Model to predict the top-to-bottom compressive strength of folding cartons

Author:

Pyryev Yuriy1,Zwierzyński Tomasz1,Kibirkštis Edmundas2,Gegeckienė Laura2,Vaitasius Kęstutis2ORCID

Affiliation:

1. Faculty of Production Engineering , 49566 Warsaw University of Technology , ul. Konwiktorska 2 , Warsaw , Poland

2. Department of Manufacturing Engineering, Faculty of Mechanical Engineering and Design , 70309 Kaunas University of Technology , Studentų 56 , Kaunas , Lithuania

Abstract

Abstract This paper presents a proposed mathematical model, describing the calculations involved in deducting the critical compression force for rectangular, parallelepiped paperboard packaging, and permitting the minimisation of the thickness of the package sidewall. A comparison is given between the obtained calculations regarding critical force and the experimentally-determined results. This has shown a sufficient level of accuracy both for the theoretical and the experimental results. This means that the proposed mathematical engineering calculations model can be applied to the design of rectangular, parallelepiped paperboard packaging.

Funder

European Social Fund

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science,Forestry

Reference30 articles.

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2. Beldie, L., Sandberg, G., Sandberg, L. (2001) Paperboard packages exposed to static loads – finite element modelling and experiments. Packag. Technol. Sci. 14(4):171–178.

3. Borgqvist, E., Wallin, M., Ristinmaa, M., Tryding, J. (2015) An anisotropic in-plane and out-of-plane elasto-plastic continuum model for paperboard. Compos. Struct. 126:184–195.

4. Directive 2004/12/EC of the European Parliament and of the Council of 11 February 2004 amending Directive 94/62/EC on packaging and packaging waste. Off. J. Eur. Union. L 47. Brussels, 18.2.2004:26–31.

5. Evaluation of costs and benefits for the achievement of reuse and recycling targets for the different packaging materials in the frame of the packaging and packaging waste directive 94/62/EC: Final Consolidated Report. RDC, PIRA, March 2003.- 131 p. Annexes 1–13, 211 p.+ 59 pages of tables and diagrams.

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