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    • 5. 发明申请
    • Patterning technology for folded sheet structures
    • 折叠板结构图案化技术
    • US20050267616A1
    • 2005-12-01
    • US11174800
    • 2005-07-05
    • Daniel Kling
    • Daniel Kling
    • G06T17/20G06F19/00
    • G06T17/20
    • The present invention supplies practical procedures, functions or techniques for folding tessellations. Several tessellation crease pattern techniques, and the three-dimensional folded configuration are given. Additionally several new forming processes, including mathematical methods for describing the material flow are discloseddoubly-periodic folding of materials that name the doubly-periodic folded (DPF) surface, including vertices, edges, and facets, at any stage of the folding. This information is necessary for designing tooling and forming equipment, for analyzing strength and deflections of the DPFs under a variety of conditions, for modeling the physical properties of DPF laminations and composite structures, for understanding the acoustic or other wave absorption/diffusion/reflection characteristics, and for analyzing and optimizing the structure of DPFs in any other physical situation. Fundamental methods and procedures for designing and generating DPF materials include ways for defining the tessellation crease patterns, the folding process, and the three-dimensional folded configuration. The ways are mathematically sound in that they can be extended to a theorem/proof format.
    • 本发明提供用于折叠镶嵌的实用程序,功能或技术。 给出了几种镶嵌折痕图案技术,并给出了三​​维折叠配置。 此外,在折叠的任何阶段,另外公开了几种新的形成方法,包括用于描述材料流的数学方法,其中双重定期折叠(DPF)表面的材料的周期性折叠,包括顶点,边缘和小平面。 该信息对于设计加工和成型设备是必要的,用于分析DPF在各种条件下的强度和挠度,用于建模DPF层压和复合结构的物理性能,以了解声波或其他波吸收/扩散/反射特性 ,并在任何其他物理情况下分析和优化DPF的结构。 设计和生成DPF材料的基本方法和程序包括定义镶嵌折痕图案,折叠工艺和三维折叠配置的方法。 数学上的方式是可以扩展到一个定理/证明格式。
    • 6. 发明申请
    • Surface-dimensional track system and methods of use thereof
    • 表面尺寸轨迹系统及其使用方法
    • US20050139113A1
    • 2005-06-30
    • US10969761
    • 2004-10-20
    • Daniel Kling
    • Daniel Kling
    • B61B3/00
    • B61B3/00
    • A surface-dimensional track having a plurality of rails and a car for use therewith is disclosed. Preferred embodiments of the car include a car carriage for motion along the surface-dimensional track in accordance with a two-dimensional velocity vector. Preferred embodiments of the car also include first driving means for securing the car carriage to the surface-dimensional track while causing a component of the motion of the car carriage in accordance with a first component of the two-dimensional velocity vector. Preferred embodiments of the car also include second driving means for causing a second component of the motion of the car carriage in accordance with a second component of the two-dimensional velocity vector. Additional embodiments of systems, methods and apparatus are disclosed herein.
    • 公开了一种具有多个轨道和使用其的轿厢的表面维度轨道。 汽车的优选实施例包括根据二维速度矢量沿着表面轨道运动的轿厢托架。 轿厢的优选实施例还包括第一驱动装置,用于根据二维速度矢量的第一分量,将轿厢托架固定到表面尺寸轨道,同时引起汽车托架的运动分量。 汽车的优选实施例还包括第二驱动装置,用于根据二维速度矢量的第二分量使轿厢的运动的第二分量。 本文公开了系统,方法和装置的附加实施例。
    • 10. 发明申请
    • COMPONENT FIXTURING METHOD
    • 组件贴装方法
    • US20100234202A1
    • 2010-09-16
    • US12722405
    • 2010-03-11
    • Daniel Kling
    • Daniel Kling
    • B31F1/00B31B1/26
    • B31D5/04G06T13/20G06T19/20G06T2219/021G06T2219/2004G06T2219/2016
    • An end-configuration of components to be moved or positioned is first obtained. This end-configuration determines the relative positioning and orientation of the components with respect to each other when in a final, desired configuration. A folding pattern is then obtained that is formed by interior vertices defining corresponding tessellation facets. The folding pattern can be induced to transition from a first folded configuration to a second folded configuration. When in the second folded configuration mounting facets, which are a subset of the tessellation facets, are arranged by the geometry of the folding pattern into positions and orientations with respect to each other that correspond to the end-configuration of the components. A foldable structure is then obtained that folds in accordance with the folding pattern, and the components are affixed to their respective mounting facets
    • 首先获得要移动或定位的部件的端部构造。 当最终期望的配置中时,该端配置确定组件相对于彼此的相对定位和取向。 然后获得由限定对应镶嵌面的内部顶点形成的折叠图案。 可以诱导折叠图案从第一折叠构型转变到第二折叠构型。 当在第二折叠配置中,作为镶嵌面的子集的安装小面通过折叠图案的几何形状被布置成相对于彼此的位置和取向,其对应于部件的端部构造。 然后获得根据折叠图案折叠的可折叠结构,并且将部件固定到它们各自的安装面