Stress analysis of double-walled pipes undergone mechanical drawing process

Author:

Zhang RuoGuORCID,Wang Yu,Zhu Yinbo,Jin JiDong,Wu HengAn,Gu Ping,Zhao Yang

Abstract

AbstractDouble-walled metal pipes are important components for heat exchange and liquid transportation. They can be manufactured by mechanical drawing of two concentric pipes. In this work, a mechanical model is developed to analyze the stress state evolution during the manufacturing process, and the criterion for forming the double-walled pipe was given under the ideal elastoplastic and thick-walled assumptions. The model also encompasses the results deduced under the thin-walled assumption. Numerical simulations confirmed that the accuracy of the analytical model was within 5%. The application on actual steel materials with various parameters varied, including the wall thickness and initial gap, was analyzed. This work can provide theoretical support to industrial manufacturing procedures and help to reduce costs by eliminating required test procedures.

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference17 articles.

1. Rozzia D, Forgione N (2015) Experimental, investigation on powder conductivity for the application to double wall bayonet tube bundle steam generator. 24th International Conference on Nuclear Energy for New Europe (NENE)

2. Sato M, Patel MH, Trarieux F (2008) Static displacement and elastic buckling characteristics of structural pipe-in-pipe cross-sections, structural engineering and mechanics 30:263–278

3. Bahman Z (2019) Application of heat pipes to fissionable nuclear reactor. https://doi.org/10.1007/978-3-030-05882-1_8

4. Yican Wu, Minghuang W, Qunying H et al (2015) Research status and development prospect of lead - based reactors. Chin J Nucl Sci Eng 02:213–221

5. Shuang J (2015) Stress analysis of heat transfer pipe of steam generator in nuclear power plant. North China Electric Power University

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