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Experimental investigation of delamination and surface roughness in the drilling of GFRP composite material with different drills

机译:不同钻头钻进GFRP复合材料时分层和表面粗糙度的实验研究

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This paper describes the experimental investigation in the drilling of glass fiber reinforced polymer (GFRP) composites with three dissimilar tools, having different materials and geometries (i.e. helical flute (HSS) drill, Carbide tipped straight shank (K20) drill, and Solid carbide eight-facet drill). Tool geometry and materials are considered to be major factor, which is responsible for drilling-induced damage. Cutting parameters also influence drilling-induced damage. These damages were measured by two delamination factors. Image processed technique was utilized to determine the damaged area and maximum damaged zone diameter. The results showed that qualities of drill holes significantly improved when solid carbide eight-facet drill was used.
机译:本文介绍了使用三种不同材料和几何形状的不同工具(即螺旋槽(HSS)钻,硬质合金直柄(K20)钻和硬质合金8)在玻璃纤维增​​强聚合物(GFRP)复合材料上钻孔的实验研究。 -facet钻)。刀具的几何形状和材料被认为是主要因素,这是造成钻孔引起的损坏的原因。切削参数也会影响钻孔引起的损坏。这些损害是通过两个分层因素来衡量的。利用图像处理技术确定受损区域和最大受损区域直径。结果表明,使用整体硬质合金八面钻头时,钻孔质量显着提高。

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