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    • 55. 发明授权
    • Ceramic microtruss
    • 陶瓷微桁架
    • US08435438B1
    • 2013-05-07
    • US12705534
    • 2010-02-12
    • Adam F. GrossAlan J. JacobsenRobert Cumberland
    • Adam F. GrossAlan J. JacobsenRobert Cumberland
    • B29C35/08
    • C04B38/0032B22F1/0007B22F3/002B22F2998/00B22F2999/00Y10T428/24149Y10T428/29C04B35/565C04B35/58B22F1/02B22F1/004
    • An ordered ceramic microstructure and a method of making the same. In one embodiment, the ceramic microstructure includes a base structure and one or more ceramic layers. The base structure includes a plurality of first truss elements defined by a plurality of first self-propagating polymer waveguides and extending along a first direction, a plurality of second truss elements defined by a plurality of second self-propagating polymer waveguides and extending along a second direction, and a plurality of third truss elements defined by a plurality of third self-propagating polymer waveguides and extending along a third direction. Here, the first, second, and third truss elements interpenetrate each other at a plurality of nodes to form a continuous material, and the base structure is self-supporting. In addition, the ceramic layers coat a surface of at least one truss element of the first truss elements, the second truss elements, or the third truss elements.
    • 有序的陶瓷微结构及其制造方法。 在一个实施例中,陶瓷微结构包括基底结构和一个或多个陶瓷层。 基底结构包括由多个第一自传播聚合物波导限定并沿着第一方向延伸的多个第一桁架元件,由多个第二自传播聚合物波导限定并沿着第二方向延伸的多个第二桁架元件 方向,以及由多个第三自传播聚合物波导限定并沿着第三方向延伸的多个第三桁架元件。 这里,第一,第二和第三桁架元件在多个节点处相互渗透以形成连续材料,并且基部结构是自支撑的。 此外,陶瓷层涂覆第一桁架元件,第二桁架元件或第三桁架元件的至少一个桁架元件的表面。
    • 56. 发明授权
    • Method of continuous or batch fabrication of large area polymer micro-truss structured materials
    • 连续或批量制造大面积聚合物微桁架结构材料的方法
    • US08367306B1
    • 2013-02-05
    • US12835276
    • 2010-07-13
    • Robert E. DotyAlan J. JacobsenJoanne A. Kolodziejska
    • Robert E. DotyAlan J. JacobsenJoanne A. Kolodziejska
    • G03F1/00G03B27/12G03B27/30
    • G02B6/138G02B6/12002
    • A system for forming a plurality of polymer waveguides includes at least one collimated light source adapted to produce a plurality of collimated light beams; a channel having an exposure area for the collimated light beams to pass through and for holding a photo-monomer adapted to polymerize when exposed to the collimated light beams, the photo-monomer moving with respect to the plurality of collimated light beams; and a mask disposed between the at least one collimated light source and the photo-monomer. A method for forming a plurality of polymer waveguides includes moving a mask across an exposure area of a channel containing a photo-monomer; exposing the photo-monomer to collimated light through the exposure area of the channel; growing the plurality of polymer waveguides from the exposure area into the photo-monomer to form an interconnected ordered three-dimensional polymer micro-truss structure; and removing the ordered 3D polymer micro-truss structure from the channel.
    • 用于形成多个聚合物波导的系统包括适于产生多个准直光束的至少一个准直光源; 具有用于准直光束的曝光区域通过并用于保持当暴露于准直光束时适于聚合的光单体的通道,光单体相对于多个准直光束移动; 以及设置在所述至少一个准直光源和所述光单体之间的掩模。 形成多个聚合物波导的方法包括:在包含光单体的通道的曝光区域上移动掩模; 将光单体暴露于准直光通过通道的曝光区域; 将多个聚合物波导从曝光区域生长成光单体以形成互连的有序三维聚合物微型桁架结构; 并从通道中去除有序的3D聚合物微型桁架结构。