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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >A study of an improved cutting mechanism of composite materials using novel design of diamond micro-core drills
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A study of an improved cutting mechanism of composite materials using novel design of diamond micro-core drills

机译:用金刚石微芯钻的新颖设计改进复合材料切削机理的研究

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摘要

Core drilling at small diameters in carbon composite materials is largely carried out using diamond electroplated tools consisting of hollow shafts and simplistic geometries that are likely to work in an abrasional/rubbing mode for material removal. The paper reports a step change in the performance of small diameter core drilling by facilitating a shearing mechanism of the composite workpiece through the utilisation of a novel tool design. This has been achieved by laser producing core drills from solid polycrystalline diamond, incorporating controlled cutting edges where the geometries are defined. To evaluate the efficiency of the shearing vs. abrasion/rubbing cutting mechanisms, a critical comparison between the novel (defined cutting edges) and the conventional electroplated tools (randomly distributed micro-grains) has been made with reference to thrust forces, tool wear mechanisms and their influences on the hole quality (e.g. delamination, fibre pullout). This work has been augmented by studies using high-speed thermal imaging of the two tool types in operation. The examinations have shown that, based on the concept of defined cutting edges in solid diamond, there is the possibility to make significant improvements in core drilling performance, (ca. 26% lower thrust force, minimal tool surface clogging, lower drilling temperatures) resulting in improved cleanliness of fibre fracture and a reduced tendency of material delamination. (C) 2014 The Authors. Published by Elsevier Ltd.
机译:在碳复合材料中以小直径进行岩心钻削,主要是使用由空心轴和简单几何形状组成的金刚石电镀工具进行的,这些工具很可能以磨蚀/摩擦方式工作以去除材料。本文通过利用新颖的工具设计来促进复合工件的剪切机制,从而报告了小直径岩心钻探性能的阶跃变化。这是通过用固态多晶金刚石激光生产取芯钻实现的,并结合了定义了几何形状的受控切削刃。为了评估剪切与磨损/摩擦切割机制的效率,已参照推力,工具磨损机制对新型(定义的切削刃)和常规电镀工具(随机分布的微晶粒)进行了严格的比较。及其对孔质量的影响(例如分层,光纤拔出)。通过对运行中的两种工具类型进行高速热成像的研究,这项工作得到了加强。检查表明,基于在实心金刚石中定义的切削刃的概念,可以显着改善岩心钻削性能(大约降低26%的推力,最小的工具表面堵塞,降低的钻削温度)改善了纤维断裂的清洁度,减少了材料分层的趋势。 (C)2014作者。由Elsevier Ltd.发布

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