19–24

4. Frolenkova LY, Shorkin VS (2013) Metod vychisleniia poverkhnostnoi energii i energii adgezii uprugikh tel [method of calculating the surface and adhesion energies of elastic bodies]. Vestnik Permskogo natsional’nogo issledovatel’skogo politekhnicheskogo universiteta Mekhanika PNRPU Mechanics Bulletin 1:235–259

5. Griffith AA (1920) The phenomena of rupture and flow in solids. Phil Trans Roy Soc London Ser A 221:163–198

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1. A benchmark strain gradient elasticity solution in two-dimensions for verifying computational approaches by means of the finite element method;Mathematics and Mechanics of Solids;2022-08-15

2. Verification of strain gradient elasticity computation by analytical solutions;ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik;2021-07-26

3. A novel phase‐field approach to brittle damage mechanics of gradient metamaterials combining action formalism and history variable;ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik;2021-03-05

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