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Machining of Kevlar Aramid fiber reinforced polymer composite laminates (K-1226) using solid carbide step drill K34

机译:使用固体碳化物步进钻K34加工Kevlar芳族纤维增强聚合物复合材料层压材料(K-1226)

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The aerospace industry is using composite materials for numerous components and structures. Many of these components require machining during its fabrication. Drilling of composite materials is difficult to carry out due to damage being introduced into the component in the form of delamination, fiber pullout, and local cracks. Further, rapid wear development in the cutting tool also takes place during drilling of composite materials. Conventional machining processes such as turning, drilling or milling can be applied to composite materials, provided proper tool design and operating conditions are adopted. Kevlar Aramid Fiber Reinforced Plastics (K-1226) is widely used in the industry due to its chemical stability at high temperature and resistance to wear. Studies show that conventional cutting of this laminates are extremely difficult due to the frictional force developed via thermal expansion of substrate material. This has restricted the Kevlar component usage. In this regard, present paper describes the effective method for drilling K-1226 material of varying thickness 10mm and 12mm using solid carbide step drill K-34 to drill a hole of 9mm diameter; The drilled Laminates are examined using C-Scan Analysis.
机译:航空航天工业正在使用复合材料,用于许多组件和结构。许多这些部件需要在其制造过程中加工。由于损坏被引入分层,纤维拉出和局部裂缝,难以造成复合材料的钻孔难以进行。此外,在复合材料的钻孔期间也发生了切削刀具中的快速磨损。诸如转动,钻孔或铣削的常规加工过程可以应用于复合材料,提供了适当的工具设计和操作条件。由于其高温和耐磨性的化学稳定性,Kevlar Aramid纤维增强塑料(K-1226)广泛用于行业中。研究表明,由于通过基板材料的热膨胀产生的摩擦力,传统的切割是极其困难的。这限制了Kevlar组件的使用情况。在这方面,本文介绍了使用固体碳化物步骤钻头K-34钻10mm和12mm的钻k-1226材料的有效方法,以钻出直径为9mm的孔;使用C扫描分析检查钻孔的层压板。

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