首页> 外文期刊>Journal of Composites Science >Effect of Structural Parameters on the Deformational Behaviors of Multiply 3D Layer-by-Layer Angle-Interlock Para-Aramid Fabric for Fiber-Reinforcement Composite
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Effect of Structural Parameters on the Deformational Behaviors of Multiply 3D Layer-by-Layer Angle-Interlock Para-Aramid Fabric for Fiber-Reinforcement Composite

机译:结构参数对纤维加固复合材料乘法三维层逐层角度互锁对芳纶织物的变形行为的影响

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Materials used in the technical application including composite reinforcements and ballistic fabrics should show not only good mechanical performance but also better deformational behaviors. Meanwhile, three dimensional (3D) warp interlock fabrics have been widely employed in such applications to substitute the two dimensional (2D) fabrics because of their enhanced through-the-thickness performance and excellent formability. The deformational behaviors of such 3D warp interlock fabrics have been also influenced by various internal and external parameters. To understand and fill this gap, the current paper investigates the effects of the warp yarn interchange ratios inside the fabric structure on the formability behaviors of dry 3D warp interlock p-aramid fabrics. Four 3D warp interlock architecture types made with different binding and stuffer warp yarn interchange ratios were designed and manufactured. An adapted hydraulic-driven stamping bench along with hemispherical punch was utilized for better forming behavior analysis such as in-plane shear angle and its recovery, material drawing-in and its recovery, deformational depth recovery, and required stamping forces. Based on the investigation of various formability behaviors, the formability of (3D) warp interlock fabrics were greatly influenced by the binding and stuffer warp yarns interchange ratio inside the 3D warp interlock structure. For example, preform 3D-8W-0S exhibited a maximum deformational height recovery percentage of 5.1%, whereas 3D-4W-8S recorded only 0.72%. Preform 3D-8W-4S and 3D-8W-8S revealed 1.45% and 4.35% recovery percentages toward the deformational height at maximum position. Besides, sample 3D-4S-8W revealed the maximum drawing-in recovery percentage of 43.13% and 46.98% in the machine and cross direction, respectively, around the preform peripheral edges. On the contrary, samples with higher binding warp yarns as 3D-8W-0S show the maximum drawing-in recovery percentages values of 31.21% and 34.99% in the machine and cross directions respectively.
机译:技术应用中使用的材料,包括复合增强和弹道织物,不仅应显示出良好的机械性能,也显示出更好的变形行为。同时,三维(3D)经纱互锁织物已广泛用于这种应用中,以替代二维(2D)织物,因为它们提高了厚度的性能和优异的成形性。这种3D经纱互锁织物的变形行为也受到各种内部和外部参数的影响。要了解和填补这一差距,目前的论文研究了WARP纱线互换比在织物结构内的影响干燥3D扭曲互锁P-芳纶织物的成形性行为。采用不同绑定和填充纱纱交换比率进行的四种3D扭曲互锁建筑类型是设计和制造的。适用的液压驱动冲压台以及半球形冲头用于更好的成形行为分析,例如面内剪切角及其恢复,材料绘制以及其恢复,变形深度恢复以及所需的冲压力。基于各种可成型性行为的研究,(3D)翘曲互锁织物的可成形性受到3D经线互锁结构内的绑定和填充器经线纱线交换比的大大影响。例如,预制件3D-8W-0S显示出最大的变形高度恢复百分比为5.1%,而3D-4W-8S仅记录0.72%。预制件3D-8W-4S和3D-8W-8S在最大位置显示出朝向变形高度的1.45%和4.35%。此外,样品3D-4S-8W分别在预成型外围边缘周围透露了机器和横向的最大拉伸率为43.13%和46.98%。相反,具有较高绑定的经线纱线的样品作为3D-8W-0S,分别显示出最大拉伸率百分比,分别在机器和交叉方向上的31.21%和34.99%。

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