首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Influence of cooling rate on the properties of carbon fiber unidirectional composites with polypropylene, polyamide 6, and polyphenylene sulfide matrices
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Influence of cooling rate on the properties of carbon fiber unidirectional composites with polypropylene, polyamide 6, and polyphenylene sulfide matrices

机译:冷却速率对聚丙烯,聚酰胺6和聚苯硫醚基质碳纤维单向复合材料性能的影响

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摘要

The longitudinal and transverse strength of three unidirectional thermoplastic prepreg systems: carbon fiber/polypropylene (CF/PP), polyamide 6 (CF/PA6), and polyphenylene sulfide (CF/PPS) are studied and analytical formulas are proposed for the estimation of matrix and fiber/matrix interface properties from composites properties. Since the matrices are semi-crystalline thermoplastics, the influence of cooling rate on the strength is statistically evaluated. While the 0o tensile strength is found to be independent of the cooling rate, the 90o tensile strength is strongly influenced by the matrix type and cooling rate. The matrix modulus increases as the cooling rate is decreased; the degree of crystallinity also increases. The matrix residual stress, interfacial shear strength, and mode II interlaminar fracture toughness are also found to depend on the cooling rate, with the trends different for different matrices.
机译:三种单向热塑性预浸料系统的纵向和横向强度:研究了碳纤维/聚丙烯(CF / PP),聚酰胺6(CF / PA6)和聚亚苯硫醚(CF / PPS),并提出了分析公式,用于估计基质 来自复合材料属性的光纤/矩阵界面属性。 由于基质是半结晶的热塑性塑料,因此统计评价冷却速率对强度的影响。 虽然发现0O拉伸强度与冷却速率无关,但是90O拉伸强度受基质型和冷却速率的强烈影响。 矩阵模量随着冷却速率降低而增加; 结晶度也增加。 还发现基质残留应力,界面剪切强度和模式II层间裂缝韧性,以取决于冷却速率,不同矩阵的趋势。

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