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Novel Bicomponent Functional Fibers with Sheath/Core Configuration Containing Intumescent Flame-Retardants for Textile Applications

机译:具有护套/纤芯构型的新型双组分功能性纤维含膨胀型阻燃剂用于纺织应用

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摘要

The objective of this study is to examine the effect of intumescent flame-retardants (IFR’s) on the spinnability of sheath/core bicomponent melt-spun fibers, produced from Polylactic acid (PLA) single polymer composites, as IFR’s have not been tested in bicomponent fibers so far. Highly crystalline PLA-containing IFR’s was used in the core component, while an amorphous PLA was tested in the sheath component of melt-spun bicomponent fibers. Ammonium polyphosphate and lignin powder were used as acid, and carbon source, respectively, together with PES as a plasticizing agent in the core component of bicomponent fibers. Multifilament fibers, with sheath/core configurations, were produced on a pilot-scale melt spinning machine, and the changes in fibers mechanical properties and crystallinity were recorded in response to varying process parameters. The crystallinity of the bicomponent fibers was studied by differential scanning calorimetry and thermal stabilities were analyzed by thermogravimetric analysis. Thermally bonded, non-woven fabric samples, from as prepared bicomponent fibers, were produced and their fire properties, such as limiting oxygen index and cone calorimetry values were measured. However, the ignitability of fabric samples was tested by a single-flame source test. Cone calorimetry showed a 46% decline in the heat release rate of nonwovens, produced from FR PLA bicomponent fibers, compared to pure PLA nonwovens. This indicated the development of an intumescent char by leaving a residual mass of 34% relative to the initial mass of the sample. It was found that the IFRs can be melt spun into bicomponent fibers by sheath/core configuration, and the enhanced functionality in the fibers can be achieved with suitable mechanical properties.
机译:这项研究的目的是研究膨胀型阻燃剂(IFR's)对由聚乳酸(PLA)单聚合物复合材料制成的皮/芯双组分熔纺纤维可纺性的影响,因为尚未在双组分中测试IFR纤维到目前为止。纤芯成分使用了高度结晶的含PLA的IFR,而熔融纺丝双成分纤维的皮成分中使用了无定形PLA。在双组分纤维的核心组分中,聚磷酸铵和木质素粉分别用作酸和碳源,以及PES作为增塑剂。在中试熔融纺丝机上生产了具有皮/芯结构的复丝纤维,并记录了纤维机械性能和结晶度随工艺参数变化而变化的情况。通过差示扫描量热法研究双组分纤维的结晶度,并通过热重分析法分析热稳定性。从制备的双组分纤维中制备热粘合的非织造织物样品,并测量其燃烧性能,例如极限氧指数和锥形量热值。但是,织物样品的可燃性通过单火焰源测试进行了测试。锥形量热法显示,与纯PLA非织造布相比,由FR PLA双组分纤维生产的非织造布的放热率下降了46%。这表明通过相对于样品的初始质量留下34%的残留质量而形成了膨胀型炭。已经发现,IFR可以通过皮/芯构型熔融纺丝成双组分纤维,并且可以通过合适的机械性能来实现纤维中增强的功能性。

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