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Deformation-Assisted Joining of Sheets to Tubes by Annular Sheet Squeezing

机译:环形薄板挤压将薄板与管材变形辅助连接

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摘要

This paper is built upon the deformation-assisted joining of sheets to tubes, away from the tube ends, by means of a new process developed by the authors. The process is based on mechanical joining by means of form-fit joints that are obtained by annular squeezing (compression) of the sheet surfaces adjacent to the tubes. The concept is different from the fixing of sheets to tubes by applying direct loading on the tubes, as is currently done in existing deformation-assisted joining solutions. The process is carried out at room temperature and its development is a contribution towards ecological and sustainable manufacturing practices due to savings in material and energy consumption and to easier end-of-life disassembly and recycling when compared to alternative processes based on fastening, riveting, welding and adhesive bonding. The paper is focused on the main process parameters and special emphasis is put on sheet thickness, squeezing depth, and cross-section recess length of the punches. The presentation is supported by experimentation and finite element modelling, and results show that appropriate process parameters should ensure a compromise between the geometry of the mechanical interlocking and the pull-out strength of the new sheet–tube connections.
机译:本文是基于作者通过开发的一种新方法,在板材的变形辅助下,将其连接到远离管端的管上。该方法基于借助于形状配合接头的机械连接,该形状配合接头是通过环形挤压(压缩)邻近管的板表面而获得的。该概念不同于通过在管上施加直接载荷来将板固定到管上,这与现有的变形辅助连接解决方​​案中的当前方法不同。该工艺是在室温下进行的,与基于紧固,铆接,焊接和粘接。本文着重于主要工艺参数,并特别强调了冲孔的板材厚度,挤压深度和横截面凹槽长度。该演示得到实验和有限元建模的支持,结果表明,适当的工艺参数应确保在机械互锁的几何形状和新的薄板-管连接的拉拔强度之间取得折衷。

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