Wave propagation characteristics of a twisted micro scale beam

Twisted structural elements are inherently complex and their use in engineering systems requires deeper understanding. In this paper, starting with the modified couple stress theory, the elastodynamics governing partial differential equations of motion for the transverse dynamics of a twisted micro...

Full description

Saved in:
Bibliographic Details
Main Authors: Mustapha, K. B., Zhong, Z. W.
Other Authors: School of Mechanical and Aerospace Engineering
Format: Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/85414
http://hdl.handle.net/10220/11526
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-85414
record_format dspace
spelling sg-ntu-dr.10356-854142020-03-07T13:19:24Z Wave propagation characteristics of a twisted micro scale beam Mustapha, K. B. Zhong, Z. W. School of Mechanical and Aerospace Engineering Twisted structural elements are inherently complex and their use in engineering systems requires deeper understanding. In this paper, starting with the modified couple stress theory, the elastodynamics governing partial differential equations of motion for the transverse dynamics of a twisted micro scale beam is derived. A micro scale beam of rectangular cross-section, for which the rate of twist introduced a bending–bending coupling effect, is considered. The presented governing equation of motion is used to address the effects of the rate of twist and the material length scale on the bending wave propagation characteristics of the micro scale beam. Results are presented for the spectrum curve, the cut-off frequency, the phase speed and the group velocity of a propagating harmonic wave profile in the twisted micro scale beam. It is observed that the rate of twist bifurcates the spectrum curve of the micro scale beam within a given frequency range, while the material length scale improves the dispersion of the traveling wave. The cut-off frequency is found to be independent of the material length scale, but proportional to the fourth power of the rate of twist. Increasing the material length scale is further observed to increase the group velocity of the wave, while a high rate of twist lowers the wave speeds. 2013-07-16T03:33:06Z 2019-12-06T16:03:22Z 2013-07-16T03:33:06Z 2019-12-06T16:03:22Z 2011 2011 Journal Article Mustapha, K. B., & Zhong, Z. W. (2012). Wave propagation characteristics of a twisted micro scale beam. International Journal of Engineering Science, 53, 46-57. 0020-7225 https://hdl.handle.net/10356/85414 http://hdl.handle.net/10220/11526 10.1016/j.ijengsci.2011.12.006 en International journal of engineering science © 2011 Elsevier Ltd.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
description Twisted structural elements are inherently complex and their use in engineering systems requires deeper understanding. In this paper, starting with the modified couple stress theory, the elastodynamics governing partial differential equations of motion for the transverse dynamics of a twisted micro scale beam is derived. A micro scale beam of rectangular cross-section, for which the rate of twist introduced a bending–bending coupling effect, is considered. The presented governing equation of motion is used to address the effects of the rate of twist and the material length scale on the bending wave propagation characteristics of the micro scale beam. Results are presented for the spectrum curve, the cut-off frequency, the phase speed and the group velocity of a propagating harmonic wave profile in the twisted micro scale beam. It is observed that the rate of twist bifurcates the spectrum curve of the micro scale beam within a given frequency range, while the material length scale improves the dispersion of the traveling wave. The cut-off frequency is found to be independent of the material length scale, but proportional to the fourth power of the rate of twist. Increasing the material length scale is further observed to increase the group velocity of the wave, while a high rate of twist lowers the wave speeds.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Mustapha, K. B.
Zhong, Z. W.
format Article
author Mustapha, K. B.
Zhong, Z. W.
spellingShingle Mustapha, K. B.
Zhong, Z. W.
Wave propagation characteristics of a twisted micro scale beam
author_sort Mustapha, K. B.
title Wave propagation characteristics of a twisted micro scale beam
title_short Wave propagation characteristics of a twisted micro scale beam
title_full Wave propagation characteristics of a twisted micro scale beam
title_fullStr Wave propagation characteristics of a twisted micro scale beam
title_full_unstemmed Wave propagation characteristics of a twisted micro scale beam
title_sort wave propagation characteristics of a twisted micro scale beam
publishDate 2013
url https://hdl.handle.net/10356/85414
http://hdl.handle.net/10220/11526
_version_ 1681042337675870208