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An effective method for determining necking and fracture strains of sheet metals

机译:用于确定剪枝和骨折的片状金属裂缝的有效方法

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Biaxial tensile testing methods using cruciform specimens have been developed in the last few decades for the determination of forming limit diagrams (FLDs) and fracture forming limit diagrams (FFLDs) for sheet metals. One of the difficulties associated with this test geometry is the lack of a widely accepted method to determine the necking and fracture strains which are necessary to construct these diagrams. In this study, a novel spatio-temporal method has been proposed for the determination of necking and fracture strains. In the method, two rectangular zones: the base zone (BZ) and the reference zone (RZ) are selected at the location where fracture initiates. The zone RZ includes the zone BZ and both zones have the same side length in the direction parallel to the necking band but different side length in the perpendicular direction. By plotting the thickness reduction within RZ against that in BZ, the onset of localised necking can be determined by finding the intersection of the two straight lines fitted separately using the data in the initial and final stages of deformation. The corresponding limit strains are then determined using the strains within the zone BZ. The method has been successfully applied to uniaxial tensile tests on AA6082 and boron steel dog-bone specimens, and to equi-biaxial tensile tests on AA5754 cruciform specimens.? Compared to widely used existing methods, the novel spatio-temporal method has greater simplicity, stability and accuracy with regard to the determination of localised necking strains.? The spatio-temporal method has good potential to become a standard method for the determination of limit strains for sheet metals.
机译:使用坩埚标本的双轴拉伸试验方法已经在过去几十年中开发了用于测定用于片金属的形成限位图(FLD)和骨折形成限位图(FFLD)。与该测试几何相关的困难之一是缺乏广泛接受的方法来确定构造这些图表所必需的颈颈和裂缝菌株。在该研究中,已经提出了一种新的时空方法来确定颈颈和骨折菌株。在该方法中,两个矩形区域:基区(BZ)和参考区(RZ)在裂缝发起的位置选择。区域Rz包括区域BZ,两个区域在平行于颈带的方向上具有相同的侧长度,但在垂直方向上的不同侧长度。通过在Rz内绘制厚度降低,通过在BZ中,可以通过在初始变形的初始和最终阶段中分别安装的两条直线分别装配的两条直线来确定局部缩颈的开始。然后使用区间BZ内的菌株测定相应的极限菌株。该方法已成功应用于AA6082和硼钢牛骨标本的单轴拉伸试验,并在AA5754坩埚标本上进行平等双轴拉伸试验。与广泛使用的现有方法相比,新颖的时空方法在确定局部颈部菌株的确定方面具有更简单,稳定性和准确性。时空方法具有良好的潜力,成为测定片金属限制菌株的标准方法。

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