首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Scalability of conventional tube hydroforming processes from macro to micro/meso
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Scalability of conventional tube hydroforming processes from macro to micro/meso

机译:宏观从宏观到Micro / Meso的常规管液加工过程的可扩展性

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摘要

Due to the increasing demand for small, complex parts, researchers are putting a great deal of effort into applying the metal forming process to the micro and meso world. However, the tube hydroforming process is yet to be fully realized on this small scale because of the difficulties which arise in scaling the conventional tooling to the microscale. This article discusses the difficulties that arise as a result of simply shrinking the traditional hydroforming tools to the microscale. A simple mathematical model is then proposed as a way to help designers determine the limits of the conventional punch with a tapered nose commonly used in tube hydroforming. The model is then validated by performing a finite element analysis of the punch, and the results of the model are discussed in relation to the scaling concepts posed at the beginning of this article. It is determined that as the punch shrinks down, the stresses on the punch rise significantly as a result of changing aspect ratios of the workpiece and the inability to accurately machine very small holes through the punch body. A nonconventional tube hydroforming method may therefore be required to perform micro-tube hydroforming operations, especially on harder materials.
机译:由于对小型,复杂的零件的需求越来越大,研究人员正在努力将金属成型过程施加到微观和中间世界。然而,由于在将传统工具缩放到微尺寸时出现的困难,尚未充分实现这种小规模的管液压成形过程。本文讨论了由于简单地将传统的液压成形工具缩小到微观尺寸而产生的困难。然后提出了一种简单的数学模型作为帮助设计人员确定传统冲头的限制,其中锥形鼻子通常用于管液。然后通过执行冲头的有限元分析来验证该模型,并且讨论模型的结果与在本文开始时提出的缩放概念。确定当冲头减少时,由于改变工件的纵横比和通过冲头体精确地机上非常小的孔而导致冲压对冲压的应力显着。因此,可能需要一种非常规管液压成形方法来进行微管液压成形操作,尤其是更难的材料。

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