The inventions herein relate to structures, such as dwellings and other buildings for residential occupancy, commercial occupancy and/or material storage, and to components for such structures.
In the field of residential housing, the traditional technique for building homes is referred to as “stick-built” construction, where a builder constructs housing at the intended location using in substantial part raw materials such as wooden boards, plywood panels, and steel columns. The materials are assembled piece by piece over a previously prepared portion of ground, for example, a poured concrete slab or a poured concrete or cinder block foundation.
There have been a variety of efforts to depart from the conventional construction techniques used to create dwellings, as well as commercial spaces and like. One of the alternatives to stick-built construction is very generally referred to as modular housing. As opposed to stick-built construction, where the structure is built on-site, a modular house is constructed in a factory and then shipped to the site, often by means of a tractor-trailer.
Such modular housing often exceeds in size normally-permitted legal limits for road transport. For example, in the United States the maximum permitted dimensions for road transport are in general 102 inches (259.1 cm) in width, 13.5 feet (4.11 m) in height and 65 to 75 feet (19.81 to 22.86 m) in length. Thus, in many cases transporting a modular house from factory to site requires oversize load permits, which may impose restrictions on when transport can be undertaken and what routes can be utilized. Oversize road regulations may also require the use of an escort car and a trailing car as well. All of these requirements and restrictions inevitably increase the cost of the modular housing.
Significant advancements in the construction of dwellings and commercial space have been made by the current inventors, as exemplified by their patent documents, including U.S. Pat. Nos. 8,474,194, 8,733,029, 10,688,906, 10,829,029 and 10,926,689. In one aspect, these patents pertain to fabricating wall, floor and roof components in a factory that are folded together into a compact shipping module, and which are then transported to the intended location and unfolded to yield a fully formed structure.
The present inventions constitute advancements in the deployment of roof portions of folded building structures to reduce the risk of certain of the roof portions being “pinned” against other portions of the building structures during the steps of unfolding.
In one aspect, the present inventions are directed to a folded building structure comprising a fixed space portion defined by (i) a first floor portion, (ii) a rectangular planar first roof portion having a thickness, a longitudinal length, a first transverse width and an interior surface, and (iii) a planar first fixed wall portion of a first wall component, which first fixed wall portion has a first fixed portion top edge and adjoins a first transverse edge of the first floor portion and a first transverse edge of the first roof portion. There is provided a rectangular planar second roof portion having a thickness, a longitudinal length, a second transverse width and an interior surface, with the second roof portion horizontally stacked in a second roof portion folded position on the first roof portion and pivotally connected along a horizontal longitudinal first axis to the first roof portion to permit the second roof portion to pivot, about the first axis relative to the first roof portion, from the second roof portion folded position to a second roof portion unfolded position at which the first and second roof portions are coplanar; and also a rectangular planar third roof portion having a thickness, a longitudinal length, a longitudinally-oriented leading edge, a third transverse width and an interior surface, with the third transverse width being greater than the first transverse width and being greater than the second transverse width, and with the third roof portion horizontally stacked in a third roof portion folded position on the second roof portion and pivotally connected along a horizontal longitudinal second axis to the second roof portion to permit the third roof portion to pivot, about the second axis relative to the second roof portion, from the third roof portion folded position to a third roof portion unfolded position at which the third roof portion is coplanar with the second roof portion in the second roof portion unfolded position. The first wall component additionally includes a planar first pivoting wall portion with a first pivoting portion top edge having a first pivoting portion top edge length, with the first pivoting wall portion (i) disposed in a first pivoting portion folded position proximate the fixed space portion and (ii) pivotally connected along a vertical third axis to the first fixed wall portion of the first wall component to permit the first pivoting wall portion to pivot, about the third axis relative to the first fixed wall portion, from the first pivoting portion folded position to a first pivoting portion unfolded position, coplanar with the first fixed wall portion, in which the first pivoting portion top edge is positioned under the interior surfaces of the second and third roof portions when the second and third roof portions are in their unfolded positions.
In another aspect, the present inventions are directed to a folded building structure comprising a planar first roof portion having a thickness, a first longitudinal edge, a first transverse roof edge having a width, an opposed second transverse roof edge having a width, and an interior surface, with the first transverse roof edge adjoining the first longitudinal edge at a first end and the opposed second transverse roof edge adjoining the first longitudinal edge at a second end. In addition, a planar second roof portion having a thickness, a third transverse roof edge having a width, an opposed fourth transverse roof edge having a width, and an interior surface, is horizontally stacked in a second roof portion folded position on the first roof portion and pivotally connected along a horizontal longitudinal first axis to the first roof portion to permit the second roof portion to pivot, about the first axis relative to the first roof portion, from the second roof portion folded position to a second roof portion unfolded position at which the first and second roof portions are coplanar. There is additionally provided a planar third roof portion having a thickness, a longitudinally-oriented leading edge, a fifth transverse roof edge having a width, an opposed sixth transverse roof edge having a width, and a planar interior surface, which is horizontally stacked in a third roof portion folded position on the second roof portion and pivotally connected along a horizontal longitudinal second axis to the second roof portion to permit the third roof portion to pivot, about the second axis relative to the second roof portion, from the third roof portion folded position to a third roof portion unfolded position coplanar with the second roof portion in the second roof portion unfolded position. There is also provided a first wall having a first vertical edge and a first transverse top edge that adjoins the first vertical edge, the first transverse top edge having a top edge length at least equal to the sum of the widths of the first, third and fifth transverse roof edges, with the first roof portion joined to the first transverse top edge proximate to the first transverse roof edge with the first end proximate to the first vertical edge; and a second wall having a second vertical edge and a second transverse top edge that adjoins the second vertical edge, the second transverse top edge having a top edge length at least equal to the sum of the widths of the second, fourth and sixth transverse roof edges, the first roof portion joined to the second transverse top edge proximate to the second transverse roof edge with the second end proximate to the second vertical edge. The width of the fifth transverse roof edge is greater than the width of the first transverse roof edge and greater than the width of the third transverse roof edge, and the width of the sixth transverse roof edge is greater than the width of the second transverse roof edge and greater than the width of the fourth transverse roof edge.
