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    • 2. 发明申请
    • Assembly device for stacked ring
    • 堆叠环组装装置
    • US20030183323A1
    • 2003-10-02
    • US10380219
    • 2003-03-12
    • Koji SaitoYoshihiko SuzukiKatsumune InakiTetsuo Sugizono
    • F16G001/00
    • B23P19/001F16G5/16G05B19/40937G05B19/41805G05B2219/31387G05B2219/32082G05B2219/49011Y02P90/04Y02P90/20Y02P90/265Y10T29/49009Y10T29/49078Y10T29/49826Y10T29/5192Y10T29/53004Y10T29/53013Y10T29/53039Y10T29/5317
    • When ring components 4 of layers to assemble a laminated ring 3 are unloaded from a component storage facility 10, a computer 13 generates lamination combinatorial data representing a combination of ring components of layers. A target frequency distribution of circumferential length values of ring components 4 of each layer is established, and lamination combinatorial data including ring components of a class where an error of an actual inventory frequency with respect to a target frequency is large are selected in a layer where an error between the target frequency distribution and an actual inventory frequency distribution is maximum. Ring components 4 of all layers corresponding to the selected lamination combinatorial data are unloaded from the component storage facility 10. A distribution of size data of the ring components 4 of each layer in the component storage facility 10 is thus continuously maintained in a state capable of assembling more laminated rings 4, and the stable mass-productivity of laminated rings 3 is continuously achieved.
    • 当从组件存储设备10卸载用于组装层叠环3的层的环组件4时,计算机13生成表示层的环组件的组合的层叠组合数据。 建立各层的环状部件4的圆周长度值的目标频率分布,并且在包括实际库存频率相对于目标频率的误差大的类别的环形分量大的层叠组合数据被选择在 目标频率分布和实际库存频率分布之间的误差最大。 对应于所选层压组合数据的所有层的环组件4从组件存储设备10卸载。因此,组件存储设备10中每层的环组件4的尺寸数据的分布被连续地保持在能够 组装更多的层压环4,并且连续实现层压环3的稳定的批量生产率。
    • 3. 发明授权
    • Sheet lamination modeling apparatus
    • 薄片层压成型装置
    • US06413360B1
    • 2002-07-02
    • US09523759
    • 2000-03-13
    • Satoshi MoritaKazuo Sugiyama
    • Satoshi MoritaKazuo Sugiyama
    • B32B3118
    • B32B38/10B29C64/141B29C64/40B32B37/1292B32B38/185B32B2310/0843G05B2219/49011G05B2219/49021Y10T156/12Y10T156/1317
    • An apparatus for forming a three-dimensional object by stacking and gluing sheets together includes a table arranged and constructed to move in a vertical direction and to support a stack of lower sheets, a means for interposing an adhesive between the stack of lower sheets and an upper sheet that will be placed on top of the stack of lower sheets, a means for pressing the upper sheet and the stack of lower sheets together with the adhesive disposed therebetween, the pressing means being disposed in a fixed position above the table and pressing the upper sheet and the stack of lower sheets against the table when the table is vertically raised, and a cutting knife cutting only the upper sheet into an effective area and a waste area without cutting the lower sheets. The cutting knife is arranged and constructed to move horizontally between the pressing means and the table when the table is disposed in an upper sheet cutting position.
    • 用于通过堆叠和粘合片材来形成三维物体的装置包括:布置和构造成沿垂直方向移动并支撑一叠下片的工作台,用于将粘合剂插入在下层纸叠和 将被放置在下片叠层的顶部的上片,用于将上片和下片叠在一起的装置以及设置在其间的粘合剂,按压装置设置在桌子上方的固定位置,并按压 当桌子垂直升起时,上部片材和下部片材堆叠在桌子上,切割刀只将上部片材切割成有效区域和废弃区域而不切割下部片材。 切割刀被布置和构造成当桌子设置在上片材切割位置时在压紧装置和桌子之间水平移动。
    • 4. 发明申请
    • Ultrasonic object consolidation system and method
    • 超声对象整合系统及方法
    • US20020019683A1
    • 2002-02-14
    • US09859691
    • 2001-05-17
    • Dawn WhiteDavid E.E. Carmein
    • G06F019/00
    • G05B19/00B29C64/141B33Y30/00B33Y40/00B33Y50/02G05B19/4099G05B2219/45206G05B2219/45238G05B2219/49011G05B2219/49015G05B2219/49016G05B2219/49017G05B2219/49026G05B2219/49032G05B2219/49039G05B2219/49241Y02P90/265
    • Machine tools combine material addition via ultrasonic object consolidation and subtractive techniques for imparting high-dimensional accuracy to a finished object. A material supply and feeder, ultrasonic horn, and feedstock cutting device are integrated with a material removal subsystem preferably including a cutting tool and an excess material removal system. Any metal, plastic or composite material suitable for ultrasonic joining may be employed as a feedstock, and these material may assume the form of tapes, sheets, wires, filaments, dots or droplets, with the feeding and material cutting components being designed for the specific feedstock employed. The cutting tool for excess material removal, may be a knife, drill/mill, grinding tool, or other tool capable of accurately cutting the external contour of a cross section of the part being built, and for removing excess feedstock remaining following the application process. The material removal could consist of a vacuum or blower system, chip auger, or other suitable apparatus. A machine disclosed as part of the preferred embodiment is able to deposit material in one step, and optionally and selectively remove it in another. Through the expeditious combination of deposition and removal, the fabrication of objects of arbitrary shape may be realized.
