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Phase Transformation, Sintering Mechanism and Dynamics of Singlet-Doublet Al Nanosphere Collisions with Initial Ⅰ-Shaped Configuration

Jun JIANG et al · Editorial Office of Chinese Journal of High Pressure Physics · 2026

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Molecular dynamics simulations are used to study the dynamics of a single Al nanosphere (singlet) colliding with an aggregate of two Al nanospheres (doublet) with initial Ⅰ-shaped configuration. Depending on the initial impact velocity, there are four collision outcomes, namely bounce, adhesion, aggregation and melting. At a very low velocity, the repulsive force between the nanospheres leads the nanospheres to rebound without contact, and the critical velocity of bounce decreases with the increase of the diameter of the nanosphere. As the velocity increases, the nanospheres are sintered together due to adhesion between them and the formation of new bonds. The phase transformation and atomic diffusion during singlet-doublet collisions are quantitatively characterized by common neighbor analysis, dislocation analysis and mean square displacement to explore the underlying sintering mechanism. The critical impact velocity of singlet melting is obtained by monitoring the temperature of singlet with different diameters.

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APA 7

al, J. J. E. (2026). Phase Transformation, Sintering Mechanism and Dynamics of Singlet-Doublet Al Nanosphere Collisions with Initial Ⅰ-Shaped Configuration. https://doi.org/10.11858/gywlxb.20251176

MLA

al, Jun JIANG et. "Phase Transformation, Sintering Mechanism and Dynamics of Singlet-Doublet Al Nanosphere Collisions with Initial Ⅰ-Shaped Configuration." 2026. https://doi.org/10.11858/gywlxb.20251176.

Chicago

al, Jun JIANG et. 2026. "Phase Transformation, Sintering Mechanism and Dynamics of Singlet-Doublet Al Nanosphere Collisions with Initial Ⅰ-Shaped Configuration.". https://doi.org/10.11858/gywlxb.20251176.

Harvard

al, J. J. E. 2026, Phase Transformation, Sintering Mechanism and Dynamics of Singlet-Doublet Al Nanosphere Collisions with Initial Ⅰ-Shaped Configuration, Editorial Office of Chinese Journal of High Pressure Physics, available at: https://doi.org/10.11858/gywlxb.20251176 [Accessed 30 Jun. 2026].

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Título
Phase Transformation, Sintering Mechanism and Dynamics of Singlet-Doublet Al Nanosphere Collisions with Initial Ⅰ-Shaped Configuration
Autor / colaboradores
Jun JIANG et al
Editorial
Editorial Office of Chinese Journal of High Pressure Physics
Año de publicación
2026
ISSN
1000-5773
ISSN
1000-5773
Idioma
eng

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