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Creep damage prediction of the steam pipelines with high temperature and high pressure

机译:高温高压蒸汽管道蠕变损伤的预测

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摘要

Creep is the significant factor that caused failure of steam pipelines with high temperature and high pressure in the period of long-term service. In this paper, the creep tests were performed at serviced temperature of 520℃ for 1.25Cr-0.5Mo pipe material, and the creep and fracture constants were obtained by fitting the creep test data. Based on the modified Karchanov-Rabotnov constitutive equation, compiled the user subroutine computing the damage of the pipe element or 3D solid element, the creep damage prediction was carried out by finite element methods using ABAQUS codes for the steam pipelines with high temperature and high pressure, which serviced in a petro-chemical plant, the damage distribution and maximum damage location of the pipelines were obtained, which is testified by metallographic examination result. Furthermore, the local creep damage analysis of a tapered pipe serviced for 100,000 h was also carried out because tapered pipes used in the main steam pipeline is one of weakness in the piping system. Damage distribution and evolution in the analyzed tapered pipe were obtained. The location with the maximum damage value was determined, which is coincident with cracking position of the actual tapered pipe.
机译:长期蠕变是导致高温高压蒸汽管道故障的重要因素。本文对1.25Cr-0.5Mo管材在520℃的使用温度下进行了蠕变试验,并通过拟合蠕变试验数据获得了蠕变和断裂常数。在修改后的Karchanov-Rabotnov本构方程的基础上,编制了计算子元素或3D实体元素损伤的用户子程序,并使用ABAQUS程序通过有限元方法对高温高压蒸汽管道进行了蠕变损伤预测。得到了某石油化工厂的服务,得到了管道的损伤分布和最大损伤位置,并通过金相检查结果进行了验证。此外,由于在主蒸汽管道中使用的锥形管是管道系统的弱点之一,因此还对使用了100,000小时的锥形管进行了局部蠕变损伤分析。获得了在分析的锥形管中的损伤分布和演变。确定具有最大损坏值的位置,该位置与实际锥形管的破裂位置一致。

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