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Effect of Braiding Angle on the Impact and Post-Impact Behavior of 3D Braided Composites

机译:编织角度对3D编织复合材料冲击和冲击后行为的影响

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摘要

In this study, the impact and post-impact behavior of three-dimensional (3D) four-directional carbon/epoxy braided composites having different braiding angles were investigated. The same impact energy (45 J) was applied to the specimens. The post-impact mechanical properties of the materials were performed by compression after impact (CAI) testing, and the processes were monitored by the acoustic emission (AE) technique. Results showed that the specimens with larger braiding angle sustained higher peak loads, and smaller impact damage area, mainly attributed to a more compact space arrangement. The CAI strength and damage mechanism were found to be mainly dependent on the axial support of the braiding fiber tows. Increasing the braiding angle of the composites, the CAI strength was reduced, and the damage mode of the composites was changed from transverse fracture to shear one. Combining AE parameters and CAI curves allows one to characterize the failure process, thereby enabling fracture analysis of the materials under study.
机译:在该研究中,研究了具有不同编织角的三维(3D)四方向碳/环氧树脂编织复合材料的冲击和后冲击性。将相同的冲击能量(45 j)施用于标本。通过冲击(CAI)测试后压缩进行材料的后冲击力学性能,通过声发射(AE)技术监测该方法。结果表明,具有较大编织角持续较高峰值负荷的标本,以及较小的冲击损伤区域,主要归因于更紧凑的空间布置。发现CAI强度和损坏机制主要取决于编织纤维丝束的轴向载体。增加复合材料的编织角,降低了CAI强度,并且复合材料的损伤模式从横向骨折以剪切一个。组合AE参数和CAI曲线允许一个人表征故障过程,从而能够对所研究的材料进行断裂分析。

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