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Formability mechanism of CFRP sheets using multiscale model based on microscopic characteristics of thermosetting resin
Tetsuo Oya
, Akihiro Nishino
Department of System Design Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Citations (Scopus)
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Dive into the research topics of 'Formability mechanism of CFRP sheets using multiscale model based on microscopic characteristics of thermosetting resin'. Together they form a unique fingerprint.
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Mathematics
Formability
100%
Carbon Fiber
89%
Multiscale Model
77%
Plastic Deformation
61%
Plastics
57%
Model-based
49%
Breakage
32%
Epoxy Resin
18%
Model
18%
Molecular Dynamics Simulation
17%
Chain
16%
Large Deformation
14%
Simulation
13%
Numerical Analysis
10%
Experiment
8%
Modeling
7%
Engineering & Materials Science
Plastic sheets
82%
Thermosets
67%
Carbon fiber reinforced plastics
60%
Formability
58%
Plastic deformation
39%
Resins
19%
Plastics forming
16%
Molecular dynamics
12%
Epoxy resins
11%
Numerical analysis
9%
Computer simulation
6%
Temperature
4%
Experiments
3%
Chemical Compounds
Plastic Film
76%
Plastic Deformation
68%
Reinforced Plastic
67%
Simulation
26%
Carbon Atom
25%
Epoxy Resin
13%
Molecular Dynamics
10%
Volume
7%