手工铺层制备不同层合复合材料及数控铣床最佳参数估算

Ghadak M. Alkhafaji, Fathi A. Alshammaa, E. A. Khalid
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摘要

本文讨论了人工叠层法制备层合复合材料的能力。采用加热法制备复合材料;用比热温度加热约12小时。本研究共制备和研究了四种类型的层压复合材料,其中以铝合金6061为常见元素,两种纤维;编织碳纤维有两种不同的取向:±45°、±60°、随机玻璃纤维和两种树脂;环氧树脂和聚酯树脂。制作不同类型的复合材料,以确定数控铣床对测量表面粗糙度和指定参数的影响。纤维重量分数比为37%,聚合物重量分数比为34%,铝重量分数比为29%。所选参数为主轴转速、进给速度和切削深度。选取L9田口正交阵列、信噪比和方差分析(ANOVA)来确定这些参数的影响;采用MINITAB 17程序进行分析。结果表明,该参数对环氧树脂试件的影响要大于对聚酯树脂试件的影响。铝-碳纤维复合材料的最佳铣削参数为3000RPM、1200mm/min、1.2mm,铝-玻璃纤维复合材料的最佳铣削参数为5000RPM、1800 mm/min、2.0mm。
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Fabricating Different Laminate Composites by Manual Layup and Estimating the Optimum Parameters for CNC Milling Machine
In this paper the ability of fabricating laminate composites by manual layup was discussed. Heating method was used to manufacture the composites; heat was applied to approximately 12 hours with specific heat temperature. There were four types of laminate composites fabricated and studied in this research, containing Aluminum alloy 6061 as the common element in all types, two types of fibers; woven Carbon fiber with two different orientations: ±45°, ±60°, random fiberglass and with two types of resin; epoxy resin and polyester resin. Different types of composites were made to determine the effect of CNC milling machine to the measured surface roughness and for specified parameters. The weight fraction ratio of the fibers is 37%, polymer is 34% and 29% for Aluminum. The parameters selected are spindle speed, feed rate and depth of cut. The L9 Taguchi orthogonal arrays, signal to noise (S/N) ratio and analysis of variance (ANOVA) are selected to determine the effect of these parameters; it was analyzed by MINITAB 17 program. The results showed that the parameter were significant more to the epoxy resin specimens than polyester resin specimens. The optimal milling parameters for good surface finish for Aluminum – Carbon fiber composite are at 3000RPM, 1200mm/min, 1.2mm, and for Aluminum – Fiberglass composite are 5000RPM, 1800 mm/min, 2.0mm.
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