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Load-Adapted Design of Generative Manufactured Lattice Structures

机译:负载适应的生成制造晶格结构设计

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Additive layer manufacturing offers many opportunities for the production of lightweight components, because of the high geometrical freedom that can be realized in comparison to conventional manufacturing processes. This potential gets demonstrated at the example of a bending beam. Therefore, a topology optimization is performed as well as the use of periodically arranged lattice structures. The latter ones show the constraint, that shear forces in the struts reduce the stiffness of the lattice. To avoid this, the structure has to be adapted to the flux of force. This thesis is supported by studies on a torque-loaded shaft.
机译:由于与传统制造工艺相比,可以实现的高几何自由度,添加剂层制造提供了许多用于生产轻质部件的机会。 在弯曲光束的示例中证明了该电位。 因此,执行拓扑优化以及定期布置的晶格结构的使用。 后者表示约束,支柱中的剪切力减小了晶格的刚度。 为了避免这种情况,必须适应力的磁通量。 本论文通过研究扭矩轴的研究支持。

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