Superlow Interaction in Layered Structures

Article ID

89PXM

Superlow Interaction in Layered Structures

Michail V. Nozhenkov
Michail V. Nozhenkov Russian Academy of Sciences, Joint-Stock Company aoTechnom-Ta
DOI

Abstract

The article investigates the impact of technology of the properties of thin films of anisotropic laminated structures. Performed electron diffraction and electron microscopy studies of the structure. Testing of the tribological properties. The positive effect of applying wear-resistant underlayer and alloying of the coating material, which led to a significant increase in the durability and appearance of superlow friction. The generalized model of non-dissipative transport of mass (energy) in the absence of resistance forces during the move. Found that the superlow friction, superconductivity and superfluidity are related phenomena defined phase transition particle energy distribution across the critical value (energy potential barrier). Energetically favorable arrangement of the particles in the crystal lattice for the non-dissipative movement in the lack of forces of resistance are the spaces of Van der Waals in layered systems where possible prediction of the investigated phenomena.

The article investigates the impact of technology of the properties of thin films of anisotropic laminated structures. Performed electron diffraction and electron microscopy studies of the structure. Testing of the tribological properties. The positive effect of applying wear-resistant underlayer and alloying of the coating material, which led to a significant increase in the durability and appearance of superlow friction. The generalized model of non-dissipative transport of mass (energy) in the absence of resistance forces during the move. Found that the superlow friction, superconductivity and superfluidity are related phenomena defined phase transition particle energy distribution across the critical value (energy potential barrier). Energetically favorable arrangement of the particles in the crystal lattice for the non-dissipative movement in the lack of forces of resistance are the spaces of Van der Waals in layered systems where possible prediction of the investigated phenomena.

Michail V. Nozhenkov
Michail V. Nozhenkov Russian Academy of Sciences, Joint-Stock Company aoTechnom-Ta

No Figures found in article.

Michail V. Nozhenkov. 2014. “. Global Journal of Research in Engineering – A : Mechanical & Mechanics GJRE-A Volume 14 (GJRE Volume 14 Issue A2): .

Download Citation

Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

Classification
Not Found
Article Matrices
Total Views: 4493
Total Downloads: 2359
2026 Trends
Research Identity (RIN)
Related Research
Our website is actively being updated, and changes may occur frequently. Please clear your browser cache if needed. For feedback or error reporting, please email [email protected]

Request Access

Please fill out the form below to request access to this research paper. Your request will be reviewed by the editorial or author team.
X

Quote and Order Details

Contact Person

Invoice Address

Notes or Comments

This is the heading

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

High-quality academic research articles on global topics and journals.

Superlow Interaction in Layered Structures

Michail V. Nozhenkov
Michail V. Nozhenkov Russian Academy of Sciences, Joint-Stock Company aoTechnom-Ta

Research Journals