In yet another aspect, the present inventions are directed to a folded building structure comprising a planar first roof portion having a thickness, a first longitudinal edge, a first transverse roof edge having a width, an opposed second transverse roof edge having a width, and an interior surface, with the first transverse roof edge adjoining the first longitudinal edge at a first end and the opposed second transverse roof edge adjoining the first longitudinal edge at a second end. In addition, a planar second roof portion having a thickness, a third transverse roof edge having a width, an opposed fourth transverse roof edge having a width, and an interior surface, is horizontally stacked in a second roof portion folded position on the first roof portion and pivotally connected along a horizontal longitudinal first axis to the first roof portion to permit the second roof portion to pivot, about the first axis relative to the first roof portion, from the second roof portion folded position to a second roof portion unfolded position at which the first and second roof portions are coplanar. There is additionally a planar third roof portion having a thickness, a longitudinally-oriented leading edge, a fifth transverse roof edge having a width, an opposed sixth transverse roof edge having a width, and an interior surface, which is horizontally stacked in a third roof portion folded position on the second roof portion and pivotally connected along a horizontal longitudinal second axis to the second roof portion to permit the third roof portion to pivot, about the second axis relative to the second roof portion, from the third roof portion folded position to a third roof portion unfolded position coplanar with the second roof portion in the second roof portion unfolded position. There is also provided a first wall having a first vertical edge and a first transverse top edge that adjoins the first vertical edge, the first transverse top edge having a top edge length at least equal to the sum of the widths of the first, third and fifth transverse roof edges, with the first roof portion joined to the first transverse top edge proximate to the first transverse roof edge with the first end proximate to the first vertical edge; and a second wall having a second vertical edge and a second transverse top edge that adjoins the second vertical edge, the second transverse top edge having a top edge length at least equal to the sum of the widths of the second, fourth and sixth transverse roof edges, the first roof portion joined to the first transverse top edge proximate to the second transverse roof edge with the second end proximate to the second vertical edge. A first wheel caster having a first caster length is secured proximate to the leading edge of the third roof portion at a location such that the first wheel caster comes into rolling contact with the first transverse top edge for a least a portion of the top edge length thereof when the third roof portion is moved between the third roof portion folded position and the third roof portion unfolded position; and the sum of the width of the fifth transverse roof edge and the first caster length is greater than the width of the first transverse roof edge and greater than the width of the third transverse roof edge.
These and other aspects of the present inventions are described in the drawings annexed hereto, and in the description of the preferred embodiments and claims set forth below.
An embodiment of the foldable, transportable structure 150 in which the inventions disclosed herein can be implemented is depicted in
Enclosure components 155 (wall component 200, floor component 300 and roof component 400) can be fabricated and dimensioned as described herein and positioned together to form a shipping module 100, shown end-on in
The enclosure components 155 of the present invention include a number of shared design features that are described below.
A. Laminate Structure Design
Enclosure components 155 can be fabricated using a multi-layered, laminate design. A particular laminate design that can be used to fabricate enclosure components 155 comprises a first structural layer 210, a foam panel layer 213, a second structural layer 215 and a protective layer 218, as shown in
In particular, first structural layer 210 is provided in the embodiment of enclosure component 155 that is depicted in
Referring again to
In the embodiment of the enclosure component 155 depicted in
In the embodiment of the enclosure component 155 depicted in
Other embodiments of multi-layered, laminate designs, which can be used to fabricate the enclosure components 155 of the present invention, are described in U.S. Nonprovisional patent application Ser. No. 16/786,130, entitled “Foldable Building Structures with Utility Channels and Laminate Enclosures,” having the same inventors as this disclosure, filed on Feb. 10, 2020 and now issued as U.S. Pat. No. 11,118,344. The contents of that U.S. Nonprovisional patent application Ser. No. 16/786,130, entitled “Foldable Building Structures with Utility Channels and Laminate Enclosures,” having the same inventors as this disclosure and filed on Feb. 10, 2020, are incorporated by reference as if fully set forth herein, particularly including the multi-layered, laminate designs described for example at 91910034-57 and depicted in
B. Enclosure Component Exterior Edge Reinforcement
The exterior edges of each enclosure component 155 (i.e., the edges that define the perimeter of enclosure component 155) can be provided with exterior edge reinforcement, as desired. Exterior edge reinforcement generally comprises an elongate rigid member which can protect the foam panel material of foam panel layer 213 that would otherwise be exposed at the exterior edges of enclosure components 155. Exterior edge reinforcement can be fabricated from one or more of laminated strand lumber board, wooden board, C-channel extruded aluminum or steel, or the like, and is generally secured to the exterior edges of enclosure component 155 with fasteners, such as screw or nail fasteners, and/or adhesive.
