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Algorithm research and system development on geometrical springback compensation system for advanced high-strength steel parts

机译:先进高强度钢零件几何回弹补偿系统的算法研究与系统开发

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摘要

Springback is the most common defect in sheet metal forming, especially for the advanced high-strength steel (AHSS) parts. The compensation method is an effective way to overcome this defect by modifying the die-face. A new geometrical springback compensation algorithm based on the advanced displacement adjustment (DA) method is proposed in this paper for automobile AHSS parts. The die-face is reconstructed by the non-uniform rational B-spline surface with the advantage of UV curves; furthermore, the continuity and topology of the die-face are also studied. The high-quality geometry compensation die-face obtained from this algorithm can be directly applied to actual machining. To reduce the time and cost of the die manufacturing, this algorithm is seamlessly integrated into the CATIA platform. A new compensation user-defined feature is created, which can meet the need for iterative compensation and parametric association. At the end of this paper, two engineering examples of AHSS parts verify the feasibility and validity of this algorithm and system.
机译:回弹是钣金成形中最常见的缺陷,特别是对于高级高强度钢(AHSS)零件而言。补偿方法是通过修改模具表面来克服此缺陷的有效方法。提出了一种基于先进位移调整(DA)方法的汽车AHSS零件几何回弹补偿算法。利用UV曲线的优势,通过非均匀有理B样条曲面重建模具面。此外,还研究了模面的连续性和拓扑。从该算法获得的高质量几何补偿模具面可直接应用于实际加工。为了减少模具制造的时间和成本,该算法被无缝集成到CATIA平台中。创建了一个新的补偿用户定义功能,可以满足迭代补偿和参数关联的需求。最后,通过两个AHSS部分工程实例验证了该算法和系统的可行性和有效性。

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