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Fatigue Behavior of Aramid Nonwoven Fabrics Under Hot-Press Conditions Part Ⅳ: Effect of Fiber Fineness on Mechanical Properties

机译:芳纶无纺布在热压条件下的疲劳行为第四部分:纤维细度对机械性能的影响

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We set out to find the most suitable design for heat-resistant nonwoven fabrics to be used as components of laminated cushion materials. The changes in mechanical properties and durability of a nonwoven fabric subjected to repeated hot-press fatiguing treatments depend on the properties of the fiber material and the structure of the non-woven. In this paper, we focus on fiber fineness, one of the material properties, and discuss its influence on the mechanical properties of nonwoven fabrics after hot-press fatiguing. We find that a nonwoven made of fine fibers has a higher tensile breaking strength and a higher tensile modulus than those made of larger diameter fibers. The nonwovens we prepared have the same fabric basis weight with different fiber diameters. Accordingly, the finer fiber nonwoven has a larger number of component fibers than those of larger diameter fibers, and the degree of fiber entanglement in the finer fiber nonwoven is higher because the number of fibers caught by the needle is greater when the fibers are finer. Tensile breaking strength is proportional to the degree of fiber entanglement, so the finer fiber nonwoven has a higher tensile breaking strength. However, this strength decreases after too many fatiguing treatment cycles, probably due to the deterioration of the fiber material (Nomex). As regards compressive behavior, the finer fiber nonwoven has a lower compressive strain and a higher modulus than those of the larger diameter fibers. These tensile and compressive properties are closely related to the nonwoven's fiber packing factor.
机译:我们着手寻找最适合用作层压垫层材料组件的耐热无纺布设计。经过反复热压疲劳处理的无纺布的机械性能和耐久性的变化取决于纤维材料的性能和无纺布的结构。在本文中,我们将重点放在纤维细度(一种材料特性)上,并讨论其对热压疲劳后对非织造织物力学性能的影响。我们发现,由细纤维制成的无纺布比由较大直径的纤维制成的无纺布具有更高的拉伸断裂强度和更高的拉伸模量。我们制备的非织造布具有相同的织物基重和不同的纤维直径。因此,细纤维非织造布的组成纤维的数量多于大直径纤维,而细纤维非织造布中的纤维缠结度较高,这是因为当纤维越细时,被针捕获的纤维的数量越多。拉伸断裂强度与纤维缠结程度成正比,因此较细的纤维非织造布具有较高的拉伸断裂强度。但是,经过太多疲劳处理循环后,强度可能下降,这可能是由于纤维材料(Nomex)变质所致。关于压缩性能,较细纤维的非织造布具有比较大直径的纤维低的压缩应变和较高的模量。这些拉伸和压缩性能与非织造布的纤维堆积因子密切相关。

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