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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Carbon fiber-reinforced polymer composite drilling via aluminum chromium nitride-coated tools: Hole quality and tool wear assessment
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Carbon fiber-reinforced polymer composite drilling via aluminum chromium nitride-coated tools: Hole quality and tool wear assessment

机译:碳纤维增强聚合物复合材料钻铝铬氮化铝涂层工具:孔质量和工具磨损评估

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摘要

Drilling into carbon fiber-reinforced polymer composites presents a stiff challenge in terms of ensuring hole quality aspects such as delamination, roughness, roundness, etc. while maintaining an adequate tool life. The hardened carbon fibers in laid up form generally give rise to chips in powdered form that contribute significantly to tool wear problem. To overcome the aforementioned issues, the use of high performance tools has been reported. This paper reports on the usage of yet another novel high performing but much economical aluminum chromium nitride-coated tools that are typically employed for metallic parts. The effect of aluminum chromium nitride tools at three spindle speeds with constant feed rate was evaluated on hole quality, tool wear, and chip formation pattern of carbon fiber-reinforced polymer composite plates. The results were compared with the performance of conventional high speed steel tools taken as baseline. It was found that the coated tools help significantly improve hole quality and provide appreciable tool life at specific machining parameters.
机译:钻入碳纤维增强的聚合物复合材料在确保孔质量方面,例如分层,粗糙度,圆度等的同时,在保持足够的工具寿命的同时,呈现了巨大的挑战。铺设形式的硬化碳纤维通常会导致粉末形式的碎片,这对工具磨损问题有显着贡献。为了克服上述问题,已经报道了使用高性能工具。本文报告了又一新颖性的使用,通常用于金属零件的又一种高性能但高度经济的氮化铝涂覆工具。碳纤维增强聚合物复合板的孔质量,工具磨损和芯片形成图案,评估了铝铬氮化物工具在具有恒定进料速率的三个主轴速度的影响。将结果与作为基线的常规高速钢工具的性能进行了比较。发现涂层工具有助于显着提高空穴质量,并在特定的加工参数下提供可观的刀具寿命。

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