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Statistical distribution of mechanical properties and energy absorption of laminated cotton fabric reinforced epoxy composites

机译:层压棉织物的力学性能和能量吸收统计分布增强环氧复合材料

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In this work, the statistical distribution of mechanical properties and energy absorption at break of laminated cotton fabric reinforced epoxy composites was determined. The static mechanical tests showed that the cotton fabric significantly influenced the mechanical performance of epoxy resin, where tensile strength, tensile modulus, tensile elongation at break, flexural modulus, and impact strength increased significantly, while flexural strength decreased. The energy absorption behaviors in the tensile tests were investigated, where more energy at tensile break was absorbed when cotton fabric was incorporated, as shown by the 684% to 2707% increase. The similar increases were observed in the flexural and impact tests, which were 92% to 355% and 309% to 833%, in different directions, respectively. The statistical distribution patterns of the mechanical properties parameters in variously direction of cotton fabric reinforced laminate were mapped. The results showed the distribution patterns of tensile modulus, flexural modulus, tensile strength, flexural strength, and energy absorption before maximum stress in the flexural test correlated with fiber angle in the laminate, while the distribution patterns of tensile elongation, impact strength, and energy absorption in the flexural and tensile tests agreed well with distribution of fiber content in the test cross section. With the incorporation of cotton fabric, the breakage behavior of epoxy transitioned from brittle fracture to toughened fracture as shown in distribution patterns of fracture energy absorption. The viscoelastic properties of the cotton fiber-reinforced laminates were investigated via DMA. The cotton fiber-reinforced laminates possessed higher transition temperatures, the storage modulus (E') and loss modulus (E"), compared to epoxy.
机译:在这项工作中,测定了层压棉织物增强环氧复合材料的突破的机械性能和能量吸收的统计分布。静电机械试验表明,棉织物显着影响环氧树脂的机械性能,其中拉伸强度,拉伸模量,断裂,弯曲模量和冲击强度显着增加,而弯曲强度降低。研究了拉伸试验中的能量吸收行为,其中当掺入棉织物时,拉伸断裂时的能量吸收了更多的能量,如684%〜2707%的增加。在弯曲和冲击试验中观察到类似的增加,分别在不同方向上分别为92%至355%和309%至833%。绘制了棉织物增强层压板的各种方向的机械性能参数的统计分布模式。结果显示了拉伸模量,弯曲模量,拉伸强度,弯曲强度和能量吸收的分布模式,在弯曲试验中与层压板中的纤维角相关的最大应力,而拉伸伸长率,冲击强度和能量的分布模式弯曲和拉伸试验中的吸收均匀同意试验横截面中的纤维含量分布。随着棉花织物的掺入,环氧树脂的破裂行为从脆性断裂到增韧骨折,如断裂能量吸收的分布模式所示。通过DMA研究了棉纤维增强层压板的粘弹性性能。与环氧树脂相比,棉纤维增强层压材料具有较高的过渡温度,储存模量(E')和损耗模量(E“)。

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