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Enhancing formability in hydromechanical deep drawing process adding a shallow drawbead to the blank holder

机译:增强水力机械深冲过程中的可成形性,在毛坯夹持器中添加浅拉延筋

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In this paper, a new method was proposed in order to enhance the limiting drawing ratio (LDR) of AA5754-O in the hydromechanical deep drawing process (HDD). In the proposed method, a shallow drawbead was added to the blank holder to increase LDR so as to provide strain hardening of a large region on the flange of the sheet material in addition to pre-bulging process which affects particularly only the initial stage but not the later ongoing process. So the LDR of the AA5754-O was increased from 2.65 to 2.787 by enlarging the region of strain hardening in the flange and partially reducing wrinkling tendency due to occurred tensile stresses using the convenient pressure and blank holder force profiles. The importance levels and their convenient values for height of drawbead, pre-bulge height and pressure, surface roughness of the punch were determined with analysis of variance (ANOVA) is a statistical method. ANOVA analysis illustrated that adding a shallow drawbead to the blank holder is the most effective factor between the investigated factors for the HDD process. While the effects of the pre-bulging pressure and pre-bulging height were determined as quite small, the surface roughness of the punch was found unimportant compared to the effect of the shallow drawbead. The highest LDR value was obtained with 1 mm drawbead height, 5 mm pre-bulging height, 10 MPa pre-bulging pressure and 2.8 μm surface roughness of the punch.
机译:为了提高AA5754-O在水力机械深冲过程中的极限拉深比,提出了一种新的方法。在建议的方法中,将浅拉延筋添加到毛坯支架中以增加LDR,从而在预鼓胀过程之外还对板材的法兰上的较大区域提供应变硬化,这特别影响了初始阶段,但不影响初始阶段后来的过程。因此,通过使用方便的压力和毛坯支座力分布图,通过扩大法兰中的应变硬化区域并部分降低由于出现的拉应力导致的起皱趋势,AA5754-O的LDR从2.65增加到2.787。通过方差分析(ANOVA)确定拉延筋高度,凸出前的高度和压力,冲头的表面粗糙度的重要程度及其便利值,这是一种统计方法。方差分析分析表明,在空白夹具中添加浅拉延筋是HDD工艺研究因素之间最有效的因素。虽然确定了预鼓出压力和预鼓出高度的影响很小,但发现冲头的表面粗糙度与浅拉延筋的影响相比并不重要。最高的LDR值是通过1mm拉延筋高度,5mm预鼓胀高度,10 MPa预鼓胀压力和2.8μm冲头表面粗糙度获得的。

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