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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Multicomponent Topology Optimization for Additive Manufacturing With Build Volume and Cavity Free Constraints
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Multicomponent Topology Optimization for Additive Manufacturing With Build Volume and Cavity Free Constraints

机译:构建体积和腔自由约束的添加剂制造的多组分拓扑优化

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摘要

Topology optimization for additive manufacturing has been limited to the design of single-piece components that fit within the printer's build volume. This paper presents a gradient-based multicomponent topology optimization method for structures assembled from components built by powder bed additive manufacturing (MTO-A), which enables the design of multipiece assemblies larger than the printer's build volume. Constraints on component geometry for powder bed additive manufacturing are incorporated in a density-based topology optimization framework, with an additional design field governing the component partitioning. For each component, constraints on the maximum allowable build volume (i.e., length, width, and height) and the elimination of enclosed cavities are imposed during the simultaneous optimization of the overall topology and component partitioning. Numerical results of the minimum compliance designs revealed that manufacturing constraints, previously applied to single-piece topology optimization, can unlock richer design exploration space when applied to multicomponent designs.
机译:添加剂制造的拓扑优化仅限于适合打印机构建体积内的单件组件的设计。本文介绍了一种基于梯度的多组分拓扑优化优化方法,用于由粉床添加剂制造(MTO-A)构建的组件组装,这使得设计大于打印机的构建体积的多码组件。用于粉末添加剂制造的组分几何形状的约束在基于密度的拓扑优化框架中并入,具有用于组件分区的附加设计场。对于每个组件,在同时优化整体拓扑和分量分区期间,施加对最大允许构建体积(即,长度,宽度和高度)和消除封闭腔的约束。最小合规性设计的数值结果显示,在应用于多组分设计时,可以解锁更丰富的设计探索空间的制造限制。

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