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Build Orientation Determination for Multi-material Deposition Additive Manufacturing with Continuous Fibers

机译:连续纤维多材料沉积增材制造的制造方向确定

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Build orientation of a part in Additive Manufacturing (AM) has complex effect on part's quality, process planning, post-processing, processing time and cost, etc. The identification of the optimal build orientation for a part is one of the main contents of process planning in AM. In this paper, a build orientation optimization strategy is developed for a new AM process, multi-material deposition with continuous fibers, to improve the part quality while reducing the production time & cost. First, a set of finite alternative build orientations are generated by using surface shape feature with associated rules derived from the specific characteristics and constraints of the new developing AM process; then, a multi-attribute decision making algorithm is applied to determine the optimal orientation according to preset preferences. A case study is presented for demonstration.
机译:增材制造(AM)中零件的构建方向对零件的质量,过程计划,后处理,处理时间和成本等都有复杂的影响。确定零件的最佳构建方向是过程的主要内容之一在AM中进行规划。在本文中,针对新的增材制造工艺开发了一种构造方向优化策略,该工艺采用连续纤维进行多材料沉积,以提高零件质量,同时减少生产时间和成本。首先,通过使用表面形状特征以及从新开发的AM过程的特定特征和约束中得出的关联规则,生成一组有限的替代构建方向;然后,应用多属性决策算法,根据预设的偏好确定最优方向。案例研究进行了演示。

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