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Experimental Study on the Evaluation of Necking and Fracture Strains in Sheet Metal Forming Processes

机译:金属板成型过程中颈颈部和骨折菌株评价的实验研究

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In this paper the formability of AA2024-T3 metal sheets is experimentally analyzed. For this purpose, a series of Stretch-Bending and Incremental Sheet Forming (ISF) tests are carried out. The former tests allow determine the formability limits through the evaluation of necking and fracture using the optical deformation measurement system ARAMIS and measuring the thickness strains along the fracture line. The latter are performed with the aim of confirming the validity of these limits. In this case, the spifability, formability in Single Point Incremental Forming (SPIF), was studied in the light of circle grid analysis by means of the 3D deformation digital measurement system ARGUS. Different punch diameters are used in both processes. The results exhibit the importance of the accuracy in the setting of the formability limits as well as the variability that these limits present depending on the forming process or some variables such as the tool radius.
机译:本文通过实验分析了AA2024-T3金属板的可成形性。为此目的,进行一系列拉伸弯曲和增量板形成(ISF)测试。前测试允许通过使用光学变形测量系统芳族的颈颈和断裂评估并测量沿裂缝线的厚度菌株来确定可成形性限制。后者是以确认这些限制的有效性的目的进行的。在这种情况下,通过3D变形数字测量系统ARGUS,研究了单点增量成型(SPIF)中单点增量成形(SPIF)的可染模性。两个过程中使用不同的冲头直径。结果表现出可成形性限制的准确性的重要性以及根据成形过程或诸如刀具半径的一些变量存在的这些限制的可变性。

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