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    • 1. 发明申请
    • METHOD FOR BUILDING OVER AN OPENING VIA INCREMENTAL LAUNCHING
    • 通过增长启动建立开放式的方法
    • US20090094904A1
    • 2009-04-16
    • US12248599
    • 2008-10-09
    • Theodore Peter Zoli, III
    • Theodore Peter Zoli, III
    • E04B7/14E01D21/06E04D3/00E01D19/12
    • E01D21/065E01D11/00E01D19/12E04B7/14
    • Methods and systems for building a stress ribbon structure over an opening via incremental launching are disclosed. Temporary support structures are constructed adjacent to a permanent support structure. The stress ribbon structure is constructed in a staging area and in sections that are suspended between the temporary support structures. Anchorage panels at each end of a section engage a blister on the temporary and permanent structures. This arrangement allows completed sections to be launched from the temporary support structure onto and along the permanent support structure. Sections are individually constructed and launched and adjacent sections abut along a lateral edge. Adjacent sections are aligned by adjusting tension in integral support cables and their ends pivot or rotate about the blisters via a bearing system with both rotational flexibility and low friction to support sliding in the direction of launching.
    • 公开了通过增量发射在开口上构建应力带结构的方法和系统。 临时支撑结构在永久性支撑结构附近构造。 应力带结构构造在分段区域中并且在悬挂在临时支撑结构之间的部分中。 部分两端的锚地板在临时和永久性结构上接合起泡。 这种布置允许完成的部分从临时支撑结构发射到永久支撑结构上并沿其延伸。 切片单独构造和推出,相邻部分沿着侧边缘邻接。 相邻的部分通过调整整体支撑电缆中的张力而对齐,并且其端部通过具有旋转柔性和低摩擦力的轴承系统围绕泡罩枢转或旋转以支持沿发射方向的滑动。
    • 3. 发明授权
    • Glass fiber reinforced gypsum building components
    • 玻璃纤维增​​强GYPSUM建筑组件
    • US3839836A
    • 1974-10-08
    • US32896873
    • 1973-02-02
    • PAYNE H
    • PAYNE H
    • E04D3/00E04B7/22E04D3/32E04D3/35E04D3/361E04D13/16E04C2/06E04C1/10
    • E04D3/358E04B7/22E04D3/352E04D2003/3617
    • A roof deck formed from glassfiber reinforced gypsum, a roof deck fabricated from such units and a method for making the units. The units have, in crosssection, a flat web; a depending offset tongue along one edge of the web; a depending bight portion inset from the other edge of the web; a projecting shoulder extending from the bight portion generally parallel with the web and extending outwardly beyond the said other edge of the web; a side wall depending from the outboard edge of the shoulder; a flange extending from the base of the side wall; a groove formed by the second edge of the web, the bight and part of the projecting shoulder. The depending offset tongue of one roof deck unit is adopted to engage the groove of an abutting roof deck unit when the flanges of the two units rest on a common plane.
