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Application of finite element analysis to predict the mechanical strength of ventilated corrugated paperboard packaging for handling fresh produce

机译:有限元分析在通风瓦楞纸板包装处理新鲜农产品中的应用

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The presence of vent holes in corrugated paperboard package causes material loss of the package, which compromises its strength and stability. To improve the structural design of fresh produce packages, it is important to understand the response of packages when subjected to various types and combinations of mechanical loads. This study aimed to develop a validated finite element analysis (FEA) model to study the structural behaviour of commonly used ventilated corrugated paperboard (VCP) package when subjected to compression load by considering the geometrical nonlinearities of the packages. Two package types were used: a control package without vent holes and standard vented packages. The FEA model accurately predicted the compression strength of the corrugated paperboard, control package and standard vent package. When compared with experimental results, the model predictions for the VCP package were within 10%. Compression strength of the standard vent packages were found to be linearly affected by paperboard liner thickness. Increasing and decreasing the baseline liner thickness of the standard vent package by 80% resulted in an increase and decrease in compression strength by about 15% and 19%, respectively. From the contact FEA model, maximum Von Mises stress was produced at the corners of the package. Von Mises stress was reduced by about 25% on changing the friction coefficient from 0 to 0.1. This study provides empirical evidence for package designers on how to improve the mechanical integrity of packages while at the same time aiming to maintain an optimum ventilation. (C) 2018 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:瓦楞纸板包装中的通气孔存在导致包装的材料损失,这损害了其强度和稳定性。为了提高新鲜农产品包装的结构设计,重要的是要在经受各种类型的各种类型和机械负载的组合时理解包装的响应。本研究旨在开发经过验证的有限元分析(FEA)模型,以研究通过考虑包装的几何非线性时常用通风瓦楞纸板(VCP)封装的结构行为。使用了两种包装类型:控制封装,没有通风孔和标准通风封装。 FEA模型精确地预测了瓦楞纸板,控制封装和标准通风口包的压缩强度。与实验结果相比,VCP包装的模型预测在10%以内。发现标准通风口的压缩强度被纸板衬里厚度的线性影响。标准通风口封装的基线衬垫厚度增加80%的增加导致压缩强度的增加和降低约15%和19%。从接触FEA模型,在包装的角落里产生最大von误误法。将摩擦压力降低约25%,从0到0.1改变摩擦系数。本研究为如何提高包装的机械完整性提供了封装设计人员的经验证据,同时旨在保持最佳通风。 (c)2018年IAGRE。 elsevier有限公司出版。保留所有权利。

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