C. Enclosure Component Partitioning
Enclosure components 155 in certain instances are partitioned into enclosure component portions to facilitate forming a compact shipping module 100. In those instances where an enclosure component 155 is partitioned into enclosure component portions, any exterior edge reinforcement on the exterior edges defining the perimeter of the enclosure component is segmented as necessary between or among the portions.
The enclosure component portions can be joined by hinge structures or mechanisms to permit the enclosure component portions to be “folded” and thereby contribute to forming a compact shipping module 100.
D. Enclosure Component Interior Edge Reinforcement
An enclosure component 155 partitioned into enclosure component portions will have interior edges. There will be two adjacent interior edges for each adjacent pair of enclosure component portions. Such interior edges can be provided with interior edge reinforcement. Similar to exterior edge reinforcement, such interior edge reinforcement generally comprises an elongate, rigid member which can protect the foam panel material of foam panel layer 213 which that would otherwise be exposed at the interior edges of enclosure components 155. Interior edge reinforcement can be fabricated from one or more of laminated strand lumber board, wooden board, C-channel extruded aluminum or steel, or the like, and is generally secured to the interior edges of enclosure component 155 with fasteners, such as screw or nail fasteners, and/or adhesive.
E. Enclosure Component Load Transfer
In the case of enclosure components 155, it is necessary to transfer the loads imposed on their surfaces to their exterior edges, where those loads can be transferred either to or through adjoining walls, or to the building foundation. For enclosure components 155 that are horizontally oriented when in use (floor component 300 and roof component 400), such loads include the weight of equipment, furniture and people borne by their surfaces, as well as vertical seismic loads. For enclosure components that are vertically oriented when in use (wall component 200), such loads include those arising from meteorological conditions (hurricanes, tornadoes, etc.) and human action (vehicle and other object impacts).
For this purpose, multi-layered, laminate designs as shown in
F. Enclosure Component Sealing Systems
Structure 150 comprises a number of wall, floor and roof components with abutting or exposed exterior edges, as well as a number of partitioned wall, floor and roof components with interior edges. In this regard, sealing structures can be utilized, with the objective to limit or prevent the ingress of rain water, noise and outside air across these exterior and interior edges into the interior of structure 150.
Particular sealing structures for accomplishing the foregoing objective are described in PCT Patent Application No. PCT/US21/56415, entitled “Enclosure Component Sealing Systems,” filed on Oct. 25, 2021 and having the same inventors as the present application. The contents of that PCT Patent Application No. PCT/US21/56415, entitled “Enclosure Component Sealing Systems,” filed on Oct. 25, 2021 and having the same inventors as this disclosure, are incorporated by reference as if fully set forth herein, particularly including the sealing systems described for example at 0080-0167 and depicted in FIGS. 9-20 thereof, and also including the exemplary placements for such sealing systems described in 0168-0174 and depicted in FIGS. 8A-8B thereof.
Further design details of wall component 200, floor component 300, and roof component 400 are provided in the sections following.
Typically, a structure 150 will utilize four wall components 200, with each wall component 200 corresponding to an entire wall of structure 150.
A. General Description
Wall component 200 has a generally rectangular perimeter. As shown in
As indicated above, wall components 200 of the present inventions can utilize a multi-layered, laminate design. In the embodiment depicted in
The perimeter of each wall component 200 is generally provided with exterior edge reinforcement. As exemplified by wall component 200 shown in
B. Partitioned Wall Components
Referring to
Referring again to
Notably, first wall portion 200s-1 is longer than third wall portion 200s-3 by a distance approximately equal to the thickness of wall component 200, and second wall portion 200s-2 is shorter than fourth wall portion 200s-4 by a distance approximately equal to the thickness of wall component 200. Furthermore, wall portion 200s-1 and wall portion 200s-3 are each shorter in length (the dimension in the transverse direction) than the dimension of floor portion 300a in the transverse direction. Dimensioning the lengths of wall portions 200s-1, 200s-2, 200s-3 and 200s-4 in this manner permits wall portions 200s-2 and 200s-4 to nest against each other in an overlapping relationship when in an inwardly folded position. In this regard,
The hinge structures referenced above, for securing first wall portion 200s-1 to second wall portion 200s-2, and third wall portion 200s-3 to fourth wall portion 200s-4, can be surface mounted or recessed, and of a temporary or permanent nature. The provision of interior edge reinforcement, as described above, can provide a region for securing such hinge structures. Suitable hinge structures can be fabricated for example of ferrous or non-ferrous metal, plastic or leather material.
C. Unpartitioned Wall Components
As compared to the two wall components 200 proximate first and second transverse edges 108 and 110, which are partitioned into wall portions, the remaining two wall components 200 proximate first and second longitudinal edges 106 and 116 do not comprise plural wall portions, but rather each is a single piece structure. However, one of these wall components 200, which is sometimes denominated 200P in this disclosure, and which is located on floor portion 300b proximate first longitudinal edge 106, is pivotally secured to floor portion 300b by means of hinge structures to permit wall component 200P to pivot about horizontal axis 105 shown in
The hinge structures referenced above, for securing wall component 200P to floor portion 300b, can be surface mounted or recessed, and of a temporary or permanent nature. The provision of exterior edge reinforcement, as described above, can provide a region for securing such hinge structures. Suitable hinge structures can be fabricated for example of ferrous or non-ferrous metal, plastic or leather material.
Typically, a structure 150 will utilize one floor component 300; thus floor component 300 generally is the full floor of structure 150.
