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The Layer of Kevlar Angle-interlock Woven Fabric Effect on the Tensile Properties of Composite Materials

机译:凯夫拉角互锁织物层对复合材料的拉伸性能的影响

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This article is based on the structure of three-dimensional angle-interlock longitudinal.The 3-layer, 5-layer, 7-layer and 9-layer of angle-interlock 3D fabrics are woven on sample weaving machine respectively with the 1500D Kevlar fiber twist filament produced by United States DuPont. At the same time, Kevlar plain weave fabric is woven, and three, five, seven and nine layers' fabric are to be compared. In the process of VARTM composite technology, epoxy resin is matrix material, acetone is diluent, triethylene tetramine is curing agent and the five different fabrics are the reinforced materials respectively. Finally, eight different three-dimensional woven fabric composites were prepared. In this paper, the tensile properties of eight kinds of three-dimensional woven fabric composites were tested respectively.Finally, it is concluded that the five-layer angle-interlock woven fabric prepared by Kevlar fiber shows the best tensile property.
机译:本文基于三维角互锁纵向的结构。三层,5层,7层和9层角互锁3D织物在分别用1500D Kevlar纤维分别编织在样品编织机上 由美国杜邦生产的扭曲丝。 与此同时,Kevlar Plane Weave面料是编织的,三个,五个,七个和九层的织物将进行比较。 在Vartm复合技术的过程中,环氧树脂是基质材料,丙酮是稀释剂的,三甲基四氨酸是固化剂,并且分别是五种不同的织物是增强材料。 最后,制备了八种不同的三维编织织物复合材料。 本文分别检测8种三维织造织物复合材料的拉伸性能。最后,结论是通过Kevlar纤维制备的五层角互锁织物显示出最佳的拉伸性。

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