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Feasibility study of welding dissimilar Advanced and Ultra High Strength Steels

机译:焊接不同先进和超高强度钢的可行性研究

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This study concerns the weldability of dissimilar Ultra high-strength steel (UHSS) and advanced high-strength steel (AHSS), which is used in the modern machine industry. The materials offered superior strength as well as relatively low weight, which reduces microstructure contamination during a live cycle. The choice of the welding process base of the base material (BM) and welding parameters is essential to improve the weld joint quality. S700MC/S960QC was welded using a gas metal arc welding (GMAW) process and overmatched filler wire, which was performed using three heat input (7, 10, and 15 kJ/cm). The weld samples were characterized by a Vickers-hardness test, scanning electron microscopy (SEM), and energy-dispersive X-ray spectroscopy (EDS). The test reveals a decrease of softening areas in the HAZ and the formation of the stable formation of Bainite-Ferrite for S700MC and Bainite-martensite for S960QC when the heat input of 10 kJ/cm is used. It is recommended to use the GMAW process and Laser welding (Laser beam-MIG), with an optimal welding parameter, which will be achieved a high quality of manufacturing products.
机译:本研究涉及不同高强度钢(UHSS)和先进的高强度钢(AHSS)的可焊性,其在现代机械行业中使用。材料提供了优异的强度和相对低的重量,这减少了在活循环期间的微观结构污染。基材(BM)和焊接参数的焊接工艺底座的选择对于改善焊接关节质量至关重要。使用气体金属电弧焊接(GMAW)工艺和多匹配的填充线焊接S700MC / S960QC,其使用三个热输入(7,10和15kJ / cm)进行。焊接样品的特征在于维氏硬度测试,扫描电子显微镜(SEM)和能量分散X射线光谱(EDS)。该试验显示,当使用10kJ / cm的热输入时,S700MC和S700MC和贝氏体 - 马氏体的稳定地形成骨质铁氧体的稳定地层的形成减少。建议使用GMAW工艺和激光焊接(激光束 - MIG),具有最佳的焊接参数,这将实现高质量的制造产品。

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