Statistical tensile and flexural fatigue lives of unidirectional CF/PP laminates

材料科学 抗弯强度 复合材料 极限抗拉强度 环氧树脂 粘弹性 聚丙烯 热固性聚合物 弯曲 三点弯曲试验
作者
Masayuki Nakada,Yasushi Miyano,Taiga Nonaka,Yoko Morisawa,Takeharu Isaki,Taiki Hirano,Kiyoshi Uzawa
出处
期刊:Journal of Reinforced Plastics and Composites [SAGE Publishing]
卷期号:43 (3-4): 195-204 被引量:6
标识
DOI:10.1177/07316844231159951
摘要

The accelerated testing methodology (ATM) for the statistical life prediction of carbon fiber reinforced plastics (CFRP) under creep and fatigue loads based on the viscoelasticity of matrix resin has been proposed by authors. This method has been successfully applied to the life predictions of unidirectional CFRP with thermosetting epoxy resin as the matrix under tensile and flexural loads. In this paper, this method was applied to the fatigue life prediction of unidirectional CFRP (CF/PP laminates) with thermoplastic polypropylene (PP) as the matrix under tensile and flexural loads, and the effect of matrix viscoelasticity and load cycles on the fatigue behavior of CF/PP laminates were discussed under tensile and flexural loads. First, the viscoelasticity of matrix PP was measured. Second, the static and fatigue strengths of CF/PP laminates were statistically measured at various temperatures and frequencies under tensile and flexural loads. Third, all of material parameters in the fatigue strength formulation in ATM were determined using measured data, and the statistical long-term fatigue strengths of CF/PP laminates were predicted under tensile and flexural loads. As results, comparison with tension and bending test results clarified that the long-term tensile fatigue strength of CF/PP laminates decreases at an accelerated rate as the number of cycles increases, and that the flexural fatigue strength is affected by temperature and frequency rather than by the number of cycles to failure.
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