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Fiber type effect on tribological behavior when cutting natural fiber reinforced plastics

机译:切割天然纤维增强塑料时纤维类型对摩擦学行为的影响

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Recently, natural fiber reinforced plastic (NFRP) materials are becoming a viable alternative to synthetic fiber in many industrial applications which do not require high structural performances. However, machining of NFRP such as milling process is almost unavoidable operation to facilitate the parts assembly in addition to the finishing of final products. The present study thus focused on the influence of natural fiber types on tribological behavior during profile milling process. Three types of short natural fibers (bamboo, sisal and miscanthus) reinforced polypropylene (PP) composites are investigated. The quality of NFRP machined surface is quantified using a multiscale analysis based on wavelets decomposition. The natural fiber effects related to the machined surface quality is hence identified at all scales from roughness to waviness. The bamboo fibers reinforced plastics which exhibit high contact stiffness show the smoother surface finish after machining. Therefore, the multiscale surface roughness is used as descriptor of natural fiber influence on the machining mechanisms and to establish the cutting signature of NFRP materials. (C) 2015 Elsevier B.V. All rights reserved.
机译:最近,在许多不需要高结构性能的工业应用中,天然纤维增强塑料(NFRP)材料正成为合成纤维的可行替代品。然而,除了最终产品的精加工外,诸如铣削工艺之类的NFRP机械加工几乎是不可避免的操作,以促进零件组装。因此,本研究着眼于天然纤维类型对型材铣削过程中摩擦学行为的影响。研究了三种类型的短天然纤维(竹纤维,剑麻和猕猴桃)增强的聚丙烯(PP)复合材料。使用基于小波分解的多尺度分析来量化NFRP加工表面的质量。因此,从粗糙到波纹的所有尺度上都可以识别出与加工表面质量相关的天然纤维效应。具有高接触刚度的竹纤维增强塑料在加工后显示出较光滑的表面光洁度。因此,多尺度表面粗糙度可作为天然纤维对加工机理影响的描述,并建立NFRP材料的切削特征。 (C)2015 Elsevier B.V.保留所有权利。

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