A. General Description
Floor component 300 has a generally rectangular perimeter.
The length and width of floor component 300 can vary in accordance with design preference. In the particular embodiment of structure 150 depicted in
Floor component 300 and its constituent elements are generally designed and dimensioned in thickness and in other respects to accommodate the particular loads to which floor component 300 may be subject. It is preferred that floor component 300 utilize a multi-layered, laminate design, such as that described in connection with
The perimeter of each floor component 300 is generally provided with exterior edge reinforcement. As exterior edge reinforcement for the embodiments of floor component 300 shown in
B. Floor Partitioning
The floor component 300 is partitioned into floor portion 300a and floor portion 300b.
Each of the floor portions 300a and 300b is a planar generally rectangular structure, with floor portion 300a adjoining floor portion 300b. Interior edge 301a of floor portion 300a abuts interior edge 301b of floor portion 300b, as shown in
Referring to structure 150 shown in
Typically, a structure 150 will utilize one roof component 400; thus roof component 400 generally is the full roof of structure 150.
A. General Description
Roof component 400 has a generally rectangular perimeter.
The length and width of roof component 400 can vary in accordance with design preference. In the particular embodiment of structure 150 depicted in
Roof component 400 and its constituent elements are generally designed and dimensioned in thickness and in other respects to accommodate the particular loads to which roof component 400 may be subject. It is preferred that roof component 400 utilize a multi-layered, laminate design, such as that described in connection with
The perimeter of roof component 400 is generally provided with exterior edge reinforcement. As exterior edge reinforcement for the embodiment of roof component 400 shown in
B. Roof Partitioning
The roof component 400 of structure 150 is partitioned into roof portions 400a, 400b and 400c.
Each of the roof portions 400a, 400b and 400c is a planar generally rectangular structure, with roof portion 400a adjoining roof portion 400b, and roof portion 400b adjoining roof portion 400c. Interior edge 412c of roof component 400c abuts a first interior edge 412b of roof component 400b, as shown in
In the shipping module 100 shown in
C. Roof Portion Dimensioning
Roof portions 400b, 400c each can be identically dimensioned in the transverse direction. When so dimensioned however, there is a risk that roof portion 400c will be impeded from deploying during the unfolding process. In particular, as roof portions 400b, 400c are unfolded from the folded stacked position (shown in
To reduce the foregoing risk, roof portion 400c can be appropriately dimensioned so that the width of roof portion 400c in the transverse direction is greater than the width in the transverse direction of either of roof portion 400a and roof portion 400b. An example of this is shown in
In the case where roof portions 400a and 400b have the same transverse width W1, the transverse width W2 of roof portion 400c can be greater than the transverse width W1 for example, by ten to fifteen percent, depending upon the thicknesses of roof components 400b, 400c. Alternatively, the transverse width W2 of roof portion 400c can be greater than the transverse width W1 of roof portions 400a and 400b by an amount sufficient such that the leading edge 421 of roof portion 400c, and particularly lower portion 423 thereof, comes into contact with the top edges 221 of transversely-oriented wall components 200 when roof portions 400b and 400c are acutely oriented during unfolding relative to roof portion 400a; i.e., before roof portions 400b, 400c are vertically-oriented during unfolding. As a further alternative, the transverse width W2 of roof portion 400c can be greater than the transverse width W1 of each of roof portions 400a and 400b by an amount equal to or greater than the aggregate thickness (T1+T2 in
In addition, friction-reducing components can be used to facilitate unfolding roof component 400, such as by positioning a first wheel caster 499 at the leading edge 421 of roof portion 400c proximate to the corner of roof portion 400c that is supported by wall portion 200s-2 as roof portion 400c is deployed, as shown in
For enclosure components 155 utilizing the multi-layered, laminate design disclosed herein in reference to
Particular edge structure designs for metal sheets 206 and 217 are described in U.S. Nonprovisional patent application Ser. No. 17/504,883 entitled “Sheet/Panel Design for Enclosure Component Manufacture,” having the same inventors as the inventions described herein and filed on Oct. 19, 2021. The contents of U.S. Nonprovisional patent application Ser. No. 17/504,883 entitled “Sheet/Panel Design for Enclosure Component Manufacture,” having the same inventors as the inventions described herein and filed on Oct. 19, 2021, are incorporated by reference as if fully set forth herein, particularly including the exterior and interior edge structure designs described for example at 00187-00205 and 00212 and in FIGS. 8, 9A-9C, 23A-23J and 24A-24B thereof.
A facility suitable for the manufacture of enclosure components 155, as well as exemplary manufacturing steps, are also described in U.S. Nonprovisional patent application Ser. No. 17/504,883 entitled “Sheet/Panel Design for Enclosure Component Manufacture,” having the same inventors as the inventions described herein and filed on Oct. 19, 2021. The contents of U.S. Nonprovisional patent application Ser. No. 17/504,883 entitled “Sheet/Panel Design for Enclosure Component Manufacture,” having the same inventors as the inventions described herein and filed on Oct. 19, 2021, are incorporated by reference as if fully set forth herein, particularly including the facility suitable for manufacturing the enclosure components 155 of the present invention, as well as exemplary manufacturing steps, described for example at 00178-00186 and 00206-00222, and in FIGS. 22, 23A-23J and 24A-24B.
It is preferred that there be a specific dimensional relationship among enclosure components 155.
