MODELING THE INFLUENCE OF SHOCK WAVES ON THE STABILITY OF CHEMICAL LINKS DURING SUPER-DEEP PENETRATION OF MICROPARTICLES

Автор(и)

  • Олександр Семенович Баскевич Державний вищий навчальний заклад “Український державний хіміко-технологічний університет”, Ukraine
  • Валерій Вікторович Соболєв Національний технічний університет «Дніпровська політехніка», Ukraine
  • Борис Петрович Середа Дніпровський державний технічний університет, Ukraine

DOI:

https://doi.org/10.31319/2519-8106.1(42)2020.207008

Ключові слова:

mathematical modeling, super deep penetration, chemical bonding, metal viscosity

Анотація

In this paper, we simulate the effect of shock and Coulomb wave centers on the binding energy of metal targets with ultra-deep penetration of microparticles up to 500 microns in size. To calculate the chemical bond, a quantum-mechanical model of the influence of external factors on a separately selected chemical bond is developed. The calculations were carried out using the solution of the Schrödinger equation in ellipsoidal coordinates, which made it possible to reduce its solution to the Whittaker equation. As a result of the calculations, it was found that the influence of external factors leads to a decrease in the binding energy, and this in turn leads to a decrease in the viscosity of the target material during microsecond time intervals. This fact well explains the ultra-deep penetration of microparticles.

Посилання

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2020-06-11

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