Machining of composite materials

L. Nele, A. Caggiano, Ilaria Improta
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Abstract

Abstract In this chapter, an overview of the main issues concerning drilling of polymer matrix fibrous composite materials is presented. These materials are widely used for parts manufacturing in the aerospace industry due to their high specific mechanical properties and low weight, and require extensive drilling processes, for e.g. joining. A proper optimization of the drilling process can substantially improve parts quality, often affected by diverse faults generated during the process. As several parameters are involved in FRP composites drilling, and complex phenomena occur, which are completely different from metal cutting, such optimization is a challenging task. To examine the relevant issues, the influence of tool geometry and technological parameters on thrust force, torque and tool wear are discussed, as well as their role in delamination. These aspects are illustrated with particular reference to drilling of carbon fiber reinforced polymer (CFRP) composites, which are widely employed in the aerospace industry.
复合材料加工
摘要本章综述了聚合物基纤维复合材料钻井的主要问题。这些材料由于其高比机械性能和低重量而广泛用于航空航天工业的零件制造,并且需要大量的钻孔工艺,例如连接。适当优化钻孔工艺可以大大提高零件质量,而零件质量往往会受到加工过程中产生的各种故障的影响。由于FRP复合材料打孔涉及多个参数,且现象复杂,与金属切削完全不同,因此这种优化是一项具有挑战性的任务。为了研究相关问题,讨论了刀具几何形状和工艺参数对推力、扭矩和刀具磨损的影响及其在分层中的作用。这些方面特别提到了在航空航天工业中广泛应用的碳纤维增强聚合物(CFRP)复合材料的钻孔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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