In
The shipping module 100 shown edge-on in
Sizing the enclosure components 155 of structure 150 according to the dimensional relationships disclosed above yields a compact shipping module 100, as can be seen from the figures. Thus shipping module 100 depicted in
It is preferred that the fixed space portion 102 be in a relatively finished state prior to positioning (folding) together all of the other wall, roof and floor portions as described above. In the embodiment shown in
Each of the wall, floor and roof components 200, 300 and 400, and/or the portions thereof, can be sheathed in a protective film during fabrication and prior to forming the shipping module 100. Alternatively or in addition, the entire shipping module 100 can be sheathed in a protective film. Such protective films can remain in place until after the shipping module 100 is at the construction site, and then removed as required to facilitate enclosure component deployment and finishing.
The shipping module is shipped to the building site by appropriate transport means. One such transport means is disclosed in U.S. Pat. No. 11,007,921, issued May 18, 2021; the contents of which are incorporated by reference as if fully set forth herein, particularly as found at column 3, line 26 to column 6, line 25 and in FIGS. 1A-2D thereof. As an alternative transport means, shipping module 100 can be shipped to the building site by means of a conventional truck trailer or a low bed trailer (also referred to as a lowboy trailer), and in the case of over-the-water shipments, by ship.
At the building site, shipping module 100 is positioned over its desired location, such as over a prepared foundation; for example, a poured concrete slab, a poured concrete or cinder block foundation, sleeper beams or concrete posts or columns. This can be accomplished by using a crane, either to lift shipping module 100 from its transport means and move it to the desired location, or by positioning the transport means over the desired location, lifting shipping module 100, then moving the transport means from the desired location, and then lowering shipping module 100 to a rest state at the desired location. Particularly suitable equipment and techniques for facilitating the positioning of a shipping module 100 at the desired location are disclosed in U.S. Nonprovisional patent application Ser. No. 16/786,315, entitled “Equipment and Methods for Erecting a Transportable Foldable Building Structure,” having the same inventors as this disclosure and filed on Feb. 10, 2020. The contents of that U.S. Nonprovisional patent application Ser. No. 16/786,315, entitled “Equipment and Methods for Erecting a Transportable Foldable Building Structure,” having the same inventors as this disclosure and filed on Feb. 10, 2020, are incorporated by reference as if fully set forth herein, particularly including the equipment and techniques described for example at 00126-00128 and in connection with
Following positioning of shipping module 100 at the building site, the appropriate portions of wall, floor and roof components 200, 300 and 400 are “unfolded” (i.e., deployed) to yield structure 150. Unfolding occurs in the following sequence: (1) floor portion 300b is pivotally rotated about horizontal axis 305 (shown in
A mobile crane can be used to assist in the deployment of certain of the enclosure components 155, specifically roof portions 400b and 400c, floor portion 300b, as well as the wall component 200P pivotally secured to floor portion 300b. Alternatively, particularly suitable equipment and techniques for facilitating the deployment of enclosure components 155 are disclosed in U.S. Nonprovisional patent application Ser. No. 16/786,315, entitled “Equipment and Methods for Erecting a Transportable Foldable Building Structure,” having the same inventors as this disclosure and filed on Feb. 10, 2020. The contents of that U.S. Nonprovisional patent application Ser. No. 16/786,315, entitled “Equipment and Methods for Erecting a Transportable Foldable Building Structure,” having the same inventors as this disclosure and filed on Feb. 10, 2020, are incorporated by reference as if fully set forth herein, particularly including the equipment and techniques described for example at 00132-00145 and depicted in FIGS. 12A-14B thereof.
After unfolding, the enclosure components 155 are secured together to finish the structure 150 that is shown in
This disclosure should be understood to include (as illustrative and not limiting) the subject matter set forth in the following numbered clauses:
Clause 1. A folded building structure comprising:
a fixed space portion defined by (i) a first floor portion, (ii) a rectangular planar first roof portion having a thickness, a longitudinal length, a first transverse width and an interior surface, and (iii) a planar first fixed wall portion of a first wall component, the first fixed wall portion (x) having a first fixed portion top edge, and (y) adjoining a first transverse edge of the first floor portion and a first transverse edge of the first roof portion;
a rectangular planar second roof portion having a thickness, a longitudinal length, a second transverse width and a planar interior surface, the second roof portion horizontally stacked in a second roof portion folded position on the first roof portion and pivotally connected along a horizontal longitudinal first axis to the first roof portion to permit the second roof portion to pivot, about the first axis relative to the first roof portion, from the second roof portion folded position to a second roof portion unfolded position at which the first and second roof portions are coplanar;
a rectangular planar third roof portion having a thickness, a longitudinal length, a longitudinally-oriented leading edge, a third transverse width and an interior surface, the third transverse width being greater than the first transverse width and being greater than the second transverse width, the third roof portion horizontally stacked in a third roof portion folded position on the second roof portion and pivotally connected along a horizontal longitudinal second axis to the second roof portion to permit the third roof portion to pivot, about the second axis relative to the second roof portion, from the third roof portion folded position to a third roof portion unfolded position coplanar with the second roof portion in the second roof portion unfolded position;
the first wall component additionally including a planar first pivoting wall portion with a first pivoting portion top edge having a first pivoting portion top edge length, the first pivoting wall portion (i) disposed in a first pivoting portion folded position proximate the fixed space portion and (ii) pivotally connected along a vertical third axis to the first fixed wall portion of the first wall component to permit the first pivoting wall portion to pivot, about the third axis relative to the first fixed wall portion, from the first pivoting portion folded position to a first pivoting portion unfolded position, coplanar with the first fixed wall portion, in which the first pivoting portion top edge is positioned under the interior surfaces of the second and third roof portions when the second and third roof portions are in their unfolded positions.
