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Investigation of load direction on the compressive strength of additively manufactured triply periodic minimal surface scaffolds

机译:对荷载强度的负载方向调查含有模糊周期性最小表面支架的抗压强度

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摘要

Triply periodic minimal surfaces (TPMS) enable the construction of lightweight scaffolds, complex geometry heat exchangers, and energy absorbing materials. Additive manufacturing (AM) has the potential to build such TPMS structures due to its inherent manufacturing freedom and layer-by-layer construction; however, the manufacturing orientation in AM is known to have a significant effect on the resulting mechanical properties. The main contribution of this research is the examination of the effect of manufacturing orientation and TPMS type on the mechanical properties of scaffolds manufactured by fused deposition modeling (FDM), a widely used form of AM. The combination of compressive load direction (0 degrees and 90 degrees with respect to the manufacturing orientation) and TPMS type resulted in large changes in compressive strength. The primitive scaffold achieved the best performance in compression tests. It also had the shortest manufacturing time and smallest quantity of support material needed for FDM manufacture. The TPMS scaffold type combined with the loading direction significantly affected the compressive strength and elastic modulus of the scaffolds, showing the importance of considering both these properties in the design of AM scaffold structures.
机译:三个周期性的最小表面(TPMS)使得能够构造轻质支架,复杂的几何换热器和能量吸收材料。添加剂制造(AM)由于其固有的制造自由和层面构造而具有潜力的构建这种TPMS结构;然而,已知am中的制造取向对所得的机械性能具有显着影响。该研究的主要贡献是检查制造取向和TPMS型对通过融合沉积建模(FDM)制造的支架机械性能的影响,广泛使用的AM。压缩负载方向(0度和90度相对于制造方向)和TPMS型的组合导致压缩强度的大变化。原始脚手架在压缩测试中实现了最佳性能。它还具有最短的生产时间和FDM制造所需的最小支撑材料。 TPMS支架型与装载方向结合显着影响了支架的抗压强度和弹性模量,显示了考虑AM支架结构设计中这些性质的重要性。

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