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Influence of chemical nature, expansion ratio and cellular morphology on the fracture behaviour of flexible polyolefin-based foams assessed by the Essential Work of Fracture (EWF)

机译:化学性质,膨胀率和细胞形态对柔性聚烯烃泡沫塑料断裂行为的影响通过断裂基本工作(EWF)评估

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摘要

Several commercial polyolefin-based flexible foams produced by extrusion foaming were characterized in terms of their cellular morphology and fracture behaviour using the concept of the Essential Work of Fracture (EWF), focusing on the influence of foam's chemical nature, expansion ratio and cellular structure on the values of the fracture parameters. Correction procedures were proposed in order to take into account the complexity of foams in the obtained fracture parameters, particularly a correction procedure based on their expansion ratio, and a second one based on the fraction of polymer\udpresent in the foams determined from cellular structure characterization. Although doubts remain about the applicability of the EWF methodology to LDPE foams, the correction procedure based on the expansion ratio seemed to provide more accurate results than that\udbased on polymer fraction, with EWF effectively distinguishing between polyolefin foams having different chemical nature. Comparatively, foams based on a P-E copolymer presented the highest values of the essential work of fracture in the MD direction, while significant differences were only observed in the TD direction for foams having a highly oriented cellular structure. All PP-based foams showed similar non-essential work of fracture values in both MD and TD directions.
机译:使用“断裂基本功”(EWF)的概念,对通过挤出发泡生产的几种商用聚烯烃基软质泡沫的泡孔形态和断裂行为进行了表征,重点研究了泡沫的化学性质,膨胀比和孔结构对泡沫的影响。断裂参数的值。为了考虑到泡沫在获得的断裂参数中的复杂性,提出了校正程序,特别是基于它们的膨胀率的校正程序,以及第二种方法,其基于由孔结构表征确定的泡沫中存在的聚合物的百分比。尽管对EWF方法在LDPE泡沫中的适用性仍存疑问,但基于膨胀比的校正程序似乎比基于聚合物分数的校正方法提供了更准确的结果,而EWF有效地区分了具有不同化学性质的聚烯烃泡沫。相比之下,基于P-E共聚物的泡沫在MD方向的断裂功最高,而对于取向高度多孔的泡沫,仅在TD方向观察到显着差异。所有基于PP的泡沫材料在MD和TD方向上均显示出类似的非必需断裂功。

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