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压缩状态下蛋托的强度:数值与实验研究

The Strength of Egg Trays under Compression: A Numerical and Experimental Study.

作者信息

Czechowski Leszek, Kmita-Fudalej Gabriela, Szewczyk Włodzimierz

机构信息

Department of Strength of Materials, Lodz University of Technology, 90-924 Lodz, Poland.

Centre of Papermaking and Printing, Lodz University of Technology, Wólczańska 223, 90-924 Lodz, Poland.

出版信息

Materials (Basel). 2020 May 15;13(10):2279. doi: 10.3390/ma13102279.

Abstract

This work concerns the analysis of egg packages subjected to compression. Experimental investigations were carried out to determine the curves of compression and maximum loads. To compare packages accessible on the market, several different shapes of egg packages were tested after being conditioned in air with a relative humidity of 50%. Several paper structures in stock were compressed. By validating the experiment results, numerical computations based on the finite element method (FEM) were executed. The estimations of a numerical model were performed with the use of the perfect plasticity of paper and with the assumption of large strains and deflections. Our own two structures of egg packaging were taken into account: basic and modified. The material of the packages was composed of 90% recovered paper and 10% coconut fibres. This paper involved the numerical modelling of such complex packaging. Moreover, our research showed that introducing several features into the structures of the packaging can improve the stiffness and raise the maximum load. Thanks to the application of ribs and grooves, the strength ratio and compression stiffness, in comparison to the basic tray, increased by approximately 23.4% and 36%, respectively. Moreover, the obtained indexes of modified trays were higher than the majority of the studied market trays.

摘要

这项工作涉及对承受压缩的鸡蛋包装进行分析。开展了实验研究以确定压缩曲线和最大载荷。为了比较市场上可买到的包装,在相对湿度为50%的空气中进行条件处理后,对几种不同形状的鸡蛋包装进行了测试。对库存的几种纸质结构进行了压缩。通过验证实验结果,执行了基于有限元方法(FEM)的数值计算。数值模型的估计是利用纸张的理想塑性,并假设存在大应变和大挠度进行的。考虑了我们自己设计的两种鸡蛋包装结构:基本型和改进型。包装材料由90%的回收纸和10%的椰子纤维组成。本文涉及对这种复杂包装的数值建模。此外,我们的研究表明,在包装结构中引入若干特征可以提高刚度并增加最大载荷。由于应用了肋条和凹槽,与基本托盘相比,强度比和压缩刚度分别提高了约23.4%和36%。此外,改进型托盘获得的指标高于大多数所研究的市场托盘。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bb4/7288074/50053f002e93/materials-13-02279-g001.jpg

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