Impact Response Measurement of Poly-Urethane Sheet Using an Optical Interferometer

Author:

Songmuang Sa-nga, ,Takita Akihiro,Punthawanunt Suphanchai,

Abstract

[abstFig src='/00290003/16.jpg' width='300' text='The changes impact force to the sheet' ] A method for measuring the impact response of a polyurethane sheet is proposed. In the method, the velocity, acceleration, force, and displacement of a spherical body dropping onto the polyurethane sheet is measured using an optical interferometer. Only the velocity is measured from the Doppler shift of the laser light reflected on the cube corner prism embedded inside the spherical body. The optical center of the cube corner prism is made to coincide with the center of gravity of the whole spherical body to minimize the effect of the attitude change of the body. The acceleration, displacement, and inertial force of the body are calculated from the velocity. The dropping body is also observed using a high-speed camera. The uncertainty in measuring the instantaneous value of the impact force with a sampling interval of approximately 0.1 ms is estimated to be 0.23 N, which corresponds to 0.14% of the maximum force of approximately 1.60×102N. In the experiment, 10 drop measurements are conducted and show good reproducibility of this method.

Publisher

Fuji Technology Press Ltd.

Subject

Electrical and Electronic Engineering,General Computer Science

Reference29 articles.

1. B. J. Briscoe and F. Motamedi, “The ballistic impact characteristics of aramid fabrics: the influence of interface friction,” Wear, Vol.158, No.1-2, pp. 229-247, 1992.

2. S. Bazhenov, “Dissipation of energy by bulletproof aramid fabrics,” J. Mater. Sci., Vol.32, No.15, pp. 4167-4173, 1997.

3. B. Wang, J. Xiong, X. Wang, L. Ma, G.-Q. Zhang, L.-Z. Wu, and J.-C. Feng, “Energy absorption efficiency of carbon fiber reinforced polymer laminates under high velocity impact,” Elsevier, Vol.50, pp. 140-148, 2013.

4. S. S. Morye, P. J. Hine, R. A. Duckett, D. J. Carr, and I. M. Ward, “Modelling of the energy absorption by polymer composites upon ballistic impact,” Elsevier, Vol.60, pp. 2631-2642, 2000.

5. Y. Fujii and T. Yamaguchi, “Proposal for material viscoelasticity evaluation method under impact load,” Spring Science + Business Media, Inc., No.40, pp. 4785-4790, 2004.

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