BUILDING CONSTRUCTION SYSTEM
20230358043 · 2023-11-09
Inventors
Cpc classification
E04C2/386
FIXED CONSTRUCTIONS
E04C2/521
FIXED CONSTRUCTIONS
E04C2/38
FIXED CONSTRUCTIONS
E04C2/246
FIXED CONSTRUCTIONS
E04C2002/004
FIXED CONSTRUCTIONS
International classification
Abstract
A construction system utilizes a post-and-beam structure that supports major gravity loads of a building in combination with prefabricated exterior and/or interior wall panels that are not required to support gravity loads beyond self-weight. Studs within the prefabricated wall panels are oriented such that a widest face thereof is other than normal to the wall surfaces attached thereto. Such an orientation of the wall studs reduces or eliminates thermal bridging in the structure without adding materials, thereby reducing embodied carbon and embodied energy content. The orientation of the wall studs also maximizes the available space within the wall panels to accommodate electrical and plumbing utilities and insulation material and utilizes the studs along their strong axis to resist lateral loads.
Claims
1-31. (canceled)
32. A prefabricated wall panel for use in a construction system for constructing a building, comprising: a horizontal top plate and a horizontal bottom plate defining a portion of a frame of the prefabricated wall panel; one or more front panels extending between the top and bottom plates and forming a first wall surface adjacent to a first side of the frame; one or more back panels extending between the top and bottom plates and forming a second wall surface adjacent to a second side of the frame that is opposite the first side; and a plurality of studs extending along a length direction thereof between the top plate and the bottom plate, wherein the studs are disposed between the one or more front panels and the one or more back panels and are arranged in first and second rows that are offset one relative to the other along a width direction of the wall panel, wherein the studs in the first row are in contact with the one or more front panels but not with the one or more back panels and the studs in the second row are in contact with the one or more back panels but not with the one or more front panels, wherein each stud is oriented such that a widest face thereof, in a cross-section taken in a plane that is normal to the length direction of the stud, is other than normal to a respective one of the one or more front panels or the one or more back panels, and wherein each stud is an irregular pentagonal prism in the cross-section taken in the plane that is normal to the length direction of the stud, and wherein the widest face thereof is other than parallel to the respective one of the one or more front panels or the one or more back panels.
33. The prefabricated wall panel of claim 32, further comprising first and second opposite vertical end members, wherein the top plate, the bottom plate and the first and second opposite vertical end members cooperate to form the frame of the prefabricated wall panel having a perimeter.
34. The prefabricated wall panel of claim 32, comprising insulation material disposed therein between the one or more front panels and the one or more back panels and extending continuously along the width direction of the prefabricated wall panel and along a height direction of the prefabricated wall panel between the top plate and the bottom plate.
35. The prefabricated wall panel as defined in claim 34, comprising at least one of electrical wiring or plumbing tubes pre-installed inside the prefabricated wall panel between the one or more front panels and the one or more back panels.
36. The prefabricated wall panel of claim 34, comprising at least one retention tab formed along the bottom plate of the frame for mating to a complementary retention slot that is formed along a floor of the building.
37. The prefabricated wall panel as defined in claim 34, further comprising a load bearing column of the building integrated therein.
38. A prefabricated wall panel for use in a construction system for constructing a building, comprising: a horizontal top plate and a horizontal bottom plate defining a portion of a frame of the prefabricated wall panel; one or more front panels extending between the top and bottom plates and forming a first wall surface adjacent to a first side of the frame; one or more back panels extending between the top and bottom plates and forming a second wall surface adjacent to a second side of the frame that is opposite the first side; a plurality of studs extending along a length direction thereof between the top plate and the bottom plate, wherein the studs are disposed between the one or more front panels and the one or more back panels and are arranged in first and second rows that are offset one relative to the other along a width direction of the wall panel, wherein the studs in the first row are in contact with the one or more front panels but not with the one or more back panels and the studs in the second row are in contact with the one or more back panels but not with the one or more front panels, and a plastic bracket extending between and being in contact with one of the studs in the first row and the one or more back panels, or extending between and being in contact with one of the studs in the second row and the one or more front panels, wherein each stud is oriented such that a widest face thereof, in a cross-section taken in a plane that is normal to the length direction of the stud, is other than normal to a respective one of the one or more front panels or the one or more back panels.
39. The prefabricated wall panel of claim 38, further comprising first and second opposite vertical end members, wherein the top plate, the bottom plate and the first and second opposite vertical end members cooperate to form the frame of the prefabricated wall panel having a perimeter.
