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RD Program for A-USC Material Development with Creep Strength/Degradation Assessment Studies

机译:具有蠕变强度/降解评估研究的A-USC材料开发研发计划

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Recently advanced ultra-super critical (A-USC) pressure power plants with 700°C class steam parameters have been under development worldwide. Japanese material R&D program for A-USC beside the plant R&D program started in 2008, launched in 2007 under the METI/NEDO foundation includes not only alloy design explores and novel ideas for developing new steels and alloys that can fill critical needs in building 700°C class advanced power plants, but also fundamental studies on creep strength and degradation assessment, which are absolutely needed to assure the long-term safe use of newly developed steels and alloys at critical temperature conditions, for instance, 650°C for ferritic steels, 700°C for austenitic steels and 750°C for Ni-based alloys. This program concept has been based on the lessons from materials issues recently experienced in the creep strength enhanced ferritic steels used for 600°C class ultra-super critical power plants. Particular outputs from the program up to now are recognized as the ferritic steel having the creep strength of lOOMPa at 650°C beyond 30,000h without any Type IV degradation and as the austenitic steel developed by means of inter-metallic compounds precipitation strengthening of grain boundary which should be strongest in creep ever found. Concurrently great progresses have been seen in the research works with positron annihilation life monitoring method applicable to various kinds of defects, structural free energy values, small punch creep test data for very limited interest area, crystallographic analyses, optimum time-temperature parameter regional creep rupture curve fitting method, hardness model, etc. which would highly contribute to find out and establish the structural parameters affecting to creep strength and degradation resulting in accurately estimating the 100,000h creep strength.
机译:近日先进的超超临界(A-USC)压力电厂700℃水平的蒸汽参数已在开发全球。为A-USC日本材料R&d程序2008年开始的植物R&d程序时,METI / NEDO基础下在2007年推出的旁边不仅包括合金设计探索和开发新的钢和合金,可以在建立700填补关键需求新奇的想法° C级先进的发电厂,而且还对蠕变强度和退化评估的基础研究,这是绝对必要的,以确保长期安全使用新开发的钢和合金在临界温度的条件下,例如,650℃的铁素体钢, 700℃下奥氏体钢和750℃的Ni基合金。这项计划的概念是基于从最近的蠕变强度经历用于600℃级超超超临界电厂提高铁素体钢材料问题的教训。从程序到现在特定输出在超过30000 650℃确认为具有lOOMPa的蠕变强度的铁素体钢,没有任何类型IV降解和通过的金属间化合物的析出强化晶界的手段开发的奥氏体钢应最强的蠕变发现过。同时较大的进展已经出现在研究工作正电子湮灭寿命监控适用于各种缺陷,结构自由能值,小冲杆蠕变试验数据的方法非常有限感兴趣的领域,晶体分析,最佳时间 - 温度参数区域蠕变断裂曲线拟合方法,硬度模型等这将有助于高度找出并建立地影响蠕变强度,并导致准确地估计100,000小时的蠕变强度劣化的结构参数。

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