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An Automated Open-Source Approach for Debinding Simulation in Metal Extrusion Additive Manufacturing

机译:金属挤出添加剂制造中的脱模仿真自动开源方法

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As an alternative to powder-bed based processes, metal parts can be additively manufactured by extrusion based additive manufacturing. In this process, a highly filled polymer filament is deposited and subsequently debindered and sintered. Choosing a proper orientation of the part that satisfies the requirements of the debinding and sintering processes is crucial for a successful manufacturing process. To determine the optimal orientation for debinding, first, the part must be scaled in order to compensate the sinter induced shrinkage. Then, a finite element analysis is performed to verify that the maximum stresses due to the dead load do not exceed the critical stress limits. To ease this selection process, an approach based on open source software is shown in this article to efficiently determine a part’s optimal orientation during debinding. This automates scaling, debinding simulation, and postprocessing for all six main directions. The presented automated simulation framework is examined on three application examples and provides plausible results in a technical context for all example parts, leading to more robust part designs and a reduction of experimental trial and error. Therefore, the presented framework is a useful tool in the product development process for metal extrusion additive manufacturing applications.
机译:作为粉末床的工艺的替代方案,可以通过基于挤出的添加剂制造地加容量制造金属部件。在该过程中,沉积高度填充的聚合物长丝,随后越去脱粘和烧结。选择满足脱落和烧结过程要求的部分的正确取向对于成功的制造过程至关重要。为了确定逐步的最佳方向,首先,必须进行缩放部分以补偿烧结诱导的收缩。然后,执行有限元分析以验证由于死载引起的最大应力不超过临界应力限制。为了简化此选择过程,本文中显示了一种基于开源软件的方法,以有效地确定在逐方期间的最佳方向。这为所有六个主要方向自动化缩放,逐方仿真和后处理。在三个应用示例中检查了所提出的自动模拟框架,并在所有示例部分的技术背景下提供合理的结果,导致更强大的部件设计和实验试验和误差的减少。因此,所提出的框架是金属挤出添加剂制造应用的产品开发过程中的一种有用工具。

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