Application of carbon fiber-reinforced plastics in the manufacture of toroidal pressure vessels
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  • 作者:V. M. Kuznetsov ; G. E. Nekhoroshikh
  • 关键词:toroidal pressure vessel ; unidirectional carbon fiber prepreg ; winding
  • 刊名:Polymer Science Series D
  • 出版年:2015
  • 出版时间:July 2015
  • 年:2015
  • 卷:8
  • 期:3
  • 页码:231-234
  • 全文大小:949 KB
  • 参考文献:1.G. E. Nekhoroshikh, 鈥淭echnology for manufacturing of gas pipes for liquefied natural gas from PKM,鈥?VseMater. Entsiklop. Sprav., No. 5, 15鈥?1 (2013).
    2.V. M. Kuznetsov and G. E. Nekhoroshikh, 鈥淭he use of devices with a rotating drying unit for ensuring dry winding of composite shells,鈥?Entsikl. Inzhenera-Khimika, No. 6, 22鈥?5 (2009).
    3.V. A. Nelyub, 鈥淭he use of polymeric composite materials in shipbuilding for ship superstructure repair,鈥?Remont, Vosstanovlenie, Modernizatsiya, No. 5, 21鈥?4 (2013).
    4.V. A. Nelyub, D. V. Grashchenkov, D. I. Kogan, and I. A. Sokolov, 鈥淭he use of direct methods for the production of large-sized molding products made of fiberglass,鈥?Khim. Tekhnol., No. 12, 735鈥?39 (2012).
    5.V. A. Moiseev, A. V. Moiseev, M. A. Komkov, and V. I. Frolov, 鈥淗igh-temperature energy-efficient oilfield steam line,鈥?Birzha Intellekt. Sobstvennosti 11(9), 57鈥?0 (2012).
    6.V. A. Nelyub, 鈥淭echnology for producing prepregs,鈥?Vse Mater. Entsikl. Sprav., No. 3, 12鈥?7 (2013).
    7.V. A. Tarasov, E. V. Belyakov, and R. V. Boyarskaya, 鈥淢ode selection for forming composite structures in rocket and space technology,鈥?Izv. Vyssh. Ucheb. Zaved. Mashinostroen., No. 5, 37鈥?3 (2012).
    8.A. N. Muranov, G. V. Malysheva, V. A. Nelyub, I. A. Buyanov, I. V. Chudnov, A. S. Borodulin, 鈥淪tudying the properties of polymer composites based on a heterogeneous matrix,鈥?Vse Mater. Entsikl. Sprav., No. 4, 2鈥? (2012).
    9.T. A. Guzeva, 鈥淢ethods for assessing the performance properties of polymer composites,鈥?Vse Mater. Entsikl. Sprav., No. 3, 17鈥?9 (2014).
    10.I. V. Chudnov, E. Sh. Akhmetova, and G. V. Malysheva, 鈥淔eatures of investigation of the properties of hybrid polymer binder by differential scanning calorimetry,鈥?Materialovedenie, No. 5, 22鈥?5 (2013).
    11.G. V. Malysheva, E. E. Akhmetova, and A. N. Marycheva, 鈥淓valuation of glass transition temperature of epoxy binders,鈥?Fiz. Khim. Stekla 40(5), 718鈥?24 (2014).
    12.N. I. Baurova, 鈥淒ynamics of the processes of destruction of polymer composites,鈥?Entsikl. Inzhenera-Khimika, No. 2, 19鈥?5 (2013).
    13.M. A. Komkov, 鈥淩heological Properties of polymer binders used in the winding of products made of composite materials,鈥?Polym. Sci. Ser. D 6(1), 26鈥?0 (2013).View Article
    14.V. A. Zorin and N. I. Baurova, 鈥淢odeling the properties of repair materials under prolonged exposure to operational factors,鈥?Mekhaniz. Stroit., No. 1, 15鈥?7 (2012).
  • 作者单位:V. M. Kuznetsov (1)
    G. E. Nekhoroshikh (1)

    1. Bauman Moscow State Technical University, Moscow, Russia
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Russian Library of Science
    Polymer Sciences
  • 出版者:MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC.
  • ISSN:1995-4220
文摘
This paper provides a comparative analysis of two design variants of two types of pressure vessels, metal and hybrid, the latter of which consists of metal and carbon fiber-reinforced plastics. The experimental results show that there is a reserve of strength that allows reducing the weight of the metal toroidal pressure vessel by thinning its metal wall and auxiliary winding with carbon-fiber prepreg. As compared with the allmetal tank, the savings in weight was 45% under the same operating characteristics. A pressure vessel design and its basic properties are provided.

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