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ALLOY SELECTION AND C-276 CODE DESIGN VALUE EXTENSION FOR ADVANCED MOLTEN SALT TECHNOLOGY TEST FACILITIES EXPERIMENTATION

机译:合金选择和C-276码设计价值延伸,用于高级熔盐技术测试设施实验

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Molten halide salts are being considered as working fluids for nuclear and concentrated solar power applications. High temperature molten fluoride and chloride salts are known to preferentially attack and deplete Cr in alloys, which leads to the use of high-Ni low-Cr alloys in test facilities for advanced molten salt technology. Alloy C-276 is a commercially available Ni alloy that has adequate Cr contents and is qualified to the maximum temperature of 677°C (1,251℉) in the Boiler and Pressure Vessel Code. The alloy has good corrosion resistance to acids, is resistant to stress-corrosion cracking, and has long track records of use in the chemical industry. Therefore, it has been considered as a structural material for test facilities that require operations at 700°C (1,292℉) or greater to develop high-temperature molten salt technology. To meet the requirements, predictions of the Maximum Allowable Stress above the usage temperatures permitted by the Boiler and Pressure Vessel Code were developed with experimental data as an extension to the current code design values. Analysis showed that above current Codified maximum temperature, strength of the alloy is mainly controlled by creep rupture life under the average stress, although the S_c creep rate criterion is close to the F_(avg). S_(avg) rupture criterion. This paper presents the intended test facilities and the design requirements, alloy selection considerations, literature review, data analysis, and proposed allowable stress extension based on some creep test data for C-276 at temperatures greater than 677°C (1,251℉). Further research activities are also briefly mentioned.
机译:熔融卤化物盐被认为是用于核和浓缩太阳能应用的工作流体。已知高温熔融氟化物和氯化物盐优先于合金中发出和耗尽Cr,这导致高Ni低Cr合金在先进的熔盐技术试验设施中使用。合金C-276是一种可商购的Ni合金,具有足够的Cr内容物,并且在锅炉和压力容器代码中有资格在677°C(1,251°)的最高温度。合金对酸性良好的耐腐蚀性,对压力腐蚀开裂有耐腐蚀,并在化学工业中使用了长期的使用记录。因此,它被认为是用于测试设施的结构材料,需要在700°C(1,292°)或更大以开发高温熔盐技术。为了满足要求,使用实验数据开发了高于锅炉和压力容器代码允许的使用温度的最大允许应力的预测,作为当前代码设计值的扩展。分析表明,上述电流编码的最大温度,合金的强度主要通过蠕变破裂寿命在平均应力下控制,尽管S_C蠕变率标准接近F_(AVG)。 S_(AVG)破裂标准。本文介绍了预期的测试设施和设计要求,合金选择考虑,文献综述,数据分析,以及基于在大于677°C的温度下的C-276的一些蠕变试验数据的允许应力延伸,并提出了允许的应力延伸(1,251°)。还简要提及了进一步的研究活动。

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