Investigating the Effect of Perforations on the Load-Bearing Capacity of Cardboard Packaging
Type
Journal article
Language
English
Date issued
2024
Author
Faculty
Wydział Inżynierii Środowiska i Inżynierii Mechanicznej
Journal
Materials
ISSN
1996-1944
Web address
Volume
17
Number
17
Pages from-to
art. 4205
Abstract (EN)
The impact of perforation patterns on the compressive strength of cardboard packaging is a critical concern in the packaging industry, where optimizing material usage without compromising structural integrity is essential. This study aims to investigate how different perforation designs affect the load-bearing capacity of cardboard boxes. Utilizing finite element method (FEM) simulations, we assessed the compressive strength of packaging made of various types of corrugated cardboards, including E, B, C, EB, and BC flutes with different heights. Mechanical testing was conducted to obtain accurate material properties for the simulations. Packaging dimensions were varied to generalize the findings across different sizes. Results showed that perforation patterns significantly influenced the compressive strength, with reductions ranging from 14% to 43%, compared to non-perforated packaging. Notably, perforations on multiple walls resulted in the highest strength reductions. The study concludes that while perforations are necessary for functionality and aesthetics, their design must be carefully considered to minimize negative impacts on structural integrity. These findings provide valuable insights for designing more efficient and sustainable packaging solutions in the industry.
License
CC-BY - Attribution
Open access date
August 25, 2024