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首页> 外文期刊>Journal of Materials Processing Technology >Behavior of M23C6 phase in Inconel 617B superalloy during welding
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Behavior of M23C6 phase in Inconel 617B superalloy during welding

机译:M23C6相位在焊接期间617B超合金中的M23C6相的行为

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摘要

The room/high temperature mechanical property of the Inconel 617B joined by multi-layer narrow gap tungsten arc welding technology (NG-TIG) is investigated, and thermal simulation is utilized to reveal the behavior of M23C6 phase in Inconel 617B superalloy during welding. Eutectic microstructures and micro fissures resulting from constitutional liquation due to thermal exposure in welding occur in the heat affected zone (HAZ), which leads to slight softening in the HAZ after welding. Room/high temperature tensile tests show that little adverse effects on the mechanical strength of joint has been caused by the welding process. It is shown by the thermal simulation that constitutional liquation of this micro-scale M23C6 carbides would occur when the peak temperature (T-p) reached 1300 degrees C. The behavior of the micro-sized M23C6 in multi-layer welding cycle could be described as: M23C6 + (gamma-Ni) - liquid - M23C6 + gamma-Ni - M23C6 + gamma-Ni + secondary M23C6.
机译:研究了由多层窄间隙钨弧焊技术(NG-TIG)连接的Inconel 617b的房间/高温机械性能,并利用热模拟在焊接期间揭示了Inconel 617B超合金中的M23C6相的行为。 由焊接中热暴露引起的构成液体产生的共晶微观结构和微小裂缝发生在热影响区(HAZ)中发生,导致焊接后的HAZ中的轻微软化。 室/高温拉伸试验表明,对焊接工艺引起了对接头机械强度的不利影响。 通过热模拟示出,当峰值温度(TP)达到1300℃时,将发生这种微级M23C6碳化物的结构性。微尺寸M23C6在多层焊接循环中的行为可以描述为: M23C6 +(Gamma-Ni) - & 液体 - & M23C6 + Gamma-Ni - & M23C6 + Gamma-Ni +二级M23C6。

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