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Titlebook: Degradation Assessment and Failure Prevention of Pipeline Systems; Gabriella Bolzon,Giovanna Gabetta,Hryhoriy Nykyfor Conference proceedin

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Lecture Notes in Civil Engineeringhttp://image.papertrans.cn/d/image/264876.jpg
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https://doi.org/10.1007/978-3-322-81418-0teels at nano- and micro-scales. In-bulk steel degradation and a decrease in characteristics of brittle fracture resistance of pipeline steels under long-time operation increase significantly a failure risk. Therefore, deterioration of pipelines under operation calls for effective methods for curren
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https://doi.org/10.1007/978-3-322-81418-0of steel degradation is damaging along the boundaries between pearlite and ferrite grains manifested by more intensive etching the boundaries with extraction of cementite particles from the matrix. The most obvious effect of degradation is revealed for the steel 17H1S, and the least one for the stee
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Die Balint-Gruppe in Klinik und Praxislar fluids, such as oil and natural gas, fuels and chemicals, as well as water to drink or for irrigation. The need to transport fluids over considerable distances calls for carbon steel as construction material as it guarantees the required tensile strength and toughness properties. Also, pipelines
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