Abstract:
A kit for building a structure which includes a plurality of panels (28, 30), each panel having at least one respective peripheral formation (34) and a plurality of fasteners (10); each fastener having at least two clip formations (12, 14), and wherein the clip formations of a fastener are respectively engageable with the peripheral formations of two of the panels which are positioned adjacent each other, to secure the panels together.
Abstract:
A shelter provides protection against airborne contaminants such as, biological, chemical or radioactive agents. The shelter includes an isolating unit having impermeable panels, frame members and at least one entrance. The shelter further includes an occupant interface to the exterior and at least one control interface. In addition, a method for protecting occupants against threats within the inner space of a chamber is provided.
Abstract:
In the present invention an inflatable tent comprising a pliable base is connected to a pliable shell. An inflatable support rib is connected to the pliable shell, and a support frame is connected to the pliable shell.
Abstract:
This invention comprises an inflatable structure that is constructed by combining polyhedron structural elements to form more complex geodesic structures. The structural elements are constructed out of straight inflatable tubes, in which the warp of the polyester reinforced fabric is aligned with the principal tube axis, giving it high resistance to bending. The complementary leg ends are connected at the vertices with connectors that comprise a slider and track formation, fixed along the axial angle at the end of each leg. Each leg end is shaped along the natural complimentary lines along the intersecting surfaces of the adjacent structural element. Once assembled, in combination with a fabric cover and groundsheet, the tent is stable and completely freestanding.
Abstract:
An inflatable temporary work shelter. In one embodiment, the shelter has an inflatable framework and a covering material. In a second embodiment the shelter could be formed of inflatable panels. The shelter includes a spine formed between two separate bearing frame members which, on inflation, contact each other. When inflated, for example, from a position beneath a structure such as an aeroplane wing suspending an engine pod by a pylon, the shelter will initially impinge against the engine pod and because the shelter is not fully inflated the spine will open and allow the shelter to continue to rise until fully inflated when the spine will be light on the pylon and the shelter will contain the engine.
Abstract:
A pneumatic wall structure and a method of making and erecting same. The pneumatic wall structure includes an inner flexible tent sheet, a central flexible tent sheet and an outer flexible tent sheet. The inner, the central and the outer flexible tent sheets are arranged to form a two-layer wall structure comprising (i) an inner layer formed by the inner tent sheet and the central tent sheet and, (ii) an outer layer formed by the central tent sheet and the outer tent sheet. The inner layer is inflatable and provides a main support structure for the wall structure, and the outer layer forms a convection space into which an ambient air is capable of flowing. The inflatable support tubes are arranged between the central tent sheet and the outer tent sheet to provide redundancy to the main support structure and to provide a spacer between the central tent sheet and the outer tent sheet.
Abstract:
A rapidly deployable protective enclosure is constructed from a flexible membrane surrounding a framework of inflatable support members each individually coupled to a central fluid distribution system. Each inflatable support member is individually repairable or replaceable from within the enclosure without effecting the structural integrity of the remaining framework. A system is provided to make the enclosure air tight along interlocking tongue and groove tracks, and an air tight passage between modularly connected enclosures is also provided.
Abstract:
A rapidly deployable protective enclosure is constructed from a flexible membrane surrounding a framework of inflatable support members each individually coupled to a central fluid distribution system. Each inflatable support member is individually repairable or replaceable from within the enclosure without effecting the structural integrity of the remaining framework. A system is provided to make the enclosure air tight, and air tight passage between modularly connected enclosures is also provided.
Abstract:
An inflatable tent comprises a frame and an optionally removable cover. The frame has a single inflatable continuous generally-tubular member. The generally-tubular member comprises a base section and an upright section. The base section is fixedly attached at one or more connection points to the upright section. The upright section comprises a rounded main arch having two ends, both of which are fixedly attached to the base section. The upright section further comprises at least one rounded supporting arch segment having one end attached to the main arch and the other end attached to the base section.
Abstract:
An inflatable tent construction 10 including a wall unit 11, and a roof unit 12 fabricated from fifteen side panels 40 wherein each side panel 40 comprises a panel member 30 surrounded by two inflatable side channels 21, 22, and an inflatable base channel 23 that define generally identically shaped equilateral triangles. The wall unit comprises first and second groups of five panel members 30, respectively, and the roof unit 12 comprises a third group of five panel members 30 to create the pentadecahedron configuration of the wall 11 and roof 12 units of the tent construction.