Optical Analysis of the Impact Transmission in Steel Sheet Arrays with Bolted-Type Joints

Author:

Martínez-Calzada Víctor1,Tapia-Pérez Felipe de Jesús1,Rodríguez-Torres Adriana1,Saldaña-Heredia Alonso1

Affiliation:

1. Ingeniería en Aeronáutica & Maestría en Ingeniería Aerespacial, Universidad Politécnica Metropolitana de Hidalgo, Boulevard Acceso a Tolcayuca 1009, Ex Hacienda San Javier, Tolcayuca 43860, Hidalgo, Mexico

Abstract

This research leads with the analysis of a structural joint. Different arrays of steel sheets were joined using bolts. The structures were built in a metallic box filled with Granitic 0/3 sand. This box was used as a rigid body to transmit impacts and the sand as a medium to interact between the body and the structure. Then, an optical set-up was placed to measure the interaction of the impact along the different arrays. Measurements were made 5 cm before and 5 cm after the bolt. Results were analyzed by performing signal filtering and approaching a mathematical solution revealing that impact interaction can be harmonic or damped oscillations with more than 98% accuracy.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference39 articles.

1. Proulx, T. (2011). Society for Experimental Mechanics Series, Springer. Chapter 47.

2. Kuglin, C.D., and Hines, D.C. (1975, January 23–25). The phase correlation image alignment method. Proceedings of the International Conference on Cybernetics and Society, Palo Alto, CA, USA. Available online: http://boutigny.free.fr/Astronomie/AstroSources/Kuglin-Hines.pdf.

3. Digital image correlation used to analyze the multiaxial behavior of rubber-like materials;Chevalier;Eur. J. Mech. A,2010

4. Brown, E.G. (2008). Network for Earthquake Engineering Simulation, Department of Civil Environmental and Architectural Engineering. Available online: https://www.researchgate.net/publication/265230722_Strain_Measurements_with_Digital_Image_Correlation_System_Vic-2D.

5. A Laser speckle method for measuring displacement field. Application to resistance heating tensile test on steel;Pradille;Appl. Mech. Mater.,2010

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