CYCLIC TESTS OF STRESS-CORROSION CRACKS OF STEEL GAS PIPELINE PIPES IN THE ABSENCE OF CORROSIVE ENVIRONMENT

A. V. Afanas’ev, A. A. Mel’nikov, M. I. Vas’kov, D. N. Bel’kov
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Abstract

The paper presents the results of metallographic studies of stresscorrosion defects (SCC defects) detected on the output gas pipeline of the compressor station. The diagnostics statistics of defects in such pipelines and the data on the effectiveness evaluation of various diagnostic tools during the diagnosis of SCC are given. A presumptive steel grade corresponding to the pipeline metal was identified. The species and morphology of cracks are described. Their character of development is defined. To detect traces of the influence of metallurgical impurities and the external environment on the defects development, a spectrometry of corrosion products and base metal was made. The authors have made the maps of elements distribution over the sample controlled surface. The absence of influence of nonmetallic sulphide inclusions on the development of metal destruction in this is described for the particular case of SCC. It is shown that the sulfur content in corrosion products does not exceed the sulfur content in the sample metal. In some samples, reduced sulfur content can be observed, with the exception of local sites with nonmetallic sulphide inclusions. Electronic images were obtained, which show that these nonmetallic inclusions (in this case) are not sources of cracking development. The results of cyclic tests of samples cut from the pipeline and containing cracks are given. The choice of the cyclic test mode was carried out in accordance with the analysis of the compressor station operating mode for the current year of operation. According to the data received, pipe materials with defects at their initial stage of development have shown considerable durability under test loads. The samples with cracks have withstood from 1.6·106 to 7.5·106 loading cycles under conditions of cyclic transverse bending in the same test plane in the absence of a corrosive medium. In a real gas pipeline under normal operation conditions, the number of such cycles does not exceed 120 – 200 per year, therefore, it can be concluded that the pipeline with defects in their initial stage of development has a significant residual life, provided that its metal wall is reliably protected from effects of corrosive environment.
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无腐蚀环境下钢制燃气管道应力腐蚀裂纹的循环试验
本文介绍了压缩站输出输气管道应力腐蚀缺陷的金相研究结果。给出了管道缺陷的诊断统计数据和各种诊断工具在SCC诊断中的有效性评价数据。确定了与管道金属相对应的假定钢等级。描述了裂纹的种类和形态。确定了它们的发展特征。为了检测冶金杂质和外部环境对缺陷发展的影响,对腐蚀产物和母材进行了光谱分析。作者绘制了样品控制表面的元素分布图。非金属硫化物夹杂物对金属破坏的发展没有影响,这是针对SCC的特殊情况描述的。结果表明,腐蚀产物中的硫含量不超过试样金属中的硫含量。在一些样品中,除了含有非金属硫化物夹杂物的局部地点外,可以观察到硫含量降低。获得的电子图像表明,这些非金属夹杂物(在这种情况下)不是裂纹发展的来源。给出了从管道上割下含裂纹试样的循环试验结果。根据对压气站当年运行模式的分析,进行了循环试验模式的选择。根据收到的数据,在开发初期就存在缺陷的管道材料在测试载荷下表现出相当大的耐久性。在不含腐蚀介质的情况下,裂纹试样在同一试验平面内的循环横向弯曲条件下,承受了1.6·106 ~ 7.5·106次加载循环。在正常运行条件下的实际天然气管道中,这种循环次数每年不超过120 - 200次,因此可以得出结论,只要其金属壁可靠地保护不受腐蚀环境的影响,在发展初期就存在缺陷的管道具有显着的剩余寿命。
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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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