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首页> 外文期刊>Journal of Plastic Film & Sheeting >Influence of multiple extrusions of blends made of polyethylene terephthalate and an oxygen scavenger on processing and packaging-related properties
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Influence of multiple extrusions of blends made of polyethylene terephthalate and an oxygen scavenger on processing and packaging-related properties

机译:多丙烯对苯二甲酸乙二醇酯和氧气清除剂的混合挤出物的影响和包装相关性能

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We investigated the influence of multiple extrusions of poly-(ethylene terephthalate) (PET) blended with a polymer-based oxygen scavenger. PET and PET blended with an oxygen scavenger additive were extruded up to four times to polymer strands. They were chilled in a water bath and cut to granules. Between the extrusions, the granules were dried at (only) 60 degrees C to avoid the oxygen scavenger losing its reactivity. The water content was up to 0.5wt.-% and therefore up to factor 100 higher than the recommended water content for PET extrusion. For further analysis, films were extruded and bottles were stretch-blow-molded. Due to polymer degradation and the recycled PET blend viscosity being too low, this material had to be blended with virgin PET in order to be processable. We used 33wt.-% recycled PET and 66wt.-% virgin PET ratio. The impact of the thermomechanical stress by multiple extrusions was investigated by several test methods: analysis of the melt pressure in the extruder barrel during extrusion, intrinsic viscosity and melt flow rate, microscopy, differential scanning calorimetry, color value measurements (L*a*b* values), tensile testing, compression testing, and oxygen absorption measurements. The intrinsic viscosity reduced after four re-extrusions in a compounder from 0.82dl/g to 0.35dl/g for PET with scavenger and to 0.41dl/g for pure PET. This, even though low, difference can be explained by the slightly higher PET degradation due to the oxygen scavenger. We found slightly better mechanical properties (yield stress, Young's modulus) for pure PET films compared to PET blended with an oxygen scavenger. At up to three extrusions, there was little influence on these properties. The extruded material with 3wt.-% oxygen scavenger additive has an oxygen absorption capacity of 9.5mg oxygen per 1 g of granules, i.e., the scavenger additive absorbed about 300mg oxygen per 1 g of additive. Our results are relevant for in-house recycling processes of PET with oxygen scavenger.
机译:我们调查了多种挤出的聚 - (乙二醇酯)(PET)与聚合物的氧清除剂混合的影响。用氧清除剂添加剂混合的PET和PET挤出至聚合物股线。它们在水浴中冷却并切成颗粒。在挤出之间,颗粒在(仅)60℃下干燥,以避免氧气清除剂失去其反应性。水含量高达0.5wt .-%,因此高于PET挤出的推荐水含量高达100系数。为了进一步分析,挤出薄膜,瓶子被拉伸吹塑。由于聚合物降解和再生的PET混合物粘度过低,必须与原始宠物混合该材料以便是可加工的。我们使用33wt .-%再生的PET和66wt .-%的维珍宠物比。通过多种试验方法研究了多种挤压的热机械应力的影响:分析挤出机桶中熔体压力,本征粘度和熔体流速,显微镜,差示扫描量热法,颜色值测量(L * A * B. *值),拉伸测试,压缩测试和氧气吸收测量。在将0.82dl / g的复合物中的四个重新挤出至0.35dl / g的用清除剂和0.41dl / g用于纯PET的0.41dl / g后,所述内在粘度降低。即使氧气清除剂引起的较高的PET劣化也可以解释它,即使是低的,差异也可以解释。与富含氧气清除剂混合相比,我们发现纯PET薄膜的机械性能稍好(屈服应力,杨氏模量)。在最多三种挤压件上,对这些性质的影响很小。挤出材料,具有3wt .-%氧清除剂添加剂的氧吸收能力为每1g颗粒9.5mg氧,即每1g添加剂吸收约300mg氧气的清除剂。我们的结果与富含氧气清除剂的宠物的内部回收过程有关。

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