Clause 2. The folded building structure of clause 1, wherein the fixed space portion is further defined by (iv) a planar second fixed wall portion of a second wall component in an opposing relationship with the first wall portion, the second fixed wall portion adjoining a second transverse edge of the first floor portion, which is opposed to the first transverse edge of the first floor portion, and adjoining a second transverse edge of the first roof portion, which is opposed to the first transverse edge of the first roof portion, with the second wall component additionally including a planar second pivoting wall portion with a second pivoting portion top edge having a second pivoting portion top edge length, the second pivoting wall portion (i) disposed in a second pivoting portion folded position proximate the fixed space portion, and (ii) pivotally connected along a vertical fourth axis to the second fixed wall portion, to permit the second pivoting wall portion to pivot, about the fourth axis relative to the second fixed wall portion of the second wall component, from the second pivoting portion folded position to a second pivoting portion unfolded position in which the second pivoting portion top edge is positioned under the interior surfaces of the second and third roof portions when the second and third roof portions are in their unfolded positions.
Clause 3. The folded building structure of either of clause 1 or clause 2, wherein the fixed space portion is further defined by (v) a third wall component having (i) a longitudinal top edge that is positioned under the interior surface of the first roof portion proximate the longitudinal edge of the first roof portion, (ii) a vertical edge that adjoins the first fixed wall portion proximate a vertical edge thereof, and (iii) a longitudinal bottom edge that adjoins the first floor portion proximate a longitudinal edge thereof.
Clause 4. The folded building structure of any one of clause 1, 2 or 3, wherein the first and second transverse widths are equal.
Clause 5. The folded building structure of any one of clause 1, 2, 3 or 4, wherein the third transverse width is greater than the second transverse width by at least the sum of the thicknesses of the first roof portion and the second roof portion.
Clause 6. The folded building structure of any one of clause 1, 2, 3, 4 or 5, wherein the third transverse width is greater than the second transverse width by an amount such that when the first pivoting wall portion is in the first pivoting portion unfolded position and the second and third roof portions are unfolded from the second and third roof portion folded positions and remain in mutual contact when so unfolded, the second and third roof portions are acutely oriented relative to the first fixed portion top edge when the leading edge of the third roof portion comes into contact with the first pivoting portion top edge.
Clause 7. The folded building structure of any one of clause 1, 2, 3, 4 or 5, further comprising a first wheel caster secured proximate the leading edge of the third roof portion at a location such that the first wheel caster comes into rolling contact with the first pivoting portion top edge for a least a portion of the first pivoting portion top edge length when the first pivoting wall portion is in the first pivoting portion unfolded position and the third roof portion is moved between the third roof portion folded position and the third roof portion unfolded position.
Clause 8. The folded building structure of clause 2, further comprising a second wheel caster secured proximate the leading edge of the third roof portion at a location such that the second wheel caster comes into rolling contact with the second pivoting portion top edge for a least a portion of the second pivoting portion top edge length when the third roof portion is moved between the third roof portion folded position and the third roof portion unfolded position.
Clause 9. The folded building structure of any one of clause 1, 2, 3 or 4, wherein the third transverse width is greater than the first transverse width by an amount in the range of from ten to fifteen percent of the first transverse width, and is greater than the second transverse width by an amount in the range of from ten to fifteen percent of the second transverse width.
Clause 10. A folded building structure comprising:
a planar first roof portion having a thickness, a first longitudinal edge, a first transverse roof edge having a width, an opposed second transverse roof edge having a width, and an interior surface, the first transverse roof edge adjoining the first longitudinal edge at a first end and the opposed second transverse roof edge adjoining the first longitudinal edge at a second end;
a planar second roof portion having a thickness, a third transverse roof edge having a width, an opposed fourth transverse roof edge having a width, and an interior surface, the second roof portion horizontally stacked in a second roof portion folded position on the first roof portion and pivotally connected along a horizontal longitudinal first axis to the first roof portion to permit the second roof portion to pivot, about the first axis relative to the first roof portion, from the second roof portion folded position to a second roof portion unfolded position at which the first and second roof portions are coplanar;
a planar third roof portion having a thickness, a longitudinally-oriented leading edge, a fifth transverse roof edge having a width, an opposed sixth transverse roof edge having a width, and an interior surface, the third roof portion horizontally stacked in a third roof portion folded position on the second roof portion and pivotally connected along a horizontal longitudinal second axis to the second roof portion to permit the third roof portion to pivot, about the second axis relative to the second roof portion, from the third roof portion folded position to a third roof portion unfolded position coplanar with the second roof portion in the second roof portion unfolded position; and
a first wall having a first vertical edge and a first transverse top edge that adjoins the first vertical edge, the first transverse top edge having a top edge length at least equal to the sum of the widths of the first, third and fifth transverse roof edges, the first roof portion joined to the first transverse top edge proximate to the first transverse roof edge with the first end proximate to the first vertical edge;
a second wall having a second vertical edge and a second transverse top edge that adjoins the second vertical edge, the second transverse top edge having a top edge length at least equal to the sum of the widths of the second, fourth and sixth transverse roof edges, the first roof portion joined to second first transverse top edge proximate to the second transverse roof edge with the second end proximate to the second vertical edge; and
wherein the width of the fifth transverse roof edge is greater than the width of the first transverse roof edge and greater than the width of the third transverse roof edge, and the width of the sixth transverse roof edge is greater than the width of the second transverse roof edge and greater than the width of the fourth transverse roof edge.
