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    • 22. 发明授权
    • Bearers for solid of revolution tanks on board ships
    • 用于固体油箱上的油箱的支架
    • US3841269A
    • 1974-10-15
    • US34972373
    • 1973-04-10
    • TECNICA SENER IND Y NAVAL SA
    • URRUELA J
    • F17C3/04B63B3/70B63B25/12B63B25/16B65D88/04B65D90/12F17C13/08B63B25/14
    • B63B25/12B65D90/12F17C13/082F17C2201/0128F17C2205/018F17C2270/0105Y10S220/901Y10S248/901
    • Load bearers for bearing solid of revolution tanks having vertical axes of revolution on board ships, comprising continuous peripheral structure arranged around the tank and positioned in the equatorial area thereof, two bearer and coupling members surrounding the tank and each being coupled by one of their edges to the peripheral structure and by the other to a bearer member of the ship so that the forces perpendicular to the axis of revolution of the tank are absorbed by at least one of the bearer and coupling members and the forces parallel to the axis of revolution of the tank are absorbed by both the bearer and coupling members, one of which works under traction and the other under compression so that whatever the interspacing between the bearer and coupling members and the tank may be, bending moments will not be induced in the tank, said peripheral structure being coupled to the tank so that at least the inner peripheral part of the structure forms part of the tank.
    • 用于承载在船上具有垂直旋转轴线的革命转储罐的承载件,包括围绕罐布置并位于其赤道区域中的连续外围结构,围绕罐的两个承载和联接构件,并且每个承载件和联接构件通过其边缘之一 到外围结构,另一方面到船舶的承载构件,使得垂直于罐的旋转轴线的力被承载和联接构件中的至少一个吸收,并且平行于旋转轴线的力 容器被承载和联接构件吸收,其中一个在牵引力下工作,而另一个在压缩作用下工作,使得不管承载件和联接构件和罐之间的任何间隔如何,罐中不会引起弯矩, 所述外围结构联接到所述罐,使得所述结构的至少所述内周部分形成所述罐的一部分。
    • 23. 发明授权
    • Hollow sphere and structural elements for constructing same
    • 中空球面和结构构件的构造
    • US3691704A
    • 1972-09-19
    • US3691704D
    • 1970-05-19
    • PHILLIP J NOVAK
    • NOVAK PHILLIP J
    • A63H33/06B65D88/04E04B1/32
    • A63F9/12A63F2009/1094A63F2009/1216A63F2009/124A63H33/062B65D88/04E04B1/3211E04B2001/3276Y10S52/10
    • A plurality of structural elements, having dished bodies presenting convex outer and concave inner surfaces and corresponding in shape to that of a geometrical subsection of an even fractional portion of a spherical shell, are closely associated and preferably interfitted by means of broad and flat tongues and corresponding recesses, that are spaced below such convex outer surfaces and preferably lie substantially wholly between the convex and concave surfaces, to form a hollow sphere. Both the tongues and recesses have mating nubs for interlocking the individual elements together when interfitted to form a sphere. The structural elements can either be positively secured to each other or left free for easy disassembly. The convex outer surfaces of various of these structural elements may be colored or otherwise treated differently to provide a patterned exterior surface for the sphere, and the mated contiguous edges of such structural elements may be joined, adhesively or otherwise.
    • 多个结构元件具有呈现凸形外凹面和凹面内表面并且具有与球壳的均匀部分的几何部分相对应的形状的凹陷体,并且优选地通过宽扁平舌片和 相应的凹部,其在这种凸形外表面下方间隔开,并且优选地基本上完全位于凸表面和凹面之间,以形成中空球体。 舌状物和凹槽均具有配合的结合体,用于在互相配合形成球体时将各个元件互锁在一起。 结构元件可以相互牢固地固定或保持自由以便于拆卸。 各种这些结构元件的凸形外表面可以被着色或以其他方式不同地进行处理,以提供用于球体的图案化外表面,并且这些结构元件的配合的邻接边缘可以粘合地或以其他方式接合。
    • 30. 发明授权
    • Secondarily contained underground liquid storage vessel and method of
construction
    • 二次容纳地下储液容器及施工方法
    • US5450975A
    • 1995-09-19
    • US339294
    • 1994-11-09
    • James L. Lawrence
    • James L. Lawrence
    • B29C41/06B65D88/04B65D90/02B65D25/18
    • B29C41/06B65D88/04B65D90/028
    • A fluid storage vessel and providing spacing protrusions for creating interstitial spaces to permit fluid flow about the outer wall of the inner tank to a collection zone where leaked fluid may be detected. Leak detection devices are provided to determine if the inner tank is leaking fluid. A sump base is formed during the rotomolding process to create a secondary containment layer including a sump base of one-piece construction. The sump base includes entry ports for facilitating the insertion of conduit to access the fluid stored in the fluid storage vessel. The method used to create the secondarily contained fluid storage vessel includes a rotomolding process which provides a seamless construction and eliminates mechanical connections of either the outer shell or the sump base and the shell.
    • 流体存储容器并且提供用于产生间隙空间的间隔突起,以允许流体围绕内罐的外壁流动到可以检测泄漏流体的收集区。 提供泄漏检测装置以确定内罐是否泄漏流体。 在滚塑过程期间形成储槽基底以形成包括一体结构的贮槽底座的二次容纳层。 贮槽基座包括进入端口,用于便于插入管道以接近存储在流体储存容器中的流体。 用于产生第二容纳流体储存容器的方法包括提供无缝构造并消除外壳或贮槽底座和壳体的机械连接的滚塑过程。