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Comparison of ground and laser machined polycrystalline diamond (PCD) tools in cutting carbon fiber reinforced plastics (CFRP) for aircraft structures

机译:用于切割碳纤维增强塑料(CFRP)的地面和激光加工多晶金刚石(PCD)工具对飞机结构的比较

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The extended use of carbon reinforced plastics (CFRP), especially in aircraft industries, requires efficient machining solutions due to superior mechanical properties with a lower weight compared to metals. This material is highly abrasive, requiring very hard cutting materials and additionally only a sharp cutting edge provides a sufficient surface quality on the workpiece. Ultrashort laser pulses and the focusability of high brilliance laser systems enable diamond processing without relevant graphitization or other material deteriorating effects for polycrystalline diamond (PCD). This study focuses on a comparison of conventional and laser machined PCD cutting tool inserts and a characterization of their machining characteristics. Conventional processing of the PCD tools is done using grinding processes on five axis machining centers. Laser manufacturing is done using a five axis CNC machine with additional three axes for beam delivery. Comparable values in terms of surface roughness on flank and rake face as well as edge curvature radii are achieved. The comparison of machining characteristics is done machining CFRP in a continuous turning process with a single fiber orientation at cutting velocities of 200 m/min. Machining forces and the cutting edge radii are measured to evaluate tool wear. The resulting work piece quality is analyzed by measuring surface roughness and integrity using tactile surface roughness measurement (Taylor Hobson PGI 1240) and scanning electron microscopy (SEM).
机译:碳增强塑料(CFRP)的扩展使用,特别是在飞机行业中,需要高效的加工解决方案,由于与金属相比重量较低的机械性能较低。该材料具有高度磨料,需要非常硬的切割材料,另外只有尖锐的切削刃在工件上提供足够的表面质量。超短荧光脉冲和高度亮度激光系统的聚焦性使得无关的金刚石加工而没有相关的石墨化或其他物质对多晶金刚石(PCD)的效果。本研究专注于传统和激光加工PCD切削刀具插入件的比较和其加工特性的表征。使用五轴加工中心的研磨工艺进行PCD工具的常规处理。使用五轴CNC机器进行激光制造,其中具有额外的三轴用于光束输送。实现了侧面和耙面上的表面粗糙度和边缘曲率半径的相当值。加工特性的比较是在连续转动过程中加工CFRP,在切割速度为200米/分钟的切速下进行单纤维取向。测量加工力和切削刃半径以评估工具磨损。通过使用触觉表面粗糙度测量(Taylor Hobson PGI 1240)和扫描电子显微镜(SEM)测量表面粗糙度和完整性来分析所得到的工件质量。

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