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Optimization of support structures for the laser additive manufacturing of TiAl6V4 parts

机译:优化TiAl6V4零件激光增材制造的支撑结构

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For the successful production of parts with Laser Beam Melting technology support structures are essential. Their main functions are to support overhanging structures, dissipate the heat generated during the process, and minimizing geometrical distortions caused by internal stresses. Although support structures play an important role in the SLM process, they must be removed during the post-processing stage as they do not constitute part of the final geometry. An optimization of the support structures would lead to a reduction in the material consumption during the production process and a significant reduction of the time and effort required during post-processing. This paper investigates the properties of different types of support structures, in particular the strength of the connection between support structures and the part. The strength of the connections between the support structure and the part was investigated through experimentations. Finally, this paper offers a series of guidelines aimed at helping process engineers to select the right design of the support structure when preparing a print job. The determined strengths and geometrical recommendations were used for automated support simulations.
机译:为了成功生产具有激光束熔化技术的零件,支撑结构必不可少。它们的主要功能是支撑悬垂结构,消散过程中产生的热量以及最小化内部应力引起的几何变形。尽管支撑结构在SLM过程中起着重要作用,但由于它们不构成最终几何形状的一部分,因此必须在后处理阶段将其除去。支撑结构的优化将减少生产过程中的材料消耗,并显着减少后处理过程中所需的时间和精力。本文研究了不同类型的支撑结构的特性,特别是支撑结构与零件之间的连接强度。通过实验研究了支撑结构和零件之间的连接强度。最后,本文提供了一系列指南,旨在帮助过程工程师在准备打印作业时选择正确的支撑结构设计。确定的强度和几何推荐用于自动支撑仿真。

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