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Effect of Pick Spacing and Warp and Weft Volume Fraction on Intrinsic Residual Stresses in 3D Woven Composites

机译:拾取间距和纬度分数对3D编织复合材料内在残余应力的影响

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Three panels of 3D woven carbon fiber/RTM6 epoxy composites with a ply-to-ply weave with 12x12 (warp/weft) picks per inch (ppi), 10x12 ppi, and 10x8 ppi were fabricated by resin transfer molding. Realistic finite element models of each weave architecture were constructed using Dynamic Fabric Mechanics Analyzer. The resin properties were isotropic and linear elastic and dependent on temperature. The resin-infiltrated fiber tow properties were estimated using homogenization based on Hashin and Shapery formulas. The model was considered to be at zero stress at the 165?C curing temperature. The stresses resulting from cooling the composite to 25?C were estimated using the resin temperature-dependent properties and the temperature independent properties of the tows. The displacement fields resulting from holes drilled through the middle of the top warp or weft yarn were estimated by virtually drilling a hole in the finite element model and were measured on the specimens using electronic speckle pattern interferometry. In general, the measured displacements transverse to the yarn were lower than the predicted displacements. This suggests the resin in the infiltrated yarns relieves some of the stress by permanently deforming during cooling. The measured displacements along the yarn were approximately the same for the 12x12 ppi,, lower for the 10x12 ppi, and significantly higher for the 10x8 ppi.
机译:三维编织碳纤维的三个面板/带帘布层对层编织有每英寸12×12(经纱/纬纱)纬纱(PPI),10X12 PPI,和10×8 PPI RTM6环氧树脂复合材料是由树脂传递模塑来制造。各织纹结构的现实有限元模型构建使用动态力学织物分析仪。树脂性能是各向同性的,并且线性弹性和依赖于温度。使用基于的Hashin和Shapery式均质的树脂渗入纤维束性能估计。该模型被认为是在零张应力在165 2 C固化温度。从复合冷却至25所产生的应力?C下使用该树脂温度依赖特性和温度丝束的独立属性估计。从孔产生的位移场钻出穿过顶部经纱的中间或纬纱由在有限元模型几乎钻孔估计以及使用电子散斑标本进行了测定。一般情况下,所测量的位移横向于纱线进行比预测位移低。这表明在渗入纱线的树脂通过在冷却过程中永久地变形减轻一些应力。沿纱线所测量的位移为大约为12×12的PPI相同,,降低对10X12 PPI,并为10×8 PPI显著更高。

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