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Influence of heat treatment on microstructure and mechanical properties of Inconel-625 clad deposited on mild steel

机译:热处理对低碳钢上Inconel-625熔覆层组织和力学性能的影响

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The present work investigates on the microstructure and mechanical properties of Inconel-625 clads deposited through tungsten inert gas on mild steel (MS). The microstructure of the deposited clads reveals perfect metallurgical bonding with the substrate. The deposits are dense with almost negligible porosity. To enhance the mechanical properties, Inconel-625 clads are subjected to three different post heat treatments for 4 h. Compared to the as-deposited clad, the microstructure at 650°C heat treated specimens reveals no dissolution of the Laves phase. However, the 850°C and 950°C heat treated samples exhibit partial dissolution and complete dissolution of the Laves phase in the fusion zone, respectively. The 850°C heat treated clads exhibit higher micro hardness compared to the other clads (as-deposited, 650°C and 950°C heat treated clads). This is attributed to the precipitation of γ'' strengthening phases due to availability of more Nb in the fusion zone micro structure.
机译:本工作研究了通过钨极惰性气体在低碳钢(MS)上沉积的Inconel-625熔覆层的组织和力学性能。沉积的包层的微观结构显示出与基底的完美冶金结合。沉积物致密,孔隙率几乎可以忽略不计。为了提高机械性能,对Inconel-625包层进行了三种不同的后热处理4 h。与沉积后的覆层相比,在650°C热处理的试样上的显微组织显示Laves相没有溶解。但是,在850°C和950°C热处理的样品中,熔合区的Laves相分别显示出部分溶解和完全溶解。 850°C热处理的复合材料比其他复合材料(沉积的650°C和950°C热处理的复合材料)具有更高的显微硬度。这归因于在融合区微结构中可获得更多的Nb,从而导致γ''强化相的析出。

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