首页> 外文期刊>Multidiscipline modeling in materials and structures >Modeling of the machining parameters in turning of Al-5052/ TiC/SiC composites: a statistical modeling approach using grey relational analysis (GRA) and response surface methodology (RSM)
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Modeling of the machining parameters in turning of Al-5052/ TiC/SiC composites: a statistical modeling approach using grey relational analysis (GRA) and response surface methodology (RSM)

机译:al-5052 / Tic / SiC复合材料转动加工参数的建模:灰色关系分析(GRA)统计建模方法及响应面方法(RSM)

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Purpose - Metal matrix composites (MMC) has been a section which gives an overview of composite materials and owing to those exceptional physical and mechanical properties, particulate-reinforced aluminum MMCs have gained increasing interest in particular engineering applications. Owing to the toughness and abrasive quality of reinforcement components such as silicon carbide (SiC) and titanium carbide (TiC), such materials are categorized as difficult materials for machining. The work aims to develop the model for evaluating the machinability of the materials via the response surface technique by machining three distinct types of hybrid MMCs. Design/methodology/approach - The combined effects of three machining parameters, namely "cutting speed" (s), "feed rate" (f) and "depth of cut" (d), together with three separate composite materials, were evaluated with the help of three performance characteristics, Le. material removal rate (MRR), cutting force (CF) and surface roughness (SR). Response surface methodology and analysis of variance (ANOVA) both were initially used for analyzing the machining parameters results. Findings - The contours were developed to observe the combined process parameters along with their correlations. The process variables were concurrently configured using grey relational analysis (GRA) and the composite desirability methodology. Both the GRA and composite desirability approach obtained similar results. Practical implications - The results obtained in the present paper will be helpful for decision-makers in manufacturing industries, who work on metal cutting area especially composites, to select the suitable solution by implementing the Grey Taguchi and modeling techniques. Originality/value - The originality of this research is to identify the suitability of process parameters combination based on the obtained research results. The optimization of machining parameters in turning of hybrid metal matrix composites is carried out with two different methods such as Grey Taguchi and composite desirability approach.
机译:目的 - 金属基质复合材料(MMC)是一种部分,其概述了复合材料,并且由于那些出色的物理和机械性能,颗粒增强铝MMC在特定的工程应用中获得了越来越多的兴趣。由于碳化硅(SiC)和碳化钛(TIC)如碳化硅组分的韧性和磨蚀性,这些材料被分类为难以加工的难以。该工作旨在通过加工三种不同类型的混合MMC来开发用于通过响应表面技术进行评估材料的模型。设计/方法/方法 - 三种加工参数的组合效果,即“切割速度”,“进料速率”(F)和“切割速度”(D),以及三种单独的复合材料,进行了评估LE的三种性能特征的帮助。材料去除率(MRR),切割力(CF)和表面粗糙度(SR)。响应面方法和方差分析(ANOVA)都最初用于分析加工参数结果。调查结果 - 开发了轮廓以观察组合的过程参数以及它们的相关性。使用灰色关系分析(GRA)和复合期望方法同时配置过程变量。 GRA和复合性期望方法都获得了类似的结果。实际意义 - 本文中获得的结果将有助于制造业的决策者,他们在尤其是复合材料上工作,以通过实施灰色Taguchi和建模技术来选择合适的解决方案。原创性/值 - 本研究的原创性是根据获得的研究结果确定过程参数组合的适用性。用两种不同的方法进行混合金属基质复合材料转动时的加工参数的优化,例如灰色塔丘和复合性期望方法。

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