日本複合材料学会誌
Online ISSN : 1884-8559
Print ISSN : 0385-2563
ISSN-L : 0385-2563
研究論文
粘弾粘塑性解析による短繊維強化熱可塑性樹脂の力学挙動予測
遠藤 紗世坂上 賢一
著者情報
ジャーナル フリー

2020 年 46 巻 5 号 p. 223-229

詳細
抄録

In this study, the mechanical behavior of short-fiber-reinforced thermoplastics is predicted by finite element analysis using various unit cells. Each unit cell contains a single elastic fiber and an elastoplastic or viscoelastic-viscoplastic matrix resin. Additionally, fiber break and interfacial debonding between thermoplastics and fibers are reproduced using the extended finite element method and the cohesive zone model, respectively. The analyses using the unit cells evaluate the stresses for various fiber lengths and fiber orientation angles, and then the macroscopic stress is predicted by the laminate analogy approach. The predicted results are compared with the tensile test results at various temperatures. In the plastic region, the predicted results reveal that the viscoelastic-viscoplastic analysis with fiber break and interfacial debonding is needed to predict the actual stress-strain curve. The tensile test results are within the results predicted by the analyses with assumed interfacial strength and with infinite interfacial strength. Therefore, the mechanical behavior of short-fiber-reinforced thermoplastics could be predicted by the viscoelastic-viscoplastic analysis with fiber break and interfacial debonding using appropriate interfacial strength.

著者関連情報
© 2020 日本複合材料学会
前の記事
feedback
Top