首页> 外文会议>ASME international mechanical engineering congress and exposition >MACHINING QUALITY AND TOOL WEAR WHILE DRILLING 3D WOVEN CARBON/EPOXY COMPOSITES USING CORE DRILLS WITH DIAMOND GRAINS
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MACHINING QUALITY AND TOOL WEAR WHILE DRILLING 3D WOVEN CARBON/EPOXY COMPOSITES USING CORE DRILLS WITH DIAMOND GRAINS

机译:使用带有金刚石颗粒的空心钻头钻孔3D编织碳/环氧树脂复合材料时的加工质量和工具磨损

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Advanced carbon fiber reinforced polymers (CFRP) are extensively used in aerospace, automotive and civil applications. Optimization of drilling parameters of these materials is an issue of great economical importance. This paper presents an experimental investigation of drilling of a 3D woven carbon/epoxy with diamond coated core drills and its wear mechanisms. Based on full factorial experimental design, the machinability range was identified. The influence of the machining parameters on the thrust forces and the machining quality was also investigated. The results show that the generated damage on the wall of the hole is uniformly distributed and is not affected by the fiber orientation. Analysis of wear mechanisms has indicated that grain removal and grain smoothing were the main mechanisms of wear of core drills with electro deposited diamond grains. These mechanisms of wear were investigated using tool mass and optical images. It was found that the manufacturing quality of the core drills has an important role on its efficiency. Core drills (electro deposited diamond grains) offer excellent wear resistance compared to twist drills during drilling of CFRP.
机译:先进的碳纤维增强聚合物(CFRP)广泛用于航空航天,汽车和民用领域。这些材料的钻孔参数的优化是非常重要的经济问题。本文介绍了使用金刚石涂层的芯钻对3D编织碳/环氧树脂钻孔的实验研究及其磨损机理。基于全因子实验设计,确定了可加工性范围。还研究了加工参数对推力和加工质量的影响。结果表明,在孔壁上产生的损伤是均匀分布的,不受纤维取向的影响。对磨损机理的分析表明,晶粒去除和晶粒平滑是电沉积金刚石晶粒的取芯钻磨损的主要机理。使用工具质量和光学图像研究了这些磨损机理。发现岩心钻的制造质量对其效率具有重要作用。与CFRP钻孔过程中的麻花钻相比,岩心钻(电沉积金刚石晶粒)具有出色的耐磨性。

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