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Tensile flow behavior of ultra low carbon, low carbon and micro alloyed steel sheets for auto application under low to intermediate strain rate

机译:中低应变率下汽车用超低碳,低碳和微合金钢板的拉伸流动行为

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This paper is concerned with tensile characteristics of auto grade low carbon, ultra low carbon and micro alloyed steel sheets under low to intermediate strain rates ranging from 0.0007 to 250 s~(-1). Experimental investigation reveals two important aspects of these steels under intermediate strain rate deformation. Firstly, the yield stress increases with strain rate in all these steels. Of course yield stress increment is higher for low carbon and ultra low carbon steel sheets. Secondly, the strain hardening rate drastically decreases with strain rate for low carbon and ultra low carbon steel sheets, whereas it remains steady for micro alloyed steel sheets. Based on these observations, a constitutive model has been proposed which predicts the strain rate sensitive flow behavior of all these grades within the strain rate range of automotive crash event.
机译:本文关注的是汽车级低碳,超低碳和微合金钢板在0.0007至250 s〜(-1)的中低应变速率下的拉伸特性。实验研究揭示了这些钢在中等应变率变形下的两个重要方面。首先,所有这些钢的屈服应力都随应变率而增加。当然,低碳钢板和超低碳钢板的屈服应力增量更高。其次,低碳钢板和超低碳钢板的应变硬化率随着应变率而急剧降低,而对于微合金钢板则保持稳定。基于这些观察,提出了本构模型,该模型预测了在汽车碰撞事件的应变率范围内所有这些等级的应变率敏感流动行为。

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