Ryosuke Matsuzaki

Ryosuke Matsuzaki

Tokyo University of Science

H-index: 37

Asia-Japan

About Ryosuke Matsuzaki

Ryosuke Matsuzaki, With an exceptional h-index of 37 and a recent h-index of 27 (since 2020), a distinguished researcher at Tokyo University of Science, specializes in the field of Composite materials, Manufacturing, 3D printing.

His recent articles reflect a diverse array of research interests and contributions to the field:

Design optimization of bio-inspired 3D printing by machine learning

Thermomechanical performance of continuous carbon fibre composite materials produced by a modified 3D printer

Effect of temperature conditions of a heated plate on the crystallization of CFRTP

High accuracy 3D printing of composite materials using CNT yarns

Strength and its variability in 3D printing of polymer composites with continuous fibers

Optimization of fiber orientation and layer thickness in thin carbon fiber-reinforced plastic curved structures

Automatic strengthening in thickness direction using lap joint of carbon fiber for fused filament fabrication 3D printing

Formability of curved multilayer laminates via 3D printing using twisted continuous fiber composites

Ryosuke Matsuzaki Information

University

Position

___

Citations(all)

6214

Citations(since 2020)

4202

Cited By

3495

hIndex(all)

37

hIndex(since 2020)

27

i10Index(all)

89

i10Index(since 2020)

68

Email

University Profile Page

Tokyo University of Science

Google Scholar

View Google Scholar Profile

Ryosuke Matsuzaki Skills & Research Interests

Composite materials

Manufacturing

3D printing

Top articles of Ryosuke Matsuzaki

Title

Journal

Author(s)

Publication Date

Design optimization of bio-inspired 3D printing by machine learning

Advanced Composite Materials

Daiki Goto

Ryosuke Matsuzaki

Akira Todoroki

2024/3/6

Thermomechanical performance of continuous carbon fibre composite materials produced by a modified 3D printer

Heliyon

Antoine Le Duigou

Monia Grabow

Mickael Castro

R Toumi

Masahito Ueda

...

2023/3/1

Effect of temperature conditions of a heated plate on the crystallization of CFRTP

Mechanical Engineering Journal

Yasuhiro TASAKA

Ryosuke MATSUZAKI

2023

High accuracy 3D printing of composite materials using CNT yarns

Composite Structures

Junro Sano

Ryosuke Matsuzaki

2023/12/1

Strength and its variability in 3D printing of polymer composites with continuous fibers

Materials & Design

M Parker

N Ezeokeke

R Matsuzaki

D Arola

2023/1/1

Optimization of fiber orientation and layer thickness in thin carbon fiber-reinforced plastic curved structures

Composites Part C: Open Access

Haruya Tanaka

Yuto Mori

Naoya Kumekawa

Ryosuke Matsuzaki

2023/10/1

Automatic strengthening in thickness direction using lap joint of carbon fiber for fused filament fabrication 3D printing

Composite Structures

Jumpei Kajimoto

Aiko Fujii

Yusuke Maruyama

Hideyuki Kajita

Jun Koyanagi

...

2023/1/1

Formability of curved multilayer laminates via 3D printing using twisted continuous fiber composites

Heliyon

Keigo Nakajima

Ryosuke Matsuzaki

2023/10/1

Effect of overlap joint position on strength of composite interlaminar reinforcement for fused filament fabrication 3D printer

Composites Part C: Open Access

Aiko Fujii

Jumpei Kajimoto

Jun Koyanagi

Yusuke Maruyama

Hideyuki Kajita

...

2023/7/1

Effect of the nozzle temperature on the microstructure and interlaminar strength in 3D printing of carbon fiber/polyphenylene sulfide composites

Composites Part C: Open Access

Rei Shuto

Sawane Norimatsu

Dwayne D Arola

Ryosuke Matsuzaki

2022/10/1

Matrix stiffness: A key parameter to control hydro-elasticity and morphing of 3D printed biocomposite

Composites Part A: Applied Science and Manufacturing

Thomas Fruleux

Mickaël Castro

Pierre Sauleau

Ryosuke Matsuzaki

Antoine Le Duigou

2022/5/1

Geometric limitations of 3D printed continuous flax-fiber reinforced biocomposites cellular lattice structures

Composites Part C: Open Access

Thomas Fruleux

Mickaël Castro

David Correa

Kui Wang

Ryosuke Matsuzaki

...

2022/10/1

Automated interlaminar reinforcement with thickness directional fiber arrangement for 3D printing

Composite Structures

Jumpei Kajimoto

Jun Koyanagi

Yusuke Maruyama

Hideyuki Kajita

Ryosuke Matsuzaki

2022/4/15

2D Fusion Simulations and Experimental Confirmations of Print Paths Using Composite Particles with Particle Method for Fused Filament Fabrication

Open Journal of Composite Materials

Yuto Imaeda

Akira Todoroki

Ryosuke Matsuzaki

Masahito Ueda

Yoshiyasu Hirano

2022/9/20

3D printing of continuous fiber reinforced polymer composites: development, application, and prospective

Xiaoyong Tian

Akira Todoroki

Tengfei Liu

Lingling Wu

Zhanghao Hou

...

2022/3/1

3D printing of composite materials using ultralow-melt-viscosity polymer and continuous carbon fiber

Composites Part C: Open Access

Daisuke Kuba

Ryosuke Matsuzaki

Shono Ochi

Shinji Ogihara

2022/7/1

3D printing of continuous carbon fiber reinforced polyphenylene sulfide: Exploring printability and importance of fiber volume fraction

Polymer Composites

Md Atikur Rahman

Md Zahirul Islam

Luke Gibbon

Chad A Ulven

John J La Scala

2021/11

Three-dimensional printing apparatus

2022/10/18

Experimental evaluation of variable thickness 3D printing of continuous carbon fiber-reinforced composites

Composite Structures

Naoya Kumekawa

Yuto Mori

Haruya Tanaka

Ryosuke Matsuzaki

2022/5/15

Mesoscale draping simulation of carbon fiber mat for arbitrary weave architecture

Journal of Composite Materials

Ryosuke Matsuzaki

Hiroki Koshiro

2021/6

See List of Professors in Ryosuke Matsuzaki University(Tokyo University of Science)

Co-Authors

H-index: 65
Dwayne Arola

Dwayne Arola

University of Washington

H-index: 50
Shigeru Obayashi

Shigeru Obayashi

Tohoku University

H-index: 28
Masahito Ueda

Masahito Ueda

Nihon University

H-index: 26
Jun Koyanagi

Jun Koyanagi

Tokyo University of Science

H-index: 25
Shigeki Yashiro

Shigeki Yashiro

Kyushu University

H-index: 23
Yoshiro Suzuki

Yoshiro Suzuki

Tokyo Institute of Technology

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