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Numerical analysis of tailored sheets to improve the quality of components made by SPIF

机译:量身定制床单的数值分析,提高SPIF制造的部件质量

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In this paper, the authors pointed out a study on the profitable combination of forming techniques. More in detail, the attention has been put on the combination of the single point incremental forming (SPIF) and, generally, speaking, of an additional process that can lead to a material thickening on the initial blank considering the local thinning which the sheets undergo at. Focalizing the attention of the research on the excessive thinning of parts made by SPIF, a hybrid approach can be thought as a viable solution to reduce the not homogeneous thickness distribution of the sheet. In fact, the basic idea is to work on a blank previously modified by a deformation step performed, for instance, by forming, additive or subtractive processes. To evaluate the effectiveness of this hybrid solution, a FE numerical model has been defined to analyze the thickness variation on tailored sheets incrementally formed optimizing the material distribution according to the shape to be manufactured. Simulations based on the explicit formulation have been set up for the model implementation. The mechanical properties of the sheet material have been taken in literature and a frustum of cone as benchmark profile has been considered for the performed analysis. The outcomes of numerical model have been evaluated in terms of both maximum thinning and final thickness distribution. The feasibility of the proposed approach will be deeply detailed in the paper.
机译:在本文中,作者指出了对形成技术的有利组合的研究。更详细地,注意力已经提请了单点增量成型(SPIF)的组合,并且通常是讲话的额外过程,其可以导致初始空白的材料加厚,考虑到纸张经历的局部变薄在。重点调节对SPIF制造的部件的过度细化的研究的注意力,混合方法可以被认为是减少纸张不是均匀厚度分布的可行解决方案。事实上,基本思想是通过例如通过形成,添加剂或减去过程进行的变形步骤来处理先前改变的空白。为了评估该混合溶液的有效性,已经定义了FE数模型以分析根据要制造的形状的形状逐渐地形成的定制片材的厚度变化。已经为模型实现设置了基于显式制定的模拟。片材的机械性能已经在文献中拍摄和锥形截云,因为已经考虑了进行的参数分析。在最大稀释和最终厚度分布方面,已经评估了数值模型的结果。拟议方法的可行性将在论文中深入详述。

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