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'Assessing new support minimizing strategies for the additive manufacturing technology SLM'

机译:“评估新的支持最小化添加剂制造技术SLM的策略”

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To successfully produce metal parts by SLM, additional support structures are needed to support overhanging surfaces in order to dissipate process heat and to minimize geometrical distortions induced by internal stresses. These structures are often massive and require additional post-processing time for their removal. A minimization of the extent to which support structures are needed would therefore significantly reduce manufacturing and finishing efforts and costs. A specific component segmentation strategy is developed. It allows the segmentation of critical areas of the component by applying a specific scanning strategy with appropriate energy input and optimized supporting strategies. The results indicate that the supporting effort can generally be reduced, e.g. overhang geometries with an angle to the horizontal of less than 35° can be manufactured without any support. The successful realization of the segmentation strategy in combination with optimized support structures allows the implementation of a stacking strategy, thereby using the available work space more efficiently.
机译:为了通过SLM成功生产金属部件,需要额外的支撑结构来支撑悬垂表面以散发过程热量并最大限度地减少由内应力引起的几何失真。这些结构通常是大规模的,需要额外的后处理时间来拆卸。因此,需要最小化所需支持结构的程度,因此将显着降低制造和整理努力和成本。开发了特定的组件分割策略。它允许通过使用适当的能量输入和优化的支持策略应用特定扫描策略来分割组件的关键区域。结果表明,通常可以减少支撑努力,例如,可以在没有任何支撑的情况下制造成水平小于35°的角度的悬垂几何形状。成功实现分割策略与优化的支持结构的组合允许实施堆叠策略,从而更有效地使用可用的工作空间。

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