A Digital Twin for Automated Layup of Prepreg Composite Sheets

Author:

Chen Yi-Wei1,Joseph Rex Jomy2,Kanyuck Alec1,Khan Shahwaz1,Malhan Rishi K.1,Manyar Omey M.1,McNulty Zachary1,Wang Bohan2,Barbič Jernej2,Gupta Satyandra K.1

Affiliation:

1. Department of Aerospace and Mechanical Engineering, University of Southern California, Los Angeles, CA 90007

2. Department of Computer Science, University of Southern California, Los Angeles, CA 90007

Abstract

Abstract The composite sheet layup process involves stacking several layers of a viscoelastic prepreg sheet and curing the laminate to manufacture the component. Demands for automating functional tasks in the composite manufacturing processes have dramatically increased in the past decade. A simulation system representing a digital twin of the composite sheet can aid in the development of such an autonomous system for prepreg sheet layup. While finite element analysis (FEA) is a popular approach for simulating flexible materials, material properties need to be encoded to produce high-fidelity mechanical simulations. We present a methodology to predict material parameters of a thin-shell FEA model based on real-world observations of the deformations of the object. We utilize the model to develop a digital twin of a composite sheet. The method is tested on viscoelastic composite prepreg sheets and fabric materials such as cotton cloth, felt, and canvas. We discuss the implementation and development of a high-speed FEA simulator based on the VegaFEM library. By using our method to identify sheet material parameters, the sheet simulation system is able to predict sheet behavior within 5 cm of average error and have proven its capability for 10 fps real-time sheet simulation.

Funder

National Science Foundation

Publisher

ASME International

Subject

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

Reference34 articles.

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