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Recycling Waste Polyester via Modification with aRenewable Fatty Acid for Enhanced Processability

机译:通过改性回收废聚酯。可再生脂肪酸可提高加工性能

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摘要

Polyethylene terephthalate (PET) waste often contains a large amount of thermally unstable contaminants and additives that negatively impacts processing. A reduced processing temperature is desired. In this work, we report using a renewably sourced tall oil fatty acid (TOFA) as a modifier for recycled PET. To that end, PET was compounded with TOFA at different concentrations and extruded at 240 °C. Phase transition behaviors characterized by thermal and dynamic mechanical analyses exhibit shifts in the melting and recrystallization temperatures of PET to lower temperatures and depression of glass transition temperature from 91 to 65 °C. Addition of TOFA also creates crystal-phase imperfection that slows recrystallization, an important processing parameter. Changes in the morphology of plasticized PET reduces and stabilizes the melt viscosity at 240 and 250 °C. Melt-spun, undrawn continuous filaments of diameter 36–46 μm made from these low-melting PET exhibit 29–38 MPa tensile strength, 2.7–2.8 GPa tensile modulus, and 20–36% elongation. These results suggesta potential path for reusing waste PET as high-performance polymericfibers.
机译:聚对苯二甲酸乙二醇酯(PET)废料通常包含大量热不稳定的污染物和添加剂,会对加工产生负面影响。希望降低处理温度。在这项工作中,我们报告了使用可再生来源的妥尔油脂肪酸(TOFA)作为再生PET的改性剂。为此,将PET与不同浓度的TOFA混合并在240°C下挤出。以热力学和动态力学分析为特征的相变行为表现出PET的熔融和重结晶温度向更低的温度转变,并且玻璃化转变温度从91降低到65°C。添加TOFA还会产生晶相缺陷,从而减慢重结晶的速度,而重结晶是重要的加工参数。增塑PET形态的变化降低并稳定了240和250°C的熔体粘度。用这些低熔点PET制成的直径36-46μm的熔纺未拉伸连续长丝显示出29-38 MPa的拉伸强度,2.7-2.8 GPa的拉伸模量和20-36%的伸长率。这些结果表明将废PET用作高性能聚合物的潜在途径纤维。

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