40. The prefabricated wall panel of claim 38, comprising insulation material disposed therein between the one or more front panels and the one or more back panels and extending continuously along the width direction of the prefabricated wall panel and along a height direction of the prefabricated wall panel between the top plate and the bottom plate.
41. The prefabricated wall panel of claim 38, comprising at least one of electrical wiring or plumbing tubes pre-installed inside the prefabricated wall panel between the one or more front panels and the one or more back panels.
42. The prefabricated wall panel of claim 41, wherein the first wall surface is a portion of a finished interior wall-surface of the building and the second wall surface is a portion of a finished exterior wall-surface of the building.
43. The prefabricated wall panel of claim 42, comprising at least one retention tab formed along the bottom plate of the frame for mating to a complementary retention slot that is formed along a floor of the building.
44. The prefabricated wall panel of claim 42, further comprising a load bearing column of the building integrated therein.
45. A construction system for constructing a building, comprising: a horizontal beam for supporting a vertical load of the building; a plurality of columns for supporting the horizontal beam and for transmitting the vertical load to a foundation of the building; a plurality of rod or cable anchors, each of the anchors having a first end for being coupled to the foundation and having a second end for being coupled to an upper end of one of the columns or to the horizontal beam; a plurality of locking and tensioning mechanisms, each locking and tensioning mechanism for adding tension to a respective one of the plurality of rod or cable anchors when said anchors are in a coupled condition between the foundation and the upper end of the one of the columns or the horizontal beam, and for maintaining the respective one of the plurality of rod or cable anchors under said tension; and a prefabricated wall panel having, prior to being incorporated into the building, a covered interior-facing side defining a portion of a finished interior wall-surface of the building and a covered exterior-facing side defining a portion of a finished exterior wall-surface of the building, and the prefabricated wall panel further having at least one of: i) electrical wiring pre-installed inside the prefabricated wall panel between the covered interior-facing side and the covered exterior-facing side; and ii) plumbing tubes pre-installed inside the prefabricated wall panel between the covered interior-facing side and the covered exterior-facing side; wherein the prefabricated wall panel, the horizontal beam, and the plurality of columns cooperate to form at least a portion of an exterior wall of the building when the construction system is in an assembled condition, and wherein, in the assembled condition, the plurality of rod or cable anchors cooperate with the plurality of locking and tensioning mechanisms to exert a pulling force along a downward direction toward the foundation for opposing an upward lifting force exerted on the at least a portion of the exterior wall of the building.
46. The construction system of claim 45, wherein, in the assembled condition, each rod or cable anchor extends vertically through an interior of a respective column or extends adjacent to an exterior surface of the respective column.
47. The construction system of claim 45, wherein the prefabricated wall panel comprises at least one retention tab formed along a perimeter thereof for mating to a complementary retention slot formed along at least one of: i) a floor of the building ii) an exterior surface of one of the columns of the plurality of columns; or iii) the perimeter of another prefabricated wall panel.
48. The construction system of claim 47, wherein the prefabricated wall panel comprises at least one retention tab formed along a perimeter thereof for mating to a complementary retention slot formed along at least one of: i) a floor of the building ii) an exterior surface of one of the columns of the plurality of columns; or iii) the perimeter of another prefabricated wall panel.
49. The construction system of claim 48, wherein the prefabricated wall panel comprises: a horizontal top plate and a horizontal bottom plate defining a portion of a frame of the prefabricated wall panel; wherein the covered interior-facing side comprises one or more front panels extending between the top and bottom plates and forming the portion of the finished interior wall-surface of the building; wherein the covered exterior-facing side comprises one or more back panels extending between the top and bottom plates and forming the portion of the finished exterior wall-surface of the building; and a plurality of studs extending along a length direction thereof between the top plate and the bottom plate, wherein the studs are disposed between the one or more front panels and the one or more back panels and are arranged in first and second rows that are offset one relative to the other along a width direction of the prefabricated wall panel, wherein the studs in the first row are in contact with the one or more front panels but not with the one or more back panels and the studs in the second row are in contact with the one or more back panels but not with the one or more front panels, and wherein each stud is oriented such that a widest face thereof, in a cross-section taken in a plane that is normal to the length direction of the stud, is other than normal to a respective one of the one or more front panels or the one or more back panels.
