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Microstructure and Mechanical Properties of Dual Phase Steels, with Different Martensite Morphology, Produced During TLP Bonding of a Low C-Mn Steel

机译:双相钢的微观结构和力学性能,具有不同马氏体形态的不同马氏体形态,在低C-Mn钢的TLP键合中产生

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摘要

In this research, production of ferrite - martensite dual phase Steels with different martensite morphology was considered during transient liquid phase bonding of a low carbon steel. The steel was bonded using an iron base interlayer with melting point of 1443 K and 40 mu m thickness. Bonding process carried out at 1473 K, under pressure of 0.5 MPa, at different holding time of 10, 20, 30 and 40 minutes. Microstructural studies of joint region showed that isothermal solidification completed at the bonding time of 40 minutes. Microstructure of joints made at the bonding time of 10, 20, and 30 minutes consists of two distinct region, athermal and isothermal solidified zones. Microstructure of these zones was studied and chemical composition of these zones was determined by EDS. Joints made with bonding time of 40 minutes were homogenized at 1008 K and then cooled into cold water to produce dual phase ferrite and martensite microstructure with different martensite morphology. According to shear test results, it was found that the shear strength of ferrite - fibrous martensite microstructure is greater than those with ferrite - continuous martensite and ferrite - blocky martensite microstructure.
机译:在该研究中,在低碳钢的瞬态液相结合期间考虑了具有不同马氏体形态的铁氧体 - 马氏体双相钢的生产。使用熔点为1443k和40μmm厚度的铁基夹层粘合钢。在0.5MPa的压力下在1473k,在10,20,30和40分钟的不同保持时间下进行1473k。联合区域的微观结构研究表明,等温凝固在40分钟的键合时间完成。在10,20和30分钟的键合时间的关节组织包括两个不同区域,滴注室和等温凝固的区域。研究了这些区域的微观结构,并通过EDS测定这些区域的化学成分。用键合时间为40分钟制备的关节在1008k下均化,然后冷却到冷水中,以产生具有不同马氏体形态的双相铁素体和马氏体微观结构。根据剪切测试结果,发现铁氧体 - 纤维马氏体微观结构的剪切强度大于铁素体 - 连续马氏体和铁氧体 - 块状马氏体微观结构。

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