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A comparison of creep models for nickel base alloys for advanced energy systems

机译:先进能源系统镍基合金蠕变模型的比较

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Creep behavior was reviewed for five nickel base alloys of interest to the ultrasupercritical steam boiler and Gen-IV nuclear reactor materials programs. The behavior was evaluated, qualitatively, on the basis of creep models commonly employed to represent creep of solid-solution, wrought superalloys. These models ranged from the simple Norton creep law to rather sophisticated unified equations and continuum damage mechanics (CDM) models. In view of the heat-to-heat variability of the alloys, it was found that for representation of strains of interest to design applications, the Norton power law was suitable. Alloys that exhibited little or no primary or secondary creep were better modeled by means of the CDM approach.
机译:审查了超超临界蒸汽锅炉和第四代核反应堆材料计划中感兴趣的五种镍基合金的蠕变行为。在蠕变模型的基础上,对蠕变模型进行了定性评估,该模型通常用于表示固溶,锻造高温合金的蠕变。这些模型的范围从简单的诺顿蠕变定律到相当复杂的统一方程式和连续损伤力学(CDM)模型。考虑到合金的热-热变化性,发现对于表示设计应用中感兴趣的应变,诺顿幂定律是合适的。借助CDM方法可以更好地模拟几乎没有或没有一次或二次蠕变的合金。

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