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Investigation of correlation between material properties, process parameters and residual stresses in roller levelling

机译:研究辊矫直过程中材料特性,工艺参数和残余应力之间的相关性

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When processing metal strips, roller levelling is the first process the sheet metal undergoes after decoiling. The process of roller levelling mainly aims on the flatness of the material. Additionally, the resulting residual stress distribution after levelling is of great importance since a strip might be flat but have a disadvantageous residual stress distribution for further processing. In this paper the correlations between the incoming strip condition, the roll intermeshes and the residual stresses are evaluated in order to achieve both, a constant flatness as well as a distinct residual stress distribution after levelling. The investigations are focusing on a seven-roll levelling machine with three individual load triangles. The first load triangle ensures a constant plastification of the incoming strip, the load triangle in the middle aims on the residual stress distribution and the last load triangle sets the flatness of the sheet material. Within a numerical model of this setup, a variation of the incoming material properties by means of yield stress and kinematic hardening is done. From the numerical model both global values such as the forces acting on the rolls as well as the local residual stress distribution are obtained. Accompanying experiments are conducted on a laboratory-scale roller levelling machine. Furthermore, the residual stresses across the sheet thickness after levelling are measured using diffraction analysis. The results indicate a distinct relationship between process parameters and the target values of flatness and residual stress distribution. Finally, a strategy for an online process control acting on both flatness and residual stress distribution is introduced based on these results.
机译:在加工金属带时,辊矫直是金属板在开卷后要经历的第一个过程。辊平整的过程主要针对材料的平整度。另外,在矫直之后所产生的残余应力分布非常重要,因为带材可能是平坦的,但是对于进一步加工而言具有不利的残余应力分布。在本文中,对进入的条带状态,轧辊间啮合和残余应力之间的相关性进行了评估,以便在矫直后获得恒定的平直度和明显的残余应力分布。研究集中在具有三个独立负载三角形的七辊矫直机上。第一个载荷三角形确保传入条带的恒定塑化,中间的载荷三角形针对残余应力分布,最后一个载荷三角形设定板材的平整度。在这种设置的数值模型中,通过屈服应力和运动硬化来改变输入材料的特性。从数值模型中,既可以获得全局值,例如作用在轧辊上的力以及局部残余应力分布。伴随实验在实验室规模的辊式矫直机上进行。此外,使用衍射分析测量流平后整个板材厚度上的残余应力。结果表明,工艺参数与平坦度和残余应力分布的目标值之间存在明显的关系。最后,基于这些结果,提出了一种同时作用于平面度和残余应力分布的在线过程控制策略。

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