首页> 外文期刊>Металлофизика и новейшие технологии: Науч.-теорет. журн. >Tensile Shear and Microstructural Properties of Resistance Spot-Welded Low-Carbon Mn-Ni Dual-Phase Steels
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Tensile Shear and Microstructural Properties of Resistance Spot-Welded Low-Carbon Mn-Ni Dual-Phase Steels

机译:电阻点焊低碳Mn-Ni双相钢的拉伸剪切和组织性能

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摘要

Tensile shear, microstructural properties of resistance spot-welded dual-phase steels having different martensite volume fractions (MVF) of 14, 17, 19 and 25 percent are investigated. These steels are produced from low-carbon Mn-Ni steel by air and water quenching after intercritical annealing. Joining of these steels by the resistance-spot welding method is carried out at three different welding times (10, 15, 20 cycles) while welding pressure and peak welding current are kept constant. Microstructures of the welded samples are evaluated. The tensile-shear load bearing capacity of joined samples is also determined. The experimental results show that increasing MVF increases the tensile-shear load bearing capacity at constant welding time. The weld nugget diameter is found to be extended with increasing welding cycle so the tensile-shear capacity is increased.
机译:研究了具有14%,17%,19%和25%的不同马氏体体积分数(MVF)的电阻点焊双相钢的拉伸剪切,显微组织性能。这些钢是由低碳Mn-Ni钢经临界退火后通过空气和水淬火生产的。在三种不同的焊接时间(10、15、20个循环)下,通过电阻点焊方法进行这些钢的连接,同时保持焊接压力和峰值焊接电流不变。评估了焊接样品的微观结构。还确定了连接样品的拉伸剪切负荷能力。实验结果表明,增加MVF可以增加恒定焊接时间下的拉伸剪切负荷承载能力。发现焊接熔核直径随着焊接周期的增加而延长,因此拉伸剪切能力增加。

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