Clause 11. The folded building structure of clause 10, further comprising a third wall having a longitudinal top edge adjoining: (i) the interior surface of the first roof portion proximate the longitudinal edge of the first roof portion, (ii) the first wall proximate the first vertical edge, and (iii) the second wall proximate to the second vertical edge.
Clause 12. The folded building structure of either of clause 10 or clause 11, wherein the widths of the first and third transverse roof edges are equal to each other, and the widths of the second and fourth transverse roof edges are equal to each other.
Clause 13. The folded building structure of any one of clause 10, 11 or 12, wherein the width of the fifth transverse roof edge is greater than the width of the third transverse roof edge by at least the sum of the thicknesses of the first roof portion and the second roof portion, and the width of the sixth transverse roof edge is greater than the width of the fourth transverse roof edge by at least the sum of the thicknesses of the first roof portion and the second roof portion.
Clause 14. The folded building structure of any one of clause 10, 11, 12 or 13, wherein the width of the fifth transverse roof edge is greater than the width of the third transverse roof edge by an amount such that when the second and third roof portions are unfolded from the second and third roof portion folded positions and remain in mutual contact when so unfolded, the second and third roof portions are acutely oriented relative to the first transverse top edge and the second transverse top edge when the leading edge of the third portion comes into contact therewith.
Clause 15. The folded building structure of any one of clause 10, 11, 12 or 13, further comprising a first wheel caster secured proximate the leading edge of the third roof portion at a location such that the first wheel caster comes into rolling contact with the first transverse top edge for a least a portion of the top edge length thereof when the third roof portion is moved between the third roof portion folded position and the third roof portion unfolded position.
Clause 16. The folded building structure of clause 15, further comprising a second wheel caster secured proximate the leading edge of the third roof portion at a location such that the second wheel caster comes into rolling contact with the second transverse top edge for a least a portion of the top edge length thereof when the third roof portion is moved between the third roof portion folded position and the third roof portion unfolded position.
Clause 17. The folded building structure of any one of clause 10, 11 or 12, wherein the width of the fifth transverse roof edge is greater than the width of the first transverse roof edge and greater than the width of the third transverse roof edge by an amount in the range of from ten to fifteen percent of the width of the first transverse roof edge, and the width of the sixth transverse roof edge is greater than the width of the second transverse roof edge and greater than the width of the fourth transverse roof edge by an amount in the range of from ten to fifteen percent of the width of the second transverse roof edge.
Clause 18. A folded building structure comprising:
a planar first roof portion having a thickness, a first longitudinal edge, a first transverse roof edge having a width, an opposed second transverse roof edge having a width, and an interior surface, the first transverse roof edge adjoining the first longitudinal edge at a first end and the opposed second transverse roof edge adjoining the first longitudinal edge at a second end;
a planar second roof portion having a thickness, a third transverse roof edge having a width, an opposed fourth transverse roof edge having a width, and an interior surface, the second roof portion horizontally stacked in a second roof portion folded position on the first roof portion and pivotally connected along a horizontal longitudinal first axis to the first roof portion to permit the second roof portion to pivot, about the first axis relative to the first roof portion, from the second roof portion folded position to a second roof portion unfolded position at which the first and second roof portions are coplanar;
a planar third roof portion having a thickness, a longitudinally-oriented leading edge, a fifth transverse roof edge having a width, an opposed sixth transverse roof edge having a width, and an interior surface, the third roof portion horizontally stacked in a third roof portion folded position on the second roof portion and pivotally connected along a horizontal longitudinal second axis to the second roof portion to permit the third roof portion to pivot, about the second axis relative to the second roof portion, from the third roof portion folded position to a third roof portion unfolded position coplanar with the second roof portion in the second roof portion unfolded position; and
a first wall having a first vertical edge and a first transverse top edge that adjoins the first vertical edge, the first transverse top edge having a top edge length at least equal to the sum of the widths of the first, third and fifth transverse roof edges, the first roof portion joined to the first transverse top edge proximate to the first transverse roof edge with the first end proximate to the first vertical edge;
a second wall having a second vertical edge and a second transverse top edge that adjoins the second vertical edge, the second transverse top edge having a top edge length at least equal to the sum of the widths of the second, fourth and sixth transverse roof edges, the first roof portion joined to the second transverse top edge proximate to the second transverse roof edge with the second end proximate to the second vertical edge;
a first wheel caster having a first caster length secured proximate to the leading edge of the third roof portion at a location such that the first wheel caster comes into rolling contact with the first transverse top edge for a least a portion of the top edge length thereof when the third roof portion is moved between the third roof portion folded position and the third roof portion unfolded position; and
wherein the sum of the width of the fifth transverse roof edge and the first caster length is greater than the width of the third transverse edge by an amount such that when the second and third roof portions are unfolded from the second and third roof portion folded positions and remain in mutual contact when so unfolded, the second and third roof portions are acutely oriented relative to the first transverse top edge when the first caster comes into contact therewith.
Clause 19. The folded building structure of clause 18, wherein the widths of the first and third transverse roof edges are equal to each other, and the widths of the second and fourth transverse roof edges are equal to each other.
Clause 20. The folded building structure of either of clause 18 or clause 19, wherein the sum of the width of the fifth transverse roof edge and the first caster length is greater than the width of the third transverse roof edge by at least the sum of the thicknesses of the first roof portion and the second roof portion.
