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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >The effect of fiber orientation on creep behavior of sisal/epoxy composites
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The effect of fiber orientation on creep behavior of sisal/epoxy composites

机译:纤维取向对剑麻/环氧树脂复合材料蠕变行为的影响

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The mechanical performance of a polymeric composite reinforced with fibers, as tensile properties and creep behavior, is strongly influenced by fiber orientation. Although several studies have conducted creep tests on polymeric composites, none have performed creep analyses on sisal/epoxy under actual working stress conditions. In this work, Findley's and Burger's models were utilized to describe the creep behavior of sisal/epoxy composites with different orientations 0°, 90°, and cross-ply (0°/90°). They were evaluated under three distinct stress levels (10, 40, and 60 ultimate stress) at 27?°C, under constant tensile for 8?h. Also, the tensile test was performed on the final stress levels and Young's modulus. As a result, by fitting experimental data with Findley's and Burger's models, the creep behavior of sisal/epoxy 0° composites was superior to other composites and epoxy matrices. According to the data obtained, the parameters A and E0 from Findley's equation and EM, EK, and Nk from Burger's equation were extremely stress-dependent. In addition, the tensile test showed the sisal/epoxy 0° (175?±?0.9?MPa) and cross-ply (70?±?1.9?MPa) composites had a tensile strength higher than the epoxy matrix (35?±?0.6?MPa). To conclude, the characterization of tensile creep behavior has great application potential in predicting the long-term performance of sisal/epoxy composites. This study suggested the creep modeling could adequately predict the short-time creep behavior of the sisal/epoxy composites since Burger's and Findley's models prolong the structures ‘service life and reduce maintenance effort and cost for long-term applications.
机译:纤维增强聚合物复合材料的机械性能,如拉伸性能和蠕变行为,受纤维取向的强烈影响。尽管有几项研究对聚合物复合材料进行了蠕变试验,但没有一项研究在实际工作应力条件下对剑麻/环氧树脂进行蠕变分析。在这项工作中,Findley和Burger的模型被用来描述具有不同取向[0°,90°和交叉层(0°/90°)]的剑麻/环氧树脂复合材料的蠕变行为。它们在 27?°C 的三种不同应力水平(10、40 和 60% 极限应力)下进行评估,在恒定拉伸 8?h 下进行评估。此外,在最终应力水平和杨氏模量上进行了拉伸试验。因此,通过将实验数据与Findley和Burger模型拟合,剑麻/环氧树脂[0°]复合材料的蠕变行为优于其他复合材料和环氧树脂基体。根据获得的数据,Findley 方程中的参数 A 和 E0 以及 Burger 方程中的 EM、EK 和 Nk 具有极强的应力依赖性。此外,拉伸试验显示剑麻/环氧树脂[0°](175?±?0.9?MPa)和交叉层(70?±?1.9?MPa)复合材料的拉伸强度高于环氧树脂基体(35?±?0.6?MPa)。综上所述,拉伸蠕变行为的表征在预测剑麻/环氧树脂复合材料的长期性能方面具有很大的应用潜力。这项研究表明,蠕变模型可以充分预测剑麻/环氧树脂复合材料的短时蠕变行为,因为Burger和Findley的模型延长了结构的使用寿命,并减少了长期应用的维护工作量和成本。

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