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通过3D打印工艺沉积在聚对苯二甲酸乙二酯机织织物上的聚乳酸长丝的应力、应变和变形

Stress, strain and deformation of poly-lactic acid filament deposited onto polyethylene terephthalate woven fabric through 3D printing process.

作者信息

Eutionnat-Diffo Prisca Aude, Chen Yan, Guan Jinping, Cayla Aurelie, Campagne Christine, Zeng Xianyi, Nierstrasz Vincent

机构信息

Textile Materials Technology, Department of Textile Technology, Faculty of Textiles, Engineering and Business, University of Borås, Borås, 50190, Sweden.

Laboratoire de Génie et Matériaux Textiles, ENSAIT/GEMTEX, Lille, 59000, France.

出版信息

Sci Rep. 2019 Oct 4;9(1):14333. doi: 10.1038/s41598-019-50832-7.

Abstract

Although direct deposition of polymeric materials onto textiles through 3D printing is a great technique used more and more to develop smart textiles, one of the main challenges is to demonstrate equal or better mechanical resistance, durability and comfort than those of the textile substrates before deposition process. This article focuses on studying the impact of the textile properties and printing platform temperature on the tensile and deformations of non-conductive and conductive poly lactic acid (PLA) filaments deposited onto polyethylene terephthalate (PET) textiles through 3D printing process and optimizing them using theoretical and statistical models. The results demonstrate that the deposition process affects the tensile properties of the printed textile in comparison with the ones of the textiles. The stress and strain at rupture of the first 3D printed PLA layer deposited onto PET textile material reveal to be a combination of those of the printed layer and the PET fabric due to the lower flexibility and diffusion of the polymeric printed track through the textile fabric leading to a weak adhesion at the polymer/textile interface. Besides, printing platform temperature and textile properties influence the tensile and deformation properties of the 3D printed PLA on PET textile significantly. Both, the washing process and the incorporation of conductive fillers into the PLA do not affect the tensile properties of the extruded polymeric materials. The elastic, total and permanent deformations of the 3D-printed PLA on PET fabrics are lower than the ones of the fabric before polymer deposition which demonstrates a better dimensional stability, higher stiffness and lower flexibility of these materials.

摘要

尽管通过3D打印将聚合材料直接沉积到纺织品上是一种越来越多地用于开发智能纺织品的出色技术,但主要挑战之一是要证明其机械抗性、耐用性和舒适性与沉积过程前的纺织基材相当或更好。本文着重研究纺织性能和打印平台温度对通过3D打印工艺沉积在聚对苯二甲酸乙二酯(PET)纺织品上的非导电和导电聚乳酸(PLA)长丝的拉伸和变形的影响,并使用理论和统计模型对其进行优化。结果表明,与纺织品相比,沉积过程会影响打印纺织品的拉伸性能。由于聚合物打印轨迹在织物中的柔韧性和扩散性较低,导致聚合物/纺织品界面处的附着力较弱,因此沉积在PET纺织材料上的第一层3D打印PLA层的断裂应力和应变是打印层和PET织物的应力和应变的组合。此外,打印平台温度和纺织性能对PET纺织品上3D打印PLA的拉伸和变形性能有显著影响。洗涤过程和将导电填料掺入PLA中均不会影响挤出的聚合材料的拉伸性能。PET织物上3D打印PLA的弹性、总变形和永久变形低于聚合物沉积前织物的变形,这表明这些材料具有更好的尺寸稳定性、更高的刚度和更低的柔韧性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae0e/6778127/00f281c67848/41598_2019_50832_Fig1_HTML.jpg

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