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Finite-Element-Mesh Based Method for Modeling and Optimization of Lattice Structures for Additive Manufacturing

机译:基于有限元网格的增材制造格子结构建模与优化方法

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摘要

A parameterization modeling method based on finite element mesh to create complex large-scale lattice structures for AM is presented, and a corresponding approach for size optimization of lattice structures is also developed. In the modeling method, meshing technique is employed to obtain the meshes and nodes of lattice structures for a given geometry. Then, a parametric description of lattice unit cells based on the element type, element nodes and their connecting relationships is developed. Once the unit cell design is selected, the initial lattice structure can be assembled by the unit cells in each finite element. Furthermore, modification of lattice structures can be operated by moving mesh nodes and changing cross-sectional areas of bars. The graded and non-uniform lattice structures can be constructed easily based on the proposed modeling method. Moreover, a size optimization algorithm based on moving iso-surface threshold (MIST) method is proposed to optimize lattice structures for enhancing the mechanical performance. To demonstrate the effectiveness of the proposed method, numerical examples and experimental testing are presented, and experimental testing shows 11% improved stiffness of the optimized non-uniform lattice structure than uniform one.
机译:提出了一种基于有限元网格的参数化建模方法,用于创建复杂的大型AM网格结构,并提出了相应的优化网格结构尺寸的方法。在建模方法中,采用网格划分技术来获取给定几何形状的网格结构的网格和节点。然后,开发了基于单元类型,单元节点及其连接关系的晶格单元格的参数化描述。一旦选择了晶胞设计,就可以由每个有限元中的晶胞组装初始的晶格结构。此外,可以通过移动网格节点并更改钢筋的横截面面积来操作晶格结构。基于所提出的建模方法,可以容易地构造渐变的和非均匀的晶格结构。此外,提出了一种基于运动等值面阈值(MIST)方法的尺寸优化算法,以优化晶格结构以增强机械性能。为了证明所提方法的有效性,给出了算例和实验测试,实验结果表明,优化后的非均匀晶格结构的刚度比均匀结构提高了11%。

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