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Tunable Tensile Properties of Polypropylene and Polyethylene Terephthalate Fibrillar Blends through Micro-/Nanolayered Extrusion Technology

机译:聚丙烯和聚对苯二甲酸乙二醇酯纤维素通过微/纳米挤出技术进行可调谐拉伸性能

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摘要

Fiber-reinforcement is a well-established technique to enhance the tensile properties of polymer composites, which is achieved via changing the reinforcing material concentration and orientation. However, the conventional method can be costly and may lead to poor compatibility issues. To overcome these challenges, we demonstrate the use of micro-anolayer (MNL) extrusion technology to tune the mechanical properties of polypropylene (PP)/polyethylene terephthalate (PET) fibrillar blends. PET nanofibers-in-PP microfiber composites, with 3, 7, and 15 wt.% PET, are first prepared using a spunbond system to induce high aspect-ratio PET nanofibers. The PP/PET fibers are then reprocessed in an MNL extrusion system and subjected to shear and extensional flow fields in the channels of the uniquely designed layer multipliers. Increasing the mass flow rate and number of multipliers is shown to orient the PET nanofibers along the machine direction (MD), as confirmed via scanning electron microscopy. Tensile tests reveal that up to a 45% and 46% enhancement in elastic modulus and yield strength are achieved owing to the highly aligned PET nanofibers along the MD under strongest processing conditions. Overall, the range of tensile properties obtained using MNL extrusion implies that the properties of fiber-reinforced composites can be further tuned by employing this processing technique.
机译:纤维增强是一种良好的技术,以增强聚合物复合材料的拉伸性能,这通过改变增强材料浓度和取向来实现。然而,传统方法可能是昂贵的并且可能导致兼容性不良。为了克服这些挑战,我们证明了使用微/纳米(MNL)挤出技术来调整聚丙烯(PP)/聚对苯二甲酸乙二醇酯(PET)原纤维混合物的机械性能。 PET纳米纤维 - PP微纤维复合材料,具有3,7和15重量%的PET,首先使用纺粘系统制备以诱导高纵横比PET纳米纤维。然后,PP / PET纤维在MNL挤出系统中进行再处理,并在唯一设计的层乘体的通道中进行剪切和延伸流场。随着通过扫描电子显微镜确认的,示出了增加质量流量和乘法数量的乘法器的数量,以沿机器方向(MD)定向宠物纳米纤维。拉伸试验显示,由于在最强的加工条件下,由于沿MD的高度对准的PET纳米纤维,实现了高达45%和46%的增强。总的来说,使用MNL挤出获得的拉伸性质的范围意味着通过采用该处理技术可以进一步调整纤维增强复合材料的性质。

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