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Forming Limit Curve Determination of a DP-780 Steel Sheet

机译:形成DP-780钢板的极限曲线测定

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In the present work, the forming limit curve (FLC) of a 1.1 mm thick DP-780 steel sheet is evaluated. The full FLC determination involved tensile tests of planar samples with different notch geometries-providing data in the tension-compression range-and Nakajima tests with a 40 mm diameter hemispherical punch and different notch geometries, covering the full loading zone of the forming limit diagram. The proposed Nakajima tool geometry reduces the standard test dimensions (ISO 12004-2) by 60%. Results show that the reduced diameter Nakajima test, in the particular case of Dual-Phase steels, overestimates limit strains when compared to the tensile test. This observed difference is explained in terms of the presence of a strain gradient through the sheet thickness imposed by the 40 mm diameter Nakajima punch, leading to the conclusion that this reduced sample type is not suitable for FLC determination when the DP-780 steel sheet is more than a millimeter thick.
机译:在本作工作中,评估1.1mm厚的DP-780钢板的成形极限曲线(FLC)。全FLC测定涉及具有不同凹口几何形状的平面样本的拉伸试验 - 在张力 - 压缩范围内提供数据,其中Nakajima测试具有40mm直径的半球形冲头和不同的凹口几何形状,覆盖成形限位图的完整装载区。所提出的Nakajima工具几何形状将标准测试尺寸(ISO 12004-2)降低60%。结果表明,与拉伸试验相比,在双相钢的特定情况下,在特定情况下,较小的Nakajima试验试验,估计极限菌株。这种观察到的差异是通过由40mm直径的Nakajima冲头施加的纸张厚度的应变梯度的存在来解释的,导致该减少的样品类型不适合于当DP-780钢板时不适合FLC测定的结论超过一个毫米厚。

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