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    • 5. 发明授权
    • Storage tank with flexible shear pad
    • 储罐采用柔性剪切垫
    • US08684220B2
    • 2014-04-01
    • US12468617
    • 2009-05-19
    • Kenneth Ryan Harvey
    • Kenneth Ryan Harvey
    • B65D90/08E04H7/20
    • E04H7/20E02D27/38E02D31/00
    • A concrete storage tank structure comprises a tank including a floor slab having a periphery and a wall having inner and outer faces extending upwardly from the floor slab at a position adjacent the periphery of the latter. The tank structure further includes a shear pad extending outwardly away from the tank from a position adjacent a lower portion of the outer face of the wall. The shear pad and the tank are positioned relative to one another in such a way that a space is provided therebetween and a number of elongated flexible connecting elements are arranged so as to extend through the space in interconnecting relationship relative to the shear pad and the tank. A strip of resilient neoprene elastomeric material is disposed in the space. The shear pad is thus flexibly attached to the tank in such a way that the forces imposed on the wall of the tank by the shear pad during movement of the tank during use are minimized.
    • 一种混凝土储罐结构包括一个罐,包括一个具有周边的楼板和一个壁,其内表面和外表面在邻近其周边的位置处从楼板向上延伸。 罐结构还包括从邻近壁的外表面的下部的位置向外远离罐延伸的剪切垫。 剪切垫和罐相对于彼此定位,使得它们之间设置有空间,并且多个细长的柔性连接元件被布置成以互连关系相对于剪切垫和罐延伸通过该空间 。 弹性氯丁橡胶弹性体材料条布置在该空间中。 因此,剪切垫以这样的方式灵活地附接到罐,使得在使用期间在罐的移动期间通过剪切垫施加在罐的壁上的力被最小化。
    • 6. 发明授权
    • Method and apparatus for constructing prestressed structures utilizing a
membrane and floating dome assembly
    • 使用膜和浮动圆顶组件构造预应力结构的方法和装置
    • US5881530A
    • 1999-03-16
    • US874494
    • 1997-06-13
    • Maximiliaan J. Dykmans
    • Maximiliaan J. Dykmans
    • B65D88/34E04B1/16E04B1/32E04B7/08E04B7/10E04C5/08E04G11/04E04G11/06E04G11/36E04G21/12E04H7/20E04H7/28
    • E04B7/102B65D88/34E04B1/168E04B7/08E04C5/08E04G11/04E04G11/065E04G11/36E04G21/12E04H7/20E04H7/28E04B2001/3217E04B2001/3264
    • The present invention is directed to improved tank or containment vessels and processes and apparatus for their construction. The tanks or containment vessels usually consist of circular walls resting on a base and a dome supported by the walls. The dome of the subject prestressed tank is formed by deploying or creating a membrane on the base, applying one or more layers of rigidifying material (and prestressing or reinforcing material if needed) on the membrane and then forming said membrane into a dome before the rigidifying material sets by the selective introduction of compressed air at appropriate locations between the base and the membrane. The hardening of the rigidifying material results in a composite preformed rigid roof or dome having a membrane liner and an overlay of composite construction. Once the walls are created, air pressure can be further utilized to raise this preformed composite dome upward to a predetermined height after which it is fastened to the walls. An appropriate air seal may be used to prevent excessive leakage of air between the walls and the dome and to assist in the raising of the dome. Utilizing this air cushion procedure to raise the dome to its proper location, eliminates the need of scaffolding and other costly support structures. Integral seismic anchors may be also used to complete the construction process to protect the structure against earthquakes and other tremors by anchoring the dome to the tank walls and the tank walls to the base in a manner whereby the seismic forces are translated parallel to the wall instead of radially to the wall.
    • 本发明涉及改进的罐或容纳容器及其构造的方法和装置。 坦克或安全壳通常由围在基座上的圆形墙壁和由墙壁支撑的圆顶组成。 主体预应力罐的圆顶通过在基座上展开或制造膜而形成,在膜上施加一层或多层刚性材料(和预应力或增强材料(如果需要)),然后在刚性化之前将所述膜形成圆顶 通过在基部和膜之间的适当位置选择性地引入压缩空气的材料组。 硬化材料的硬化导致具有膜衬套和复合结构的覆盖层的复合预成型刚性屋顶或圆顶。 一旦创建了壁,就可以进一步利用空气压力将该预制复合圆顶向上提升到预定的高度,之后将其紧固到壁上。 可以使用适当的空气密封来防止壁和穹顶之间的空气过度泄漏,并且有助于提升穹顶。 利用这种气垫程序将穹顶升高到正确的位置,消除了脚手架和其他昂贵的支撑结构的需要。 整体式地震锚也可用于完成施工过程,以通过将地震力平行于墙体平移的方式将穹顶锚固在罐壁和罐壁到基座上,从而保护结构免受地震和其他震击 径向到墙壁。