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An Investigation in Structural Parameters of Needle-Punched Nonwoven Fabrics on Their Thermal Insulation Property

机译:针刺非织造布结构参数的隔热性能研究

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The thermal characteristics of hollow polyester fibers were compared with sohd polyester fibers in order to study their processing behavior and performance characteristics. The eifects of different processing and structural properties including fiber diameter, bulk density of layer, and surface pressure on layers of needle-punched nonwoven fabrics with hollow fibers on thermal resistance properties were also investigated. The results show that hollow fibers have a higher thermal resistance in comparison with solid ones. This is a consequence of air trapping inside the fibers, higher bulkiness, and higher surface area of hollow fibers. Furthermore, thermal resistance of microfibers is better than those of macrofibers in both hollow and sohd fibers. The thermal resistance of nonwoven subjected to this study, have an inverted-U-shaped pattern versus the bulk density of the fabric. The results also showed that thermal resistance of needle-punched nonwoven fabrics can be affected by the range of heater temperature during the test, however considerably can be affected by fabric thickness as a main structural property of nonwoven fabrics.
机译:将中空聚酯纤维的热特性与超聚酯纤维进行了比较,以研究其加工性能和性能特征。还研究了中空纤维针刺无纺布的不同加工和结构特性(包括纤维直径,层的堆积密度和表面压力)对耐热性能的影响。结果表明,中空纤维与实心纤维相比具有更高的耐热性。这是空气滞留在纤维内部,更大的蓬松度和中空纤维的更大表面积的结果。此外,在中空纤维和超硬纤维中,微纤维的耐热性均优于大纤维。进行本研究的非织造布的耐热性相对于织物的堆积密度具有倒U形图案。结果还表明,在试验过程中,针刺无纺布的耐热性可能受加热器温度范围的影响,但是,作为非织造布的主要结构性能的织物厚度会大大地影响针刺无纺布的耐热性。

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