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Enhancement of Microstructural and Mechanical Properties by Pulse Mode of Metal Transfer in Welded Modified Ferritic Stainless Steel

机译:脉冲脉冲模式下金属转移对改性铁素体不锈钢显微组织和力学性能的增强

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The present study describes the enhancement of microstructural and mechanical properties by pulse mode of metal transfer in welded modified ferritic stainless steel (409 M) sheets (as received) of 4 mm thickness. The welded joints were prepared by varying modes of metal transfer at different heat input conditions (i.e. pulse mode at 0.5 kJ/mm and 0.9 kJ/mm and spray mode at 0.5 kJ/mm), using austenitic filler wire (i.e. 308 L) under Ar + 10% CO_(2) atmosphere. It has been observed that the pulse mode of metal transfer significantly alters the weld metal composition compare to spray mode which promotes comparatively stable austenite in the welds and also depicts significant enhancement in grain structure even with the higher heat input condition. Present study clearly shows that pulse mode enhances micro-hardness of welded joints and toughness values of weld metals compare to spray mode of metal transfer for a particular heat input.
机译:本研究描述了在4 mm厚的焊接改性铁素体不锈钢(409 M)薄板(收到时)中通过金属转移的脉冲模式来增强显微组织和机械性能。使用奥氏体填充焊丝( ie 308 L)在Ar + 10%CO_(2)气氛下。已经观察到,与喷射模式相比,金属转移的脉冲模式显着改变了焊接金属成分,喷射模式促进了焊缝中相对稳定的奥氏体,并且即使在较高的热输入条件下,也显示出晶粒结构的显着增强。目前的研究清楚地表明,对于特定的热量输入,与金属传递的喷涂模式相比,脉冲模式可提高焊接接头的显微硬度,并且可提高焊接金属的韧性值。

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