Prediction of natural frequency and modes shape of wing using myklestad method

Other Title(s)

التنبؤ بقيم التردد الطبيعي و شكل وسائطته في جناح طائرة باستخدام طريقة موكليستيد

Author

Yas, Muhammad Abd al-Razzaq

Source

Journal of University of Babylon for Engineering Sciences

Issue

Vol. 26, Issue 6 (30 Jun. 2018), pp.348-361, 14 p.

Publisher

University of Babylon

Publication Date

2018-06-30

Country of Publication

Iraq

No. of Pages

14

Main Subjects

Electronic engineering
Mechanical Engineering

Abstract EN

The paper studied and prediction the natural frequency and mod shapes for deflection, slop, shear and moment for four assumed cases for swept wing transport airplane with tow engine and different amount of fuel using Myklestad method which deal with transfer matrix technique for solving the mathematic modeling for these four cases.

The maximum effect of the first mode deflection and slop on the tip of the wing (case one) and maximum effect of the second mode shear and moment on the mean root chord of the wing (case four) which were the most critical case.

American Psychological Association (APA)

Yas, Muhammad Abd al-Razzaq. 2018. Prediction of natural frequency and modes shape of wing using myklestad method. Journal of University of Babylon for Engineering Sciences،Vol. 26, no. 6, pp.348-361.
https://search.emarefa.net/detail/BIM-917976

Modern Language Association (MLA)

Yas, Muhammad Abd al-Razzaq. Prediction of natural frequency and modes shape of wing using myklestad method. Journal of University of Babylon for Engineering Sciences Vol. 26, no. 6 (2018), pp.348-361.
https://search.emarefa.net/detail/BIM-917976

American Medical Association (AMA)

Yas, Muhammad Abd al-Razzaq. Prediction of natural frequency and modes shape of wing using myklestad method. Journal of University of Babylon for Engineering Sciences. 2018. Vol. 26, no. 6, pp.348-361.
https://search.emarefa.net/detail/BIM-917976

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 360

Record ID

BIM-917976