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Energy consumption optimization with geometric accuracy consideration for fused filament fabrication processes

机译:能耗优化熔融灯丝制造工艺的几何精度考虑

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摘要

Due to the unique capability of producing parts with complex geometries and functionally graded materials, additive manufacturing (AM) is taking the leading role in the third industrial revolution and has attracted significant attentions in multiple industrial sectors. Part quality and energy consumption are two highly interdependent outcomes, and thus it is difficult to improve one without changing the other. However, to the best of our knowledge, prior pertinent studies usually considered and optimized quality and energy consumption individually. This proposed study aims to (1) obtain a fundamental quantitative relationship between AM process design parameters and AM part quality as well as process energy consumption, and (2) develop a general framework to optimize energy consumption in AM fabrication without compromising part quality (i.e., geometric accuracy). Linear regression models are used to capture the relationship between process design parameters and the part quality and energy consumption, respectively. Then, a non-linear optimization framework is proposed to minimize the energy consumption on the part level given specific quality requirements. A case study developed based on a fused filament fabrication (FFF) process and a specific part design is used to illustrate the effectiveness of the proposed methodology. The effects of quality requirements on the optimal energy consumption solution are also explored in the case study.
机译:由于具有复杂的几何形状和功能分级材料的部件的独特能力,添加剂制造业(AM)正在进行第三次工业革命中的主导作用,并引起了多种工业部门的重要关注。部分质量和能量消耗是两个高度相互依赖的结果,因此很难改善一个而不改变另一个。然而,据我们所知,通常相关的研究通常被认为和优化的质量和能源消耗。该提出的研究旨在(1)获得AM过程设计参数和AM部分质量与工艺能量消耗之间的基本定量关系,并且(2)开发一般框架,以优化AM制造中的能量消耗而不损害部分质量(即,几何准确性)。线性回归模型用于分别捕获过程设计参数与零件质量和能量消耗之间的关系。然后,提出了一种非线性优化框架,以最小化零件级别的能量消耗给定特定的质量要求。基于熔融灯丝制造(FFF)工艺和特定部件设计开发的案例研究用于说明所提出的方法的有效性。在案例研究中还探讨了质量要求对最佳能耗解决方案的影响。

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