Research papers
#3D print
Penalized anisotropy: Controlling anisotropy growth in concurrent optimization of topology and fiber orientation for orthotropic composite materials
Jan 29, 2024
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Naruki Ichihara, Masahito Ueda, Tomohiro Yokozeki
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Journal of Composite Materials
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58
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pp. 677-688
Penalized anisotropy: Controlling anisotropy growth in concurrent optimization of topology and fiber orientation for orthotropic composite materials
3D printing with tension and compaction: prevention of fiber waviness in 3D-printed continuous carbon fiber–reinforced thermoplastics
Sep 18, 2023
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Naruki Ichihara, Masahito Ueda, Kentaro Kajiwara, Antoine Le Duigou, Mickael Castro
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Advanced Composite Materials
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0
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Latest Publication
3D printing with tension and compaction: prevention of fiber waviness in 3D-printed continuous carbon fiber–reinforced thermoplastics
Effects of a Perimeter on the Post-failure Behavior of Fiber-reinforced Polymer Composite Lattices
May 6, 2023
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Naruki Ichihara, Masahito Ueda, Akira Todoroki
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Chinese Journal of Mechanical Engineering: Additive Manufacturing Frontiers
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2
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100074
Effects of a Perimeter on the Post-failure Behavior of Fiber-reinforced Polymer Composite Lattices
3D-printed high-toughness composite structures by anisotropic topology optimization
Mar 15, 2023
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Naruki Ichihara, Masahito Ueda
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Compoites Part B: Engineering
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253
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110572
3D-printed high-toughness composite structures by anisotropic topology optimization
3D-print infill generation using the biological phase field of an optimized discrete material orientation vector field
Jan 10, 2022
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Naruki Ichihara, Masahito Ueda
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Compoites Part B: Engineering
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232
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109626
3D-print infill generation using the biological phase field of an optimized discrete material orientation vector field
Progressive damage simulation for a 3D-printed curvilinear continuous carbon fiber-reinforced thermoplastic based on continuum damage mechanics
Feb 13, 2020
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Naruki Ichihara, Masahito Ueda
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Advanced Composite Materials
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29
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459-474
Progressive damage simulation for a 3D-printed curvilinear continuous carbon fiber-reinforced thermoplastic based on continuum damage mechanics