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A Design Modification Approach to Utilize the Benefits of Metal Additive Manufacturing Adoption

机译:利用金属增材制造优势的设计修改方法

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Existing Metal Additive Manufacturing processes are fast approaching a matured stage in which a wide range of possibilities are available for the incorporation of the rapid fabrication technology to current industrial practices. In terms of design conventions, the limitless geometrical freedom allows complex structures including cellular internal grids and lattices to be formed without additional tooling. Repair parts and leveraging components can also be produced on demand when required especially for military assets where large volume of inventory is constantly maintained to ensure operational readiness. In this exemplary work, a feasibility study on using stainless steel material with integrated cellular design to manufacture a guide bracket found on a military vehicle via Selective Laser Melting process was conducted. The results showed appreciably better mechanical performance in using a stainless steel honeycomb as compared to the aluminum alloy used for the original component together with a faster production route through SLM.
机译:现有的金属增材制造工艺正快速接近成熟阶段,在此阶段,将快速制造技术整合到当前的工业实践中的可能性很大。根据设计惯例,无限的几何自由度使得无需蜂窝工具即可形成包括蜂窝状内部网格和网格的复杂结构。维修零件和杠杆组件也可以在需要时按需生产,尤其是对于军事资产来说,为了保持战备状态,它们经常保持大量库存。在此示例性工作中,进行了使用集成孔格设计的不锈钢材料通过选择性激光熔化工艺制造在军用车辆上发现的导向支架的可行性研究。结果表明,与用于原始组件的铝合金相比,使用不锈钢蜂窝结构的机械性能要好得多,并且通过SLM的生产路线更快。

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