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Analysis of hole quality in drilling GLARE fiber metal laminates

机译:GLARE纤维金属层压板钻孔质量分析

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Glass laminate aluminium reinforced epoxy (GLARE) is an advanced aircraft material because of its excellent fatigue crack resistance, high impact strength, high strength-to-weight ratio and high stiffness-to-weight ratio. While drilling on composite/metal stacks has been investigated, the drilling of GLARE, which consists of several alternate thin layers of aluminium and composites, has not been addressed separately in the open literature. The focus of present experimental work is to understand the cutting mechanism and relative effect of cutting parameters and tool geometry on the delamination and burr formation during drilling of GLARE. Thrust force, torque and acoustic emission (AE) signals were acquired for analyzing the cutting mechanism, burr and delamination formation. Also, several measurements of burrs, delamination and hole size were taken in order to understand the hole quality. It has been observed that, 2-fluted drill is the best out of four different geometries used, giving zero delamination and acceptable burr formation followed by the 4-faceted drills. The conventional 3-fluted and 8-faceted drills that are otherwise superior for drilling of fiber reinforced plastics (FRP) composites, performed poorly in drilling of the GLARE laminates. Analyzing the processing parameters, feed again has a dominant role in controlling delamination and burr formation than speed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:玻璃层压铝增强环氧树脂(GLARE)是一种先进的飞机材料,因为它具有出色的抗疲劳裂纹性,高冲击强度,高强度重量比和高刚性重量比。虽然已经研究了在复合材料/金属叠层上钻孔的方法,但在公开文献中并未单独涉及由铝和复合材料的多个交替薄层组成的GLARE的钻孔。当前实验工作的重点是了解在GLARE钻孔过程中切削机理以及切削参数和刀具几何形状对分层和毛刺形成的相对影响。获取推力,扭矩和声发射(AE)信号以分析切削机理,毛刺和分层形成。此外,为了了解孔的质量,还对毛刺,分层和孔尺寸进行了多次测量。已经观察到,在使用的四种不同几何形状中,二刃钻头是最好的,其零分层和可接受的毛刺形成随后是四面钻头。常规的3槽和8面钻头在钻孔GLARE层压板时表现不佳,否则,它们在纤维增强塑料(FRP)复合材料的钻孔方面表现出色。分析加工参数,进料在控制分层和毛刺形成方面比速度再次具有主要作用。 (C)2015 Elsevier Ltd.保留所有权利。

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