50. The construction system of claim 49, wherein each stud is an irregular pentagonal prism in the cross-section taken in the plane normal to the length direction of the stud, and wherein the widest face thereof is other than parallel to the respective one of the one or more front panels or the one or more back panels.
51. The construction system of claim 49, wherein the prefabricated wall panel comprises insulation material disposed therein between the one or more front panels and the one or more back panels, the insulation material extending continuously along the width direction of the prefabricated wall panel and along a height direction of the wall panel between the top plate and the bottom plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The instant disclosure will now be described by way of example only, and with reference to the attached drawings, in which:
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DETAILED DESCRIPTION
[0043] While the present teachings are described in conjunction with various embodiments and examples, it is not intended that the present teachings be limited to such embodiments. On the contrary, the present teachings encompass various alternatives and equivalents, as will be appreciated by those of skill in the art. All statements herein reciting principles, aspects, and embodiments of this disclosure, as well as specific examples thereof, are intended to encompass both structural and functional equivalents thereof. Additionally, it is intended that such equivalents include both currently known equivalents as well as equivalents developed in the future, i.e., any elements developed that perform the same function, regardless of structure.
[0044] As used herein, the terms “first”, “second”, and so forth are not intended to imply sequential ordering, but rather are intended to distinguish one element from another, unless explicitly stated. Similarly, sequential ordering of method steps does not imply a sequential order of their execution, unless explicitly stated.
[0045] As used herein, the terms “horizontal” and “vertical” refer to an orientation of an element when that element is installed in a finished building. An element that is described as being vertical may be oriented generally along the direction of gravitational acceleration, or may be oriented 5°, 10°, 15°, 20° from the direction of gravitational acceleration. An element that is described as being horizontal may be oriented generally perpendicular to the direction of gravitational acceleration, or may be oriented 5°, 10°, 15°, 20° from perpendicular to the direction of gravitational acceleration.
[0046] As used herein, the terms “top” and “bottom” refer to different elements or to portions of a same element when installed in a finished building. For instance, a “top” plate is disposed vertically above a “bottom” plate in the finished building.
[0047] As used herein, the terms “upper” and “lower” refer to different elements or to portions of a same element when installed in a finished building. For instance, an “upper” end of a column is disposed vertically above a “lower” end of the column in the finished building.
[0048] As used herein, the term “interior-facing surface” refers to the surface of a prefabricated wall panel that faces toward the interior of a building and the term “exterior facing surface” refers to the surface of a prefabricated wall panel that faces toward the exterior of a building, when the prefabricated wall panel forms at least part of an exterior wall of the finished building.
[0049] Referring now to
[0050] As will be apparent, the studs 106 and 108 have a rectangular shape and may be e.g., nominal 2×4 boards or nominal 2×6 boards. The studs 106 and 108 are arranged with one of their narrow faces parallel to and in contact with the exterior surface 112 or the interior surface 114, respectively, of the wall 100. As a result, the studs 106 and 108 are partially interleaved and the insulation material 110 follows a somewhat torturous path along the width direction of the wall 100. Since the studs 106 and 108 are partially interleaved, the insulation material 110 becomes partially compressed, which reduces the insulative properties of the insulation material. Despite this drawback, the studs 106 and 108 must be arranged in the way that is shown in
[0051] The instant disclosure provides a solution that yields higher insulative properties, and therefore lower energy consumption, compared to currently known building techniques. The solution combines the use of non-load bearing, prefabricated wall panels in a post-and-beam frame. Since the post-and-beam frame provides the load-bearing structure of the building, the prefabricated wall panels are not required to meet the same building code requirements that apply to traditional load-bearing frame walls. The prefabricated wall panels that are disclosed herein are constructed in such a way as to maximize a distance between two rows of studs, with the two rows of studs being offset one relative to the other along a width direction of the wall panel such that the studs in the two rows do not directly face one another.
