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Highly Expandable Foam for Lithographic 3D Printing

机译:用于光刻3D印刷的高度可扩展泡沫

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摘要

In modern manufacturing, it is a widely accepted limitation that the parts patterned by an additive or subtractive manufacturing process (i.e., a lathe, mill, or 3D printer) must be smaller than the machine itself that produced them. Once such parts are manufactured, they can be postprocessed, fastened together, welded, or adhesively bonded to form larger structures. We have developed a foaming prepolymer resin for lithographic additive manufacturing, which can be expanded after printing to produce parts up to 40x larger than their original volume. This allows for the fabrication of structures significantly larger than the build volume of the 3D printer that produced them. Complex geometries comprised of porous foams have implications in technologically demanding fields such as architecture, aerospace, energy, and biomedicine. This manuscript presents a comprehensive screening process for resin formulations, detailed analysis of printing parameters, and observed mechanical properties of the 3D-printed foams.
机译:在现代制造中,广泛接受的限制:由添加剂或减法制造工艺(即车床,轧机或3D打印机)图案化的部件必须小于产生它们的机器本身。一旦制造了这样的部件,可以将它们的后处理,紧固在一起,焊接或粘合地粘合以形成更大的结构。我们开发了一种用于光刻添加剂制造的发泡预聚物树脂,可以在印刷后膨胀,产生高达40倍的比其原始体积更大。这允许制造显着大于产生它们的3D打印机的构建体积的结构。由多孔泡沫构成的复杂几何形状在技术要求苛刻的领域具有诸如建筑,航空航天,能量和生物医学的技术要求。该手稿介绍了用于树脂配方的全面筛选过程,对印刷参数进行详细分析,观察到3D印刷泡沫的机械性能。

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