A Comparative study of gray relational analysis and VlseKriterijumska Optimizacija I Kompromisno Resenje approaches for enhancing mechanical properties and productivity in 3D-Printed copper-filled PLA parts

Ahmed Elloumi, Abdessalem Jerbi, Rania Ben Amor, Slim Souissi
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Abstract

Fused Filament Fabrication (FDM) has emerged as a prominent and innovative manufacturing technique, facilitating the creation of intricate, lightweight components at reduced time and cost. Despite its advantages, the productivity and mechanical performance of 3D-printed parts remain challenging areas. Hence, there is a growing interest in investigating the interplay between FDM build time and mechanical properties. Structural parameters such as layer thickness (Lt), raster angle (Ia), and air gap distance (Ifd) can exhibit conflicting effects on productivity and mechanical properties. This study employs GRA and VIKOR techniques for the multi-criteria selection of 3D printing, aiming to optimize both printing time and specific flexural properties of PLA/copper composite beams constructed in the edge direction. We compare the parameters selected by both methods and evaluate their impact on the responses. The behaviors of the two models differ: GRA optimizes two responses the specific stiffness ans specific strength, while VIKOR is more effective for minimising printing time. Both models select the lower raster angle of 0° as optimuim. Lt significantly influences printing time, being the primary parameter in the VIKOR method, whereas Ifd primarily contributes to mechanical properties.
灰色关系分析与 VlseKriterijumska Optimizacija I Kompromisno Resenje 方法在提高 3D 打印铜填充聚乳酸部件的机械性能和生产率方面的比较研究
熔融金属丝制造(FDM)已成为一种突出的创新制造技术,有助于以更短的时间和更低的成本制造出复杂的轻质部件。尽管具有诸多优势,但三维打印部件的生产率和机械性能仍然是具有挑战性的领域。因此,人们对研究 FDM 构建时间与机械性能之间的相互作用越来越感兴趣。层厚(Lt)、光栅角(Ia)和气隙距离(Ifd)等结构参数会对生产率和机械性能产生相互冲突的影响。本研究采用 GRA 和 VIKOR 技术对三维打印进行多标准选择,旨在优化聚乳酸/铜复合材料梁在边缘方向的打印时间和特定弯曲性能。我们比较了两种方法选择的参数,并评估了它们对响应的影响。这两种模型的行为各不相同:GRA 优化了比刚度和比强度这两个响应,而 VIKOR 则更有效地减少了印刷时间。两种模型都选择 0° 的较低光栅角作为最佳角度。Lt 对印刷时间的影响很大,是 VIKOR 方法的主要参数,而 Ifd 则主要影响机械性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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