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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >On the quantitative analysis of drill edge wear when machining CFRP/Ti6Al4V stacks
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On the quantitative analysis of drill edge wear when machining CFRP/Ti6Al4V stacks

机译:加工CFRP / Ti6Al4V堆栈时钻头磨损定量分析

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摘要

Mechanical drilling of composite/metal stacks is a challenging task due to the rapid tool wear leading to poor hole quality and short tool life. To control effectively the wear process of tools, a scientific understanding of phenomena behind the drill wear progression remains a subject of fundamental importance. The present work aims to quantify the mechanisms of the drill edge wear during the machining of CFRP/Ti6Al4V stacks using diamond-coated twist drills. The novelty of this study lies in identifying the phenomenon of the wear mode transition during the stacks machining. A quantitative analysis was conducted to correlate the flank wear extents at different positions of drill edges with the material removal volume at the constant cutting speed and feed rate. The wear rate of each drill edge segment was studied with respect to the material removal volume. A mechanism transition from adhesion to abrasion is identified after drilling a certain number of stack holes, being the cause of the phenomenon that the drill wear rate decreases with increasing the material removal volume. The results discussed in this paper offer several implications for the structure design and edge reinforcement of drill bits specialized for the machining of CFRP/Ti6Al4V stacks.
机译:由于快速的工具磨损导致孔质量和短工具寿命短,因此复合材料/金属堆叠的机械钻孔是一个具有挑战性的任务。为了有效地控制工具的磨损过程,对钻磨磨前后面的现象的科学了解仍然是重要的重要性。本作者旨在使用金刚石涂层扭转钻头加工CFRP / Ti6Al4V堆叠期间的钻头磨损机制。本研究的新颖性在于识别堆加工过程中磨损模式过渡的现象。进行定量分析以将在钻头边缘的不同位置与恒定切割速度和进料速率的材料去除体积相关联。关于材料去除体积研究了每个钻头段的磨损率。在钻一定数量的叠孔之后鉴定从粘附到磨损的机构转变,这是钻磨损率随着材料去除量而降低的现象的原因。本文讨论的结果为专门用于加工CFRP / Ti6Al4V堆叠的钻头的结构设计和边缘加固提供了几种影响。

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