Engineering Journal: Science and InnovationELECTRONIC SCIENCE AND ENGINEERING PUBLICATION
Certificate of Registration Media number Эл #ФС77-53688 of 17 April 2013. ISSN 2308-6033. DOI 10.18698/2308-6033
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Article

Toroidal uniformly stressed pressure vessel shell formed by the meridian and ring filament winding

Published: 17.08.2021

Authors: Komkov M.A.

Published in issue: #8(116)/2021

DOI: 10.18698/2308-6033-2021-8-2100

Category: Aviation and Rocket-Space Engineering | Chapter: Design, construction and production of aircraft

The paper outlines the prospects for the use of composite toroidal high-pressure cylinders for the breathing apparatus of the Ministry of Emergency Situations, fire brigades, industrial workers, which are more ergonomic in comparison with their cylindrical counterparts. Relying on the analytical solution of the equilibrium equations, we determined the shape of the cross-section of toroidal shells reinforced along the meridians and representing intersecting loop-like curves that form an infinitely long corrugated pipe. The study introduces a solution for a toroidal composite pressure vessel formed by the intersection of the upper and lower branches of the shell, reinforced along the meridians, and a profiled ring layer of filaments installed at the point of their intersection. The parameters of the toroidal uniformly stressed pressure vessel shell made by ring and meridian filament winding are calculated.


References
[1] Komkov M.A. Primenenie plastmass v mashinostroenii (Application of plastics in mechanical engineering), 1978, no. 17, pp. 75–83.
[2] Chan H.T., Komkov M.A. Izvestiya vysshikh uchebnykh zavedeniy. Mashinostroenie — BMSTU Journal of Mechanical Engineering, 2006, no. 12, pp. 47–56.
[3] Komkov M.A., Chan H.T. Izvestiya vysshikh uchebnykh zavedeniy. Mashinostroenie — BMSTU Journal of Mechanical Engineering, 2006, no. 3, pp. 10–19.
[4] Cook J., Chambers J. Toroidal pressure vessels for breathing apparatus. 19th International Conference SAMPE Europe. Paris, 1998, April, pp. 125–132.
[5] Komkov M.A., Tarasov V.A. Tekhnologiya namotki kompozitnykh konstruktsiy raket i sredstv porazheniya [Technology of winding composite structures of missiles and weapons]. Moscow, BMSTU Publ., 2011, 431 p.
[6] Komkov M.A., Galinovskiy A.L., ed. Tekhnologiya proizvodstva i diagnostika kachestva kompozitnykh konstruktsiy raketno-kosmicheskoy tekhniki [Manufacturing technology and quality diagnostics of composite structures of rocket and space technology]. Sozdanie konstruktsii iz voloknistykh kompozitsionnykh materialov [Creation of structures from fibrous composite materials]. Stary Oskol, TNT, 2020, 344 p.
[7] Stanki s ChPU dlya namotki toroidalnykh katushek [CNC machines for winding toroidal coils]. Mir namotochnykh stankov [The world of winding machines]. Available at: http://www.namotka.com/products/?c_id=25 (accessed March 3, 2021).
[8] Shishatskiy V.A., Komkov M.A. Primenenie plastmass v mashinostroenii (Application of plastics in mechanical engineering), 1982, no. 19, pp. 84–92.
[9] Komkov M.A., Shishatskiy V.A. Primenenie plastmass v mashinostroenii (Application of plastics in mechanical engineering), 1981, no. 18, pp. 92–100.
[10] Guzeva T.A., Nekhoroshikh G.E. Tekhnologiya izgotovleniya predvaritelno propitannykh voloknistykh materialov [Manufacturing technology for pre-impregnated fibrous materials]. Moscow, BMSTU Publ., 2016, 29 p.
[11] Feodosev V.I. Izbrannye zadachi i voprosy po soprotivleniyu materialov [Selected problems and questions on the strength of materials]. 4th ed. Moscow, Nauka Publ., 1973, 400 p.
[12] Sherch G., Berggraf O. Raketnaya tekhnika i kosmonavtika (Rocket technology and astronautics), 1964, no. 5, pp. 33–47.
[13] Cherevatskiн S.B., Romashov Нu.T. Prochnost i dinamika aviatsionnykh dvigateley (Strength and dynamics of aircraft engines), 1966, no. 4, pp. 5–19.
[14] Zinovev P.A., Fomin B.Ya. Proektirovanie sosudov davleniya minimalnogo vesa, obrazovannykh namotkoy steklonityu [Design of minimum weight pressure vessels formed by winding fiberglass thread]. Polimernye materialy v mashinostroenii. Sb. naun. trudov [Polymer materials in mechanical engineering. Coll. papers]. No. 127. Perm, 1973, pp. 91–96.
[15] Gradshteyn I.S., Ryzhik I.M. Tablitsy integralov, summ, ryadov i proizvedeniy [Tables of integrals, sums, series and products]. Moscow, Fizmatgiz Publ., 1963, 1100 p.
[16] Vasilev V.V., Moroz N.G. Composite pressure vessels. Design, analysis, manufacturing and testing: a reference book. Moscow, Mashinostroenie, Innovatsionnoe mashinostroenie Publ., 2015, 373 p. (in Russian).