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Effect of temperature on fracture properties of an amorphous poly(ethylene terephthalate) (PET) film

机译:温度对无定形聚对苯二甲酸乙二醇酯(PET)薄膜断裂性能的影响

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摘要

Fracture behaviour of an amorphous polyethylene terephthalate (PET) film with a glass transition temperature (T g ) of 72°C and a thickness of 0.21 mm was studied between 23 and 70°C using Double Edge Notched Tension (DENT) specimens. Within this temperature range, DENT specimens fractured by ductile tearing of the ligament region after ligament region had been fully yielded. The load-displacement curves obtained for different ligament lengths were geometrically similar to one another. On the basis of these, Essential Work of Fracture (EWF) methodology was used to determine fracture toughness of the PET film as a function of temperature. A linear relationship was obtained between the total specific work of fracture, w f , and ligament length, L, at temperatures under consideration. Results showed that specific essential work of fracture, w e , is independent of temperature but the specific non-essential work of fracture (β w p ) increases with increasing temperature and drops in value near the glass-transition temperature. A linear relationship was also found for yielding (w y ) and necking/tearing (w nt ) components of w f as a function of ligament length. The specific essential work components were found to be temperature dependent and whilst component w ey decreased component w ent increased with increasing temperature. The contribution of w ent to w e was substantially greater than that of w ey at all temperatures.
机译:使用双切口缺口张力(DENT)研究了玻璃化转变温度(T g )为72°C,厚度为0.21 mm的无定形聚对苯二甲酸乙二醇酯(PET)薄膜在23至70°C之间的断裂行为。标本。在此温度范围内,韧带区域完全屈服后,韧带区域的韧性撕裂会破坏DENT标本。对于不同的韧带长度获得的载荷-位移曲线在几何上彼此相似。在此基础上,使用断裂的基本功(EWF)方法确定PET膜的断裂韧性与温度的关系。在所考虑的温度下,断裂的总比功w f 与韧带长度L之间获得线性关系。结果表明,特定的基本断裂功我们与温度无关,但是特定的非基本断裂功(βwp )随着温度的升高而增加,并且在玻璃化转变温度附近其值降低。还发现w f 的屈服(w y )和颈缩/撕裂(w nt )分量与韧带长度呈线性关系。发现特定的基本功成分与温度有关,而随着温度的升高,成分减少,成分减少。在所有温度下,w 对w 的贡献都明显大于w ey

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  • 来源
    《Journal of Materials Science 》 |2002年第17期| 3675-3683| 共9页
  • 作者

    A. Arkhireyeva; S. Hashemi;

  • 作者单位

    School of Polymer Technology University of North London;

    School of Polymer Technology University of North London;

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  • 正文语种 eng
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