Automated Fiber Placement Path Planning and Analysis of Pressure Vessels

Author:

Wang Bo1,Wen Lihua1,Xiao Jinyou1,Wang Shiyu1,Ren Ping23,Wang Liqiang23,Zu Lei4,Hou Xiao1

Affiliation:

1. School of Astronautics, Northwestern Polytechnical University, Xi’an 710072, China

2. Xi’an Institute of Aerospace Propulsion Technology, Xi’an 710025, China

3. The 41st Institute of the Fourth Academy of China Aerospace Science and Technology Corporation National Key Lab of Combustion, Flow and Thermo-Structure, Xi’an 710025, China

4. School of Mechanical Engineering, Hefei University of Technology, Hefei 230000, China

Abstract

The automated fiber placement (AFP) process faces a crucial challenge: the emergence of out-of-plane buckling in thermoplastic prepreg tows during steering, significantly impeding the quality of composite layup. In response, this study introduces a novel approach: the development of equations for wrinkle-free fiber placement within composite pressure vessels. The investigation encompasses a detailed analysis of prepreg trajectories in relation to shell geometry, accompanied by an in-depth understanding of the underlying causes of wrinkling on dome surfaces. Moreover, a comprehensive model for shell coverage, grounded in placement parameters, is meticulously established. To validate the approach, a simulation tool is devised to calculate press roller motions, ensuring the uniform fiber dispersion on the mandrel and achieving flawless coverage of the shell without wrinkles. This innovative strategy not only optimizes the AFP process for composite layup but also remarkably enhances the overall quality of composite shells. As such, this research carries significant implications for the advancement of composite manufacturing techniques and the concurrent improvement in material performance.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

MDPI AG

Subject

General Materials Science

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