    • 机床通过超声波对象固定和减法技术结合材料添加,为成品提供高维度精度。 材料供应和进料器,超声波喇叭和原料切割装置与优选包括切割工具和多余材料去除系统的材料去除子系统集成。 适用于超声波接合的任何金属,塑料或复合材料可用作原料,这些材料可呈带状,片状,电线,长丝,点或液滴的形式,其中进料和切割材料被设计用于特定的 原料采用。 用于多余材料去除的切削刀具可以是刀,钻/磨,研磨工具或能够精确地切割正被建造的部件的横截面的外部轮廓的其他工具,并且用于在施加过程之后除去剩余的剩余原料 。 材料去除可以由真空或鼓风机系统,切屑螺旋钻或其他合适的装置组成。 作为优选实施例的一部分公开的机器能够在一个步骤中沉积材料,并且可选地和选择性地将其除去在另一个步骤中。 通过沉积和去除的快速组合,可以实现任意形状的物体的制造。
    • 6. 发明授权
    • Sheet lamination modeling method and sheet lamination modeling apparatus
    • 薄板层压成型方法和薄板层压成型装置
    • US6056843A
    • 2000-05-02
    • US41634
    • 1998-03-13
    • Satoshi MoritaKazuo Sugiyama
    • Satoshi MoritaKazuo Sugiyama
    • B29C67/00B32B38/10B32B31/18B32B31/20
    • B32B38/10B29C67/0074B32B37/1292B32B38/185B32B2310/0843G05B2219/49011G05B2219/49021Y10T156/1052Y10T156/108
    • The invention relates to a sheet lamination modeling method and a sheet lamination modeling apparatus for forming a three-dimensional object by stacking and gluing sheets together. In the invention, an upper sheet (2Y) is stacked on top of a lower sheet (2X) which is cut into an effective area (V1) constituting the three-dimensional object and a waste area (U1) not constituting the three-dimensional object, an adhesive (4) is supplied between the lower sheet (2X) and the upper sheet (2Y) and onto an area which extends outwardly of an overlapping area covering both of an effective area (V2) of the upper sheet (2Y) and the effective area (V1) of the lower sheet (2X) to thereby glue the lower sheet (2X) and the upper sheet (2Y) together, and the upper sheet (2Y) is cut into the effective area (V2) and a waste area (U2). As a result, according to the invention, it is possible to easily obtain a strong three-dimensional object without separation or deformation.
    • 本发明涉及一种薄片层压建模方法和一种用于通过将薄片堆叠并粘合在一起形成三维物体的薄片层压建模装置。 在本发明中,上片(2Y)层叠在被切割成构成三维物体的有效区域(V1)的下片材(2X)的顶部,废弃区域(U1)不构成三维物体 在下片(2X)和上片(2Y)之间提供粘合剂(4)并且覆盖覆盖上片(2Y)的有效区域(V2)的重叠区域向外延伸的区域, 和下片(2X)的有效面积(V1),从而将下片(2X)和上片(2Y)粘合在一起,将上片(2Y)切割成有效区域(V2),将 废物面积(U2)。 结果,根据本发明,可以容易地获得强烈的三维物体而没有分离或变形。
    • 8. 发明授权
    • Method and apparatus for marking or cutting laminar patterns or forms
    • 用于标记或切割层状图案或形式的方法和设备
    • US4554635A
    • 1985-11-19
    • US503699
    • 1983-06-13
    • Richard W. Levine
    • Richard W. Levine
    • G06F17/50G06Q10/04G06F15/46
    • G06Q10/043G06F17/509G05B2219/49011G06F2217/34G06F2217/42Y10T83/0491Y10T83/155
    • The present invention relates to a method and apparatus for creating, laying out and cutting patterns on laminar sheet material having particular application to air handling ducting which permits the fully automated creation of the patterns required to subsequently construct three-dimensional products such as fittings, which have heretofore only been designed by skilled technicians. Information representative of the geometric configurations of a group of basic pattern types, including mathematical relationships, is stored in digital form in a memory. From the basic pattern types, substantially all variations of the three-dimensional product can be developed. An operator specifies the type of fitting required and inputs selected actual basic dimensions of the product, the basic dimensions being those dimensions necessary to specify the overall dimensions of the product. The patterns for the closed sides of the product are developed from the mathematical relationships specifying the geometry of the basic pattern types in response to the input basic dimensions. The patterns so developed are then computed for optimum positioning with other developed patterns, most preferably with alignment of similarly shaped edges for sheet material optimization, and preferably with adjacent grouping of the patterns for each end product to facilitate location and assembly and, most preferably, in such a manner that each grouping can be severed from the sheet material with a single cut to facilitate use of sheet or coil stock shearing machinery.
    • 本发明涉及一种用于在特别应用于空气处理管道的层状片材上产生,铺设和切割图案的方法和装置,其允许完全自动地创建随后构建诸如配件的三维产品所需的图案, 以前只有技术熟练的技术人员才能设计出来。 代表一组基本图案类型(包括数学关系)的几何配置的信息以数字形式存储在存储器中。 从基本图案类型,可以开发基本上所有的三维产品的变化。 操作员指定所需的配件类型并输入产品的所选实际基本尺寸,基本尺寸是指定产品总体尺寸所需的尺寸。 根据输入的基本尺寸,从指定基本图案类型的几何形状的数学关系开发产品的封闭侧面的图案。 然后计算如此开发的图案,以便与其他显影图案最佳定位,最优选地对于用于片​​材优化的类似形状的边缘的对准,并且优选地,对于每个最终产品的图案的相邻分组,以便于定位和组装,并且最优选地, 以这样的方式,每个组可以用单个切割从片材切断,以便于使用片材或卷材剪切机械。