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Mechanical characterization and damage mechanism of a new flax-Kevlar hybrid/epoxy composite

机译:新型亚麻-芳纶混合/环氧树脂复合材料的力学表征和损伤机理

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摘要

A new composite, made with a woven constituted by Kevlar fibers and flax fibers in an epoxy resin is tested. Tensile and three-point bending tests are performed to identify mechanical properties and damage mechanisms. Compressive properties are identified by an inverse method using numerical simulation of the bending test. In addition, failure mechanisms are established by macroscopic and microscopic observations. The composite exhibits a strong non-linear anisotropic behavior. This non-linearity comes from the plastic strain of Kevlar fibers and flax fibers pull out, whereas the damaged modulus depends on the flax fibers damage. The hybrid composite has the same compression weakness as Kevlar composite, with compression properties that are lower than the tensile properties. Hybrid composite has an intermediate mechanical property between flax composite and aramid composite.
机译:测试了由芳纶纤维和亚麻纤维在环氧树脂中形成的编织物制成的新型复合材料。进行拉伸和三点弯曲测试以识别机械性能和损坏机理。通过使用弯曲试验的数值模拟的逆方法来识别压缩性能。另外,通过宏观和微观观察建立了失效机制。该复合材料表现出很强的非线性各向异性。这种非线性来自凯夫拉尔纤维的塑性应变和亚麻纤维的拉出,而损坏的模量取决于亚麻纤维的损坏。杂化复合材料与凯夫拉尔复合材料具有相同的抗压强度,其压缩性能低于拉伸性能。杂化复合材料在亚麻复合材料和芳族聚酰胺复合材料之间具有中等的机械性能。

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