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Tensile behavior of on- and off-axis carbon fiber reinforced polymer composites incorporating steel wire mesh

机译:含钢丝网的同轴和离轴碳纤维增强聚合物复合材料的拉伸行为

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This paper experimentally investigates the tensile behavior of hybrid composites made with on- and off-axis carbon fiber reinforced polymer that incorporates stainless steel wire mesh. Various layers of off-axis carbon fiber, layers of steel wire mesh, and levels of curing temperature were used as test parameters. The test results indicated that the test specimens using an intermediate amount of carbon fiber layers (three and five off-axis layers) showed an inclined fracture of carbon fiber layers at failure, whereas the specimens using a large amount of carbon fiber layers (ten off-axis layers) exhibited a significant lateral contraction at failure. In particular, the use of a large amount of off-axis carbon fiber layers could significantly increase the initial stiffness, peak load, and residual load of the hybrid composites, in particular, when using steel wire mesh layers. In addition, the tensile behavior of the hybrid composites was governed by the combined effect of the steel wire mesh layers and the number of off-axis carbon fiber fabric layers. A model was proposed to predict the mechanical properties of the hybrid composite specimens, and the prediction results showed good agreement with the test results.
机译:本文通过实验研究了采用同轴碳纤维增强聚合物并结合了不锈钢丝网的杂化复合材料的拉伸性能。各种离轴碳纤维层,钢丝网层和固化温度水平用作测试参数。测试结果表明,使用中间数量的碳纤维层(三层和五个离轴层)的试样在破坏时显示出碳纤维层的倾斜断裂,而使用大量碳纤维层的试样(十层脱落)轴层)在破坏时表现出明显的横向收缩。特别是,使用大量离轴碳纤维层会显着增加混合复合材料的初始刚度,峰值载荷和残余载荷,特别是在使用钢丝网层时。此外,杂化复合材料的拉伸性能受钢丝网层和离轴碳纤维织物层数的综合影响。提出了一种预测混合材料复合材料力学性能的模型,预测结果与试验结果吻合良好。

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