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    • 41. 发明授权
    • Enclosure with interlocking frame joints
    • 外壳与联锁框架接头
    • US4809146A
    • 1989-02-28
    • US137101
    • 1987-12-23
    • David W. Johnson
    • David W. Johnson
    • A47B47/04A47B73/00B29C70/52B65D6/08E04B1/19F21L7/00
    • A47B73/00A47B47/04B29C70/525E04B2001/1924E04B2001/1933
    • A multi-purpose enclosure is defined by the use of a frame made up of 24 very similar structural members that are carefully notched so that they interlock at the corners to define a joint without the use of any fasteners or adhesive. When properly done, the 24 elongated members which define the joints also define, at each joint, a three-sided inside corner so that there are eight inside corners, one at each joint, which in the preferred embodiment define a cube. Each combination of four inside corners which defines a quadrilateral plane which is orthogonal to one of the three main X, Y, or Z axes of the enclosure seats a panel, in the preferred embodiment, so that a six-sided paneled enclosure is formed for a multitude of uses, a lamp being shown as one example in this disclosure.
    • 通过使用由24个非常相似的结构构件构成的框架来限定多用途外壳,该框架被小心地切口,使得它们在角部处互锁以限定接头而不使用任何紧固件或粘合剂。 当正确完成时,限定关节的24个细长构件也在每个关节处限定三边内角,使得在每个关节处有八个内角,一个位于每个关节处,在优选实施例中限定立方体。 在优选实施例中,限定与壳体的三个主要X,Y或Z轴中的一个正交的四边形平面的四个内角的每个组合在一个优选实施例中,使得形成六边镶板外壳 许多用途,灯在本公开中被示为一个示例。
    • 46. 发明授权
    • Joining system for triangulated structures
    • 三角结构连接系统
    • US4509879A
    • 1985-04-09
    • US245551
    • 1979-06-04
    • Peter J. Pearce
    • Peter J. Pearce
    • E04B1/58E04B1/19E04B1/344F16C11/04F16B7/00
    • E04B1/1903E04B2001/1927E04B2001/1933E04B2001/1963E04B2001/1975Y10T403/343Y10T403/44
    • The invention is directed to structural elements for use in triangulated structures, and structures assembled from such elements. In particular the invention provides an elongated structural element for use in a triangulated structural assembly, provided at at least one end thereof with connector means adapted for pivotal connection directly to at least one further structural element about a pivot axis which is transverse to the longitudinal axis of the structural element and which is disposed outside the general envelope of the structural element itself. The arrangement is such that from two to as many as one hundred such structural elements may be interconnected at a structural node without the use of an intermediate nodal member.
    • PCT No.PCT / US78 / 00100 Sec。 371日期1979年6月4日 102(e)日期1979年6月4日PCT提交1978年10月3日PCT公布。 公开号WO79 / 00176 日期为1979年4月5日。本发明涉及用于三角形结构的结构元件,以及由这些元件组装的结构。 特别地,本发明提供了一种用于三角形结构组件的细长结构元件,其在至少一个端部处设置有连接器装置,连接器装置适于直接枢转连接至至少一个另外的结构元件,该枢转轴线横向于纵向轴线 并且其设置在结构元件本身的一般包络线的外侧。 这种布置使得在结构节点处可以将两个至多达一百个这样的结构元件互连,而不使用中间节点构件。
    • 47. 发明授权
    • Alternating V-truss roof system and method of erection
    • 交替的V型桁架屋顶系统和勃起方法
    • US4435932A
    • 1984-03-13
    • US312711
    • 1981-10-19
    • Paul A. SeaburgRichard W. Lautensleger
    • Paul A. SeaburgRichard W. Lautensleger
    • E04B1/19E04B7/02E04C3/40E04B7/00
    • E04B1/19E04B7/022E04C3/40E04B2001/1933E04B2001/1936E04B2001/1984E04B2001/1987E04B2001/199E04B2001/1993
    • A roof supporting structure and method of erecting such structure, the structure comprising a series of spaced apart rafters lying in parallel relation with a series of V-truss units extending between the rafters in parallel relation at spaced apart intervals to define rows of V-truss units supported at their opposite ends on the rafters, the V-truss units in a given row lying in alternating relation with respect to the V-truss units in the next adjacent row, the ends of the V-truss units in one row being interconnected with the adjoining ends of the V-truss units in the next adjacent row so that horizontal forces will be transmitted jointly by the V-truss units in adjacent rows. Modified V-truss units may be provided at the ends of alternate rows to further enhance the horizontal load supporting capability of the structure, the modified V-truss units additionally serving to mount the wall panels of a building utilizing the roof supporting structure. Girt members may be provided at the ends of the rows between the rows containing the modified V-truss units to provide continuity of support for the wall panels.
