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Process Planning of Creating a Surface Dome with Bead Deposition Additive Manufacturing

机译:使用珠沉积增材制造创建曲面球的工艺计划

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Bead deposition additive manufacturing processes deposit material from a machine head onto the substrate to make the product. This can encompass plastic materials or metal powder via a direct metal deposition process. In order to minimize or even eliminate the need for support structures in making complex parts, a 5 axis motion between the machine head and substrate is needed for components with overhanging geometry. Providing 5 axis movement increases the flexibility of the machine in such a way that the nozzle axis and the substrate normal do not exceed the maximum allowed overhang angle. This eliminates or reduces the need for support structure for making complex parts. However, 5 axis machines increase the complexity of the process and the possibility of a collision between the machine head, the substrate, or previously deposited layers. This paper focuses on process planning of complex parts in order to eliminate a collision condition. As a case study the methodology is applied to build a surface dome by a 5 axis bead deposition based additive manufacturing. Partitioning strategies are applied to eliminate the collision possibility while addressing the construction of overhanging geometry.
机译:珠沉积增材制造工艺将材料从机头沉积到基材上,从而制成产品。通过直接的金属沉积过程,这可以包括塑料或金属粉末。为了最大程度地减少甚至消除制造复杂零件时对支撑结构的需要,悬垂几何形状的零件需要在机头和基板之间进行5轴运动。提供5轴运动可增加机器的灵活性,使喷嘴轴和基材法线不超过最大允许悬垂角度。这消除或减少了用于制造复杂零件的支撑结构的需要。然而,五轴机器增加了工艺的复杂性,并且增加了机器头,基板或先前沉积的层之间发生碰撞的可能性。本文着重于复杂零件的工艺计划,以消除碰撞情况。作为案例研究,该方法被应用于通过基于5轴磁珠沉积的增材制造来构建表面圆顶。应用分区策略可消除碰撞的可能性,同时解决悬垂几何体的构造。

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