Effect of creep damage and mean stress on the fatigue life of short Fiber-Reinforced polypropylene composites

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초록

The use of short fiber-reinforced thermoplastics in mobility applications has become more prominent owing to their lightweight nature and favorable material properties. Fatigue life analysis is crucial for the safe and reliable design of short fiber-reinforced thermoplastic components. Because most load-bearing components are subjected to mean stress, an accurate evaluation of the mean stress effect is essential. In this study, fatigue life tests with various load ratios and flexural creep tests were performed on polypropylene composites with different short glass fiber compositions to characterize the viscous damage in the positive mean stress fatigue tests of short fiber-reinforced thermoplastics. The varying mean stress effect due to viscous damage was characterized by applying a creep-dependent mean stress sensitivity parameter to the parabolic sigma a-sigma m relation. The results of the proposed mean stress correction for the positive load ratio data showed a high correlation with the test results under full reversal conditions.

키워드

Short fiber-reinforced thermoplastic (SFRTP); Mean stress effect; Polypropylene; Fatigue; Creep; Lifetime to failure; SLOW CRACK-GROWTH; POLYMER COMPOSITES; BEHAVIOR; TENSILE; POLYAMIDE; STRENGTH; PROPAGATION; PREDICTION; CONSTANT; RATIO
제목
Effect of creep damage and mean stress on the fatigue life of short Fiber-Reinforced polypropylene composites
저자
Lee, Sang Min; Lee, Pyeongan; Kim, Ilhyun; Choi, Byoung-Ho
DOI
10.1016/j.engfracmech.2025.111324
발행일
2025-08-25
유형
Article
저널명
Engineering Fracture Mechanics
권
325