Thermal-force coupling simulation of carbon fibre-reinforced poly-ether-ether-ketone thermoplastic composites during the laser-assisted automated tape placement process

Author:

Zhang Cheng-Hao12,Wang Fei12,Zhang Cheng-Shuang3,Bao Yan-Ling3,Wang Meng-Jie12,Liu Dong12,Wu Jing12,Su Zhong-Min1

Affiliation:

1. College of Opto-Electronic Engineering, Changchun University of Science and Technology, Changchun, Jilin, China

2. Zhongshan Institute of Changchun University of Science and Technology, Zhongshan, Guangdong, China

3. Xi'an Composite Materials Research Institute, Xi'an, Shanxi, China

Abstract

To reveal the thermal-force coupling characteristics of the laser in-situ consolidation (ISC) of carbon fibre-reinforced poly-ether-ether-ketone (CF/PEEK) composites, a two-dimensional transient thermal-force model of CF/PEEK composites was constructed using COMSOL Multiphysics finite element simulation software to calculate the temperature history and the thermal stress variation of CF/PEEK composites during the laser-assisted automated tape placement (LATP) process. The results show that the temperature field formed on the surface of each layer by the laser spot during LATP is stable, and the temperature gradient at the front of the spot movement direction is higher than that at the back edge. The maximum stresses in the laminate occur on both sides of the first CF/PEEK layer and the stresses are unevenly distributed along the length and thickness directions of the lay-up. The composite material on both sides of the laminate tends to ‘shrink’ compared to its original position.

Funder

Jilin Provincial Key Research and Development Plan Project

NSFC | Joint Fund for Aerospace Advanced Manufacturing Technology Research

Publisher

SAGE Publications

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