To develop of automated vacuum ark unit

Authors

  • A.M. Zhukeshov Institute of Experimental and Theoretical Physics, Kazakhstan, Almaty
  • A.U. Amrenova Institute of Experimental and Theoretical Physics, Kazakhstan, Almaty
  • A.T. Gabdullina Institute of Experimental and Theoretical Physics, Kazakhstan, Almaty
  • T. Sundetov Institute of Experimental and Theoretical Physics, Almaty, Kazakhstan
  • A. Kaibar Research Institute of Experimental and Theoretical Physics, Almaty, Kazakhstan
  • K. Fermakhan Research Institute of Experimental and Theoretical Physics, Almaty, Kazakhstan
        104 26

Keywords:

automated systems, microcontroller, vacuum ark, plasma technology

Abstract

The articlediscusses of results of vacuum ark plasma unit work  and research. In previous years, the authors  have created various vacuum systems, developed a unique technology of pulsed vacuum arc deposition and plasma treatment. These technologies have been tested and have shown high efficiency for hardening of materials and obtaining coatings. However, for implementation in the industry of these technologies need to create a finished product in the form of a technological installation, equipped with an automated control system. The task of creating such  system is closely connected with the peculiarities of obtaining and supporting a high vacuum, which requires developers to informed choice of the necessary technical solutions. Features of the proposed development are: Intelligent unit for vacuum control on the basis of the active vacuum gauge and microcomputer compatible with industrial equipment for vacuum systems.

References

1. Lieberman M.A., Lichtenberg A.G. Principles of plasma discharges and materials processing // John Wiley & Sons Inc., New York. – 1994. - 450 p.

2. Piekoszewski J e.a. Present status and future of pulsed plasma processing of materials in SINS // Nucleonica. – 2000. - 45 (3). – С.193-197.

3. Tereshin V.I. at al. Pulsed plasma accelerators of different gas ions for surface modification. // Rev. Sci. Instrum. – 2002. -V.73. - №2. - Р.1- 3.

4. Yan P. X., Yang S. Z., Li B. and Chen X. S.High power density pulsed plasma eposition of titanium carbonitride. // J. Vac. Sci. Technol. A 1996 Volume 14, Issue 1, pp. 115-117.

5. Chebotarev V.V., Garkusha I.E., Langner J. at al. Surface structure changes induced by pulsed plasma streams processing. Problems of atomic science and technology. //Series: Plasma physics. -1999. - №3(3). - Р.273-275.

6. Жукешов А.М., Габдуллина А.Т., Пак С.П., Амренова А.У., Кайбар А., Кульжанова С.К. Принципы разработки вакуумных систем для плазменных приложений /Вестник КазНУ, № 1(40). - 2012. - С. 28-32

7. Zhukeshov A.M., Gabdullina A.T., Amrenova A.U., S.P. Pak. Structure and microhardness of steel sumples after pulse plasma flows processing // Materials Sciences and Applications: Scientific Research Publishing. - 2013. – №4.– P.35-41.

8. Жукешов А.М., Габдуллина А.Т., Амренова А.У., Пак С.П. Молдабеков Ж., Мухамедрыскызы М. К воздействию импульсной плазмы на поверхность нержавеющей стали // Известия НАН РК, серия физико-математическая. – 2013. – №2. – С. 71-74.

9. Zhukeshov A. M., Amrenova A. U., Gabdullina A. T. The improvement of stainless steel properties after pulse plasma processing //International Journal of Materials Science and Applications. - Vol. 3, No. 2. – 2013. - Р. 115-119.

10. Zhukeshov A. M., Amrenova A.U., Gabdullina A.T., Ibraev B.M. A plasma Formation in Pulsed Coaxial Gun at Continuously Filling Regime // American Journal of Physics and Applications. – 2013. - Vol. 1, No. 1. - Р. 5-9.

Downloads

How to Cite

Zhukeshov, A., Amrenova, A., Gabdullina, A., Sundetov, T., Kaibar, A., & Fermakhan, K. (2014). To develop of automated vacuum ark unit. Recent Contributions to Physics (Rec.Contr.Phys.), 51(4), 47–51. Retrieved from https://bph.kaznu.kz/index.php/zhuzhu/article/view/848

Most read articles by the same author(s)

1 2 > >>