Экспериментальное исследование развития усталостной трещины…
Инженерный журнал: наука и инновации
# 10·2017 9
Experimental research of fatigue crack development
in a rectangular plate
© L.A. Andrienko, K.I. Brykin
Bauman Moscow State Technical University, Moscow, 105005, Russia
The article presents the results of the experimental study of vibration parameters of rec-
tangular plates with fatigue cracks loaded in their plane by a cyclically changing bend-
ing moment. The description of the original experimental stand where a cyclic load is
created by means of a rotating disc installed with an eccentricity is given. Roller guides
are installed between the disc and the plate to prevent wear of the plate during the load-
ing. A high correlation of vibration signals obtained from sensors mounted directly on
the plate near a crack and on the basis of the experimental stand is shown. It is conclud-
ed that for the further analysis of a technical condition of a plate it is possible to use a
signal from the gauge mounted outside a plate. The results of the study can be useful for
diagnosing plates if the crack in them cannot be detected visually due to the complexity of
access to it.
Keywords:
rectangular plate, vibration, diagnostics, experimental research, cracks
REFERENCES
[1]
Matveev V.V.
Problemy prochnosti — Strength of Materials
, 2004, no. 5, pp. 5–22.
[2]
Ismail A.E., Ariffin A.K., Abdullah S., Ghazali M.J., Daud R.
Advanced
Materials Research
, 2011, vol. 214, pp. 192–196.
[3]
Stoisser C.M., Audebert S.
Mechanical Systems and Signal Processing
, 2008,
vol. 22, pp. 818–844.
[4]
Kazymov R.M. Poperechnyy izgib izotropnoy plastiny s periodicheskim ryadom
krugovykh otverstiy i pryamolineynykh treshchin [The transverse bending of an
isotropic plate with a periodic row of circular holes and rectilinear cracks].
Sbornik nauchnykh trudov “Dinamika i prochnost mekhanicheskikh system”
[Collection of scientific papers “Dynamics and strength of mechanical system”].
Baku, Elm Publ., 1999, pp. 67−72.
[5]
Obodan N.I., Bogachev A.S., Shulga A.S. Diagnostika mekhanicheskikh system
po kosvennym izmereniyam s pomoshchyu neyronnoy seti [Diagnostics of
mechanical systems by indirect measurements using a neural network].
Proceedings of the XII conference “Theoretical Foundations of Civil
Engineering”
. Warsaw, 2004, pp. 783–788.
[6]
Zakharov M.N., Nasonov V.A.
Izvestiya vysshikh uchebnykh zavedeniy.
Mashinostroenie — Proceedings of Higher Educational Institutions. Маchine
Building
, 2014, no. 2, pp. 65–71.
[7]
Serebryakov N.N.
Dvigatel — Engine
, 2011, no. 6 (78), pp. 22–23.
[8]
Bersenevich V.I.
Vestnik nauchno-tekhnicheskogo razvitiya — Bulletin of
Science and Technical Development
,
2009, no. 12 (28), pp. 12–19.
[9]
Bulatova A.Z., Zakharov M.N., Morozov E.M.
Zavodskaya laboratoriya —
Factory Laboratory
, 2010, no. 3, pp. 41–46.
[10]
Zhidkov
A.B.
Vibrodiagnostika
otvetstvennykh
metallokonstruktsiy
[Vibrodiagnostics of critical metal structures].
IX Mezhdunarodnaya nauchno-
prakticheskaya Internet-konferentsiya “Nauka v informatsionnom prostranstve”.
Lugansk, 10–11 oktyabrya 2013 [IX International Scientific and Practical Internet
Conference “Science in the Information Space”. Lugansk October 10–11, 2013].