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冲压 AW-5182 合金薄板饮料端铆钉加工过程的方法

Method of Stamping the Progression of a Beverage End Rivet of a Thinner Sheet of AW-5182 Alloy.

作者信息

Łucarz Mariusz, Jędrychowski Michał

机构信息

Faculty of Foundry Engineering, AGH University of Science and Technology, Reymonta 23 St., 30-059 Krakow, Poland.

出版信息

Materials (Basel). 2023 Sep 16;16(18):6244. doi: 10.3390/ma16186244.

Abstract

This paper presents a new solution for shaping the rivet progression of a beverage end. The classic method uses three operations to press the cylindrical rivet using 0.208 mm and 0.203 mm thick sheets. The increasing demand for aluminium alloys is prompting measures to make more efficient use of this raw material. One possible solution is to produce packaging from ever thinner sheets. This requires the design of new tooling and the preparation of an appropriate technological process. A method has been developed to stamp a hexagonal-shaped rivet from 0.200 mm thick sheet metal, increasing the number of stamping operations to four. The proposed method was verified through a numerical analysis using the PAM STAMP 2022.0 software package. It was found that for appropriately shaped tools, sheet thicknesses of the stamped component could be achieved that were not less than those for the currently used technology, thus eliminating any possible break in the material structure. Suitable tools and experimental stamping tests were carried out for the developed process. In the simulations, the material Al5182_iso_Xmm was adopted from the programme database, while the experiments were performed on a laboratory press using AW-5182-H48 sheets with a thickness of 0.200 mm. The purpose of the study was to determine the validity for the proposed method of forming the rivet of the beverage end.

摘要

本文提出了一种用于塑造饮料罐端部铆钉加工过程的新解决方案。传统方法使用三道工序对厚度为0.208毫米和0.203毫米的板材压制圆柱形铆钉。对铝合金需求的不断增加促使人们采取措施更高效地利用这种原材料。一种可能的解决方案是用越来越薄的板材生产包装。这需要设计新的模具并准备适当的工艺流程。已开发出一种方法,可从厚度为0.200毫米的金属薄板冲压出六边形铆钉,冲压工序增加到四道。所提出的方法通过使用PAM STAMP 2022.0软件包进行数值分析得到验证。结果发现,对于形状合适的模具,冲压部件的板材厚度能够达到不小于当前所用工艺的厚度,从而消除材料结构中任何可能的断裂。针对所开发的工艺进行了合适模具的制作和实验冲压测试。在模拟中,从程序数据库采用材料Al5182_iso_Xmm,而实验是在实验室压力机上使用厚度为0.200毫米的AW - 5182 - H48板材进行的。该研究的目的是确定所提出的饮料罐端部铆钉成型方法的有效性。

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