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Effect of cold forming strain on creep rupture properties of 47Ni-23Cr-23Fe-7W alloy

机译:冷成型菌株对47NI-23C-23FE-7W合金蠕变破裂性能的影响

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摘要

47Ni-23Cr-23Fe-7W (HR6W) is a candidate material for high temperature areas in the Advanced Ultra Supercritical (A-USC) boilers. In this study, creep rupture properties of cold-formed materials were investigated in comparison to the solution annealed materials in order to clarify the creep strengthening mechanism of the cold-formed HR6W. It was found that the creep strength and rupture life of the cold formed HR6W increased substantially as compared with solution annealed material and creep ductility decreased. According to investigation results of microstructure and hardness changes in the crept specimens, grain boundaries in cold formed HR6W were covered with M23C6 precipitates from the early stages of creep and the fine M23C6 particles in the grains were very stable for long period of time as compared to the lower grain boundary coverage in the solution annealed materials. These results suggested that a high density of dislocation is maintained during the test and hence it exceeded 60,000 h. This was postulated to be reason why creep rupture strength of cold formed HR6W enhanced so remarkably in comparison to the solution annealed material.
机译:47NI-23CR-23FE-7W(HR6W)是高温超临界(A-USC)锅炉中的高温区域的候选材料。在该研究中,研究了与溶液退火材料相比,研究了冷成型材料的蠕变破裂性能,以阐明冷成型HR6W的蠕变强化机理。结果发现,与溶液退火材料相比,冷成型HR6W的蠕变强度和破裂寿命基本上增加,并且蠕变延展性降低。根据漂流标本的微观结构和硬度变化的调查结果,用M23C6从蠕变的早期阶段沉淀出冷形成HR6W中的晶界,与溶液退火材料中的较低晶界覆盖。这些结果表明,在测试期间维持了高密度的位错,因此它超过60,000小时。这被假设是与溶液退火材料相比,冷形成HR6W的蠕变破裂强度增强的原因。

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