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Solid Mechanics based Design and Optimization for Support Structure Generation in Stereolithography based Additive Manufacturing

机译:基于立体力学的基于光刻的增材制造中支撑结构生成的设计和优化

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Support structures are typically required to hold parts in place in various additive manufacturing processes. Design of support structure includes identifying both anchor locations and geometries. Extensive work has been done to optimize the anchor locations to reliably keep part in position, and minimize the contacting area as well as the total volume of the support structures. However, relatively few studies have been focused on the mechanical property analysis of the structure. In this paper, we proposed a novel design optimization method to identify the anchor geometry based on solid mechanics theory. Finite element analysis method is utilized to study the stress distribution on both the support structure and main part. Particle Swarm Optimization (PSO) algorithm with a novel constraining handling strategy is employed to optimize the design model. A gradient descent local search algorithm is utilized to quickly locate the global solution in the vicinity explored by PSO. The developed optimization framework is deployed on a bottom-up projection based Stereolithography process. The experimental results show that the optimized design can efficiently reduce the material used on support structure and marks left on the part.
机译:通常需要支撑结构以在各种增材制造过程中将零件固定在适当的位置。支撑结构的设计包括识别锚固位置和几何形状。已经进行了广泛的工作来优化锚的位置,以可靠地将零件保持在适当的位置,并使接触面积以及支撑结构的总体积最小化。但是,相对较少的研究集中在结构的机械性能分析上。在本文中,我们提出了一种基于固体力学理论的新颖的设计优化方法来识别锚固的几何形状。利用有限元分析方法研究了支撑结构和主体上的应力分布。采用具有新颖约束处理策略的粒子群优化(PSO)算法来优化设计模型。梯度下降局部搜索算法可用于在PSO探索的附近快速定位全局解。开发的优化框架部署在基于自底向上投影的立体光刻过程中。实验结果表明,优化设计可以有效减少支撑结构上使用的材料和零件上留下的痕迹。

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