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Determination and validation of micro-forming limit diagrams for very thin materials

机译:确定和验证非常薄的材料的微成形极限图

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摘要

As a result of an increasing industrial demand for very small parts, this paper proposes an extension of the concept of forming limit diagrams for very thin sheets (thicknesses of 0.1 mm) called micro-forming limit diagrams (MFLD). A specific drawing tool of small size was designed and subsequently achieved in the laboratory. The formability of a rolled and annealed 1050A aluminum sheet (99.5%) was characterized and analyzed. Seeing the size of the specimen and the tool, the spacer is replaced by a central electro-discharged smaller thickness. The micro-forming press was coupled with a system for strain measurements based on image analysis with a correlation method. After experimental tests with 7 different geometries, the strains were determined at the beginning of the necking from the various images. Based on this, three methods of determination of the MFLD were proposed (white pixel emergence, polynomial method and strain profile analysis) and compared. Finally, an experimental deep drawing cylindrical cup test rendered it possible to validate the most accurate method for determining the micro-forming limit diagram.
机译:由于工业上对非常小的零件的需求不断增加的结果,本文提出了对非常薄的薄板(厚度为0.1mm)的极限图形成概念的扩展,称为微成形极限图(MFLD)。设计了一种特殊的小尺寸绘图工具,随后在实验室中实现了该工具。表征并分析了轧制和退火的1050A铝板(99.5%)的可成形性。鉴于样品和工具的尺寸,垫片由中央的较小放电厚度代替。将微成型压力机与基于相关分析的图像分析的应变测量系统相结合。经过7种不同几何形状的实验测试后,从各种图像的颈缩开始就确定了应变。在此基础上,提出了三种确定MFLD的方法(白色像素出现,多项式方法和应变分布分析)并进行了比较。最后,通过实验性的深冲圆柱杯试验,有可能验证确定微成形极限图的最准确方法。

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