首页> 外文期刊>Journal of Materials Processing Technology >Erratum to 'investigations into the hydraulic-pressure augmented deep drawing process' [J. Mater. Proc. Technol. 105 (1/2) (2000) 161-175]
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Erratum to 'investigations into the hydraulic-pressure augmented deep drawing process' [J. Mater. Proc. Technol. 105 (1/2) (2000) 161-175]

机译:勘误到“对液压增强深冲工艺的研究” [J.母校进程技术。 105(1/2)(2000)161-175]

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摘要

A novel hydraulic-pressure augmented deep drawing process for the manufacture of very deep cups from sheet metal is being investigated, refined and developed. Cylindrical cups have been drawn successfully from 1 mm thick aluminium blanks at draw ratio of up to 3.5 using this process. Research and development work on the present process completed to date is presented in this paper. The results presented include the variation of the hydraulic-pressure generated with the punch-stroke obtained from a finite element simulation, an analytical method, and from experimental investigations. The parameters studied include the draw ratio, the punch and die radii, the diameter of the stem of the punch, and lubrication. The limiting draw ratio, strains and thickness variations on the cup wall, and the hydraulic-pressure generated have been studied. Conditions leading to possible modes of cup failure, and ways of avoiding these are discussed. A method of reducing the blank-holding force applied on the flange of the cup, and steps taken to reduce the speed of the emerging cup to acceptable values, are described. Tooling for a draw ratio of 4.0 has been fabricated, and further investigations are being carried out presently.
机译:正在研究,改进和开发一种新颖的液压增强深冲工艺,该工艺用于从金属薄板制造非常深的杯子。使用此方法已成功地从1毫米厚的铝毛坯中以高达3.5的拉伸比拉伸了圆柱杯。本文介绍了迄今为止已完成的当前过程的研发工作。给出的结果包括通过有限元模拟,分析方法和实验研究获得的冲头冲程产生的液压变化。研究的参数包括拉伸比,冲头和模具半径,冲头杆的直径以及润滑。研究了极限拉伸比,杯壁上的应变和厚度变化以及产生的液压。讨论了导致杯故障的可能模式的条件,以及避免这种情况的方法。描述了一种减小施加在杯子的凸缘上的坯料保持力的方法,以及为将新兴杯子的速度减小到可接受值而采取的步骤。已经制造出拉伸比为4.0的工具,并且目前正在进行进一步的研究。

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