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Experimental study on cutting tool wear in milling carbon fiber composites with spiral staggered diamond-coated milling cutter

机译:螺旋交错金刚石涂层铣刀铣削碳纤维复合材料中切削刀具磨损的试验研究

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摘要

Thanks to its good specific strength and modulus, carbon fiber-reinforced plastic (CFRP) is widely used in such fields as aerospace and automotive. Nonetheless, it is very likely that the serious tool wear and some surface quality defects occur in machining, such as delamination, tear, burr, and so forth. Thus, this paper carried out the experimental research into the tool wear in milling carbon fiber composites with spiral staggered diamond-coated milling cutter. According to the evolution of tool wear micro-morphology, the tool wear process was obviously divided into two stages, i.e., coating particle wear and coating shedding. It was found that the former was dominated by the abrasive wear mechanism and the latter the fatigue wear mechanism. In addition, wear mechanism and cutting force variation of each stage were analyzed. In addition, the coating shedding happened obviously in advance with the increase of milling speed. In the period of coating particle wear, the tool was in good cutting performance, and its cutting force changed slowly, while after it came into coating shedding period with the aggravation of tool wear, the cutting force increased greatly and the cutting performance worsened obviously. Thus, the appropriate control over the tool wear of spiral staggered diamond-coated milling cutter is the key to improving the machining quality of carbon fiber composites.
机译:由于其良好的特定强度和模量,碳纤维增强塑料(CFRP)被广泛用于航空航天和汽车等领域。尽管如此,在加工时,很可能发生严重的工具磨损和一些表面质量缺陷,例如分层,撕裂,毛刺等。因此,本文对螺旋交错金刚石涂层铣刀进行了铣削碳纤维复合材料工具磨损的实验研究。根据工具磨损微观形态的演变,工具磨损过程明显分为两个阶段,即涂层颗粒磨损和涂层脱落。发现前者是由磨料磨损机构的主导,后者疲劳磨损机制。另外,分析了每个阶段的磨损机构和切割力变化。此外,随着铣削速度的增加,涂层脱落明显发生。在涂料颗粒磨损时期,该工具处于良好的切削性能,其切割力缓慢变化,而在涂层脱落时期随着刀具磨损的加重,切削力大大增加,切割性能明显恶化。因此,对螺旋交错金刚石涂层铣刀的刀具磨损的适当控制是提高碳纤维复合材料加工质量的关键。

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