Search

Tension–compression asymmetry in amorphous silicon

4.6 (783) · $ 19.00 · In stock

Tension–compression asymmetry in amorphous silicon
PDF) Tension–compression asymmetry in amorphous silicon

PDF) Tension–compression asymmetry in amorphous silicon

Electrical resistance measured for a-Si under tension versus

Electrical resistance measured for a-Si under tension versus

Asymmetry in deformation

Asymmetry in deformation

Non-affine atomic rearrangement of glasses through stress-induced  structural anisotropy

Non-affine atomic rearrangement of glasses through stress-induced structural anisotropy

Anomalous tension–compression asymmetry in amorphous silicon: insights from  atomistic simulations and elastoplastic constitutive modeling -  ScienceDirect

Anomalous tension–compression asymmetry in amorphous silicon: insights from atomistic simulations and elastoplastic constitutive modeling - ScienceDirect

Deformation and strength of materials

Deformation and strength of materials

Journal of the Mechanics and Physics of Solids, Vol 186, In progress (May  2024)

Journal of the Mechanics and Physics of Solids, Vol 186, In progress (May 2024)

Valence charge density in cementite. Isosurfaces at ρ = 0.5e Å−3 along

Valence charge density in cementite. Isosurfaces at ρ = 0.5e Å−3 along

A self-aligning microtensile setup: Application to single-crystal GaAs  microscale tension–compression asymmetry, Journal of Materials Research

A self-aligning microtensile setup: Application to single-crystal GaAs microscale tension–compression asymmetry, Journal of Materials Research

Metals, Free Full-Text

Metals, Free Full-Text

PDF) Tension–compression asymmetry in amorphous silicon

PDF) Tension–compression asymmetry in amorphous silicon

Anomalous tension–compression asymmetry in amorphous silicon: insights from  atomistic simulations and elastoplastic constitutive modeling -  ScienceDirect

Anomalous tension–compression asymmetry in amorphous silicon: insights from atomistic simulations and elastoplastic constitutive modeling - ScienceDirect

Brittle versus ductile fracture mechanism transition in amorphous lithiated  silicon: From intrinsic nanoscale cavitation to shear banding -  ScienceDirect

Brittle versus ductile fracture mechanism transition in amorphous lithiated silicon: From intrinsic nanoscale cavitation to shear banding - ScienceDirect

Amorphous silicon exhibits a glass transition

Amorphous silicon exhibits a glass transition