Device for precision positioning of low temperature plasma sources

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Abstract

In recent years, the application of low-temperature plasma in biomedical and agricultural research has attracted significant interest due to the plasma’s ability to effectively sterilize, modify surfaces, and generate reactive oxygen and nitrogen species. Accurate positioning of plasma sources and characterization of source operating modes are primary tasks when implemented in real practice. This paper presents a universal device for positioning of plasma sources and measuring equipment. The device is manufactured by FDM 3D printing and has a relatively high structural strength in the absence of metal-containing elements. The developed device allows the active elements of plasma sources to be positioned with high accuracy over objects of various sizes and compositions, and also allows the implementation of sensitive methods for diagnosing plasma characteristics and parameters of processed objects.

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About the authors

E. M. Konchekov

Prokhorov General Physics Institute of the Russian Academy of Sciences

Author for correspondence.
Email: konchekov@fpl.gpi.ru
Russian Federation, Moscow

A. S. Konkova

Prokhorov General Physics Institute of the Russian Academy of Sciences

Email: konchekov@fpl.gpi.ru
Russian Federation, Moscow

A. V. Knyazev

Prokhorov General Physics Institute of the Russian Academy of Sciences

Email: konchekov@fpl.gpi.ru
Russian Federation, Moscow

A. P. Glinushkin

Prokhorov General Physics Institute of the Russian Academy of Sciences

Email: konchekov@fpl.gpi.ru

Academician of the RAS

Russian Federation, Moscow

S. V. Gudkov

Prokhorov General Physics Institute of the Russian Academy of Sciences

Email: konchekov@fpl.gpi.ru
Russian Federation, Moscow

References

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2. Fig. 1. Model of the device: front view (a), side view (b), top view (c); 1 – rod; 2 – fastening element; 3 – clamp; 4 – sleeve for fastening the object under study (electrode); 5 – groove for setting the rotation angle; 6 – coupling for vertical movement of the object stages; 7 – object stage; 8 – horizontal adjustment mechanism; 9 – coupling for horizontal movement of the object stages; 10 – platform; 11 – adjustment legs; 12 – compensating element.

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3. Fig. 2. Application of a positioning device for recording plasma glow spectra during simultaneous processing of a water-containing object. 1 – Active element of the plasma source, 2 – plasma jet, 3 – object of processing, 4 – lens.

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