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Multiresponse Optimization of Fused Deposition Modeling Process Using Utility-Based Taguchi Approach

机译:基于实用工具的TAGUCHI方法的融合沉积建模过程的多孔优化

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摘要

Rapid Prototyping (RP) technology has become the powerful tool for product development in almost every branch of engineering. Many new and upcoming processes offer means for the fast creation of models with steadily increasing accuracy, built speed, other model properties and economic advantages. Fused Deposition Modeling (FDM) is the most famous and commercially available RP system. This paper presents the application of Utility concept with Taguchi method for multiresponse optimization of the FDM process. Stratatys Fortus 400mc FDM setup is used to conduct experiments as per Taguchi’s L9 orthogonal array. FDM parameters: Layer thickness, part orientation and raster angle were optimized based on multiple responses, i.e. tensile, flexural, impact and compressive strength. The optimum process parameters are calculated using utility concept. The Analysis of variance (ANOVA) is applied to find out the most significant factor. It has been found that layer thickness is the most significant factor, followed by part orientation and raster angle. The confirmation tests with optimal levels of process parameters are conducted to illustrate the efficacy of the proposed method. It is found that optimum combination of process parameters gives the highest utility value, which indicates that multiresponses of the FDM process can be improved through this approach.
机译:快速原型(RP)技术已成为几乎每个工程分支机构的产品开发的强大工具。许多新的和即将到来的流程提供了快速创建模型的手段,以稳定提高准确性,内置速度,其他型号,以及经济优势。融合沉积建模(FDM)是最着名和市售的RP系统。本文介绍了实用概念与Taguchi方法的应用,以实现FDM过程的多态优化。 Stratatys Fortus 400MC FDM安装程序用于按照Taguchi的L9正交阵列进行实验。 FDM参数:基于多重响应优化了层厚度,部分取向和光栅角,即拉伸,弯曲,冲击和抗压强度。使用实用程序概念计算最佳过程参数。对方差分析(ANOVA)被应用于找出最重要的因素。已经发现,层厚度是最重要的因素,然后是部分取向和光栅角度。进行具有最佳过程参数水平的确认测试以说明所提出的方法的功效。发现过程参数的最佳组合提供了最高的实用价值,这表明可以通过这种方法改进FDM过程的多孔。

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