Annular expansion for enhanced orientation and mechanical properties of extruded amorphous PPESK/PES pipes

Author:

Pan Xiaotong1234ORCID,Pan Yuxi123ORCID,Zhao Haiyang5,Liu Cheng1234,Zeng Wenguang5,Guo Yujie56,Song Ce27ORCID,Jian Xigao1234

Affiliation:

1. Department of Polymer Science and Materials, School of Chemical Engineering Dalian University of Technology Dalian China

2. State Key Laboratory of Fine Chemicals, Frontier Science Center for Smart Materials, School of Chemical Engineering Dalian University of Technology Dalian China

3. Engineering Research Center of Advanced Polymer and Composite Materials Ministry of Education Dalian China

4. Dalian High Performance Resin, Processing and Application Engineering Research Center Dalian China

5. Key Laboratory of Enhanced Oil Recovery in Carbonate Fractured‐vuggy Reservoirs CNPC Urumqi China

6. Sinopec Group Northwest Petroleum Branch Urumqi China

7. School of Materials Science and Engineering Dalian University of Technology Dalian China

Abstract

AbstractWith the discovery of deeper oil fields, conventional metal pumping pipes have been proven to be ineffective in meeting the requirements for deep well oil production due to their high weights and limited corrosion resistance. Therefore, in this study, a composite of Poly(phthalazinone ether sulfone ketone) (PPESK) and polyethersulfone (PES) was used to fabricate nonmetal pipes. To enhance the mechanical properties of the PPESK/PES pipes, a self‐designed annular expansion pipe extruder head was used. The circumferential burst stress and axial tensile strength of the PPESK/PES pipes subjected to 30° expansion were 73.0% and 48.9% higher than those of the unexpanded sample, respectively. When annular expansion was integrated into the extrusion of PPESK/PES/carbon fiber pipes, the axial tensile strength and circumferential burst stress were 45.9% and 88.8% higher than those of the unexpanded sample, respectively. Results of polarized infrared testing and metallographic microscopic examinations demonstrated that molecular chains present a regular orientation at a certain angle to the extrusion direction, under the effect of annular expansion extrusion. These findings highlight the efficiency of annular expansion in promoting the large‐scale production of pipes.

Funder

National Natural Science Foundation of China

Dalian Science and Technology Innovation Fund

Fundamental Research Funds for the Central Universities

Publisher

Wiley

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