Deployable structures may be useful in many applications as they may provide a compact storage configuration and larger useful area deployed configuration. The present invention provides a novel structure and method for deploying a structure.
The present invention may be better understood by reference to the description and figures that follow. It is to be understood that the invention is not limited in its application to the specific details as set forth in the following description and figures. The invention is capable of other embodiments and of being practiced or carried out in various ways.
These and other features, aspects, and advantages of the present invention are better understood when the following detailed description is read with reference to the accompanying drawings, wherein:
Repeat use of reference characters in the present specification and drawings is intended to represent same or analogous features or elements of the invention.
Reference will now be made in detail to various embodiments of the invention, one or more examples of which are illustrated in the accompanying drawings. Each example is provided by way of explanation, not limitation, of the invention. In fact, it will be apparent to those skilled in the art that modifications and variations can be made in the present invention without departing from the scope and spirit thereof. For instance, features illustrated or described as part of one embodiment may be used on another embodiment to yield a still further embodiment. Thus, it is intended that the present invention covers such modifications and variations as come within the scope of the appended claims and their equivalents.
As used herein, reference characters with the same two ending digits as other reference characters to indicate structure in the present specification and drawings, without a specific discussion of such structure, is intended to represent the same or analogous structure in different embodiments. For example, and as further seen herein, the structures indicated by reference characters 102 and 202 both indicate a frame in different embodiments of the present invention.
The present invention includes deployable structures that may readily transition between a stored configuration and a deployed configuration.
Structure 100 also includes door 118. In some embodiments, additional doors or alternative locations for one or more doors may be employed. Alternative types of doors are also within the scope of the present invention, such as double doors, garage doors, and rolling doors. Other openings, such as windows and hatches, may also be included in other embodiments.
Structure 100 also includes frame 101 having top frame members 102, bottom frame members 104, and vertical frame members 108, which are each shown in isolation in
In addition,
Frame members and deployable frame members may be comprised of any suitable material. In some embodiments, frame members and deployable frame members may be comprised of the same or different materials. In addition, some frame members may be of a different material from other frame members, and likewise amongst deployable frame members.
One of ordinary skill in the art will readily appreciate that the depicted embodiment is exemplary and that alternative frame structures and arrangements are within the scope of the present invention. In some alternative embodiments, the frame may be formed with more or less frame members or deployable frame members and/or with alternative and/or additional placements of frame members and deployable frame members. In some embodiments, a single structure may serve as two members, such as a single beam serving as both a deployable floor frame member and a deployable side frame member. In some embodiments of the present invention, a frame may have one, two, three, four, or more top frame members; one, two, three, four, or more bottom frame members; one, two, three, four, or more transverse frame members; and/or one, two, three, four, or more vertical frame members. For example, additional top frame members may be arranged between the frame top frame members 102 shown in
Embodiments of the present invention may also include deployable panels. As shown in
In the depicted embodiment shown in
In other embodiments, some or all deployable panels may be attached, connected, or hinged directly to one or more of frame members 102, bottom frame members 104, and/or vertical frame members 108 without being affixed to any deployable frame members. In some embodiments, some or all of the depicted deployable frame members may be omitted. In still other embodiments, deployable frame members may take alternative constructions. For example, deployable roof panels 130 are shown in
In some embodiments, one or more panels may be omitted or of smaller dimensions. For example, if an open or partially-open configuration is preferred after the unit is deployed, one or both deployable side panels and/or deployable end panels may be omitted. Alternatively, one or more of deployable side panels and/or deployable end panels could be configured to only extend partially between a deployable floor panel and a deployable roof panel, such as to leave a partial opening upon deployment, such as for a window frequently observed at concession stands.
The panels of the present invention may be composed of any suitable material for the intended use of the structure. In some embodiments, the panels will be metal, such as aluminum. In one embodiment, an aluminum skin of about 0.125″ thickness or other embodiment using a composite material such as available from 3A Composites USA under the brand name Dibond® may be employed. Some or all panels (such as interior floor panels) may include a durable finish, such as a non-skid coating available from TUFF Coat Manufacturing, Inc. of Montrose, Colo. In one embodiment, an interior side of a bottom panel may be coated with a non-skid coating.
In some embodiments, sealant may be provided at hinged areas or been any gaps between panels. Such sealant may include rubber stripping or any other suitably flexible or pliable material. Any suitable sealant may be applied on the interior of the shelter, on the exterior of the shelter, or both. By way of example, sealant may be provided between or around the position at which deployable roof panel 130 meets top frame member 102, at which deployable floor panels 132 meets bottom frame member 104, at which deployable side panels 134 meet deployable floor panels 132, and/or at other locations at which components meet or articulate.
As shown in
One of ordinary skill in the art will appreciate that the depicted actuators are exemplary in nature and that alternative lifting members, such as electrical, mechanical and pneumatic actuators, may be employed. In addition, alternative quantities and placements of actuators are within the scope of the present invention. By way of example, an actuator may attach to deployable roof frame members in a track such that the actuator moves outwardly in the track as the unit is deployed. In some embodiments, actuators may be omitted, such as in structures designed for manual operation, and a locking mechanism may be included to hold the deployable panels in place after manual deployment.
