Vibration Modal Analysis of the Full-Sized Medium Density Fiberboard

Article Preview

Abstract:

To determine modulus of elasticity (MOE) of the whole full-sized medium density fiberboard (MDF) by using vibration method in the future, this paper studies MDF vibration characteristics. To solve modal parameters of full-sized MDF in the condition of free vibration, the writers conducted calculation modal analysis and experimental modal analysis of the full-sized MDF with three different thicknesses respectively, compared and analyzed the first three order modal shapes and frequencies. It is found that the full-sized MDF with three different thicknesses showed the same vibration modal forms: the first and second vibration modes had bending vibration along the length direction, while the third one had bending vibration along the width direction; the frequency obtained through calculation modal analysis and experimental modal analysis had a certain difference—the first calculation modal frequency was slightly lower than the first experimental modal frequency, and the second and third calculation modal frequencies higher than the corresponding experimental modal frequencies. However, there is a good correlation between calculation modal frequency and test experimental modal frequency with the determination coefficient reaching 0.9816.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

268-273

Citation:

Online since:

August 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Luohua Huang, Yanchun Qu, Zhongrong Cao: China Wood Industry. Vol. 13, No. 5 (1999), pp.11-13. (In Chinese).

Google Scholar

[2] Zhangkang Wu, Hongjian Zhang, Suyong Huang etc.: China Wood Industry. Vol. 14, No. 3 (2000), pp.7-10. (In Chinese).

Google Scholar

[3] Moslemi A A: Forest Products Journal. Vol. 17, No. 1 (1967), pp.25-33.

Google Scholar

[4] Ross R J, Pellerin R F. 1994. Nondestructive testing for assessing wood members in structures: a review. Forest Products Lab, FPLGTR-70.

DOI: 10.2737/fpl-gtr-70

Google Scholar

[5] Chris Turk, John F. Hunt, David J. Marr. Cantilever-Beam Dynamic Modulus for Wood Composite Products: Part 1 Apparatus. USDA Forest Products Laboratory, 2008, Research Note FPL–RN–0308.

DOI: 10.2737/fpl-rn-308

Google Scholar

[6] Zhiren Guo, Houjiang Zhang, John F. Hunt, etc.: Forest Science. Vol. 41, No. 1 (2011), pp.177-180. (In Chinese).

Google Scholar

[7] Hunt John F., Houjiang Zhang, Zhiren Guo, Feng Fu: BioResources. Vol. 8, No. 1 (2013), pp.115-129.

Google Scholar

[8] Sebera V, Tippner J, Šimek M, etc.: European Journal of Wood and Wood Products, (2014), pp.1-4.

Google Scholar