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    • 8. 发明申请
    • DOMED NON-STEEL ROOF STRUCTURE
    • 主要的非钢结构
    • US20130061539A1
    • 2013-03-14
    • US13635458
    • 2011-03-11
    • Murray Ellen
    • Murray Ellen
    • E04B7/10
    • E04B1/3211E04B7/102E04B7/14
    • A domed non-steel roof structure (10). The roof structure (10) including a plurality of non-steel, generally rectangular roof members (12). The roof members (12) each including: an upper surface (14); a lower surface (16); a pair of first opposed side surfaces (18a and 18b) diverging from the upper surface to the lower surface; a pair of second opposed side surfaces (20a and 20b) diverging from the upper surface to the lower surface; at least one first passage (22a) from one of the pair of the first side surfaces to the other of the pair of the first side surfaces; and at least one second passage (24a) from one of the pair of the second side surfaces to the other of the pair of the second side surfaces. The roof structure (10) also includes: a first cable (28) passing through the first passages in adjacent said roof members; and a second cable (29) passing through the second passages in adjacent said roof members. Applying tension to the first cable (28) adjacent the outermost two of the first side surfaces (18a and 18b) and applying tension to the second cable (29) adjacent the outermost two of the second side surfaces (20a and 20b) drives the end faces of adjacent said roof members (12) towards each other thereby increasing the angle between adjacent said roof members (12) in a first direction and a second direction, substantially normal to the first direction.
    • 圆顶非钢屋顶结构(10)。 屋顶结构(10)包括多个非钢的,大致矩形的屋顶构件(12)。 屋顶构件(12)各自包括:上表面(14); 下表面(16); 一对从上表面向下表面发散的第一相对的侧表面(18a和18b); 一对从上表面向下表面发散的第二相对侧表面(20a和20b); 从所述一对第一侧表面中的一个到所述一对所述第一侧表面中的另一个的至少一个第一通道(22a) 以及从所述一对第二侧表面中的一个到所述一对第二侧表面中的另一个的至少一个第二通道(24a)。 屋顶结构(10)还包括:邻近所述屋顶构件穿过第一通道的第一电缆(28); 以及在相邻的所述屋顶构件中穿过所述第二通道的第二缆索(29)。 向邻近最外面的两个第一侧表面(18a和18b)的第一电缆(28)施加张力并将邻近的第二侧表面(20a和20b)附近的第二电缆(29)施加张力驱动端 相邻的所述屋顶构件(12)的面朝向彼此,从而在基本上垂直于第一方向的第一方向和第二方向上增加相邻的所述屋顶构件(12)之间的角度。
    • 9. 发明授权
    • Collapsible shelters with and without a floating hub
    • 有和没有浮动枢纽的可折叠避难所
    • US08082938B2
    • 2011-12-27
    • US12322062
    • 2009-01-27
    • A. Jon Prusmack
    • A. Jon Prusmack
    • E04H15/44E04B7/10
    • E04H15/50E04B1/32E04B1/3441
    • Collapsible portable self-supporting shelter structures having from at least two component quad sections to seven or more component quad sections, which joined end to end form the width of the structure; and, said entire component sections optionally being joined side to side form a desired depth of the portable shelter. The resulting structure is a collapsible self-supporting prefabricated deployable shelter having a clear span interior without supporting columns.Some versions of the collapsible portable self-supporting shelter structure due to its configuration may optionally contain a floating hub which is a top element extending above the structure's standard exterior matrix frame. The floating hub forms a high pitch atop the shelter, which high pitch causes the fabric, which covers the matrix frame, to be maintained in a taut downward-sloping condition over the shelter top surface so no rain or snow collects in the fabric at the top of the shelter.
    • 具有从至少两个部件四部分到七个或更多个部件四边形部分的可折叠便携式自支撑防护结构,其端接到端部形成结构的宽度; 并且,所述整个部件部分可选地并排连接形成便携式防护罩的期望深度。 所得到的结构是可折叠的自支撑预制可部署的避难所,其具有在没有支撑柱的情况下具有透明的跨度内部。 可折叠便携式自支撑遮蔽物结构由于其配置而可能可选地包含浮动轮毂,其是在结构的标准外部矩阵框架上方延伸的顶部元件。 浮动轮毂在遮蔽物顶部形成高间距,高间距导致覆盖矩阵框架的织物在遮蔽物顶表面上保持绷紧的向下倾斜的状态,因此在织物中没有雨或雪聚集在织物上 避难所的顶部。
    • 10. 发明申请
    • CONNECTION NODE FOR A THREE-DIMENSIONAL FRAMEWORK, IN PARTICULAR FOR A GEODESIC STRUCTURE
    • 用于三维结构的连接节点,特别是用于地理结构
    • US20110167738A1
    • 2011-07-14
    • US12093484
    • 2006-04-25
    • Michael SchneiderCarsten FullandGordian Overschmidt
    • Michael SchneiderCarsten FullandGordian Overschmidt
    • E04B7/10E04B1/19E04B1/32
    • F16B7/185E04B1/32E04B2001/193E04B2001/1963E04B2001/3247F16B21/09F16B37/044Y10T403/341Y10T403/443
    • The invention relates to a connecting node (10, 20) for constructing a three-dimensional framework (100), in particular a geodetic structure, wherein the connecting node (10, 20) has at least one connecting arrangement for connection by way of a definable number of (n) of basic structural elements (3) attached to the respective connecting node (10, 20) with other identical connecting nodes (10, 20). It is provided that the connecting node (10, 20) is formed as a disk (4, 6) having a predefinable number (n) of keyholes (1n), with each of the keyholes (1n) being penetrated by a connecting means (5) and engaging with a receiving element (3A) attached on the basic structural elements (3n), so that each basic structural element (3n) is rotatably supported in the formed first connecting arrangement (5, 3A) and can be pre-adjusted and subsequently attached at arbitrary predefinable angles. The invention is also directed to a three-dimensional framework (100), in particular a geodetic structure, with a plurality of configurable basic structural element (3n), which are secured between the connecting nodes (10, 20) so as to form the three-dimensional framework.
    • 本发明涉及一种用于构建三维框架(100)的连接节点(10,20),特别是大地测量结构,其中连接节点(10,20)具有至少一个连接装置,用于通过 可连接到各个连接节点(10,20)的(n)基本结构元件(3)的可定义数量与其它相同的连接节点(10,20)相连。 提供了连接节点(10,20)形成为具有预定数量(n)个键孔(1n)的盘(4,6),其中每个键孔(1n)被连接装置( 5)并且与附接在基本结构元件(3n)上的接收元件(3A)接合,使得每个基本结构元件(3n)可旋转地支撑在形成的第一连接装置(5,3A)中并且可以被预先调节 并随后以任意可预定的角度附接。 本发明还涉及具有多个可配置的基本结构元件(3n)的三维框架(100),特别是大地测量结构,其被固定在连接节点(10,20)之间,以便形成 三维框架。