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Effect of Tool Wear on Quality of Carbon Fiber Reinforced Polymer Laminate during Edge Trimming

机译:刀具磨损对边缘边缘碳纤维增强聚合物层压板质量的影响

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Polymer matrix composites, particularly carbon fiber reinforced polymers (CFRPs) are widely used in various high technology industries, including aerospace, automotive and wind energy. Normally, when CFRPs are cured to near net shape, finishing operations such as trimming, milling or drilling are used to remove excess materials. The quality of these finishing operations is highly crucial at the level of final assembly. The present research aims to study the effect of cutting tool wear on the resulting quality for the trimming process of high performance CFRP laminates, in the aerospace field. In terms of quality parameters, the study focuses on surface roughness and material integrity (uncut fibers, fiber pull-out, delamination or thermal damage of the matrix), which could jeopardize the mechanical performance of the components. In this study, a 3/8 inch diameter CVD diamond coated carbide tool with six straight flutes was used to trim 24-ply carbon fiber laminates. Cutting speeds ranging from 200 m/min to 400 m/min and feed rates ranging from 1524 mm/min to 4064 mm/min were used in the experiments. The results obtained using a scanning electron microscope (SEM) showed increasing defect rates with increased tool wear. The worst surface integrity, including matrix cracking, fiber pull-out and empty holes, was also observed for plies oriented at -45 degrees. For the surface finish, it was observed that for the studied cutting length ranges, an increase in tool wear resulted in a decrease in surface roughness. Regarding tool wear, a lower rate was observed at lower feed rates and higher cutting speeds, while a higher tool wear rate was observed at intermediate values of our feed rate and cutting speed ranges.
机译:聚合物基复合材料,特别是碳纤维增强聚合物(是CFRP)在各种高技术行业,包括航空航天,汽车和风能被广泛使用。通常,当是CFRP被固化成近净成形,精加工,如修剪,铣削或钻孔操作用于去除多余的材料。这些精加工工序的质量在总装的水平非常关键。本研究的目的是研究切削对高性能碳纤维复合材料层压板的修整过程中产生的质量刀具的磨损,在航空航天领域的作用。在质量参数而言,研究的重点是表面粗糙度和材料完整性(未切割的纤维,纤维拔出,分层或基质的热损伤),这可能会危及部件的机械性能。在这项研究中,具有六个直槽3/8英寸直径的CVD金刚石涂层硬质合金工具用于修整24帘布层的碳纤维层压板。切削速度为200米/分钟至400米/分和进给率范围从1524毫米/分钟4064毫米/分钟在实验中使用。使用扫描电子显微镜(SEM)获得的结果显示增加与增加的刀具磨损的缺陷率。最坏的表面完整性,包括基体开裂,纤维拉出和空孔,用于在-45度定向层片,也观察到。对于表面光洁度,它被观察到,对于所研究的切削长度范围,增加了在工具磨损导致表面粗糙度的降低。关于刀具磨损,在较低的进料速度和更高的切削速度,观察到较低的速率,而在我们的进料速率和切割速度范围的中间值,观察到较高的工具的磨损率。

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