会议专题

SIMULATION AND TESTING FOR THE RESIDUAL STRESS-STRAIN OF ED STEEL PIPE AFTER PLASTIC FORMING

Internal corrosion of oil tubular goods is becoming increasingly serious in the gas & oil exploitation. Lined steel pipe is a new anti-corrosion material in preventing gas & oil material internal corrosion. The mechanical property after forming is one of the key factors affecting the service characteristics of lined steel pipe. A parametric finite element analysis (FEA) numerical model is established in this paper to simulate the plastic forming process of lined steel pipe. Furthermore, FEA numerical simulation has been made for the residual stress-strain of carbon steel tubing Q70x3.5mm and stainless steel tubing m63x1.16mm. Studies show that the inner pipe produces residual compressive stress and the outer pipe produces residual tensile stress after forming. The bonding force between inner and outer pipes increases linear to the forming force. The deformation law of outer pipe in the loading & unloading process is analyzed by resistance-strain test method. Experimental results point out that the plastic deformation of lined steel pipe is nonlinear in the loading process, but rebounds linearly in the unloading process. FEA numerical simulating results are close to the experimental data, of which the accuracy can meet the engineering requirements. Studies in the paper can provide theoretical reference for the manufacturing and application oflined steel pipe.

carbon steel stainless steel forming bonding force test

Zeng Dezhi Lin Yuanhua Zhu Dajiang Yang Bin Zhu Hongjuni

State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation (Southwest Petroleum Universi Chongqing University of Science & Technology, Chongqing, 401331, China.

国际会议

The International Conference on Advanced Technology of Design and Manufacture 2010(2010先进设计与制造技术国际研讨会)

北京

英文

89-93

2010-11-23(万方平台首次上网日期,不代表论文的发表时间)