Author:
Liu Zhengyu,Mou Chenglong,Yin Pingmei,Cao Xueqian,Zhang Guangan,Xue Qunji
Abstract
AbstractThe corrosion and wear of N80 pipeline in oil and gas field environment has always been an urgent problem to be solved in the field of oil and gas exploitation. DLC film is considered to be an effective material for prolonging the service life of pipeline due to its excellent properties. However, it is very difficult to deposit a uniform DLC film on the inner surface of long pipeline. In this paper, DLC film was deposited on the inner surface of a 1 m-long N80 pipeline with an inner diameter of 75 mm by hollow cathode plasma enhanced chemical vapor deposition (HC-PECVD) using the pipeline itself as the deposition chamber and cathode. The uniformity of microstructure, mechanical properties, corrosion resistance and tribological properties of DLC film were discussed. The results show that the DLC film deposited on the inner surface of N80 long pipeline by HC-PECVD equipment possesses excellent axial uniformity. The deposition of DLC film increases the corrosion potential and reduces the corrosion current density, which greatly improves the corrosion resistance of N80 pipeline. In addition, the deposition of DLC film also reduces the friction coefficient and wear rate, which greatly improves the wear resistance of N80 pipeline. Therefore, the deposition of DLC film is an effective protection method for the inner surface of N80 pipeline, which prolongs the service life of the pipeline. HC-PECVD equipment with pipeline as cavity uniformly deposits DLC film on the inner surface of long pipeline, which is a potential deposition method to prolong the service life of long pipeline in oil and gas exploitation.
Funder
the Joint Funds of the National Natural Science Foundation of China
the National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Reference36 articles.
1. Chatzidouros EV, Papazoglou VJ, Pantclis DI (2014) Hydrogen effect on a low carbon ferritic-bainitic pipeline steel. Int J Hydrogen Energy 39:18498–18505
2. Mohtadi-Bonab MA, Szpunar JA, Razavi-Tousi SS (2013) Hydrogen induced cracking susceptibility in different layers of a hot rolled X70 pipeline steel. Int J Hydrogen Energy 38:13831–13841
3. Park GT, Koh SU, Jung HG, Kim KY (2008) Effect of microstructure on the hydrogen trapping efficiency and hydrogen induced cracking of linepipe steel. Corros Sci 50:1865–1871
4. Yin ZF, Zhang YL, Chang GR, Yang TQ (2020) Corrosion Behavior and Characteristics of 3Cr Steel in Coexisting H2S- and CO2-Containing Solutions. J Mater Eng Perform 29:5442–5457
5. SHEN Z,KANG LX, LI CN (2021) The corrosion analysis and research of corrosion protection technology of gathering and transportation pipeline in Shanbei Oilfield[J]. Surface Technology 50(5):253–260
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