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Effect of axial yarn distribution on the progressive damage behavior of braided composite tube subjected to three-point bending

机译:轴向纱线分布对三点弯曲编织复合管渐进损伤行为的影响

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摘要

The effect of axial yarns on progressive bending damage of braided composite tubes is studied in this paper. Four specimens with different number and distribution of axial yarns were experimentally tested by quasi-static three-point bending. At the same time, infrared thermography was used to observe the damage in-situ. Combined with the cross-section morphology of Ultra-Depth 3D Microscope, the damage evolution and distribution characteristics of braided tubes were identified. It is found that axial yarns enhance the mechanical properties of braided composite tube. The detected changes of infrared maximum temperature have a good correlation with the damage initiation and failure mechanism of the specimen. The abrupt changes of the maximum temperature indicate the occurrence of local fiber breakage, especially the axial yarn breakage. If there are axial yarns on the compression side of the tube, the maximum temperature increases by 0.5 degrees C in the linear elastic stage, and two initial damages of debonding and fiber breakage will occur. The debonding started at the interface of the axial yarn. The axial yarns increased fiber crimp, resulting in obvious wavy delamination between layers of the specimen, and the axial damage range was expanded. In addition, the mixed structure with axial yarns only on the compression side can inhibit the damage from spreading down the braided tube wall.
机译:本文研究了轴向纱线对编织复合管渐进弯曲损伤的影响。对4个不同轴向纱线数量和分布的试件进行准静态三点弯曲试验。同时,采用红外热成像技术对损伤进行原位观察。结合超深度三维显微镜的截面形貌,识别了编织管的损伤演变和分布特征。研究发现,轴向纱线增强了编织复合管的力学性能。红外最高温度的检测变化与试件的损伤萌生和破坏机理有较好的相关性。最高温度的突然变化表明发生了局部纤维断裂,尤其是轴向纱断裂。如果管子受压侧有轴向纱线,线弹性阶段最高温度升高0.5°C,就会发生脱粘和纤维断裂两种初始损伤。脱粘从轴向纱线的界面开始。轴向纱线增加了纤维卷曲,导致试件层间出现明显的波浪状分层,轴向损伤范围扩大。此外,仅在压缩侧与轴向纱线的混合结构可以抑制损伤沿着编织管壁向下扩散。

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