首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Flow forming optimization based on diametral growth using finite element method and response surface methodology
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Flow forming optimization based on diametral growth using finite element method and response surface methodology

机译:基于直径增长的有限元法和响应面法优化流形

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摘要

Flow forming as a precise locally plastic deformation is applied to fabricate thin-walled seamless tubes. Diametral growth as a dimensional defect that occurrs in a flow-formed tube is studied numerically and experimentally in this article. Flow forming of an AISI 321 steel tube is investigated using a finite element method with a dynamic explicit approach. The efficient parameters on the diametral growth are determined using experimental outcomes. The parameters considered are the thickness reduction (%), the feed rate of the roller (mm/min) and the roller nose radius (mm). Response surface methodology is employed to draw out a mathematical model of the diametral growth with regard to the significant parameters. The gained equation reveals that the thickness reduction is the most significant parameter and feed rate has the slightest effect on the diametral growth. The diametral growth increases with the rise in the thickness reduction and the roller nose radius and it leads to a decrease with a high value of feed rate. The innovation point of view is related to the fact that the high level of roller nose radius covers the efficiency of feed rate.
机译:采用流成型作为精确的局部塑性变形来制造薄壁无缝管。本文通过数值和实验研究了直径增长作为流形管中出现的尺寸缺陷。使用有限元方法和动态显式方法研究了AISI 321钢管的流动成形。使用实验结果确定直径增长的有效参数。所考虑的参数是厚度减小(%),辊的进给速度(mm / min)和辊鼻半径(mm)。响应面方法被用于绘制关于重要参数的直径增长的数学模型。所得方程表明,厚度减小是最重要的参数,进给速度对直径增长的影响最小。直径增长随着厚度减小和辊鼻半径的增加而增加,并且随着高进给率值而导致减小。创新的观点与高辊头半径覆盖进给效率有关。

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