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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Properties of dual phase steels: influence of morphology of martensite on tensile and strain hardening properties of dual phase steel
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Properties of dual phase steels: influence of morphology of martensite on tensile and strain hardening properties of dual phase steel

机译:双相钢的性能:马氏体形态对双相钢的拉伸和应变硬化性能的影响

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摘要

Two different heat treatment (intercriticaly and intermediate heat treatments) have been applied to steels containing 0.16% C in order to obtain dual-phase steels (DPS) with different microstructures. One set of intermediate quenched samples were tempered. The specimens that have different microstructures were subjected to tensile testing and compared according to their heat treatment conditions. The strain-hardening exponent and strength coefficient of DPSs were determined by using Ludwick equation. It was observed that volume fraction of martensite and grain size increased as the annealing temperature and time increased in the intercriticaly annealed steels. The tensile strength and strength coefficient of DPSs decreased as the annealing temperatures and time increased but the strain and strain hardening coefficient of DPSs increased. In the case of intermediate quenching, the volume fraction of martensite increased with the increase in annealing temperature. Tempered DPS exhibited a lower strength than samples obtained with intermediate quenching. Consequently, it was determined that the tensile strength and the strength coefficient of DPS increased. However the total strain and strain hardening exponent decreased with the increment of the annealing temperature in the case of intermediate quenching. Deformation hardening in these steels has occurred in three different specific areas.
机译:为了获得具有不同显微组织的双相钢(DPS),已对含0.16%C的钢进行了两种不同的热处理(临界和中间热处理)。将一组中间淬火的样品回火。对具有不同微观结构的样品进行拉伸测试,并根据其热处理条件进行比较。利用Ludwick方程确定了DPS的应变硬化指数和强度系数。可以看出,随着临界温度和退火时间的增加,马氏体的体积分数和晶粒尺寸会增加。随着退火温度和时间的增加,DPS的拉伸强度和强度系数降低,但DPS的应变和应变硬化系数增加。在中间淬火的情况下,马氏体的体积分数随着退火温度的升高而增加。回火的DPS的强度比中间淬火的样品低。因此,确定DPS的拉伸强度和强度系数增加。但是,在中间淬火的情况下,总应变和应变硬化指数随退火温度的升高而降低。这些钢的变形硬化发生在三个不同的特定区域。

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