[0052] The additional space compared to prior art walls makes it possible to accommodate more insulation material within the prefabricated wall panel without compressing the insulation material by more than about 25% relative to the uncompressed insulation material thickness. In some embodiments the insulation material in the prefabricated wall panel is essentially uncompressed. Advantageously, relatively uncompressed insulation material results in more loft, less heat loss and higher effective insulation value. For example, using a nominal 2×6 frame with nominal 2×4 studs oriented so that a maximum space is provided between each stud and an opposite wall, to which the stud is not attached, reduces or eliminates thermal bridging effects and yields an energy savings of approximately 10% over the prior art construction shown in
[0053]
[0054] The prefabricated wall panel 200 further includes a plurality of studs, disposed within an interior cavity thereof, including first studs 210 (labeled “I” in
[0055] The prefabricated wall panel 200 further includes various features for aligning and securing the prefabricated wall panels to a floor section and/or to adjacent prefabricated wall panels and/or columns of the post-and-beam structure. In some embodiments, bottom plate 204 of the prefabricated wall panel 200 comprises a first portion of a coupling for securing the prefabricated wall panel 200 to a mating second portion of the coupling formed along the floor section (not shown in
[0056] The prefabricated wall panel 200 may additionally include a tongue-like or pin-like element 218 formed along one end thereof, and a groove, track or hole 220 formed along the opposite end thereof. When in an assembled condition, the tongue-like or pin-like element 218 of one prefabricated wall panel 200 is received within the groove, track or hole 220 of an adjacent prefabricated wall panel 200. The tongue-like or pin-like element 218 and groove, track or hole 220 restrict or eliminate lateral movement of the prefabricated wall panel 200 in the finished building, and also facilitate assembly by guiding the wall panels 200 into their desired locations.
[0057] The prefabricated wall panel 200 may additionally or alternatively include one or more retention tabs 216 extending from the bottom plate 204, which are received in mating retention slots (not illustrated in
[0058] Referring now to
[0059] Advantageously, the studs 210 and 212 do not become partially interleaved with one another when they are oriented as shown in
[0060] Referring now to
[0061] Now referring also to
[0062] The finished prefabricated wall panel 200 preferably also includes an exterior sheathing 306 attached to the exterior side thereof, as well as optional exterior insulation 308 and an exterior finish 310, such as for instance one or more of aluminum/plastic/wood siding, brick/stone, etc.
[0063] Further, the interior-facing surface of the one or more front panels 300 may have paint or wallpaper applied thereto. As such, the prefabricated wall panel 200 may require no further decoration or finishing after being incorporated into the building.
[0064] Alternative stud configurations may be envisaged without departing from the scope of the invention. Some specific and non-limiting examples of alternative stud configurations are shown in
[0065] Referring now to
[0066] Referring now to
[0067] Referring now to
[0068] In each case, the brackets 602 may be fabricated from plastic, wood, metal or another suitable material. The brackets 602 preferably do not extend the entire distance between the top plate 202 and the bottom plate 204. For instance, each bracket 602 has a height of between about 6 inches and about 15 inches. More than one bracket 602 may be disposed in a spaced-apart stacked arrangement, i.e., brackets 602 may be fastened at different heights within the prefabricated wall panels, and the heights (along the Z-direction) may be staggered along the width (Y-direction) of the prefabricated wall panel 200. The specific configuration of the studs and brackets in the wall panels shown in
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[0070] The prefabricated wall panel 700 further includes a plurality of studs, disposed within an interior cavity thereof, including first studs 210 arranged in a first row that is proximate a side of the wall panel 700 that faces an interior of the building, and second studs 212 arranged in a second row proximate a side of the wall panel 700 that faces an exterior of the building. Alternatively, the studs 410/410′ and 412/412′ discussed with reference to
[0071] Referring still to
[0072] The prefabricated wall panel 700 further includes various features for aligning and securing the prefabricated wall panel to a floor section or foundation system and/or to adjacent prefabricated wall panels and/or columns of the post-and-beam structure. In some embodiments, bottom plate 704 of the prefabricated wall panel 700 comprises a first portion of a coupling for securing the prefabricated wall panel 700 to a mating second portion of the coupling formed along the floor section, wherein the coupling limits at least lateral movement of the prefabricated wall panel 700 relative to the floor section (i.e., in the x-direction and/or in the y-direction). For instance, the prefabricated wall panel 700 may include a tongue-like or pin-like element 214 along the bottom plate 704, which may be received in a mating groove, track or hole (not illustrated) formed in the floor section. The tongue-like or pin-like element 214 and the groove, track or hole restrict or eliminate lateral movement of the prefabricated wall panel 700, i.e., prevents the bottom of the prefabricated wall panel from sliding inwardly or outwardly when installed as part of a wall of the building. Optionally, adhesive pads or tape, glue, etc. may be disposed between the first and second portions of the coupling to help secure the prefabricated wall panels in place on the floor section. It is to be understood that similar couplings may be formed between the ends of adjacent prefabricated wall panels, with the necessary modifications.
