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Deep Drawing of High-Strength Tailored Blanks by Using Tailored Tools

机译:通过使用量身定制的工具深绘高强度量身定制的空白

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In most forming processes based on tailored blanks, the tool material remains the same as that of sheet metal blanks without tailored properties. A novel concept of lightweight construction for deep drawing tools is presented in this work to improve the forming behavior of tailored blanks. The investigations presented here deal with the forming of tailored blanks of dissimilar strengths using tailored dies made of two different materials. In the area of the steel blank with higher strength, typical tool steel is used. In the area of the low-strength steel, a hybrid tool made out of a polymer and a fiber-reinforced surface replaces the steel half. Cylindrical cups of DP600/HX300LAD are formed and analyzed regarding their formability. The use of two different halves of tool materials shows improved blank thickness distribution, weld-line movement and pressure distribution compared to the use of two steel halves. An improvement in strain distribution is also observed by the inclusion of springs in the polymer side of tools, which is implemented to control the material flow in the die. Furthermore, a reduction in tool weight of approximately 75 % can be achieved by using this technique. An accurate finite element modeling strategy is developed to analyze the problem numerically and is verified experimentally for the cylindrical cup. This strategy is then applied to investigate the thickness distribution and weld-line movement for a complex geometry, and its transferability is validated. The inclusion of springs in the hybrid tool leads to better material flow, which results in reduction of weld-line movement by around 60%, leading to more uniform thickness distribution.
机译:在基于定制坯料的大多数成型过程中,工具材料与钣金坯料的相同,没有定制性质。在这项工作中提出了一种用于深层绘图工具的轻质​​结构的新颖概念,以提高量身定制空白的成形行为。这里提出的调查处理了使用由两种不同材料制成的量身定制的模具定制不同强度的量身定制的空白。在具有更高强度的钢坯面积中,使用典型的工具钢。在低强度钢的面积中,由聚合物和纤维增强表面制成的混合动力车工具取代了钢的一半。形成和分析其可易成形性的圆柱形杯子DP600 / HX300LAD。使用两半的工具材料显示出改善的空白厚度分布,焊接线移动和压力分布与使用两个钢一半相比。还通过在工具的聚合物侧包含弹簧来观察应变分布的改善,这被实施为控制模具中的材料流动。此外,通过使用该技术可以实现约75%的工具重量的降低。开发了一种准确的有限元建模策略来数控分析问题,并通过实验验证圆柱形杯子。然后应用该策略来研究复杂几何形状的厚度分布和焊接线路,验证其可转移性。在混合动力工具中包含弹簧导致更好的材料流动,这导致焊接线路的减少约为60%,导致更均匀的厚度分布。

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