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Fatigue Behavior of Aramid Nonwoven Fabrics Under Hot-Press Condition Part Ⅲ: Effect of Fabric Structure on Compressive Behaviors

机译:芳纶无纺布在热压条件下的疲劳行为第三部分:织物结构对压缩性能的影响

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摘要

To develop heat-resistant nonwoven fabrics, nonwovens were subjected to repeated hot-press fatigue, and the mechanical properties of and configurational changes in the fabrics were examined. The mechanical properties of nonwovens depend on raw materials, fiber fineness, fiber length, needle punching density (numbers), fiber arrangement, and structural differences resulting from differences in manufacturing. This paper reports on geometric structural influences on the mechanical properties of non-woven fabrics after hot-press fatigue. We prepared two kinds of nonwovens using either the paper-making method or a needle punching machine, and one kind of woven fabric made on a four-ply weaving machine, and we investigated the influences of the fabrics' geometric structures on their compressive behavior. We expected that four-ply woven fabric would show better compressive behavior than the other non-woven fabrics because it contains a lot of air. Our investigation showed, however, that the four-ply woven fabric behavior was very similar to that of the paper-like nonwoven fabric, while the needle-punched nonwoven behaved very differently from the others. In particular, we found that the needle-punched nonwoven fabric had good fatigue resistance and recovery properties, as shown by its small increase in compressive modulus and small change in compressive strain with fatigue cycles.
机译:为了开发耐热性非织造织物,使非织造织物经受反复的热压疲劳,并检查织物的机械性能和构型变化。非织造布的机械性能取决于原材料,纤维细度,纤维长度,针刺密度(数量),纤维排列以及制造差异导致的结构差异。本文报道了热压疲劳后几何结构对无纺布机械性能的影响。我们使用造纸方法或针刺机制备了两种非织造布,并在四层织机上制备了一种织造布,并研究了织物的几何结构对其压缩行为的影响。我们预期四层机织织物将显示出比其他非机织织物更好的压缩性能,因为它包含大量空气。但是,我们的研究表明,四层机织织物的行为与纸状无纺布非常相似,而针刺无纺布的行为却与其他无纺布非常不同。特别地,我们发现,针刺无纺布具有良好的抗疲劳性和恢复特性,这是由于其压缩模量的增加很小并且随疲劳循环的压缩应变的变化很小。

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