2013Applied Mechanics and MaterialsOpen access

Research on In-Planestatic Mechanical Performance of Honeycomb Paperboard Based on Virtual Simulation

Xin Mu, Cheng Sun, Li Qiang Huang, Yong Sheng

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Abstract

Simulation analysis was made with the factors of the base paper and the structure of honeycomb paperboard by means of ANSYS after abstract and simplify honeycomb paperboard model. The results show thatfactors of quantification of surface paper, cell length, paperboard thickness and aperture ratio all have a great effect on the mechanics performance of honeycomb paperboard. With the increase of quantification of surface paper, longitudinal and transverse platform stress both rise gradually. With the increase of cell length and paperboard thickness, the platform stress and peak stress under different compression direction of honeycomb paperboard all decrease, providing a reference for the study of numerical simulation and mechanical property tests.

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What this paper is about

Simulation analysis was made with the factors of the base paper and the structure of honeycomb paperboard by means of ANSYS after abstract and simplify honeycomb paperboard model. The results show thatfactors of quantification of surface paper, cell length, paperboard thickness and aperture ratio all have a great effect on the mechanics performance of honeycomb paperboard. With the increase of quantification of surface paper, longitudinal and transverse platform stress both rise gradually. With the increase of cell length and paperboard thickness, the platform stress and peak stress under different compression direction of honeycomb paperboard all decrease, providing a reference for the study of numerical simulation and mechanical property tests.

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Available abstract

Simulation analysis was made with the factors of the base paper and the structure of honeycomb paperboard by means of ANSYS after abstract and simplify honeycomb paperboard model. The results show thatfactors of quantification of surface paper, cell length, paperboard thickness and aperture ratio all have a great effect on the mechanics performance of honeycomb paperboard. With the increase of quantification of surface paper, longitudinal and transverse platform stress both rise gradually. With the increase of cell length and paperboard thickness, the platform stress and peak stress under different compression direction of honeycomb paperboard all decrease, providing a reference for the study of numerical simulation and mechanical property tests.

Key concepts: Paperboard, Honeycomb, Materials science, Structural engineering, Compression (physics), Composite material, Transverse plane, Honeycomb structure

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