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Reduction of Induced Central Damage in Cold Extrusion of Dual-Phase Steel DP800 Using Double-Pass Dies

机译:使用双道次模减少双相钢DP800冷挤压中的诱导中心损伤

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Advanced High Strength Steels (AHSS) are a promising family of materials for applications where a high strength-to-weight ratio is required. Central burst is a typical defect commonly found in parts formed by extrusion and it can be a serious problem for the in-service performance of the extrudate. The finite element method is a very useful tool to predict this type of internal defect. In this work, the software DEFORM-F2 has been used to choose the best configurations of multiple-pass dies, proposed as an alternative to single-pass extrusions in order to minimize the central damage that can lead to central burst in extruded parts of AHSS, particularly, the dual-phase steel DP800. It has been demonstrated that some geometrical configurations in double-pass dies lead to a minimum value of the central damage, much lower than the one obtained in single-pass extrusion. As a general rule, the position of the minimum damage leads to choosing higher values of the contacting length between partial reductions ( L ) for high die semiangles (α) and to lower values of the reduction in the first pass ( R A ) for low total reductions ( R T ). This methodology could be extended to find the best configurations for other outstanding materials.
机译:高级高强度钢(AHSS)是一种有前途的材料系列,可用于需要高强度重量比的应用。中央爆裂是通常在通过挤出形成的零件中发现的典型缺陷,对于挤出物的使用性能可能是一个严重的问题。有限元方法是预测此类内部缺陷的非常有用的工具。在这项工作中,软件DEFORM-F2已被用于选择最佳的多道次模头配置,建议将其作为单道次挤压的替代方案,以最大程度地减少可能导致AHSS挤压零件中心破裂的中央损坏。特别是双相钢DP800。已经证明,双道次模具中的某些几何构型导致中心损伤的最小值,远低于单道次挤压获得的几何形状。通常,最小损伤的位置会导致高模半角(α)的部分压下量(L)之间选择较高的接触长度值,而总模量低则导致第一遍的压下量(RA)较低。减少量(RT)。可以扩展此方法以找到其他出色材料的最佳配置。

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