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On the l#x00FC;der#039;s strain of static strain aged dual phase steel

机译:关于静态应变时效双相钢的吕德应变

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Dual-phase steel is characterized by an interesting combination of high strength, good ductility, continuous yielding, high initial work hardening rates, and a low yield stress to tensile strength ratio. The changes in the yield stress and appearance of prolonged lüder's strain in the stress strain curves of static strain aged dual phase steel motivate studying the parameters affecting the formation and width of the lüder's strain as function of aging conditions. Static strain aging of fine grained (5 μm) CMn-CrNb dual-phase (DP700) ferrite-martensite steel was investigated. A 3.2 mm sheet thickness of dual phase steel of martensite volume fraction of 0.306 was used to examine the aging behavior at the temperature range of 100 to 500°C for aging times 5 to 180 minutes. Quasi-static tensile tests and optical microstructure investigation were performed on the aged and the as-deformed dual phase steel. The stress strain curves were determined and analyzed to detect the condition of onset of the lüder's strain. A constant aging time of 30 minutes at different temperatures has showed the onset Lüder's strain to be at 190°C while, a 60 minutes aging at 170°C was needed for the onset of the Lüder's strain. The extent of Lüder's strain was observed to be time dependant for the various applied aging temperatures. Lüder's plateau was characterized by a serrated flow within the Lüder's strain and has been correlated to dynamic micro-mechanisms of hardening and softening.
机译:双相钢的特点是高强度,良好的延展性,连续屈服,高初始加工硬化率和低屈服应力与拉伸强度之比的有趣组合。静态应变时效双相钢的应力应变曲线中屈服应力的变化和延长的吕德应变的出现,促使人们研究随时效变化而影响吕德应变的形成和宽度的参数。研究了细晶粒(5μm)CMn-CrNb双相(DP700)铁素体-马氏体钢的静态应变时效。马氏体体积分数为0.306的双相钢的3.2mm薄板厚度用于检查在100至500℃的温度范围内5至180分钟的时效时间的时效行为。对时效和变形后的双相钢进行了准静态拉伸试验和光学显微组织研究。确定并分析应力应变曲线,以检测吕德氏应变的发作条件。在不同温度下持续30分钟的恒定老化时间已显示出Lüder的应变起始温度为190°C,而Lüder的应变则需要在170°C下老化60分钟。观察到吕德氏应变的程度随时间变化而变化。 Lüder高原的特征是在Lüder应变内呈锯齿状流动,并且与硬化和软化的动态微观机制相关。

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