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A 3D printing tool-path generation strategy based on the partition of principal stress field for fused filament fabrication

  • In order to enhance the strength of 3D-printed parts made of polymer materials and reduce the anisotropy caused by the fused filament fabrication process, this paper proposes an inter-layer interleaved composite path planning method based on the directional partition of the principal stress field. This method not only ensures intra-layer reinforcement under specific working conditions but also increases the strength of the printed part by enhancing the adhesion of adjacent layers through staggered filling between layers. The mechanical performance is improved by 10 to 30% compared to other conventional filling patterns such as the zigzag filling algorithm. Inter-layer interleaved composite enhancement path planning method is suitable for path planning of structures with complex shapes and is easily integrated into existing general computer-aided engineering processes.

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Metadaten
Author:Hang Zhang, Yuan Yao, Yingxin Ma, Maximilian LacknerORCiD, Yunliang Jiang
Parent Title (English):The International Journal of Advanced Manufacturing Technology
Document Type:Article
Language:English
Completed Date:2022/08/25
Responsibility for metadata:Fachhochschule Technikum Wien
Release Date:2022/09/29
GND Keyword:Anisotropy strength; Clustering; Principal stress field
Issue:122
Pagenumber:17
First Page:1719
Last Page:1735
Publish on Website:1
Open Access:0
Reviewed:0
Department:Department Industrial Engineering
Dewey Decimal Classification:6 Technik, Medizin, angewandte Wissenschaften / 60 Technik
Research Focus:Sonstiges
Projects:Import
Studienjahr:2021/2022