材料科学
多孔性
微观结构
超临界流体
丙交酯
复合材料
3D打印
熔融沉积模型
陶瓷
聚合物
沉积(地质)
复合数
热塑性塑料
共聚物
化学
有机化学
古生物学
生物
沉积物
作者
Matteo Marascio,Jens Antons,Dominique P. Pioletti,P.‐E. Bourban
标识
DOI:10.1002/admt.201700145
摘要
Abstract Cellular thermoplastic structures with multiscale porosity (1–300 µm microporosity to 0.3–10 mm macroporosity) are produced from an integrated approach of 3D printing by Fused Deposition Modeling printing and Supercritical CO 2 Foaming. Porous strands and related hierarchical structures are processed in one continuous step. Influence of printing parameters (e.g., deposition temperature and speed) on foam porosity and pores distribution is described for a semicrystalline food grade Poly‐Lactide Acid. The process is then applied to other thermoplastics filament with different mechanical properties. In particular, a composite blend of Poly‐ l ‐Lactide and βTCP (90–10) ceramic particles and a soft copolymer Poly‐Lactide‐ co ‐Caprolactone are processed to print foamed strands with various internal cellular microstructures. The dynamic material transformation phenomena controlling the microstructure upon deposition and foaming are determined. This new additive manufacturing method introduces for the first time the possibility to tune cellular morphology in situ and on line, offering an unmatched freedom to design anisotropy in 3D.
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