Structures of the present invention may be shaped in any manner suitable for its intended purpose. In some embodiments, the stored configuration of the inventive structure is in accordance with standards set by the International Organization for Standardization (“ISO”) for cargo and shipping containers, including ISO 1C, which is incorporated herein in its entirety by reference. In one embodiment, the structure may have a generally rectangular shape in its stored configuration. In other embodiments, the inventive unit may have one or more of the following parameters: 8′×8′×19′10.5″ dimensions in stored configuration, about 400 square feet of interior space in its deployed configuration, and a tare weight of 10,000 pounds or less. Structures of the present invention may also include slots 144 located on their bottom to accommodate the forks of a forklift. In addition, structures of the present invention may have legs, which may be optionally retractable or attachable to the structure, to elevate the structure above the ground, such as legs 145 shown in
In operation, structure 100 may be configured to transition between a stored configuration (such as shown in
With reference to
Upon complete deployment of deployable side panels 134 and deployable floor panel 132, deployable end panel 136 may be deployed. In the depicted embodiment, deployable end panel 136 is manually articulated about a hinge for deployment, but in other embodiments such deployment may be automated, such as by an actuator or mechanical means. In still other embodiments, deployable end panels 134 may also or alternatively include an accordion or panache-type of panel that may be unfolded manually or automatically upon deployment. In still other embodiments, deployable end panels 134 may also or alternatively include a flexible material, such as a rubber or cloth material, that is connected to deployable side walls and deployed therewith. To return a unit to its stored configuration, the deployment order is merely reversed.
The embodiment in
Structures of the present invention may be manually deployed, automatically deployed, or deployed using a combination of manual and automated deployment. By way of example, system 100 in
As indicated above, and by way of example and without limiting the present invention, automated deployment may be carried out using electrohydraulic actuators. In one embodiment, a control panel 150 having buttons A, B, C, and D, such as shown in
In other embodiments, a phone, cellular phone, or smart phone device may be used as a control panel and may be in communication with the structure through cellular or network signals or connections. As used herein, the reference “in communication with” indicates that data and/or signals are transferrable between the referenced components, and include both physical connections and wireless connections. In addition, “in communication with” also includes embodiments in which the referenced components are in direct connection (i.e., directly connected to each other with a cable) as well as indirect connections, such as when data is transmitted through an intermediate component and either relayed in the same format or converted and then relayed to the referenced component. In other embodiments, some or all of the aforementioned probes may be in communication with a single probe processor. In some embodiments, a security code may be necessary to operate control panel 150 or any other device controlling structure 100.
As shown in the exemplary embodiment in
In some embodiments, the foregoing steps may be controlled by separate control buttons. In some embodiments, individual buttons on a control panel may operate individual steps in the deployment process. For example, one button on a control panel may activate step 1 above and another button may activate step 2 above. Similarly, buttons may be limited to controlling the deployment for only one side of a structure. In addition, certain buttons on a control panel may be dedicated to retracting some or all deployable panels to the stored configuration. In some embodiments, a manual or automatic locking mechanism, such as a pin that locks the some or all components in place, may be present to secure the structure in a deployment configuration. In some embodiments, a structure may be articulated from a deployment configuration to a stored configuration by performing the deployment process in reverse order.
Additional features may also be optionally incorporated into structures of the present invention. Such features may include, without limitation, one or more of interior lighting (such as recessed light emitting diodes), interior electrical receptacles in the floor and/or some or all of the panels, audible and/or visual warning signals to indicate deployment or retraction of the structure, insulation or materials to provide an R-value of about 14 or greater, and heating and/or air conditioning units (HVAC) also known as environmental control units (ECU). Some embodiments may also include battery power units, generators, and/or ports for receiving power from external sources. Some units may have storage containers for gasoline or other fuel sources. Still other units may include solar panels for powering the unit. In some embodiments, the solar panels may be attached to a deployable panel in order to provide protection while in a stored configuration.
The foregoing description of illustrative embodiments and uses of the invention have been presented only for the purpose of illustration and description and is not intended to be exhaustive or to limit the invention to the precise forms disclosed. Numerous modifications and adaptations thereof will be apparent to those of ordinary skill in the art without departing from the scope of the present invention. As such, further modifications and equivalents of the invention herein disclosed may occur to persons skilled in the art using no more than routine experimentation, and all such modifications and equivalents are believed to be within the spirit and scope of the invention as described herein.
The present application claims priority to U.S. Provisional Patent Application Ser. No. 61/799,150, filed on Mar. 15, 2013, U.S. Provisional Patent Application No. 61/704,278, filed on Sep. 21, 2012, and U.S. Provisional Patent Application No. 61/644,960, filed on May 9, 2012, each of which is incorporated herein in its entirety by reference.
Number | Date | Country | |
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61799150 | Mar 2013 | US | |
61704278 | Sep 2012 | US | |
61644960 | May 2012 | US |