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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Effect of carbon content on deep drawability of TRIP-aided dual-phase sheet steels
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Effect of carbon content on deep drawability of TRIP-aided dual-phase sheet steels

机译:碳含量对跳闸双相板钢的深层拉伸性的影响

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摘要

Effect of retained austenite on the deep drawing in high strength TRIP-aided dual-phase (TDP) sheet steels with different carbon content were investigated. The deep drawability based on the limiting drawing ratio (LDR =D{sub}o/d{sub}p), where the D{sub}o and the d{sub}p are a maximum blank diameter and a punch diameter respectively, was affected by the volume fraction of the retained austenite and by its stability (carbon concentration). Namely, the higher the volume fraction of the retained austenite and its stability, the larger strength-deep drawability balance, i.e., the product of tensile strength and LDR. Furthermore, the higher blank folding force, the larger the strength-deep drawability balance of high carbon TDP steel. The excellent deep drawability was due to large local necking resistance at the cup wall just above the punch bottom due to "the transformation hardening" and "the stress relaxation" resulting from the strain-induced martensite transformation, as well as a low drawing resistance of the shrinking flange.
机译:保留奥氏体对具有不同碳含量的高强度牵引双相(TDP)板钢中的深度拉伸的影响。基于限制拉伸比(LDR = D {Sub} O / D {Sub} P)的深层拉伸性,其中D {Sub} O和D {Sub} P分别是最大的空白直径和冲头直径,受保留奥氏体的体积分数的影响,并通过其稳定性(碳浓度)的影响。即,保持奥氏体的体积分数越高及其稳定性,较大的强度深拉伸性平衡,即拉伸强度和LDR的产物。此外,较高的空白折叠力,高碳TDP钢的强度深拉伸性平衡越大。由于“转化硬化”和由应变诱导的马氏体转换产生的“应力松弛”以及较低的拉伸电阻,因此由于“转化硬化”和“应力松弛”以及较低的拉伸电阻,因此优异的深层拉伸性是由于沿着冲压底部的大局部颈壁。以及“压力松弛”以及低拉伸电阻萎缩的法兰。

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