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Thinning behavior of laminated sheets metal in warm deep-drawing process under various grain sizes

机译:各种晶粒尺寸下温度深拉工艺中层压板金属的稀疏行为

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摘要

The purpose of present research is to investigate the thickness distribution on the warm deep-drawing process of laminated sheets consisting of aluminum alloy series 1050, 5052 and stainless steel 304 (SUS), experimentally. Individually for each layer, the influences of blank temperature and grain size on thinning behavior are clearly demonstrated. In order to survey the thinning behavior in laminate sheet behavior during warm deep-drawing process; three blank temperatures namely, 25° C, 100° C and 160° C are examined. Moreover, to obtain different grain sizes, the aluminium sheets are annealed at 350° C, 400° C and 450° C for 1 hour. Results indicate that increasing temperature and grain size lead to maximum thinning in all layers in Al 1050/SUS and Al 5052/SUS specimens increase. In addition, the most susceptible zone to fracture in aluminum sheets (Al 1050 and Al 5052) is punch profile radius region; nevertheless, for stainless steel sheets this zone switch to central zone of formed cup. These can be attributed to the fact that the adhesive layer play a crucial role in thickness distribution of steel 304 layer, therefore the distribution of thickness strain for adhesive layer is also investigated.
机译:目前研究的目的是研究由实验的铝合金系列1050,5052和不锈钢304(SUS)组成的层压板材温暖深拉伸过程的厚度分布。对于每层单独,清楚地证明了空白温度和晶粒尺寸对稀疏行为的影响。为了在温暖的深拉过程中调查层压板行为中的稀疏行为;检查三个空白,即25°C,100°C和160°C。此外,为了获得不同的颗粒尺寸,铝板在350℃,400℃和450℃下退火1小时。结果表明,在Al 1050 / SUS和Al 5052 / SUS样本增加的所有层中,温度和粒度的增加导致最大化。此外,最易感的区域在铝板(Al 1050和Al 5052)中的破裂区是冲头轮廓半径区域;尽管如此,对于不锈钢钢板,该区域切换到形成杯的中心区域。这些可以归因于粘合剂层在钢304层的厚度分布中起到至关重要的作用,因此还研究了粘合层的厚度应变的分布。

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