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Creep damage and remaining life assessment of service exposed engineering materials used in petrochemical industry

机译:石油化工行业中暴露于服务的工程材料的蠕变损伤和剩余寿命评估

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In this paper creep damage assessment of 55 years service exposed Catalytic Cold Cracking (CCU) reactor vessel and Feed Processing Unit (FPU) distillation column materials of a petrochemical industry while evaluating their remnant life/Uncertainty involved in calculating LMP (Larson Miller Parameter) value has been given prime importance because it is a function of rupture time. The placing of confidence bounds around any failure time prediction requires knowledge of the failure time distribution. Usually, remaining life is predicted from extrapolation of stress vs. LMP plot without incorporating the uncertainty involved in calculation of LMP values. Uncertainty involved in calculating LMP value has been given prime importance in this work because it is a function of rupture time. Variability of normalized creep damage for reactor and column materials is well approximated with the aid of Weibull distribution. As expected, it is observed that the distributions shift towards the higher range of damage with increase in service exposure time.
机译:本文对石化行业的55年使用暴露的催化冷裂(CCU)反应器容器和进料处理单元(FPU)蒸馏塔材料进行蠕变损伤评估,同时评估它们的剩余寿命/不确定性(计算LMP(Larson Miller参数)值)由于它是破裂时间的函数,因此具有最高的重要性。在任何故障时间预测周围放置置信范围需要了解故障时间分布。通常,根据应力对LMP图的推算可以预测剩余寿命,而无需考虑LMP值计算所涉及的不确定性。在这项工作中,计算LMP值所涉及的不确定性已成为最重要的问题,因为它是破裂时间的函数。借助威布尔分布,可以很好地估算出反应堆和色谱柱材料的标准化蠕变损伤的变异性。正如预期的那样,随着服务使用时间的增加,分布向更大范围的损害转移。

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