The corrosion of oil country tubular goods (OCTG) gets more and more serious especially in the acidic environment. So, it is very important to develop a perfect anticorrosion technology for exploring sour oil and gas fields economically and safely. Analysis indicates that the bimetal-pipe (BP) which consists of the base layer of low carbon steel and a corrosion resistant alloy (CRA) cladding layer is an economic and reliable anticorrosion technology and has broad application prospects in the transportation of acid medium. However, theoretical study of hydraulic expansion mechanism for BP is not enough. In this paper, the deformation compatibility condition of BP was obtained by studying the deformation rule of the (CRA) liner and the outer pipe of carbon steel in the forming process; the mechanical model which can compute the hydroforming pressure of BP has been established based on the nonlinear kinematic hardening characteristics of material; furthermore, based on the stress strain curve of inner pipe simultaneously, the calculation method of the plastic hardening stress has been proposed. Thus, the accurate method for computing the forming pressure was obtained. The experimental data show that results are consistent with results of the proposed model. It indicates that the model can be used to provide theoretical guidance for the design and production as well as use of BP.
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December 2014
Research-Article
Theoretical and Experimental Study of Bimetal-Pipe Hydroforming
Zeng Dezhi,
Zeng Dezhi
State Key Laboratory of Oil
and Gas Reservoir Geology and Exploitation,
and Gas Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
;CNPC Key Lab for Tubular Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
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Deng Kuanhai,
Deng Kuanhai
CNPC Key Lab for Tubular Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
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Shi Taihe,
Shi Taihe
State Key Laboratory of Oil
and Gas Reservoir Geology and Exploitation,
and Gas Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
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Lin Yuanhua,
Lin Yuanhua
State Key Laboratory of Oil
and Gas Reservoir Geology and Exploitation,
e-mail: yhlin28@163.com
and Gas Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
e-mail: yhlin28@163.com
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Zhu Hongjun,
Zhu Hongjun
CNPC Key Lab for Tubular Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
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Li Tianlei,
Li Tianlei
China Petroleum Engineering Co., Ltd.,
Southwest Company
,Chengdu, Sichuan 610017
, China
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Sun Yongxing
Sun Yongxing
Drilling and Production Engineering
Technology Research Institute (CCDC)
,Guanghan, Sichuan 618300
, China
Search for other works by this author on:
Zeng Dezhi
State Key Laboratory of Oil
and Gas Reservoir Geology and Exploitation,
and Gas Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
;CNPC Key Lab for Tubular Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Deng Kuanhai
CNPC Key Lab for Tubular Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Shi Taihe
State Key Laboratory of Oil
and Gas Reservoir Geology and Exploitation,
and Gas Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Lin Yuanhua
State Key Laboratory of Oil
and Gas Reservoir Geology and Exploitation,
e-mail: yhlin28@163.com
and Gas Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
e-mail: yhlin28@163.com
Zhu Hongjun
CNPC Key Lab for Tubular Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Li Tianlei
China Petroleum Engineering Co., Ltd.,
Southwest Company
,Chengdu, Sichuan 610017
, China
Sun Yongxing
Drilling and Production Engineering
Technology Research Institute (CCDC)
,Guanghan, Sichuan 618300
, China
Contributed by the Pressure Vessel and Piping Division of ASME for publication in the JOURNAL OF PRESSURE VESSEL TECHNOLOGY. Manuscript received December 30, 2012; final manuscript received February 12, 2014; published online September 4, 2014. Assoc. Editor: Roman Motriuk.
J. Pressure Vessel Technol. Dec 2014, 136(6): 061402 (10 pages)
Published Online: September 4, 2014
Article history
Received:
December 30, 2012
Revision Received:
February 12, 2014
Citation
Dezhi, Z., Kuanhai, D., Taihe, S., Yuanhua, L., Hongjun, Z., Tianlei, L., and Yongxing, S. (September 4, 2014). "Theoretical and Experimental Study of Bimetal-Pipe Hydroforming." ASME. J. Pressure Vessel Technol. December 2014; 136(6): 061402. https://doi.org/10.1115/1.4026976
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