[0073] The prefabricated wall panel 700 may additionally include a tongue-like or pin-like element 218 formed along one end thereof, and a groove, track or hole 220 formed along the other end thereof. When in an assembled condition, the tongue-like or pin-like element 218 of one prefabricated wall panel 700 is received within the groove, track or hole 220 of an adjacent prefabricated wall panel 700. The tongue-like or pin-like element 218 and groove, track or hole 220 restrict or eliminate lateral movement of the prefabricated wall panel 700.
[0074] The prefabricated wall panel 700 may additionally or alternatively include one or more retention tabs 216 extending from the bottom plate 704, which are received in mating retention slots (not illustrated in
[0075] Referring now to
[0076] Advantageously, the studs 210 and 212 do not become partially interleaved with one another when they are oriented as shown in
[0077] As shown most clearly in
[0078] When assembled together to form a building, the first notches 706 at the first end of one prefabricated wall panel 700 and the second notches 708 at the second end of an adjacent prefabricated wall panel 700 allow the two prefabricated wall panels 700 to partially overlap along the width dimension thereof. The partial overlap between the adjacent prefabricated wall panels 700 facilitates aligning the surfaces of the interior and exterior sheathing materials, thereby speeding up construction and reducing the need to use highly skilled workers.
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[0080] The prefabricated wall panel 800 further includes a plurality of studs, disposed within an interior cavity thereof, including first studs 210 arranged in a first row that is proximate a side of the wall panel 800 that faces an interior of the building, and second studs 212 arranged in a second row proximate a side of the wall panel 800 that faces an exterior of the building. The studs 210 and 212 extend along a length thereof between the top plate 202 and the bottom plate 204. A first end of each of the studs 210 and 212 is fastened to the top plate 202 and a second end of each of the studs 210 and 212 is fastened to the bottom plate 204. Suitable mechanical fasteners, such as for instance nails, screws, gang plates, etc., may be used to attach the studs 210 and 212 to the top and bottom plates 202 and 204. Although not shown in
[0081] The prefabricated wall panel 800 further includes various features for aligning and securing the prefabricated wall panels to a not illustrated floor section and/or to adjacent prefabricated wall panels and/or columns of the post-and-beam structure. In some embodiments, bottom plate 204 of the prefabricated wall panel 800 comprises a first portion of a coupling for securing the prefabricated wall panel 800 to a mating second portion of the coupling formed along the floor section, wherein the coupling limits at least lateral movement of the prefabricated wall panel 800 relative to the floor section (i.e., in the x-direction and/or in the y-direction). For instance, the prefabricated wall panel 800 may include a tongue-like or pin-like element 214 along the bottom plate 204, which may be received in a mating groove, track or hole (not illustrated) formed in the floor section. The tongue-like or pin-like element 214 and the groove, track or hole restrict or eliminate lateral movement of the prefabricated wall panel 800, i.e., prevents the bottom of the prefabricated wall panel from sliding inwardly or outwardly when installed as part of a wall of the building. Optionally, adhesive pads or tape, glue, etc. may be disposed between the first and second portions of the coupling to help secure the prefabricated wall panels in place on the floor section. It is to be understood that similar couplings may be formed between the ends of adjacent prefabricated wall panels, with the necessary modifications.
[0082] The prefabricated wall panel 800 may additionally include a tongue-like or pin-like element 218 formed along one of the opposite end members 208, and a groove, track or hole 220 formed along the other one of the opposite end members 206. When in an assembled condition, the tongue-like or pin-like element 218 of one prefabricated wall panel 800 is received within the groove, track or hole 220 of an adjacent prefabricated wall panel 800. The tongue-like or pin-like element 218 and groove, track or hole 220 restrict or eliminate lateral movement of the prefabricated wall panel 800.
