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On the Heuristic Procedure to Determine Processing Parameters in Additive Manufacturing Based on Materials Extrusion

机译:基于材料挤出的加性制造中测定处理参数的启发式程序

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摘要

We present a heuristic procedure for determining key processing parameters (PPs) in materials-extrusion-based additive manufacturing processes. The concept relies on a design-of-experiment approach and consists of eleven “test objects” to determine the optimal combinations of key PPs values, starting with the PPs for printing the first layer and progressing to more complex geometric features, e.g., “bridges”. In each of the test objects, several combinations of the known PPs’ values are used, and only the values resulting in the best printed-part quality are selected for the following tests. The concept is intrinsically insensitive to different artefacts of the additive manufacturing machine (e.g., discrepancies between the nominal and actual nozzle diameters, and improper calibration of the feeding screws) and the optimal values of key PPs for manufacturing defect-free parts under the actual processing conditions can be determined. We validated the proposed procedure for two common commercial polymer feedstock materials, and we show that, by using the proposed procedure, it is possible to reduce the optimization time down to several hours, as well as to reduce the amount of consumed feedstock material. Tensile tests revealed a strong effect of amorphous and semi-crystalline nature of the polymer on the results of optimization. To the best of our knowledge, this is the first attempt to describe a systematic approach for optimizing PPs for materials extrusion-based additive manufacturing processes without relying on statistical data analysis or virtual simulations. The concept was implemented as a web-tool 3DOptimizer®.
机译:我们提出了一种用于确定材料挤出的添加剂制造过程中的关键处理参数(PPS)的启发式程序。该概念依赖于实验设计方法,由11个“测试对象”组成,以确定关键PPS值的最佳组合,从PPS打印第一层并进展到更复杂的几何特征,例如“桥梁“。在每个测试对象中,使用已知的PPS值的若干组合,并且仅为以下测试选择导致最佳打印部分质量的值。该概念对添加剂制造机器的不同人员(例如,标称和实际喷嘴直径之间的差异,馈电螺钉的校准不当)以及用于在实际处理下制造缺陷部分的关键PPS的最佳值可以确定条件。我们验证了两个常见的商业聚合物原料原料的提出程序,我们表明,通过使用所提出的程序,可以将优化时间降低到几个小时,以及减少消耗的原料材料的量。拉伸试验揭示了聚合物对优化结果的无定形和半晶性质的强烈效果。据我们所知,这是第一次描述用于优化基于材料挤出的添加剂制造过程的PPS的系统方法,而无需依赖统计数据分析或虚拟模拟。该概念实现为Web-Top3DOptimizer®。

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