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Microstructures and mechanical properties of duplex low carbon steel

机译:双相低碳钢的微观结构与力学性能

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The microstructures behavior of duplex cold-rolled low carbon steel for automotive applications has been investigated. Intercritical annealing treatment is commonly used to develop a duplex low carbon steel containing ferrite and martensite. To get a duplex phase ferrite and martensite, the specimens were heated at inter-critical annealing temperature of 775°C - 825°C, for heating time up to 20 minutes, followed by water-quenched. The hardness of specimens was studied. The optical microscopy was used to analyze the microstructures. The optimal annealing conditions (martensite volume fraction approaching 20%) at 775°C with a heating time of 10 minutes was achieved. The highest hardness value was obtained in cold-rolled specimens of 41% in size reduction for intercritical annealing temperature of 825°C. In this condition, the hardness value was 373 HVN. The correlation between intercritical annealing temperature and time can be expressed in the transformation kinetics as f /fe = 1-exp(-Kt~n) wherein K and n are grain growth rate constant and Avrami's exponent, respectively. From experiment, the value of K = 0.15 and n = 0.461. Using the relationship between temperatures and heating time, activation energy (Q) can be calculated that is 267 kJ/mol.
机译:研究了汽车应用双面冷轧低碳钢的微观结构行为。跨临界退火处理通常用于开发含有铁素体和马氏体的双工低碳钢。为了获得双链式铁氧体和马氏体,将试样在临界间退火温度为775℃-825℃,加热时间高达20分钟,然后进行水淬灭。研究了标本的硬度。光学显微镜用于分析微结构。实现了在775℃下实现10分钟的775℃的最佳退火条件(接近20%)。在41%的冷轧标本中获得最高硬度值,其尺寸为825℃的跨临界退火温度降低41%。在这种情况下,硬度值为373 HVn。跨临界退火温度和时间之间的相关性可以在转化动力学中表达,因为F / Fe = 1- exp(-KT〜N),其中K和N分别是晶粒生长速率常数和Avrami的指数。从实验中,k = 0.15和n = 0.461的值。使用温度和加热时间之间的关系,可以计算激活能量(Q),即267 kJ / mol。

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