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Optimization of machining parameters for abrasive water jet drilling of carbon fiber-reinforced polymer composite material using Taguchi method

机译:用TAGUCHI法优化碳纤维增强聚合物复合材料磨削水喷射钻井的加工参数

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Purpose - The aim of this paper is to optimize the machining parameters to obtain the smallest average surface roughness values during drilling of the carbon fiber-reinforced polymer (CFRP) composite material with abrasive water jet (AWJ) and analyze the damage of the delamination. Design/methodology/approach - CFRP composite material had been fabricated having fiber orientations frequently used in the aerospace industry (0°/45°/90°/-45°). Three different stand-off distances (1, 2 and 3 mm), three different water pressures (1,800, 2,800 and 3,800 bar) and three different hole diameters (4, 8 and 12 mm) were selected as processing parameters. The average surface roughness values were obtained, and delamination damage was then analyzed using Taguchi optimization. Drilling experiments were performed using the Taguchi L_(27) orthogonal array via Minitab 17 software. The signaloise ratio was taken into account in the evaluation of the test results. Using the Taguchi method, the control factors giving the mean surface roughness values were determined. Analysis of variance was performed using the experimental results, and the effect levels of the control factors on the average surface roughness were found. Findings - It was found that water pressure and hole diameter had a higher effect on average surface roughness, while water pressure and standoff distance were effective on delamination. Practical implications - Owing to their excellent thermal and mechanical properties, the CFRP composite materials show greater potential for their applications in aircraft and aerospace industry. Originality/value - The novel approach is to reduce cost and spent time using Taguchi optimization as a result of AWJ drilling the material in this fiber orientation ([0°/45°/90°/-45°]_s, which is often used in the aerospace industry).
机译:目的 - 本文的目的是优化加工参数,以获得在碳纤维增强聚合物(CFRP)复合材料与磨料水射流(AWJ)的钻孔过程中获得最小的平均表面粗糙度值,并分析分层的损伤。设计/方法/方法 - CFRP复合材料已经制造,具有经常在航空航天工业(0°/ 45°/ 90°/ -45°)中的纤维取向。选择三个不同的脱扣距离(1,2和3毫米),三种不同的水压(1,800,2,800和3,800巴)和三个不同的孔直径(4,8和12 mm)作为加工参数。获得了平均表面粗糙度值,然后使用Taguchi优化分析分层损伤。使用Minitab 17软件使用Taguchi L_(27)正交阵列进行钻井实验。在评估测试结果时考虑了信号/噪声比。使用TAGUCHI方法,确定给出平均表面粗糙度值的控制因子。使用实验结果进行方差分析,发现了对平均表面粗糙度的控制因子的效果水平。结果 - 发现水压和孔径对平均表面粗糙度具有更高的影响,而水压和支座距离对分层有效。实际意义 - 由于其优异的热和机械性能,CFRP复合材料在飞机和航空航天工业中表现出更大的应用。原创性/值 - 新的方法是由于AWJ在这种纤维方向上钻出材料([0°/ 45°/ 90°/ -45°] _s),使用Taguchi优化降低成本和花费时间在航空航天行业)。

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