    • 屋顶支撑结构和竖立这种结构的方法,该结构包括一系列间隔开的椽子,其平行地与一系列以隔开间隔延伸的V型桁架单元平行地间隔开,以限定V形桁架行 在椽子的相对端支撑的单元,给定行中的V型桁架单元相对于下一相邻行中的V型桁架单元交替关系,一排中的V型桁架单元的端部互连 其中V形桁架单元的相邻端在下一相邻行中,使得水平力将由相邻行中的V型桁架单元共同传递。 改进的V型桁架单元可以设置在交替行的端部,以进一步增强结构的水平负载支撑能力,修改的V型桁架单元另外用于使用屋顶支撑结构来安装建筑物的墙板。 可以在包含修改的V型桁架单元的行之间的行的端部设置间隙构件,以为墙板提供连续的支撑。
    • 49. 发明授权
    • Connecting assembly for geodesic dome framework construction
    • 大地测量穹顶框架结构连接组件
    • US4357118A
    • 1982-11-02
    • US239617
    • 1981-03-02
    • John R. Murray
    • John R. Murray
    • E04B1/19E04B1/32F16D1/00F16D3/00
    • E04B1/1909E04B1/3211E04B2001/1918E04B2001/1933E04B2001/1945E04B2001/1957E04B2001/3247E04B2001/3294Y10T403/343Y10T403/347Y10T403/443
    • A connecting assembly consisting of a hub and a plurality of U shaped connecting members for joining the framework of geodesic domes is provided. The hub is formed from a hollow member containing a plurality of radial grooves designed to accept the rectangular end of framing members. The rectangular ends are secured in the grooves by the U shaped connecting members that wrap around the bottom of the grooves of the internal side of the hub and thereafter lie adjacent to the flat end of the framing members. Further, nails, screws or bolts can be used to secure the U shape connecting members to the rectangular ends of the framing members. The frame members extend radially from the center of the hub and are so arranged that the angle between the adjacent framing members is at least 40.degree.. The grooves are so designed that the attached framing members form an angle from 1.degree. to 14.degree. with a plane perpendicular to the central axis of the hub.
    • 提供了一种由毂和多个用于连接测地圆顶框架的U形连接构件组成的连接组件。 轮毂由包含多个径向凹槽的中空构件形成,该多个径向凹槽被设计成接纳框架构件的矩形端。 矩形端部通过U形连接构件固定在凹槽中,U形连接构件围绕毂的内侧的凹槽的底部缠绕,然后邻近框架构件的平坦端。 此外,可以使用钉子,螺钉或螺栓将U形连接构件固定到框架构件的矩形端部。 框架构件从毂的中心径向延伸并且被布置成使得相邻框架构件之间的角度至少为40°。 凹槽被设计成使得附接的框架构件形成从1度到14度的角度,并且垂直于毂的中心轴的平面。
    • 50. 发明授权
    • Structural node for large space structures
    • 大型空间结构的结构节点
    • US4332501A
    • 1982-06-01
    • US225549
    • 1981-01-16
    • Paul Slysh
    • Paul Slysh
    • E04B1/19E04H12/18E04H12/00
    • E04B1/19E04H12/182E04B2001/1918E04B2001/1927E04B2001/1933E04B2001/1936E04B2001/1957E04B2001/1963E04B2001/1987Y10T403/342Y10T403/447Y10T403/53
    • An automated assembly, maintenance, and repair system for the construction of a large space structure. The space structure comprises a plurality of trusses and truss junctions that in turn are made up of a plurality of individual struts and nodes. The truss assemblies are progressively built by an assembler trolley as the trolley crawls along the constructed truss. The trolley comprises a forward crawler and a rear crawler joined by an articulated coupler. The crawlers are carried along the structure by belt transports incorporating grippers that engage the truss structure at the nodes. Manipulator arms for strut and node assembly are located on the forward crawler, and the majority of control, power, and communication systems are located in the rear crawler. Cargo canisters filled with component parts for constructing the space structure are carried by the forward crawler. The space structure configuration is determined by the arrangement of the individual struts and nodes during the assembly process.
    • 一种用于建造大型空间结构的自动组装,维护和修理系统。 空间结构包括多个桁架和桁架结,其又由多个独立的支柱和节点组成。 桁架组件由组装推车逐步建成,因为手推车沿着构造的桁架爬行。 手推车包括前履带和由铰接式联接器连接的后履带。 爬行器通过带式输送装置沿着结构承载,该输送装置包括在节点处接合桁架结构的夹具。 用于支柱和节点组装的操纵臂是位于前履带上的,大多数控制,动力和通讯系统位于后履带。 填充有用于构造空间结构的部件的货物容器由前向履带承载。 空间结构配置由组装过程中各个支柱和节点的布置决定。