    • 由玻璃纤维增​​强石膏形成的屋顶甲板,由这些单元制造的屋顶甲板和制造单元的方法。 在这些单位中,单位有一个扁平的网页; 沿着幅材的一个边缘的固定偏移舌; 从网的另一边缘插入的依赖的弯曲部分; 突出的肩部从所述弯曲部分延伸大致平行于所述腹板并向外延伸超过所述腹板的所述另一边缘; 从肩部的外侧边缘排出的侧壁; 从侧壁的底部延伸的凸缘; 由网的第二边缘,弯曲部和突出的肩部的一部分形成的凹槽。 当两个单元的凸缘搁置在公共平面上时,采用一个屋顶板单元的固定偏移舌接合邻接屋顶板单元的槽。
    • 7. 发明授权
    • Frameless metal building
    • 无框金属建筑
    • US4221087A
    • 1980-09-09
    • US931854
    • 1978-08-07
    • Colin F. Lowe
    • Colin F. Lowe
    • E04D3/00E04B1/08E04B7/20E04D3/30E04B7/02
    • E04B1/08E04B7/20E04D3/30
    • A series of rectangular roof panels and rectangular wall panels each include inner and outer corrugated sheet metal skins which are rigidly secured by fasteners to opposite sides of formed sheet metal longitudinally extending spacer members rigidly connected by formed sheet metal laterally extending spacer members. A formed sheet metal box-type ridge beam and a series of fasteners rigidly connect the inner skins and spacer members of the roof panels on opposite sides of the ridge to transmit tension forces, and a compressive wedge and fasteners rigidly connect the outer skins and spacer members of the roof panels for transmitting compression forces. Inclined inner attachment plates and fasteners rigidly connect the inner skins and spacer members of the roof panels to the inner skins and spacer members of the wall panels, and outer attachment plates and fasteners rigidly connect the spacer members of the roof panels to the outer skins and spacer members of the wall panels to form a building structure which has substantial total strength and can be easily and quickly erected without the use of a crane. In some buildings, each of the roof and wall panels may also be formed from a single metal sheet which forms inner skin portions and outer skin portions connected by integral right angle side portions. Longitudinally spaced and laterally extending sheet metal spacers connect the outer skin portions to the side portion of each panel, and longitudinally spaced and laterally extending elongated tie members rigidly connect the inner skin portions of all the panels.
    • 一系列矩形屋顶板和矩形墙板均包括内部和外部波纹板金属表层,其通过紧固件刚性地固定到成形的金属板纵向延伸的间隔件的相对两侧,该间隔件通过成形的金属板横向延伸的间隔件刚性连接。 一个形成的金属薄板型脊梁和一系列紧固件将屋顶板的内表面和间隔件刚性地连接在脊的相对侧上以传递张力,并且压缩楔和紧固件将外表皮和间隔件 用于传递压缩力的屋顶板的构件。 倾斜的内部附接板和紧固件将屋顶板的内部表皮和间隔件刚性地连接到墙板的内表面和间隔件上,并且外部附接板和紧固件将顶板的间隔件刚性地连接到外表面, 壁板的间隔件,以形成具有大量总强度的建筑结构,并且可以在不使用起重机的情况下容易且快速地架设。 在一些建筑物中,屋顶和墙板中的每一个也可以由形成内部皮肤部分的单个金属板和由整体直角侧部分连接的外部皮肤部分形成。 纵向间隔和横向延伸的金属间隔件将外皮部分连接到每个面板的侧部,并且纵向间隔开并横向延伸的细长连接构件将所有面板的内皮部分刚性连接。
    • 8. 发明授权
    • Architectural panel material for use as roofing material, material for
external wall and the like purposes
    • 用作屋面材料的建筑面板材料,外墙材料等用途
    • US4163351A
    • 1979-08-07
    • US854952
    • 1977-11-25
    • Takashi Ishikawa
    • Takashi Ishikawa
    • E04D3/00E04C20060101E04C2/00E04D1/06E04D1/18E04D3/24E04D3/30E04D3/32E04D3/365
    • E04D3/32E04D3/24E04D3/30E04D3/365
    • The efficiency of work for constructing the roof, the external walls and the like of a house will be greatly improved if the architectural material is standardized and designed to minimize the processing which must be made at the site. To this end, there is provided a specific profile of an architectural panel material, i.e. a substantially inverted T-shaped profile mainly consisting of a main body section having an inclined area, and an overlapping head section having an overlapping area continuous with and projecting toward the upper side from the inclined area. Remarkable effects, in addition to above stated advantages, are derived from this profile, such as preventing infiltration of rainwater into the back side of the panel, improved mechanical strength, and an attractive three-dimensional appearance of the finished roof and external wall.
    • 如果建筑材料被标准化并设计成使得现场必须进行的加工最小化,则房屋屋顶,外墙等的建造效率将大大提高。 为此,提供了一种建筑面板材料的特定外形,即,主要由具有倾斜区域的主体部分组成的基本上为倒置的T形轮廓,以及具有重叠区域的重叠头部部分, 上侧从倾斜区域。 除了上述优点之外,除了上述优点之外,还具有显着的效果,例如防止雨水渗透到面板的背面,提高的机械强度以及成品屋顶和外墙的有吸引力的三维外观。