Variable Axial Composite Lightweight Automotive Parts Using Anisotropic Topology Optimization and Tailored Fiber Placement

2022-01-0344

03/29/2022

Features
Event
WCX SAE World Congress Experience
Authors Abstract
Content
This paper presents a design method for continuous fiber composites in three-dimensional space with locally varying orientation distribution and their fabrication method. The design method is formulated based on topology optimization by augmented tensor field design variables. The fabrication method is based on Tailored Fiber Placement technology, whereby a CNC embroidery machine prepares the preform. The fiber path is generated from an optimized orientation distribution field. The preform is formed with vacuum-assisted resin transfer molding. The fabricated prototype weighs 120 g, a 70% weight reduction, achieving 3.5× mass-specific stiffness improvement.
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DOI
https://doi.org/10.4271/2022-01-0344
Pages
6
Citation
Nomura, T., Iwano, Y., Kawamoto, A., Yoshikawa, K. et al., "Variable Axial Composite Lightweight Automotive Parts Using Anisotropic Topology Optimization and Tailored Fiber Placement," SAE Technical Paper 2022-01-0344, 2022, https://doi.org/10.4271/2022-01-0344.
Additional Details
Publisher
Published
Mar 29, 2022
Product Code
2022-01-0344
Content Type
Technical Paper
Language
English