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Grey Relational Analysis Coupled with Principal Component Analysis for Optimization of Stereolithography Process to Enhance Part Quality

机译:灰色关系分析与优化立体刻录过程的主要成分分析相结合,以提高零件质量

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The paper investigates optimization of stereolithography process for SL5530 epoxy resin material to enhance part quality. The major characteristics indexed for performance selected to evaluate the processes are tensile strength, Flexural strength, Impact strength and Density analysis and corresponding process parameters are Layer thickness, Orientation and Hatch spacing. In this study, the process is intrinsically with multiple parameters tuning so that grey relational analysis which uses grey relational grade as performance index is specially adopted to determine the optimal combination of process parameters. Moreover, the principal component analysis is applied to evaluate the weighting values corresponding to various performance characteristics so that their relative importance can be properly and objectively desired. The results of confirmation experiments reveal that grey relational analysis coupled with principal component analysis can effectively acquire the optimal combination of process parameters. Hence, this confirm that the proposed approach in this study can be an useful tool to improve the process parameters in stereolithography process, which is very useful information for machine designers as well as RP machine users.
机译:本文研究了SL5530环氧树脂材料的立体光刻工艺的优化,提高了部件质量。选择用于评估过程的性能的主要特性是拉伸强度,弯曲强度,冲击强度和密度分析,并且相应的工艺参数是层厚度,方向和舱口间距。在这项研究中,该过程本质上具有多个参数调谐,因此特别采用了使用灰色关系等级的灰色关系分析来确定过程参数的最佳组合。此外,应用主成分分析来评估对应于各种性能特征的加权值,从而可以正确和客观地期望它们的相对重要性。确认实验结果表明,灰色关系分析与主成分分析相结合,可以有效地获取过程参数的最佳组合。因此,这证实了本研究中的提出方法可以是改进立体光刻过程中的过程参数的有用工具,这对于机器设计者以及RP机器用户来说是非常有用的信息。

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