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Thermo-mechanical Effects in Mechanical Polishing of Natural Fiber Composites

机译:天然纤维复合材料机械抛光的热机械效应

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Efficient machining and finishing of natural fiber reinforced plastic (NFRP) composites is essential for realizing the industrial application envisaged of these promising, environmentally friendly materials. While prior efforts allude to the multiscale nature of their material removal mechanisms, little understanding currently exists on the thermal effects of their material removal behaviors. This experimental study aims to characterize the thermal effects during the polishing of NFRP composites. For this aim, dry and wet polishing have been performed following several polishing steps on unidirectional flax fibers reinforced polypropylene composites. Results from scanning electron microscopy (SEM) and optical interferometry studies reveal a significant difference between dry and wet polishing in terms of surface artifacts induced. This difference is enhanced at higher sliding speed, indicating that the asperity removal during polishing is mostly thermally mediated. The results also indicate that the surface forming of flax fibers is related to the mechanical contact scale engendered by the grit size.
机译:天然纤维增强塑料(NFRP)复合材料的高效加工和整理对于实现这些有前途,环保材料的工业应用是必不可少的。虽然事先努力提及其材料去除机制的多尺度性质,但目前存在对其材料去除行为的热效应的较少理解。该实验研究旨在表征在NFRP复合材料抛光过程中的热效应。为此目的,在单向亚麻纤维增强聚丙烯复合材料上的几个抛光步骤后,已经进行了干燥和湿抛光。扫描电子显微镜(SEM)和光学干涉测量研究结果揭示了在诱导的表面伪影方面的干燥和湿抛光之间的显着差异。这种差异以更高的滑动速度提高,表明抛光期间的粗糙度被热介导。结果还表明,亚麻纤维的表面形成与由砂砾尺寸的机械接触刻度有关。

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