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首页> 外文期刊>Materials and Manufacturing Processes >Selection of optimal processing condition during WEDM of compocasted AA6061/cenosphere AMCs based on grey-based hybrid approach
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Selection of optimal processing condition during WEDM of compocasted AA6061/cenosphere AMCs based on grey-based hybrid approach

机译:基于灰色的混合方法的组合AA6061 / CenoSeals AMC WEDM期间的选择性

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Investigation on the machining of Aluminium Matrix Composites (AMCs) through non-conventional approach are the current attention over the conventional machining approach of those may produces additional complexity in industrial manufacturing. The current research focused on investigating the machinability characteristics of the newly prepared compocasted AA6061/cenosphere AMCs implementing a non-traditional material removal process via spark erosion called Electro Discharge Machining (Wire-EDM). The performance measure of the system for the different combinations of independent process variables were considered as cutting rate (CR), Kerf Width (KW) and Surface Roughness (SR). Experimental design were carried out based on Response Surface Methodology (RSM) employed face centered Central Composite Design (CCD) required for the analysis. A hybrid approach comprises of grey relation theory in conjunction with RSM Grey-Response Surface Methodology (GRSM) were executed for the prediction of optimal settings of machining condition which yield the optimum performance characteristics of the system. The model fit summary revealing an adequate fitness of the developed model to the actual system, as the R-square value was found to be 0.9607, close to unity and a larger ( 4.0) adequate precision value of 20.87. Noticeable improvement were attained on cutting speed (3.234%), kerf width (2.7415%) and surface roughness (7.053%) implementing the optimal setting of machining parameters based on the proposed hybrid GRSM approach. Generous improvement was also noticed on the 3D optical Wire Electro Discharge (WED) machined surface texture demonstrating the quality of surface roughness and texture using hybrid GRSM predicted processing conditions.
机译:通过非传统方法对铝基基复合材料(AMCS)加工的研究是对这些在工业制造中的常规加工方法上的目前的注意力。目前的研究重点是研究新制备的偶拷贝AA6061 / Ceny圈AMC的可加工性特性,通过火花腐蚀来实现非传统材料去除过程,称为电放电加工(线EDM)。对于独立处理变量的不同组合的系统的性能测量被认为是切割速率(Cr),kerf宽度(kw)和表面粗糙度(sr)。基于响应面方法(RSM)进行实验设计,采用分析所需的面部中心的中央复合设计(CCD)。混合方法包括结合RSM灰度响应表面方法(GRSM)的灰色关系理论被执行用于预测加工条件的最佳设置,这产生了系统的最佳性能特性。模型拟合摘要揭示了开发模型对实际系统的足够适应性,因为发现R-Square值为0.9607,接近Unity和更大的(& 4.0)足够的精度值为20.87。切割速度(3.234%),Kerf宽度(2.7415%)和表面粗糙度(7.053%)实现了显着的改善,基于所提出的混合GRSM方法实现加工参数的最佳设置。在3D光学电火花电极放电(WED)机加工表面纹理上还注意到慷慨的改进,展示了使用混合GRSM预测的加工条件的表面粗糙度和质地的质量。

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