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Analysis and impacts of chips formation on hole quality during fibre-reinforced plastic composites machining

机译:纤维增强塑料复合材料加工中切屑形成对孔洞质量的影响分析

摘要

This work presents the effect of chips formation types on the quality of drilled holes of natural and conventional hemp and carbon fibre-reinforced plastic (HFRP and CFRP) composites respectively. The results depict that variation in chips morphology depends on drilling parameters, drill geometry and composite compositions (matrix and fibre properties). HFRP samples produced continuous brown ribbon-like chips, which were short and melted at lower feed rate and cutting speed, implying that higher feed rate and cutting speed produced wider, longer and lighter chips. CFRP samples generated discontinuous black powder-like chips, with small and abrasive chips at the same applied drilling parameters. These formation and morphology affected quality of drilled holes: lower surface roughness in CFRP, but lower delamination and drill wear in HFRP samples. Evidently, an increased feed rate, cutting speed and drill diameter caused an increase in chips formation, validating the material removal rate (MRR) model results.
机译:这项工作提出了切屑形成类型分别对天然和常规大麻和碳纤维增强塑料(HFRP和CFRP)复合材料的钻孔质量的影响。结果表明,切屑形态的变化取决于钻孔参数,钻孔几何形状和复合材料成分(基体和纤维性质)。 HFRP样品产生连续的棕带状切屑,这些切屑短且在较低的进给速度和切削速度下熔化,这意味着较高的进给速度和切削速度会产生更宽,更长和更轻的切屑。 CFRP样品产生不连续的黑色粉末状切屑,在相同的应用钻削参数下具有细小且具有研磨性的切屑。这些形成和形态会影响钻孔质量:CFRP的表面粗糙度较低,但HFRP样品的分层和钻头磨损较低。显然,进给速度,切削速度和钻头直径的增加导致切屑形成的增加,从而验证了材料去除率(MRR)模型的结果。

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