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Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory
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A. F. KARAMANLI And M. AYDOĞDU, "Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory," International Journal of Mechanical Sciences , vol.159, pp.165-181, 2019

KARAMANLI, A. F. And AYDOĞDU, M. 2019. Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory. International Journal of Mechanical Sciences , vol.159 , 165-181.

KARAMANLI, A. F., & AYDOĞDU, M., (2019). Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory. International Journal of Mechanical Sciences , vol.159, 165-181.

KARAMANLI, Armağan, And METİN AYDOĞDU. "Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory," International Journal of Mechanical Sciences , vol.159, 165-181, 2019

KARAMANLI, Armağan F. And AYDOĞDU, METİN. "Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory." International Journal of Mechanical Sciences , vol.159, pp.165-181, 2019

KARAMANLI, A. F. And AYDOĞDU, M. (2019) . "Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory." International Journal of Mechanical Sciences , vol.159, pp.165-181.

@article{article, author={Armağan Fatih KARAMANLI And author={METİN AYDOĞDU}, title={Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory}, journal={International Journal of Mechanical Sciences}, year=2019, pages={165-181} }