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Evaluation of the plastic yield locus for embossed sheet using biaxial tensile tests

机译:使用双轴拉伸试验评估压花片材的塑料产量轨迹

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摘要

3D-structured (embossed) aluminium sheets have been used as heat insulation materials in automotive exhaust parts because the embossments on the sheets increase the surface area and reinforce the stiffness of exhaust components. Unlike the press-forming process for flat (non-embossed) sheets, however, that for embossed aluminium sheets is constrained by many restrictions given the distinct mechanical properties and geometric 3D shape of the latter. In designing sheet-stamping tools, manufacturers have recently used CAE technologies based on finite element analysis. Guaranteeing the effectiveness of CAE technologies necessitates information about the plastic yield criterion, which is determined primarily by performing a biaxial tensile test on cruciform-shaped specimens. We measured the yield locus of an embossed aluminium 3004-P sheet by using the camera vision method instead of strain gauge measurement because of the difficulty in attaching a strain gauge to the central region of the aluminium body. The measured yield locus of the studied sheet shows that its yield stress in equi-biaxial stress is smaller than the flat sheet yield locus measured by the strain gauge method. The shape of the yield locus of the embossed aluminium sheet also adequately corresponds with Logan-Hosford anisotropic yield function.
机译:3D结构(压花)铝板已被用作汽车排气部件中的隔热材料,因为片材上的压花增加了表面积并加强了排气部件的刚度。然而,与扁平(非压花)片材的压制成型过程不同,对于压花铝板,鉴于后者的不同机械性能和几何3D形状,受到许多限制的约束。在设计板材冲压工具中,制造商最近使用CAE技术基于有限元分析。保证CAE技术的有效性需要有关塑料屈服标准的信息,这主要通过在十字形样本上进行双轴拉伸试验来确定。我们通过使用相机视觉方法而不是应变仪测量来测量压花铝3004-P板的产量座位,而由于难以将应变计附接到铝体的中心区域。所测量的纸张的测量产座座表明,其屈服胁迫下的屈服应力小于通过应变计法测定的平板产座。压花铝板产座的形状也与Logan-Hosford各向异性屈服函数充分对应。

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