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Effect of sediment thickness on the remaining creep lifetime of 9Cr1Mo refinery furnace tubes

机译:沉积物厚度对9Cr1MO炼油厂管剩余蠕变寿命的影响

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Studying the creep behavior of mechanical engineering parts and estimating their remaining life is a major concern in the processing industry, power generation, and oil refineries. These industries widely use 9Cr1Mo alloy for manufacturing the tubes of main furnaces or heat exchangers. There is also a possibility of sediment formation that changes the temperature gradient in tube walls, leading to different creep behaviors. Hence, in this paper, the creep behavior of 9Cr1Mo (P9) tubes is investigated experimentally using both new and old materials. "Old" samples have been machined from the tubes of a main refinery furnace after operating for a period. Uniaxial creep tests are carried out at different stress and temperature levels. Based on various optimization methods and using test data, coefficients of the creep constitutive equation have been calculated for both materials. Then, these equations are introduced in a finite element model to carry out numerical analyses to study the effect of sediment thickness on the creep lifetime of the tubes. The results show that at high temperature, tubes with new material have longer creep lifetime comparing with the old ones; but at the low-temperature level, this difference in lifetime reduces. Also, it has been shown that tubes with no sediment have longer creep lifetime. With increasing the thickness of the sediment, creep lifetime of the tubes reduces significantly. In general, it is concluded that 1-2 mm sediment thickness has the same deteriorating effect as the accumulation of the creep during the 15 years of service time.
机译:研究机械工程零件的蠕变行为并估算其剩余生命是加工行业,发电和炼油厂的主要问题。这些行业广泛使用9Cr1MO合金来制造主炉或热交换器的管。还有可能的沉积物形成,使管壁中的温度梯度变化,导致不同的蠕变行为。因此,在本文中,使用新的和旧材料实验研究了9cr1mo(p9)管的蠕变行为。在运行期后,“旧”样品从主炼油厂炉的管中加工。单轴蠕变试验在不同的应力和温度水平下进行。基于各种优化方法和使用测试数据,已经针对两种材料计算了蠕变本构方程的系数。然后,在有限元模型中引入了这些等式,以便进行数值分析,以研究沉积物厚度对管的蠕变寿命的影响。结果表明,在高温下,与旧材料的管有更长的蠕变寿命;但在低温水平,寿命中的这种差异减少了。此外,已经证明没有沉积物的管寿命长。随着沉积物的厚度增加,管的蠕变寿命显着减少。一般而言,得出结论,1-2毫米沉积物厚度与在15年的服务时间内蠕变的积累具有相同的效果。

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