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Multi-performance optimization of abrasive water jet machining of carbon epoxy composite material

机译:碳环氧复合材料磨料水射流加工的多功能优化

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Carbon epoxy composite material is widely used in naval, aerospace, transportation, structural applications. Traditional machining of carbon epoxy composite is difficult due to improper surface features and kerf geometry, delamination, high tool wear, etc. In the present paper, research work involved in multi-performance optimization of abrasive water jet machining (AWJM) of carbon epoxy composite is described. Taguchi approach and analysis of variance are used to experimentally investigate the influence of process parameters on surface roughness and kerf taper. Four AWJM process parameters namely hydraulic pressure, traverse rate, stand-off distance and abrasive mass flow rate are considered for this study. It is found that two parameters, hydraulic pressure and traverse rate are most significant to control surface roughness and kerf taper. Analysis of scanning electron microscope images of machined surface of work-piece has been carried out to evaluate its microscopic features. The process is optimized for minimum surface roughness and kerf taper using Taguchi based grey relation analysis approach. Confirmation tests are carried out to verify improvement in the response characteristics using optimum set of AWJM process parameters.
机译:碳环氧复合材料广泛用于海军,航空,运输,结构应用。由于表面特征和切缝几何形状不正确,分层,工具磨损高等原因,传统的碳环氧复合材料加工非常困难。在本论文中,涉及碳环氧复合材料的磨料水射流加工(AWJM)多功能优化的研究工作描述。 Taguchi方法和方差分析用于实验研究工艺参数对表面粗糙度和切缝锥度的影响。这项研究考虑了四个AWJM工艺参数,即液压,横移速率,支座距离和磨料质量流速。已经发现,液压和横向速率这两个参数对于控制表面粗糙度和切缝锥度最为重要。对工件的加工表面进行了扫描电子显微镜图像分析,以评估其微观特征。使用基于Taguchi的灰色关联分析方法,该工艺针对最小的表面粗糙度和切缝锥度进行了优化。使用最佳的AWJM工艺参数集进行确认测试,以验证响应特性的改善。

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