Finite element analysis of a low-velocity impact test for glass fiber-reinforced polypropylene composites considering mixed-mode interlaminar fracture toughness

  • Jung, Ku-Hyun
  • Kim, Do-Hyoung
  • Kim, Hee-June
  • Park, Seong-Hyun
  • Jhang, Kyung-Young
  • ... Kim, Hak-Sung
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초록

In this study, a low-velocity impact test of glass fiber-reinforced polypropylene (GFPP) composites was simulated considering interlaminar fracture toughness. In the simulation, intralaminar and interlaminar damage were modeled using the continuum damage mechanics (CDM) and cohesive zone method (CZM) models, respectively. The B-K criterion was used for the interlaminar damage model along with experimental results, which were obtained from fracture toughness tests of modes I and II and the mixed mode. Low-velocity impact tests were performed to verify the developed damage model, and various characteristics such as delamination and the force-displacement were evaluated. Finally, it was found that the developed damage model with interlaminar fracture toughness can be used to accurately predict the impact behavior of GF/PP composites, including interlaminar delamination.

키워드

Glass fiber-reinforced polypropylene compositesStrain energy release rateCohesive zone methodLow-velocity impact testGRAPHITE EPOXYDAMAGE
제목
Finite element analysis of a low-velocity impact test for glass fiber-reinforced polypropylene composites considering mixed-mode interlaminar fracture toughness
저자
Jung, Ku-HyunKim, Do-HyoungKim, Hee-JunePark, Seong-HyunJhang, Kyung-YoungKim, Hak-Sung
DOI
10.1016/j.compstruct.2016.10.093
발행일
2017-01
유형
Article
저널명
Composite Structures
160
페이지
446 ~ 456