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Influence of Myrrh Extracts on the Properties of PLA Films and Melt-Spun Multifilament Yarns

机译:MURRRH提取物对PLA膜性能和熔融纺丝复丝纱的影响

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摘要

A possible approach for providing new properties for textiles is the insertion of natural ingredients into the textile product during the process of its manufacture. Myrrh has long been used in medicine as an antibacterial and antifungal material. Polylactide (PLA) is a thermoplastic synthetic biopolymer obtained from renewable resources—and due its biodegradability, is also widely used in medicine. In this study, films and multifilament yarns from modified biodegradable PLA granules with ethanolic and aqueous myrrh extracts were developed and characterized. Optical microscopy was used to determine the surface morphology of PLA/myrrh multifilament yarns. Tensile tests, ultraviolet-visible (UV-vis), differential scanning calorimetry (DSC) were applied to determine, consequently, mechanical, optical properties and degree of crystallinity of PLA/myrrh films and multifilament yarns. The chemical composition of PLA/myrrh multifilament yarns was estimated by Fourier-transform infrared (FTIR) spectroscopy method. The results showed that it is possible to form PLA melt-spun multifilament yarns with myrrh extract. The type of myrrh extract (ethanolic or aqueous) has a significant influence on the mechanical and optical properties of the PLA films and melt-spun yarns. The mechanical properties of PLA films and melt-spun multifilament yarns formed from PLA granules with aqueous myrrh extract decreased 19% and 21% more than PLA with ethanolic extract, respectively. Analysis of UV-vis spectra showed that, due to the yellow hue, the reflectance of PLA films and melt-spun PLA multifilament yarns modified with myrrh extracts decreased exponentially. The DSC test showed that multifilament yarns from PLA modified with aqueous extract had the highest degree of crystallization.
机译:一种提供纺织品新性质的可能方法是在其制造过程中将天然成分插入纺织品中。 Myrrh长期以来用作抗菌和抗真菌材料的药物。聚丙烯(PLA)是一种热塑性合成生物聚合物,其从可再生资源获得 - 并且由于其生物降解性,也广泛用于医学中。在该研究中,开发出并表征来自改性的生物降解PLA颗粒的薄膜和多丝纱线和含有乙醇的水溶液。光学显微镜用于确定PLA / MyRRH复丝纱的表面形态。施加拉伸试验,紫外线可见(UV-VI),差示扫描量热法(DSC)以确定,因此,PLA / MyRRH薄膜和多丝纱线的机械,光学性质和结晶度。通过傅里叶变换红外(FTIR)光谱法估算PLA / MyRRH复丝纱的化学成分。结果表明,可以使用MyRRH提取物形成PLA熔化纺丝纱线。 MyRRH萃取物(乙醇或含水)对PLA膜的机械和光学性质和熔融纱线的机械和光学性质具有显着影响。 PLA薄膜和熔融纺丝的力学性能分别与乙醇提取物水溶液中的PLA颗粒形成的熔融纺丝纱线分别与乙醇提取物分别下降19%和21%。 UV-Vis光谱分析表明,由于黄色色调,用MyRRH提取物改性PLA膜和熔融纺溶PLA复合PLA的反射率指数下降。 DSC测试表明,通过水性提取物改性PLA的复丝纱线具有最高的结晶度。

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