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SYSTEMS AND METHODS FOR GENERATING A GRADED LATTICE STRUCTURE AND THEIR APPLICATION TO ADDITIVE MANUFACTURING

机译:用于产生分级晶格结构的系统和方法及其在添加剂制造中的应用

摘要

Systems and methods for generating graded lattice structures that can be used as infill for additively manufactured articles. Tailored sectioning and field-based smoothing are modified polygon, e.g., circle, packing algorithms that adjust the size of the circles based on physical field data to adapt the infill generation process to a field expected to be experienced by the article. Molecular dynamically generated lattice infill is based on force balancing a node distribution instead of a circle packing. Field data can be utilized to adjust the spacing of the node distribution according to a force balance equilibrium model that accounts for the field expected to be experienced by the article being additively manufactured. The resultant non-uniform honeycomb structures from tailored sectioning, field-based smoothing, and force-balancing robustly and efficiently address the connection issues with traditional non-uniform lattice structures.
机译:用于产生分级晶格结构的系统和方法,其可以用作含有含有制造物品的填充物。 根据物理现场数据进行修改多边形,例如圆形,调整磁带的尺寸的圆形,圆形,打包算法,以使填充生成过程调整到文章所经历的现场的界面的填充算法。 分子动态产生的晶格填充是基于力平衡节点分布而不是圆包装。 可以利用现场数据来调整节点分布的节点分布的间距,该力平衡均衡模型,其考虑了所预期的物品被橡皮地制造的。 由传统的非均匀晶格结构稳健地和有效地解决了来自定制切片,基于场平滑的非均匀蜂窝结构,以及强制平衡。

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