Проектирование вафельных оболочек топливных баков ракеты…
Инженерный журнал: наука и инновации
# 11·2017 13
Designing honeycomb shells for rocket fuel tanks
accounting for plastic deformations
© V.P. Pechnikov, R.V. Zakharov, A.V. Tarasova
Bauman Moscow State Technical University, Moscow, 105005, Russia
We suggest a method and a program for designing a honeycomb type rocket tank in the
case of the shell losing its stability under plastic deformations. The computations in-
volve designing the fuel tank, accounting for general and local stability losses for the
shell on the whole and a specific cell at once. We assume that the minimum mass of the
tank shell corresponds to the moment when general and local critical forces in the shell
are equal to the assumed analytically determined failure load. We provide computation
examples and a look at the user-friendly software interface. Stiffened shell design that
takes the plasticity zone into account makes it possible to noticeably widen the range of
loads affecting the fuel tank and to use the capabilities of its material more fully.
Keywords:
stiffened shell, honeycomb type, rocket, tank, elastic and plastic strain, gen-
eral and local stability losses, critical forces, analytically determined failure load
REFERENCES
[1]
Lizin V.T., Pyatkin V.A.
Proektirovanie tonkostennykh konstruktsiy
[Thin-
walled structure design]. Moscow, Mashinostroenie Publ., 2003, 446 p.
[2]
Grigolyuk E.I., Kabanov V.I.
Ustoychivost obolochek
[Stability of shells].
Moscow, Nauka Publ., 1978, 359 p.
[3]
Tarasova A.V., Zakharov R.V. Razrabotka programmnogo obespecheniya dlya
podbora optimalnoy massy vafelnoy konstruktsii i napryazheniy,
deystvuyushchikh v ney, s vozmozhnostyu vybora formy kletki [Developing
software for selecting optimum honeycomb structure mass and its internal
stresses, featuring a variable cell shape].
XL Akademicheskie chteniya po
kosmonavtike, posvyashchennye pamyati akademika S.P. Koroleva i drugikh
vydayushchikhsya otechestvennykh uchenykh pionerov osvoeniya kosmicheskogo
prostranstva: sbornik tezisov
[Proc. of the 40th Academic Readings on
Cosmonautics devoted to the memory of S.P. Korolev, Academician, and other
distinguished Russian scientists, space exploration pioneers].
Moscow, January
26–29, 2016
. Moscow, BMSTU Publ., p. 320.
[4]
Korolev V.I.
Uprugoplasticheskie deformatsii obolochek
[Elastoplastic
deformations of shells]. Moscow, Mashinostroenie Publ., 1971, 304 p
[5]
Almroth B.O., Brush D.O.
Journal of the Aerospace Sciences
, 1961, vol. 28, no. 7,
pp. 573–578.
[6]
Balabukh L.I., Alfutov N.A., Usyukin V.I.
Stroitelnaya mekhanika raket
[Structural mechanics of rockets]. Moscow, Vysshaya Shkola Publ., 1984, 391 p.
[7]
Hertel H.
Leichtbau: Bauelemente, Bemessungen und Konstruktionen von
Flugzeugen und anderen Leichtbauwerken
[Lightweight design: Components,
parameter calculation and design of aircraft and other light structures]. Berlin,
Springer-Verlag, 1960. [In Russ.: Hertel H. Tonkostennye konstruktsii [Thin-
walled structures]. Moscow, Mashinostroenie Publ., 1965, 528 p.].
[8]
Volmir A.S.
Ustoychivost uprugikh sistem
[Stability of elastic systems].
Moscow, State Publishing House of Physical and Mathematical Literature, 1963,
880 p.