A Research on the Enhancing of the Formability of Stainless-Steel Sheet Sus304 by Multistage Single Point Incremental Sheet Forming (MSPIF) Technology

Khanh Dien Le, Huu Han Ho, Thanh Nam Nguyen, Trung Le Tran, Trinh Nguyen Le, Dinh Hai Vu
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Abstract

Although the Incremental Sheet Forming (ISF) technology has been studied and applied from the last decade of the previous century with more than 30 years of experiences and ameliorations of the researchers of this field, but the ability of deformation of the formed material sheet still has remained in a restrictive modest value. This sheet forming technology could be divided into 2 mains branches: Single Point Incremental Forming (SPIF) and Two Point Incremental Forming (TPIF) wherein the first one is usually applying in research and the second branch is used in production. The ISF is suitable for forming sheet for a single product or for small batch production with a great advantage of a no-need pestle and mold manufacture in advance, but the formability of formed sheet material cannot bigger than a limited formed angle of about 80o that depends on the material and the forming parameters. There are some ameliorations for increasing the formability of the formed sheet such as heating the formed sheet in Hot SPIF or Multistage SPIF (MSPIF)… All the effort and amelioration measures are confronted with different difficulties. In this paper, we concentrate to study on the MSPIF technology on stainless steel SUS304 by simulation method with the proof of experimental method. The results were also compared to the simple SPIF to show its own pros and cons on the related field such as the technology, the productivity and the lubrication.
利用多级单点递增薄板成形 (MSPIF) 技术提高不锈钢薄板 Sus304 成形性的研究
尽管增量式薄板成形(ISF)技术从上世纪最后十年开始研究和应用,经过该领域研究人员 30 多年的经验积累和改进,但成形材料薄板的变形能力仍然有限。板材成型技术可分为两个主要分支:单点增量成形(SPIF)和两点增量成形(TPIF),其中前者通常应用于研究,后者应用于生产。ISF 适用于单件产品或小批量生产板材的成形,具有无需提前制造杵和模具的巨大优势,但成形板材的成形性不能大于约 80o 的有限成形角,这取决于材料和成形参数。为了提高成形板材的成形性,有一些改进措施,如在热SPIF或多级SPIF(MSPIF)中加热成形板材......所有的努力和改进措施都面临着不同的困难。在本文中,我们通过实验方法的验证,利用模拟方法集中研究了不锈钢 SUS304 的 MSPIF 技术。研究结果还与简单的 SPIF 进行了比较,以显示其在技术、生产率和润滑等相关领域的优缺点。
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