首页> 外文期刊>Journal of Materials Science >High surface area nonwovens via fibrillating spunbonded nonwovens comprising Islands-in-the-Sea bicomponent filaments: structure-process-property relationships
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High surface area nonwovens via fibrillating spunbonded nonwovens comprising Islands-in-the-Sea bicomponent filaments: structure-process-property relationships

机译:通过原纤化纺粘非织造布制成的高表面积非织造布,包括海岛型双组分长丝:结构-工艺-性能关系

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摘要

The subject matter discussed herein relates generally to fabrics composed of micro-denier fibers wherein said fibers are fractured/fibrillated by mechanical means by employing 'Islands-in-the-Sea' (I/S) technology instead of the conventional splittable fibers such as segmented pie. More particularly, the present subject matter relates to methods for manufacturing high strength, high surface area, flexible, and durable fabrics through the use of bicomponent fibers fractured mechanically by hydroentangling where the hydroentangling energy is sufficient for separating the fibrils as well as entangling (bonding) the fibers. This paper specifically deals with physical properties of spunbond fabrics consisting of I/S bicomponent fibers. This paper also deals with the bonding energy requirements for fracturing I/S filament. The results for two different polymer combinations (Polyester/Nylon and Nylon/Polyethylene) are discussed below. The influence of different process parameters and fiber characteristics on the physical properties of the fabrics is discussed. The role of the number of islands in the cross-section is also discussed. Finally, the influence of changing the 'Sea' polymer on the fabric performance is also discussed.
机译:本文所讨论的主题总体上涉及由微旦尼尔纤维组成的织物,其中所述纤维通过采用“海上海岛”(I / S)技术代替常规的可分裂纤维例如分段馅饼。更具体地,本主题涉及通过使用通过水力缠结而机械断裂的双组分纤维来制造高强度,高表面积,柔性和耐用织物的方法,其中水力缠结能量足以分离原纤维以及缠结(粘合)。 )纤维。本文专门研究由I / S双组分纤维组成的纺粘织物的物理性能。本文还讨论了压裂I / S细丝的结合能要求。下面讨论两种不同聚合物组合(聚酯/尼龙和尼龙/聚乙烯)的结果。讨论了不同工艺参数和纤维特性对织物物理性能的影响。还讨论了岛的数量在横截面中的作用。最后,还讨论了改变“ Sea”聚合物对织物性能的影响。

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