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Axial and Orbital Drilling of Thick Stacks for New Aircraft Assembly Process

机译:新型飞机组装工艺轴向和轨道钻井厚叠层

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This technical paper deals with design and manufacture of axial and orbital cutters for drilling large diameters holes in Carbon Fiber Reinforced Plastics (CFRP) / Titanium (TA6V) thick stack by means of an Automated Drilling Unit fixed on a drilling template. Creating tools that drill such stacked holes in a single operation is particularly difficult. The common strategies for tool designs designated to cutting composites stacked with metals as titanium include uncoated carbide, tools with a diamond coating applied by chemical vapor deposition (CVD). It is also question of what kind of drilling process should we use to achieve larger holes in minimum time. Therefore, axial drilling process with pilot, drill and ream steps find a competitor drilling process named orbital drilling which can achieve both operations in one step allowing then, burrless, free delamination, small and easy removable chips all with one tool being able to achieve different hole sizes. The present study compares the quality of drilled holes in term of both materials hole diameters, exit burr and cycle time which become a decision gate for the process choice.
机译:本文技术论文涉及轴向和轨道切割器的设计和制造,用于借助于固定在钻井模板上的自动钻孔单元钻碳纤维增强塑料(CFRP)/钛(TA6V)厚堆叠的大型直径孔。在单个操作中创建钻取这样的堆叠孔的工具是特别困难的。用钛堆叠成金属的切割复合材料的刀具设计的共同策略包括未涂覆的碳化物,通过化学气相沉积(CVD)施加金刚石涂层的工具。在最短的时间内,我们应该使用什么样的钻井过程的问题。因此,具有飞行员,钻头和拉长步骤的轴向钻孔过程找到了竞争对手钻探过程,名为轨道钻探,可以在一步中实现两个操作,然后,无毛无缝,自由分层,小巧可拆卸芯片都有一个工具能够实现不同的工具孔尺寸。本研究比较了钻孔的质量,钻孔孔的术语孔径直径,出口脉冲脉冲和循环时间,成为过程选择的决策栅极。

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