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A design methodology for additive manufacturing applied to fused deposition modeling process

机译:应用于融合沉积建模过程的添加剂制造的设计方法

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The aim of this article is to propose a design methodology for the production of parts in additive manufacturing (AM). The AM process allows new features (e.g., multi-material, fixed assemblies, complex shapes), and this paradigm shift requires the accompaniment of designers to take account of these characteristics. In response to this problematic, we propose a design methodology, in three stages, which respects the integrity of the digital channel and whose purpose is to provide a digital mock-up sliced ready to be manufactured on the most common AM process (Fused Deposition Modeling). From the specifications and the process knowledge, our methodology provides the designer a first solid geometry which satisfies all the constraints. Then, a topology optimization limits the useful volume of material of the part in order to limit the weight and the manufacturing time. If necessary, an optimized support providing manufacturability of the part is generated according to the same criteria. The methodology we propose is applied to a real industrial part.
机译:本文的目的是提出一种在添加剂制造业(AM)中生产零件的设计方法。 AM过程允许新的特征(例如,多材料,固定组件,复杂形状),并且该范例转变需要设计人员的伴奏来考虑这些特征。响应于这种问题,我们提出了三个阶段的设计方法,这尊重数字信道的完整性,其目的是提供一种数字模型切片,即可在最常见的AM过程上制造(融合沉积建模)。从规范和过程知识,我们的方法提供了设计者满足所有约束的第一个实体几何形状。然后,拓扑优化限制了部件的有用体积,以限制重量和制造时间。如有必要,根据相同的标准,产生优化的支持提供部分的可制造性。我们提出的方法适用于真正的工业部分。

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