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STRUCTURE, PROCESS, AND MATERIAL INFLUENCES FOR 3D PRINTED LATTICES DESIGNED WITH MIXED UNIT CELLS

机译:用于使用混合单元电池设计的3D印刷格子的结构,过程和材料影响

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摘要

Emerging 3D printing technologies are enabling the design and fabrication of novel architected structures with advantageous mechanical responses. Designing complex structures, such as lattices, with a targeted response is challenging because build materials, fabrication process, and topological design have unique influences on the structure's mechanical response. Changing any factor may have unanticipated consequences, even for simpler lattice structures. Here, we conduct mechanical compression experiments to investigate varied lattice design, fabrication, and material combinations using stereolithography printing with a biocompatible polymer. Mechanical testing demonstrates that a higher ultraviolet curing time increases elastic modulus. Material testing demonstrated that anisotropy does not strongly influence lattice mechanics. Designs were altered by comparing homogenous lattices of single unit cell types and heterogeneous lattices that combine two types of unit cells. Unit cells for heterogeneous structures include a Cube design for a high elastic modulus and Cross design for improved shear response. Mechanical testing of three heterogeneous layouts demonstrated how unit cell organization influences mechanical outcomes, therefore enabling the tuning of an elastic modulus that surpasses the law of averages designed for application-dependent mechanical needs. These findings provide a foundation for linking design, process, and material for engineering 3D printed structures with preferred properties, while also facilitating new directions in design automation and optimization.
机译:新兴的3D印刷技术正在设计和制造具有有利机械反应的新型档案结构。设计复杂结构,如格格,具有目标反应是具有挑战性的,因为构建材料,制造过程和拓扑设计对结构的机械反应有独特的影响。即使对于更简单的晶格结构,改变任何因素可能具有意外的后果。这里,我们进行机械压缩实验,以研究使用具有生物相容性聚合物的立体印刷的变化的晶格设计,制造和材料组合。机械测试表明,较高的紫外线固化时间增加了弹性模量。材料测试表明各向异性不会强烈影响格子力学。通过比较组合两种类型的单位细胞的单位单元类型和异构格子的均匀格改变了设计。用于异构结构的单元电池包括用于高弹性模量和交叉设计的立方体设计,用于改善剪切响应。三种异构布局的机械测试证明了单位细胞组织如何影响机械成果,因此可以调整弹性模量,这些弹性模量超越了设计用于应用依赖性机械需求的平均法。这些调查结果为具有优先特性的工程3D印刷结构连接设计,工艺和材料,同时还促进了设计自动化和优化的新方向。

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