Study of Influential Parameters of the Sphere Indentation Used for the Control Function of Material Properties in Forming Operations

Roman Satošek, M. Valeš, T. Pepelnjak
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引用次数: 7

Abstract

The uncertainties of modern, adaptable sheet metal forming systems are classified into model errors and disturbances. To improve the control of production, disturbances in the forming process need to be reduced. For this purpose, a new data flow system was introduced. It connected the data flow of all influencing material parameters into the “material property control function”. To control on-line the forming production line and acquire necessary material data, an indentation test was implemented. The main parameters to follow in this test are pile-up or sink-in values after the embossing of the ball-shaped tool into the material where the innovative approach of fully anisotropic material description was used. To set-up an optimal indentation test, parametric studies were performed with material data of AW 5754-H22. Finite element simulations were used to evaluate the influences of indenter diameter, contact friction and forming history of used the material. Fully anisotropic material behaviour was considered. Novel to this approach were a) the linking of the linear correlation of pile-up with the indentation depth described by gradient k, and b) the linking of gradient k with different pre-strains by a new power function.
球体压痕成形过程中控制材料性能的影响参数研究
现代自适应板料成形系统的不确定性分为模型误差和扰动。为了提高对生产的控制,需要减少成形过程中的干扰。为此,引入了一种新的数据流系统。它将所有影响材料参数的数据流连接到“材料属性控制函数”中。为了对成形生产线进行在线控制,获取必要的材料数据,进行了压痕试验。在此测试中要遵循的主要参数是球形工具在使用完全各向异性材料描述的创新方法将其压印到材料中时的堆积或下沉值。为了建立最佳压痕试验,对a5754 - h22的材料数据进行了参数研究。采用有限元模拟分析了压头直径、接触摩擦和所用材料成型历史对压头成形的影响。充分考虑了材料的各向异性行为。该方法的新颖之处是a)将堆积的线性相关性与梯度k描述的压痕深度联系起来,b)通过新的幂函数将梯度k与不同的预应变联系起来。
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