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Influence of Pre-Stretching Levels on the Forming Limit Strain and Stress Curves of High Strength Steel Sheet

机译:预拉伸水平对高强度钢板成形极限应变和应力曲线的影响

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In this work, Forming Limit Curves (FLCs) of the conventional and pre-stretched High Strength Steel (HSS) sheet grade 440 (SCGA440-45) were investigated. The conventional forming limit curve was experimentally determined by using the Nakajima stretching test. Subsequently, the non-linear strain path FLCs were precisely developed through the Nakajima stretching test after the specimens were pre-stretched in biaxial direction up to several levels on the Marciniak In-plane stretching test. The gained non-linear strain path FLCs were compared with the conventional FLC.Additionally, the experimental Forming Limit Stress Curve (FLSCs) were calculated using the experimental FLC and non-linear strain path FLCs data from investigated steel sheet. The yield criterion Hill'48 was employed in combination with the Swift strain hardening law to describe anisotropic deformation and plastic flow behavior of the HSS sheet, respectively. Hereby, the influence of pre-stretching levels on the experimentally determined the FLCs and FLSCs were examined. The results prove a significant influence of the pre-stretching levels on the both FLCs and FLSCs of the investigated HSS sheet. For a low pre-stretching in biaxial loading the FLCs demonstrated a reduced formability and the FLSCs exhibited the limited stress levels depending on the experimental FLC data.
机译:在这项工作中,形成常规的和预拉伸高强度的极限曲线(FLC的)钢(HSS)片级440(SCGA440-45)进行了调查。通过使用Nakajima拉伸试验实验确定常规的形成极限曲线。随后,通过在双轴方向上预先拉伸后,通过Nakajima拉伸试验精确地开发非线性应变路径FLC在Marciniak内拉伸试验上的几个水平。将获得的非线性应变路径FLC与传统FLC进行比较。加法,使用实验FLC和来自研究钢板的非线性应变路径FLC数据计算实验形成极限应力曲线(FLSC)。产率标准山的48与Swift应变硬化法相结合,分别用于描述HSS板的各向异性变形和塑性流动性。因此,研究了预拉伸水平对实验确定FLC和FLSC的影响。结果证明了预拉伸水平对所研究的HSS片材的FLC和FLCS的预拉伸水平的显着影响。对于双轴负载中的低预拉伸,FLC证明了更低的可成形性,并且FLSC根据实验FLC数据表现出有限的应力水平。

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