Buckling Tests for Laser-Welded Single Corrugated Core

Author:

Jokelainen Tero1,Järvenpää Antti1ORCID,Keskitalo Markku1,Hietala Mikko1,Mustakangas Aappo1,Mäntyjärvi Kari1ORCID

Affiliation:

1. University of Oulu

Abstract

This study was employed to investigate the buckling effect for a single Vf corrugated core. Brief and simple designing method is developed for UHS sandwich structure. This method is based on simplified calculation of slenderness ratio integrated with FEM simulation. Method is developed for studying the local buckling resistance of sandwich structures to optimize the panel dimensions for maximal stiffness. Five different core dimensions were tested (angles of 110-135 ° and height of 35 - 55 mm). Buckling tests were made using two different steel grades; ultra-high-strength (UHS) ARS400 and DC01 mild steel. For comparison, FEM simulations were carried out for the ARS400. The results showed that even 600% higher bending resistance can be achieved for the panel structure using the ultra-high strength steel instead of the low strength counterpart. The comparison showed that the FEM-simulations can be used reliably estimating the buckling effects in UHS panel structures. The difference between the empirical and simulation results was 5.3% in average (S.D. 4.1). In practical tests, best angle and height for the ARS400 was 110 ° and 35 mm respectively. For the DC01, the best dimensions were 125 ° and 35 mm.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference12 articles.

1. Jokelainen T. et al. Iterative weight reduction process, Journal of Ship Production and Design. Accepted 24.8.(2017).

2. Kananen M et al. Laser welded corrugated steel panels in industrial applications, Physics Procedia. 78 (2015) 202-209.

3. Kuber K. et al. Design and analysis of sandwich structure of single girder electric overhead travelling crane girder for weight reduction, Journal of Emerging Technologies and Innovative Research (JETIR) 1, 232-236.

4. Gopichand A. et al. Design and analysis of corrugated steel sandwich structures using ansys workbench, International Journal of Engineering Research & Technology (IJERT) 1 (2012).

5. Magnucki K. et al. Strength and buckling of sandwich beams with corrugated core, Journal of Theoretical and Applied Mechanics 51 (2013) 15-24.

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