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The assessment of remaining life of chemical reactor exposed to creep and fatigue

机译:含有蠕变和疲劳的化学反应器剩余寿命的评估

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The paper presents an application according the reliability and remining life assessment of the reactor (coxing box) from a petrochemical plant, after failure in welding joint of plated shell from W 1.5423 (16Mo5) steel with 25 mm thickness, plated with W 1.4002 stainless steel with 3 mm thickness. The reactor failure it has associated with initial flaws from welding process, which have accelerated remaining life exhaustion. The assessment made in two steps. It has used VII section of ASME code specifications and iRiS-Thermo expert system for preliminary remaining life assessment. Concomitantly, it was performed the experimental creep and thermal fatigue testing. The program results have defined creep and thermal fatigue exhaustion and its remaining life at common creep-fatigue action, in condition of safety exploitation. It was emphasized the possibility of use an extra 40,000 hours of rehabilitated reactor in the safety condition of normal parameters.
机译:本文提出了一种应用根据来自石化厂的反应器(COXING盒)的可靠性和综合寿命评估,经过5毫米厚度的镀壳焊接接头焊接,镀厚25毫米,镀层,镀,镀,镀,用W 1.4002不锈钢镀层厚度为3毫米。与焊接过程的初始缺陷有关的反应器故障,这具有加速剩余的寿命。评估分两步。它已使用ASME代码规范和IRIS-Thermo专家系统的VII部分进行初步剩余寿命评估。同时,进行实验蠕变和热疲劳试验。在安全剥削的条件下,该计划结果定义了蠕变和热疲劳耗尽,其常见蠕变疲劳作用的剩余寿命。强调有可能在正常参数的安全条件下使用额外的40,000小时的康复反应器。

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