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Atomic force microscopy characterization of the surface wettability of natural fibres

机译:原子力显微镜表征天然纤维的表面润湿性

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Natural fibres represent a readily available source of ecologically friendly and inexpensive reinforcement in composites with degradable thermoplastics, however chemical treatments of fibres are required to prepare feasible composites. It is desirable to characterize the surface wettability of fibres after chemical treatment as the polarity of cellulose-based fibres influences compatibility with a polymer matrix. Assessment of the surface wettability of natural fibres using conventional methods presents a challenge as the surfaces are morphologically and chemically heterogeneous, rough, and can be strongly wicking. In this work it is shown that under atmospheric conditions the adhesion force between an atomic force microscopy (AFM) tip and the fibre surface can estimate the water contact angle and surface wettability of the fibre. AFM adhesion force measurements are suitable for the more difficult surfaces of natural fibres and in addition allow for correlations between microstructural features and surface wettability characteristics.
机译:天然纤维是在具有可降解热塑性塑料的复合材料中容易获得的生态友好且廉价的增强材料,但是需要对纤维进行化学处理以制备可行的复合材料。由于纤维素基纤维的极性影响与聚合物基质的相容性,因此希望表征化学处理后纤维的表面润湿性。使用常规方法评估天然纤维的表面可湿性提出了挑战,因为表面在形态和化学上是异质的,粗糙的,并且可能具有强烈的芯吸作用。这项工作表明,在大气条件下,原子力显微镜(AFM)尖端与纤维表面之间的粘附力可以估计纤维的水接触角和表面润湿性。 AFM粘附力测量适用于天然纤维的较难表面,此外还可以实现微观结构特征与表面润湿性之间的关联。

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