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Investigation on precipitation phenomena of Ni-22Cr-12Co-9Mo alloy aged and crept at high temperature

机译:Ni-22Cr-12Co-9Mo合金高温时效蠕变析出现象的研究

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The Ni-22Cr-12Co-9Mo alloy (UNS alloy N06617, also known as alloy 617), of relatively common use at high temperature, is also one of the candidate materials for the most ambitious EU and US projects for future generations of power plants. Its microstructure in the solution-annealed condition and after long-term creep tests at 700 and 800℃ was characterized by means of light optical, scanning electron and transmission electron microscopy. Differential scanning calorimetry (DSC) analyses were also performed to check the usefulness of this technique to detect microstructural modification in specimens exposed to high temperature. Microstructural features were correlated to the hardness evolution in a chronological range of several thousand hours. The major microstructural features were identified to be the presence of inter- and/or intragranular particles ((Cr,Mo,Fe){sub}23C{sub}6 and other types of carbides, δ-Ni{sub}3Mo and γ'-Ni{sub}3(Al,Ti)) that clearly played an important role in the mechanical behaviour of the alloy. The microstructural features of the investigated alloy changed at different exposure temperatures (and times) with respect to the as-received condition. The observed microstructural instability of the alloy suggested that creep data obtained at the highest temperature should be very carefully considered in extrapolating the creep strength of the alloy at about 700℃, since they should lead to a substantial underestimation of the creep life.
机译:Ni-22Cr-12Co-9Mo合金(UNS合金N06617,也称为617合金)在高温下相对常用,也是欧盟和美国最有雄心的下一代电厂项目的候选材料之一。 。通过光学,扫描电子和透射电子显微镜对在固溶退火条件下以及在700和800℃下长期蠕变测试后的显微组织进行了表征。还进行了差示扫描量热法(DSC)分析,以检查该技术对检测暴露于高温的样品中的微结构变化的有用性。在几千小时的时间范围内,微观结构特征与硬度演变相关。鉴定出主要的微观结构特征是存在晶粒间和/或晶粒内((Cr,Mo,Fe){sub} 23C {sub} 6和其他类型的碳化物,δ-Ni{sub} 3Mo和γ' -Ni {sub} 3(Al,Ti))显然在合金的机械性能中起着重要作用。相对于所接收的条件,所研究合金的微观结构特征在不同的暴露温度(和时间)下发生了变化。观察到的合金的微观结构不稳定性表明,在推断大约700℃时合金的蠕变强度时,应非常仔细地考虑在最高温度下获得的蠕变数据,因为它们会导致对蠕变寿命的明显低估。

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