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轴向载荷力测试期间带内部漆层的铝制饮料罐力学行为的数值与实验分析

A Numerical and Experimental Analysis of the Mechanical Behavior of the Aluminum Beverage Can with Internal Varnish Layers during Axial Load Force Testing.

作者信息

Wędrychowicz Przemysław, Kustra Piotr, Milenin Andrij

机构信息

Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, Mickiewicza 30 av., 30-059 Kraków, Poland.

出版信息

Materials (Basel). 2023 Oct 9;16(19):6603. doi: 10.3390/ma16196603.

Abstract

This article presents a numerical and experimental investigation into the impact of can wall thickness and the internal varnish layer thickness on the results of an axial load force test. This study also shows the levels of thermal stresses that emerge after the drying of varnish coating, and how they affect the results of the axial load force test. This research involves the development of suitable numerical models and the experimental acquisition of stress-deformation relationships for the both can material, aluminum, and the varnish. The numerical simulation of the axial load force test has been verified through experimental tests, with a resulting difference of 8.9% between the two sets of results. The findings highlight that changes in the can wall thickness have a more pronounced effect on test outcomes compared to variations in the varnish thickness. Specifically, an increase in the can wall thickness from 90 µm to 100 µm results in a substantial 116 N increase in the force required for a can to collapse. Nevertheless, the presence of a 5 µm varnish layer also contributes measurably, increasing the can's collapse force by 21 N. These results offer valuable practical insights for manufacturers, enabling them to effectively optimize can strength characteristics.

摘要

本文对罐壁厚度和内部清漆层厚度对轴向载荷力测试结果的影响进行了数值和实验研究。本研究还展示了清漆涂层干燥后出现的热应力水平,以及它们如何影响轴向载荷力测试的结果。这项研究涉及开发合适的数值模型,以及对罐材料铝和清漆的应力-变形关系进行实验获取。轴向载荷力测试的数值模拟已通过实验测试得到验证,两组结果之间的差异为8.9%。研究结果突出表明,与清漆厚度的变化相比,罐壁厚度的变化对测试结果的影响更为显著。具体而言,罐壁厚度从90微米增加到100微米会导致罐坍塌所需的力大幅增加116牛。然而,5微米清漆层的存在也有显著贡献,使罐的坍塌力增加了21牛。这些结果为制造商提供了有价值的实际见解,使他们能够有效地优化罐的强度特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb93/10574569/93444b95d3b1/materials-16-06603-g001.jpg

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