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首页> 外文期刊>Journal of Advanced Manufacturing Technology >EXPERIMENTAL DESIGN APPROACH FOR STUDYING OVERHANGING FEATURES IN SELECTIVE LASER MELTING
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EXPERIMENTAL DESIGN APPROACH FOR STUDYING OVERHANGING FEATURES IN SELECTIVE LASER MELTING

机译:研究选择性激光熔化中悬垂特性的实验设计方法

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摘要

As additive manufacturing (AM) processes become more refined and widely used, it is essential for engineers and designers to understand the processes in order to effectively use them within manufacturing systems; however, most of the existing methods for analyzing AM processes are too complex and specialized for use in practice. This study proposes a simple technique to derive information about the behavior of unsupported overhanging features in parts made using selective laser melting (SLM) using a first-principles finite element model and factorial experiment. This method can be used to assist with design decisions without production of prototypes, resulting in improved design and reduced cost. The case study presented examined five factors (laser power, laser spot size, scan speed, feature thickness, and the use of support material) in a 2~(5) full-factorial arrangement with two stress and two deformation responses. An analysis of variance (ANOVA) was completed on the results, showing the significance of both the factors and the interactions between them. Two materials were studied (Ti-6Al-4V and 316L stainless steel). The results were compared to some similar stress and deformation results from experimental literature and were found to match well with the greatly simplified approach.
机译:随着增材制造(AM)工艺变得更加精细和广泛使用,工程师和设计师必须了解这些工艺,以便在制造系统中有效使用它们。但是,大多数现有的用于分析增材制造过程的方法过于复杂,无法在实践中使用。这项研究提出了一种简单的技术,可以使用第一原理有限元模型和阶乘实验来获得有关使用选择性激光熔化(SLM)制成的零件中不受支持的悬垂特征的行为的信息。此方法可用于协助设计决策,而无需生产原型,从而改善了设计并降低了成本。案例研究提出了在2〜(5)个全因数布置中具有两个应力和两个变形响应的五个因素(激光功率,激光光斑大小,扫描速度,特征厚度和支撑材料的使用)。结果的方差分析(ANOVA)已完成,显示了因素的重要性以及它们之间的相互作用。研究了两种材料(Ti-6Al-4V和316L不锈钢)。将结果与实验文献中类似的应力和变形结果进行了比较,发现与简化后的方法非常吻合。

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