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Sigma Phase Precipitation in 347HFG Stainless Steel for Supercritical Power Plant Operation

机译:347HFG不锈钢中的Sigma相沉淀,用于超临界电厂运行

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The microstructural evolution has been investigated for an 18Cr-12Ni stainless steel (347HFG) that has been subject to a thermo-mechanical treatment to obtain a fine grain size (ASTM 7-10). In particular, sigma phase precipitation and growth has been evaluated. Samples of 347HFG stainless steel have been isothermally heat treated to reproduce and accelerate the ageing conditions experienced in-service at temperatures between 600 and 750 °C for up to 10,000 hours. Results have shown that sigma phase is precipitated at triple points and along grain boundaries after as little as 1000 hours which is contrary to thermodynamic predictions. In addition X-ray diffraction (XRD) and image analysis has been carried out to semi-quantitatively measure the amount of sigma phase present. The area fraction of sigma has been found to be 2.77 and 2.23 percent at 700 and 750 °C respectively. This is a higher volume fraction of sigma phase than has been previously observed in regular 347H at these conditions. It is thought that this is due to the reduced grain size that has provided an increase in nucleation sites and diffusion paths that can enhance the precipitation and growth of sigma phase. The results from this study are discussed with regards to the effect of precipitation on the service life of a 347HFG stainless steel tube operating in advanced supercritical boilers.
机译:已经研究了用于18Cr-12NI不锈钢(347HFG)的微观结构演化,该钢(347HFG)经受热机械处理以获得细粒尺寸(ASTM 7-10)。特别是,已经评估了Sigma相沉淀和生长。 347HFG不锈钢样品在600-750℃温度下繁殖并加速在锻炼中经历的老化条件,可在600至750°C的温度下进行高达10,000小时。结果表明,σ相在三重点和沿晶界沉淀出来,较少的1000小时与热力学预测相反。此外,已经进行了X射线衍射(XRD)和图像分析,以半定量测量存在的Sigma相的量。 Sigma的面积分别在700和750°C分别被发现为2.77和2.23%。这是在这些条件下之前在常规347h中观察到的σ相的较高体积分数。认为这是由于晶粒尺寸降低,这些粒度提供了成核点和扩散路径,可以增强σ相的沉淀和生长。本研究的结果是关于降水对在先进超临界锅炉中操作的347HFG不锈钢管的使用寿命的影响。

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