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首页> 外文期刊>European Polymer Journal >Thermoplastic polyurethane films reinforced with carbon nanotubes: The effect of processing on the structure and mechanical properties
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Thermoplastic polyurethane films reinforced with carbon nanotubes: The effect of processing on the structure and mechanical properties

机译:碳纳米管增强的热塑性聚氨酯薄膜:加工对结构和机械性能的影响

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摘要

The influence of the main film production technologies, i.e. chill-roll extrusion and film blowing on the structural characteristics and mechanical performances of films based on a commercial thermoplastic polyurethane resin reinforced with carbon nanotubes has been studied. Structural investigations by means of X-ray diffraction and FTIR spectroscopic analysis have shown how the different processing conditions determine the mutual arrangement of soft and hard domains characteristic of the polyurethane matrix as well as the orientation and the final distribution of the included nanotubes as confirmed by electron microscopy observations. The higher the carbon nanotubes content, the higher the content and the size of segregated hard domains. Furthermore the film blowing process, characterized by relatively longer cooling times with respect to the extrusion process, allows a better self-assembly of hard domains maximizing the interdomain distance and, apparently, ensuring a worse distribution of the filler. By focusing on samples with 0.5 wt.% of carbon nanotubes, an increase of the tensile modulus with respect to neat TPU ones, approximately equal to 90% and 30% has been shown for flat and blown films, respectively. Morphological and structural considerations have provided a reasonable explanation of the mechanical behavior exhibited by the investigated films.
机译:研究了主要的薄膜生产技术,即冷辊挤压和吹膜对基于碳纳米管增强的商用热塑性聚氨酯树脂的薄膜的结构特性和机械性能的影响。通过X射线衍射和FTIR光谱分析进行的结构研究表明,不同的加工条件如何确定聚氨酯基体特性的软硬区域的相互排列,以及所包含的纳米管的取向和最终分布,这一点已得到证实。电子显微镜观察。碳纳米管的含量越高,分离的硬域的含量和尺寸就越高。此外,吹膜过程的特征在于相对于挤出过程而言相对较长的冷却时间,该膜吹过程允许硬域的更好的自组装,从而最大化域间距离,并且显然确保填料的较差分布。通过关注具有0.5wt。%的碳纳米管的样品,相对于纯的TPU,拉伸模量的增加分别显示为平坦的和吹塑的膜大约等于90%和30%。形态和结构方面的考虑已经为所研究的薄膜所表现出的机械行为提供了合理的解释。

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