

Mass spectrometric study of the leak tightness of products made of technical sintered beryllium
https://doi.org/10.26896/1028-6861-2021-87-4-26-31
Abstract
Beryllium products exhibiting a low level of absorption of the radiation energy are widely used in scientific instrumentation design (x-ray technology, radiation detectors, etc.). We present the results of studying the leak tightness of products (disks, plates) made of technical sintered beryllium of standard purity and foil obtained by «warm» rolling from high-purity beryllium. The relevant standards and requirements for testing are given. The leak tightness control was performed using mass spectrometric helium leak detectors with forevacuum backing pumps (oil and dry diaphragm pumps) and specialized vacuum equipment. The parameters of tightness of samples made of technical sintered beryllium were determined. The level of the helium signal during blowing was (0.6 – 7.4) × 10–11 Pa · m3/sec, which corresponds to the tightness standard of foreign analogues and matches the requirements of domestic manufacturers of x-ray equipment. The data spread tended to increase due to the growth of the background value. The obtained results can be used to improve high-tech equipment intended for flaw detection, medical devices, rapid analysis of ore raw materials, radiation safety equipment, etc.
About the Authors
A. N. FokanovRussian Federation
Anatoly N. Fokanov
17, ul. Radio, Moscow, 105005
V. F. Podurazhnaya
Russian Federation
Valentina F. Podurazhnaya
17, ul. Radio, Moscow, 105005
A. V. Tebyakin
Russian Federation
Alexey V. Tebyakin
17, ul. Radio, Moscow, 105005
References
1. Kablov E. N. Innovative developments of FSUE «VIAM» SSC of PF realization of «Strategic directions of the developments of materials and technologies of their processing for the period until 2030» / Aviats. Mater. Tekhnol. 2015. N 1. P. 3 – 33. DOI: 10.18577/2071-9140-2015-0-1-3-33 [in Russian].
2. Kablov E. N. Trends and guide lines for innovative development in Russia. — Moscow: VIAM, 2015. — 720 p. [in Russian].
3. Kablov E. N. Materials for aerospace equipment / Vse Mater. Éntsikloped. Sprav. 2007. N 5. P. 7 – 27 [in Russian].
4. Fokanov A. N., Podurazhnaya V. F., Tebyakin A. V., Kaskov V. S. Foil manufacturing from the technical sintered beryllium of the higher purity / Trudy VIAM. 2015. N 6. St. 03. DOI: 10.18577/2307-6046-2015-0-6-3-3 [in Russian].
5. Fokanov A. N., Podurazhnaya V. F., Kaskov V. S. Beryllium brazing with monel alloy in production X-ray windows / Trudy VIAM. 2014. N 8. St. 02. DOI: 10.18577/2307-6046-2014-0-8-2-2 [in Russian].
6. Fokanov A. N., Podurazhnaya V. F., Kaskov V. S. Brazing the beryllium window in copper frame by silver brazing alloy / Trudy VIAM. 2016. N 11. St. 01. DOI: 10.18577/2307-6046-2016-0-11-1-1 [in Russian].
7. Vinogradov M. L., Karganov M. V., Kostrin D. K., Tiskovich V. Yu. The analisis of sensivety of leak detection methods and a technique for its / Kontrol Diagn. 2016. N 5. P. 36 – 42 [in Russian].
8. ESS-0012897-ESS Vacuum Handbook. Part 4. Vacuum Test Manual. https://www.europenspallation source.se/sites/default/ files/document/2019-01/ESS (accessed 30.09.2019)
9. PF-60 Beryllium High Purity Foil. https://www.materion.com/ electrofusion (accessed 30.09.2019)
10. Beryllium (Be) — Foil — General Information. https://www. goodfellow.com (accessed 30.09.2019)
11. Beryllium Foil Supplier I Stanford Advanced Materials. https://www.samaterials.com/beryllium/940-beryllium-foil.html (accessed 30.09.2019)
12. X-ray Windows I Moxtek. https://www.moxtek.com/x-ray-products (accessed 30.09.2019)
13. Tuzov Yu. V., Papirov I. I. Effect of the rolling parameters on the structure and mechanical properties of the beryllium sheets / Vestn. Tomsk. Gos. Univ. Matem. Mekh. 2016. N 4(42). DOI: 10.17223/19988621/42/11 [in Russian].
14. Tatsuyuki Sakurai, Yoshiki Kohmura, Akihisa Takeuchi, Yoshio Suzuki, Shunji Goto, Tetssuya Ishikawa. Evaluation of Defects inside Beryllium Foils using X-ray Computed Tomography and Shearing Interferometry / AIP Conference Proceedings. 2007. DOI: 10.1063/1.2436322
Review
For citations:
Fokanov A.N., Podurazhnaya V.F., Tebyakin A.V. Mass spectrometric study of the leak tightness of products made of technical sintered beryllium. Industrial laboratory. Diagnostics of materials. 2021;87(4):26-31. (In Russ.) https://doi.org/10.26896/1028-6861-2021-87-4-26-31