[1]
QI Minhua, in: Antisepsis and Safeguard of Chemical Equipment, edited by China Petroleum and Chemical Standard and Quality, Vol. 04 (2013), pp.30-31.
Google Scholar
[2]
Dong Shier, He Dongsheng and Zhang Peng, in: The Elastic and Plastic Finite Element Analysis of Double Points Corrosive Pipe, edited by Design and Research, Vol. 32 (2005), pp.20-23.
Google Scholar
[3]
Li Zengliang and Chen Meng, in: Finite Element Analysis of The Residual Strength and Life for Outside Corroded Pipelines, edited by Lubrication Engneerng, Vol. 35 (2010), pp.86-89.
Google Scholar
[4]
Hong Laifeng and Sun Tie, in: The Effect of Double Corrosive Points on Remaining Storage of Line Pipe, edited by Oil & Gas Storage and Transportation, Vol. 29 (2010), pp.916-918.
Google Scholar
[5]
Wei Huazhong and Zhou Xiaobing, in: Residue Strength Analysis of Pressure Piping With Combined Corrosion Defects, edited by Process Euipment & Piping, Vol. 44 (2007), pp.42-44.
Google Scholar
[6]
Chou Chaoui B A and Pick R J, in: Behaviour of Longitudinally Aligned Corrosion Pits, edited by International Journal of Pressure Vessels and Piping, Vol. 57 (1994), pp.197-200.
DOI: 10.1016/0308-0161(94)90052-3
Google Scholar
[7]
Wang Wenjing, Geng Shou and Jia Xiaonan, in: The Influence of Corrosion on Structure and Method of Improvement, edited by Chinese Journal of Construction Machinery, Vol. 13 (2014).
Google Scholar
[8]
Meliani M H and Matvienko Y G, in: Corrosion Defect Assessment on Pipes Using Limitation Analysis and Notch Fracture Mechanics, edited by Eng. Fail. Anal, Vol. 18 (2011), p.271.
DOI: 10.1016/j.engfailanal.2010.09.006
Google Scholar
[9]
Zhang Rixiang, Gu Zichang and Jiang Meng, in: Finite Element Analysis on Inside-pressured Pipeline with Double Corrosion Defects , edited by Steel Construction, Vol. 25 (2010), pp.79-81.
Google Scholar