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Effect of Intercritical Heat Treatment and Volume Fraction on the Morphological Properties, Mechanical Properties, and Work Hardening Behaviour of Dual-Phase Steel

机译:间临界热处理和体积分数对双相钢形态学性质,力学性能和工作硬化行为的影响

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摘要

An investigation aimed at determining the importance of carbon percentage in the microstructure development of dual-phase steel is carried out by inter-critically annealing the different samples of low-carbon steels which consists of different percentage of carbon (0.16, 0.18, and 0.20%). The samples are heated in muffle furnace to above Ac3 temperature (920°C), soaked the sample for 30 min and quenched in ice brine solution to get complete martensitic structure. Later the samples are intercritically annealed at 740, 760, 780, 800, and 820°C (between Ac1 and Ac3) for 60 min and quenched in oil at room temperature. Microstructure examination revealed that steel containing 0.18%C yields abetter microstructure which consists of around 46% martensite and remaining ferrite and minute amount of retained austenite, which is a good combination of strength and toughness. The uniaxial tensile test results show that at specimen containing 0.18%C with 46% martensite content yielded maximum tensile strength with comparatively higher toughness. Microhard-ness test shows that hardness increases with increasing carbon percentage and has higher values at 0.18%C.
机译:旨在确定在双相钢的微观结构发展中碳百分比的重要性的研究是通过间歇地退火的低碳钢的不同样品进行,这包括不同百分比的碳(0.16,0.18和0.20% )。将样品在Muffle炉中加热至高于AC3温度(920℃),将样品浸泡30分钟并在冰柱溶液中淬火以获得完全的马氏体结构。后来,样品在740,760,780,800和820℃(AC1和AC3之间)进行间歇退火60分钟并在室温下淬灭油。微观结构检查表明,含有0.18%C的钢产生了女儿微观结构,其由约46%的马氏体和剩余的铁氧体和微量保留奥氏体组成,这是强度和韧性的良好组合。单轴拉伸试验结果表明,在含有0.18%C的试样,具有46%马氏体含量,产生最大拉伸强度,韧性相对较高。微柱试验表明,硬度随着碳百分比的增加而增加,并且在0.18%C时具有较高的值。

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