首页> 外国专利> 3 3 3 THREE-DIMENSION STRUCTURE WITH TRIPLY PERIODIC MINIMAL SURFACES BASED ON POLYMER BEAD ARRAYS AND FABRICATION METHOD OF SHELL CELLULAR STRUCTURE USING THE THREE-DIMENSION STRUCTURE AS TEMPLATE

3 3 3 THREE-DIMENSION STRUCTURE WITH TRIPLY PERIODIC MINIMAL SURFACES BASED ON POLYMER BEAD ARRAYS AND FABRICATION METHOD OF SHELL CELLULAR STRUCTURE USING THE THREE-DIMENSION STRUCTURE AS TEMPLATE

机译:3 3 3基于聚合物束矩阵的三周期极小表面三维结构和以三维结构为模板的壳细胞结构的制造方法

摘要

The present invention relates to a method of manufacturing a TPMS 3D structure, a method of manufacturing a 3D thin film porous structure using the 3D structure having a minimum curved surface of 3 cycles as a sacrificial structure, that is, a template. The 3D structure manufacturing method is characterized in that the material of the beads is limited to a polymer, and a partial dissolution process on the surface of the beads is performed including a two-stage chemical treatment process in which a good solvent and a poor solvent are sequentially separated and used. This process minimizes the effect of gravity during deformation of a curved surface, and has an ideal TPMS or similar shape surface with sufficient driving force required for deformation into a TPMS form, and various three-dimensional structures with no size limitation and three-dimensional thin-film porous structures using the same. Can be manufactured.
机译:本发明涉及制造TPMS 3D结构的方法,使用具有3个循环的最小弯曲表面的3D结构作为牺牲结构,即模板的3D薄膜多孔结构的制造方法。 3D结构的制造方法的特征在于,将珠粒的材料限制为聚合物,并且在珠粒的表面上进行部分溶解处理,包括良溶剂和不良溶剂的两阶段化学处理工序。依次分离和使用。此过程使曲面变形过程中的重力影响最小化,并具有理想的TPMS或类似形状的表面,并具有变形为TPMS形式所需的足够的驱动力,并且具有不受尺寸限制和三维薄型的各种三维结构膜多孔结构使用相同的。可以制造。

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