Clause 21. The folded building structure of any one of clause 18, 19 or 20, further comprising a second wheel caster having a second caster length secured proximate the leading edge of the third roof portion at a location such that the second wheel caster comes into rolling contact with the second transverse top edge for a least a portion of the top edge length thereof when the third roof portion is moved between the third roof portion folded position and the third roof portion unfolded position; and
wherein the sum of the width of the sixth transverse roof edge and the second caster length is greater than the width of the fourth transverse roof edge by an amount such that when the second and third roof portions are unfolded from the second and third roof portion folded positions and remain in mutual contact when so unfolded, the second and third roof portions are acutely oriented relative to the second transverse top edge when the second caster comes into contact therewith.
Clause 22. The folded building structure of clause 21, wherein the sum of the width of the sixth transverse roof edge and the second caster length is greater than the width of the fourth transverse roof edge by at least the sum of the thicknesses of the first roof portion and the second roof portion.
Clause 23. The folded building structure of clause 21, wherein the sum of the width of the fifth transverse roof edge and the first caster length is greater than the width of the first transverse roof edge and greater than the width of the third transverse roof edge by an amount in the range of from ten to fifteen percent of the width of the first transverse roof edge, and the sum of the width of the sixth transverse roof edge and the second caster length is greater than the width of the second transverse roof edge and greater than the width of the fourth transverse roof edge by an amount in the range of from ten to fifteen percent of the width of the second transverse roof edge.
Clause 24. The folded building structure of any one of clause 5, 13, 20 or 22, wherein each of the first, second and third roof portions comprises across its thickness:
a first structural layer having a first face and an opposing second face;
a foam panel layer having a first face and an opposing second face, the first face of the foam panel layer being bonded to the opposing second face of the first structural layer;
a second structural layer having a first face and an opposing second face, the first face of the second structural layer being bonded to the opposing second face of the foam panel layer.
Clause 25. The folded building structure of clause 24, wherein the first structural layer has a metallic composition.
Clause 26. The folded building structure of either of clause 24 or clause 25, wherein the second structural layer has a metallic composition.
Clause 27. The folded building structure of any one of clause 24, 25 or 26, further comprising a protective layer having a first face, an opposing second face, and an inorganic composition, the first face of the protective layer being bonded to the opposing second face of the second structural layer and the opposing second face of the protective layer constituting the interior surface of the roof portion.
Clause 28. The folded building structure of any one of clauses 1-27, wherein the first roof portion, the second roof portion in the second roof portion folded position, and the third roof portion in the third roof portion folded position have an accordion folded configuration.
Clause 29. The folded building structure of claim 10, wherein the width of the fifth transverse roof edge is greater than the width of the first transverse roof edge and greater than the width of the third transverse roof edge by an amount in the range of from ten to fifteen percent of the width of the third transverse roof edge, and the width of the sixth transverse roof edge is greater than the width of the second transverse roof edge and greater than the width of the fourth transverse roof edge by an amount in the range of from ten to fifteen percent of the width of the fourth transverse roof edge.
Clause 30. The folded building structure of claim 21, wherein the sum of the width of the fifth transverse roof edge and the first caster length is greater than the width of the first transverse roof edge and greater than the width of the third transverse roof edge by an amount in the range of from ten to fifteen percent of the width of the third transverse roof edge, and the sum of the width of the sixth transverse roof edge and the second caster length is greater than the width of the second transverse roof edge and greater than the width of the fourth transverse roof edge by an amount in the range of from ten to fifteen percent of the width of the fourth transverse roof edge.
This application is a continuation-in-part application of U.S. Nonprovisional application Ser. No. 17/527,520, filed Nov. 16, 2021, which is a continuation application of PCT Patent Application No. PCT/US21/59440, filed Nov. 16, 2021, and which claims the benefit of U.S. Provisional Application No. 63/136,268 filed Jan. 12, 2021 and U.S. Provisional Application No. 63/188,101 filed May 13, 2021; this application is also a continuation-in-part application of U.S. Nonprovisional application Ser. No. 17/504,883, filed Oct. 19, 2021, which claims the benefit of U.S. Provisional Application No. 63/136,268 filed Jan. 12, 2021, U.S. Provisional Application No. 63/181,447, filed Apr. 29, 2021, and U.S. Provisional Application No. 63/196,400 filed Jun. 3, 2021; and this application additionally claims the benefit of U.S. Provisional Application No. 63/196,400, filed Jun. 3, 2021, U.S. Provisional Application No. 63/188,101, filed May 13, 2021, and U.S. Provisional Application No. 63/136,268 filed Jan. 12, 2021.
Number | Date | Country | |
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63188101 | May 2021 | US | |
63136268 | Jan 2021 | US | |
63188101 | May 2021 | US | |
63136268 | Jan 2021 | US | |
63196400 | Jun 2021 | US | |
63181447 | Apr 2021 | US | |
63136268 | Jan 2021 | US | |
63196400 | Jun 2021 | US | |
63188101 | May 2021 | US | |
63136268 | Jan 2021 | US |
Number | Date | Country | |
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Parent | PCT/US2021/059440 | Nov 2021 | US |
Child | 17527520 | US |
Number | Date | Country | |
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Parent | 17527520 | Nov 2021 | US |
Child | 17569962 | US | |
Parent | 17504883 | Oct 2021 | US |
Child | PCT/US2021/059440 | US |