[0083] The prefabricated wall panel 800 may additionally or alternatively include one or more retention tabs 216 extending from the bottom plate 204, which are received in mating retention slots (not illustrated in
[0084] Referring now to
[0085] Advantageously, the studs 210 and 212 do not become partially interleaved with one another when they are oriented as shown in
[0086] As was discussed hereinabove, the stud orientation within the prefabricated wall panels of the various embodiments plays an important role in the disclosed construction system. Rotating the studs by up to 90° relative to the studs in the prior art wall reduces or eliminates thermal bridging between panels, which would otherwise occur across a stud that is physically connected to two opposing walls, as is often the case in typical construction. Eliminating thermal bridging is especially important for steel stud frames, since the steel has a high thermal conductivity. The stud orientation also allows for plumbing and/or electrical wires or conduits to be run in between the two rows of studs. The change in stud orientation, relative to the prior art wall, is made possible due to the post-and-beam design, described below with reference to
[0087]
[0088] The prefabricated wall panel 200 is disposed on a floor section 902, which is supported on a foundation system 904, such as for instance a poured concrete foundation wall. The tongue-like or pin-like element 218 along the bottom plate 204 is received within a groove, track or hole 906 formed in the floor section 902, which prevents or at least limits lateral movement in the x-direction and/or in the y-direction shown in
[0089] In the example that is shown in
[0090] In other embodiments, the columns that are 910 shown in
[0091] Referring still to
[0092] A plurality of rod or cable anchors 914 is arranged to secure the building to the foundation system 904. In the example that is shown in
[0093] The ability of the assembled wall and floor panels to resist movement in the positive-z-direction (uplift) is established by providing a continuous support from floor to floor or from foundation to roof, which is capable of resisting the required loads. The support connections may be permanent, as discussed above, or it may be possible to remove the connections and thereby disassemble the building if desired. As noted above, there is no access to the bottom plate of the finished prefabricated wall panels and accordingly it is not possible to fasten the prefabricated wall panels to the underlying floor or foundation system, as is typically done in the prior art, using screws or bolts that are placed through the bottom plate. The plurality of rod or cable anchors 914 allows the prefabricated wall panels to be secured in place without having access to the bottom plates thereof, which advantageously makes it possible to fully enclose the prefabricated wall panels with interior and exterior sheathing and finish material, greatly simplifying and speeding up the final construction phase at the building site.
[0094] Of course, many different arrangements may be envisaged for placing the rod or cable anchors 914 to secure the building to the foundation system 904.
[0095] Option A includes a rod or cable anchor 914 having one end 916 that is embedded in the building foundation 904. The rod or cable anchor 914 extends upwardly through the central openings in a plurality of columns 910 and floor sections 902 and terminates at an opposite end 918, which engages a locking and tensioning mechanism 920. The rod or cable anchor 914 may be secured to an upper surface of the uppermost floor section 902, which includes an integrated horizontal beam that is not illustrated in
[0096] Option B is similar to Option A but the rod or cable anchor 914 is external to the plurality of columns 910. For instance, the rod or cable anchor 914 runs adjacent to an external surface of the columns 910. Alternatively, a not illustrated channel or recess is formed into the external surface of the columns 910 and the rod or cable anchor 914 runs within the not illustrated channel or recess. Similar to option A, the rod or cable anchor 914 terminates at an opposite end 918, which engages a locking and tensioning mechanism 920. The rod or cable anchor 914 may be secured to an upper surface of the uppermost floor section 902, which includes an integrated horizontal beam that is not illustrated in
[0097] Option C also includes a rod or cable anchor 914 having one end 916 that is embedded in the building foundation 904, but the rod or cable anchor 914 only extends to above a floor section 902 that is supported by a set of columns 910 in a first level 1002 of the building 900. Additional assemblies of rod or cable anchors 914 and locking and tensioning mechanisms 920 are used to secure the second level 1004 to the first level 1002, and to secure the third level 1006 to the second level 1004, and so forth.
[0098] Referring now to
[0099] The foundation wall panel 1100 includes several components that were discussed above with reference to e.g., the prefabricated wall panel 200, including studs 210 and 212, front panels 300, insulation material 310, electrical outlet 302 and switch 304, etc. However, it is to be understood that a stud configuration similar to that discussed with reference to any of the prefabricated wall panels 200, 400, 400′, 600, 600′, 600″, 700 or 800 may be used.
[0100] Referring still to
[0101] The space 1110 in
[0102] Throughout the description and claims of this specification, the words “comprise”, “including”, “having” and “contain” and variations of the words, for example “comprising” and “comprises” etc., mean “including but not limited to”, and are not intended to, and do not exclude other components.
[0103] It will be appreciated that variations to the foregoing embodiments of the disclosure can be made while still falling within the scope of the disclosure. Each feature disclosed in this specification, unless stated otherwise, may be replaced by alternative features serving the same, equivalent or similar purpose. Thus, unless stated otherwise, each feature disclosed is one example only of a generic series of equivalent or similar features.
[0104] All of the features disclosed in this specification may be combined in any combination, except combinations where at least some of such features and/or steps are mutually exclusive. In particular, the preferred features of the disclosure are applicable to all aspects of the disclosure and may be used in any combination. Likewise, features described in non-essential combinations may be used separately (not in combination).