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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of punch shape on geometrical profile and quality of hole piercing-flanging under high pressure
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Influence of punch shape on geometrical profile and quality of hole piercing-flanging under high pressure

机译:冲头形状对高压下冲孔翻边几何形状和质量的影响

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摘要

Hole hydro-piercing-flanging is a new hybrid technology by using high internal pressure as the support medium instead of rigid die. By this process, holes can be punched and flanged successively on hydroformed tubular parts without secondary positioning and fabrication. However, punch shape as an important factor has not been concerned enough so far. In this study, the influence of punch shape on geometrical profile and quality of holes was investigated both by experiments and simulations with three different shapes of transition zone between the piercing punch and the flanging punch. Results show that the geometrical size of roll-over depth, straight-wall height, and thickness varied with punch shapes. Considering the quality of the hole's edge, ellipsoidal punch is the best one with the largest smooth zone and the least damage, but the conical punch gives the worst results. Finally, the mechanism of hydro-piercing-flanging process affected by the punch shape was clarified by the stress and strain distribution during plastic deformation by finite element analysis.
机译:孔液压穿孔翻边是一种新的混合技​​术,它使用高内部压力作为支撑介质,而不是使用刚性模具。通过这种方法,可以在液压成型的管状零件上连续打孔和凸缘连接,而无需进行二次定位和制造。然而,到目前为止,尚未充分重视作为重要因素的冲头形状。在这项研究中,通过在穿孔冲头和翻边冲头之间的三种不同过渡区域形状的实验和模拟中,研究了冲头形状对孔的几何形状和质量的影响。结果表明,翻转深度,直壁高度和厚度的几何尺寸随冲头形状而变化。考虑到孔边缘的质量,椭圆形打孔器是最好的,其光滑区域最大,损伤最少,但锥形打孔器的结果最差。最后,通过有限元分析,通过塑性变形过程中的应力和应变分布,阐明了冲头形状对冲孔翻边过程的影响机理。

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