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Effect of Ageing on Creep behaviour of IN 617 Nickel Base Super Alloy for Advanced USC Power Plant Applications

机译:老化对先进USC电厂应用617镍基超合金蠕变行为的影响

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摘要

The goal of improving the efficiency of pulverized coal power plants has been pursued for decades. The need for greater efficiency and reduced environmental impact is pushing utilities to advanced ultra-supercritical conditions, i.e., steam condition up to 710/720 A degrees C and 310 bar of pressure. The long-term creep strength with adequate thermal stability and environmental-resistance requirements imposed by these conditions are clearly beyond the capacity of the currently used ferritic steels and other related alloys. Nickel base alloys, such as IN617 super alloy is one of the preferred choices for steam turbine components used by fossil fuelled power generation plants. In this paper, effect of thermal ageing on creep behaviour of IN 617 nickel base super alloy were studied. Effect of thermal ageing on other mechanical properties such as tensile, yield and impact strength were also studied. Correlation between creep properties and microstructural changes, due to thermal ageing on IN 617 super alloy were also studied. Creep testing was carried out at different stress and temperatures for various thermal ageing conditions (800 and 850 A degrees C) for different time durations and compared. The Alloy (IN 617) shows good thermal stability over long term aged condition with respect to creep strength. Less deterioration is observed in yield strength and tensile properties over long term ageing.
机译:几十年来追求提高粉煤发电厂效率的目标。需要更高的效率和降低的环境影响是将公用事业推向先进的超超临界条件,即蒸汽条件高达710/720 A C和310条压力。这些条件施加的具有足够热稳定性和环境抵抗的长期蠕变强度显然超出了目前使用的铁素体钢和其他相关合金的能力。镍基合金,例如IN617超合金是化石燃料发电厂使用的蒸汽轮机部件的首选选择之一。本文研究了热老化对617镍基超合金蠕变行为的影响。还研究了热老化对其他机械性能的影响,例如拉伸,产率和冲击强度。还研究了蠕变性能与微观结构变化的相关性,由于617中的超级合金中的热老化。在不同时间持续时间和比较的各种热老化条件(800和850℃)的不同应力和温度下进行蠕变测试。该合金(617 in)在长期老化条件相对于蠕变强度显示出良好的热稳定性。长期老化的产率强度和拉伸性能下观察到较少的劣化。

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