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Analysis of Springback Behaviour in Micro Flexible Rolling of Crystalline Materials

机译:晶体材料微柔轧制中的回弹行为分析

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This paper presents a constitutive modelling of the polycrystalline thin metal strip under a state of combined loading in microflexible rolling. The concept of grained inhomogeneity is incorporated into the classic Chaboche hardening model that accounts for the Bauschinger effect, in order to provide more precise description and analysis of the springback mechanism in the particular forming operation. The model is first implemented in the finite element program ABAQUS to numerically predict the stress-strain relationship of 304 stainless steel specimens over a range of average grain sizes. After validation of the developed model by comparison of predicted curves and actual stress-strain data points, it is further applied to predict the thickness directional springback in microflexible rolling of 304 stainless steel strips with initial thickness of 250 µm and reduction changing from 5 to 10%. The model predictions show a reasonable agreement with the experimental measurements and have proven to be more accurate than those obtained from the conventional multilinear isotropic hardening model in combination with the Voronoi tessellation technique. In addition, the variation of thickness directional springback along with the scatter effect is compared and analysed in regard to the average grain size utilising both qualitative and quantitative approaches in respect of distinct types of data at different reductions.
机译:本文提出了在微柔性轧制中复合载荷作用下的多晶薄金属带的本构模型。粒状不均匀性的概念被纳入到经典的Chaboche硬化模型中,该模型考虑了Bauschinger效应,以便对特定成形操作中的回弹机理提供更精确的描述和分析。该模型首先在有限元程序ABAQUS中实现,以数值方式预测304不锈钢试样在平均晶粒尺寸范围内的应力-应变关系。通过比较预测曲线和实际应力-应变数据点对开发的模型进行验证后,将其进一步用于预测初始厚度为250 µm且压下率从5变为10的304不锈钢带的微柔轧制中的厚度方向回弹。 %。模型预测显示与实验测量值有合理的一致性,并且已被证明比结合传统的多线性各向同性硬化模型和Voronoi细分技术所获得的预测更准确。此外,利用定性和定量方法,针对不同类型的数据以不同的减少量,针对平均晶粒尺寸对厚度方向回弹的变化以及散射效应进行了比较和分析。

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