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Application of Multidirectional Robotic Wire Arc Additive Manufacturing Process for the Fabrication of Complex Metallic Parts

机译:多向机械丝弧添加剂制造工艺在复合金属零件制造中的应用

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Robotic wire arc additive manufacturing (WAAM) for the fabrication of metallic parts is garnering interest due to its advantages of low capital investment, high deposition rates, and good material properties. Although many achievements have been made, the build direction of WAAM remains confined to the vertical-up direction, requiring additional supporting structure to be deposited while fabricating metallic parts with overhanging features. In this article, a novel multidirectional WAAM process, using robotic gas metal arc welding, to additively manufacture metal components in multiple directions is presented. Several novel modules, including positional bead modeling, multidirection slicing, and deposition process optimization of the deposition process, are highlights of this article. In addition, the performance of the proposed multidirectional WAAM strategy is evaluated by the successful deposition of a sample workpiece with complex geometrical features. The proposed multidirectional WAAM process would significantly reduce the manufacturing time and cost.
机译:由于资本投资低,沉积率高,材料特性高的优点,机器人丝弧添加剂制造(WAAM)是由于其优点而获得利益。虽然已经进行了许多成果,但是WaAM的构建方向保持局限于垂直方向,需要沉积额外的支撑结构,同时制造具有悬垂特征的金属部件。在本文中,呈现了一种使用机器人气体弧焊的新型多向WAAM工艺,以在多个方向上加剧制造金属部件。几种新型模块,包括位置珠子建模,多向切片和沉积过程优化的沉积过程,是本文的亮点。此外,所提出的多向WAAM策略的性能是通过成功沉积具有复杂的几何特征的样品工件来评估。所提出的多向WAAM过程将显着降低制造时间和成本。

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