AUTOCLAVE AERATED CONCRETE STRUCTURES WITH EMBEDDED HANGERS AND CONNECTORS
20220259846 · 2022-08-18
Inventors
Cpc classification
E04C2/049
FIXED CONSTRUCTIONS
E04C2002/002
FIXED CONSTRUCTIONS
E04B1/4157
FIXED CONSTRUCTIONS
International classification
E04B1/41
FIXED CONSTRUCTIONS
E04C2/04
FIXED CONSTRUCTIONS
Abstract
The present invention pertains to an element of an autoclave aerated concrete (AAC) material having a web of a second material different from AAC embedded therein and generally centrally disposed in a depth dimension of the element and between two planar faces and the second material supporting hardware for connecting the element to other structures.
Claims
1. A method for forming an autoclave aerated concrete panel comprising: providing a mold for forming aerated concrete panels; inserting mesh material into the mold, the mesh material comprising: a first plurality of rebar elements extending parallel to one another in a first direction; a second plurality of rebar elements extending parallel to one another in a second direction and intersecting with the first plurality of rebar elements to define a plurality of windows; a plate positioned within a window of the plurality of windows such that it is directly connected to at least one rebar element of the first plurality of rebar elements and at least one rebar element of the second plurality of rebar elements; and hardware attached to the plate for connecting to other structures; adding a volume of ingredients to the mold; adding an expansion agent to the volume of ingredients in the mold to generate a gas and expand the volume of ingredients to form a solid block; removing the solid block from the mold; and placing the solid block in an autoclave at an elevated temperature and an elevated pressure for an effective period of time to form an autoclave aerated concrete panel.
2. The method of claim 1, wherein inserting mesh material comprises inserting the mesh material as a plurality of layers in a parallel spaced relationship to one another.
3. The method of claim 2, further comprising cutting the solid block between each of the plurality of layers to form a plurality of green panels.
4. The method of claim 3, wherein placing the solid block into an autoclave comprises placing at least one of the plurality of green panels into the autoclave.
5. The method of claim 1, wherein the volume of ingredients comprises silica, cement, lime, Portland cement, and water.
6. The method of claim 5, wherein the expansion agent comprises aluminum.
7. The method of claim 6, wherein the aluminum is selected from one of either a powder and a paste.
8. A method for forming an autoclave aerated concrete panel comprising: providing a mold for forming a plurality of aerated concrete panels; inserting into the mold a plurality of layers of mesh material, each of the plurality of layers comprising: a first plurality of rebar elements extending parallel to one another in a first direction; a second plurality of rebar elements extending parallel to one another in a second direction and intersecting with the first plurality of rebar elements to define a plurality of windows; a plate positioned within a window of the plurality of windows such that it is directly connected to at least one rebar element of the first plurality of rebar elements and at least one rebar element of the second plurality of rebar elements; and hardware attached to the plate for connecting to other structures; adding a volume of ingredients to the mold; adding an expansion agent to the volume of ingredients to generate a gas to expand the volume of ingredients and form a solid block; removing the solid block from the mold; cutting the block between each of the plurality of layers of mesh material to form a plurality of green panels; and placing the green panels in an autoclave at an elevated temperature and an elevated pressure for an effective period of time to form a plurality of autoclave aerated concrete panels.
9. The method of claim 8, wherein the volume of ingredients comprises silica, cement, lime, Portland cement, and water.
10. The method of claim 9, wherein the expansion agent comprises aluminum.
11. The method of claim 10, wherein the aluminum is selected from one of either a powder and a paste.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0020] The present invention is susceptible to embodiments in many different forms. Preferred embodiments of the invention are disclosed with the understanding that the present disclosure is to be considered as exemplifications of the principles of the invention and are not intended to limit the broad aspects of the invention to the embodiments illustrated.
[0021] Autoclave aerated concrete (AAC) can take on numerous structural forms for use in construction in load and non-load bearing forms such as panels, cladding, beams, lintels, and blocks. Due to AAC's design flexibility and combined structural and insulation components, an entire structure can be built using the one material. Exterior surfaces can be finished with stucco, traditional veneers, or siding, while interior walls can be plastered, painted, or left unfinished, in addition to traditional sheetrock finishes. Further, AAC is easy to use and can be cut and manipulated with normal wood-working tools.
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[0023] The shape of the web of material preferably generally conforms to the shape and size of the panel and is fully contained within the area defined by the panel and should span an area of from 60-99% of the panel surface area. Thus, if the panel is rectangular the web of material should be rectangular and have lateral edges and ends aligned with those of the panel. If the panel is circular the web of material should be circular and coaxially disposed therewith. It is also desirable, but not necessary, for the web of material to be positioned centrally in the depth dimension and to define a plane that is parallel to one or both planar surfaces of the AAC panel 12.
[0024] The embedded material is of a material other than AAC. Suitable materials for the web of material include metals, composites, fiberglass, fabric, synthetic fiber fabric, and plastics for example. The web of material 12 shown in
[0025] While the web of material shown is a mesh material forming square or rectangular windows 32, it could take on other forms. The rebar elements do not necessarily have to intersect with other rebar elements and, if they intersect, they do not have to be connected to one another. Thus, the term “mesh” is meant to include a plurality of rebar elements extending along any direction including a plurality of rebar elements extending in parallel spaced relationship with no points of intersection. The term “mesh” also includes a first and second plurality of rebar elements intersecting at 900 as shown or at other angles.
[0026] The term “mesh” also includes material formed from more than two plurality of rebar elements with more than two points of intersection to form windows having shapes other than rectangular or square and can include one or a combination of two or more of the following, for example, triangular, parallelogram, rhombohedral, diamond, pyramidal, trapezoidal, kite or other shape. Additionally, more than one web of material can be used positioned adjacent one another, adjacent one another and coplanar, or stacked on top of one another, or spaced from one another and not in contact with one another.
[0027] The hardware 14 for connecting to the panel 10 to exterior surfaces is shown as a generally triangular shaped plate 14 which is attached to the mesh material by welding, crimping, fasteners, or other technique well known to those skilled in the art.
[0028] While one plate 14 is shown associated with a single window,
[0029] The mesh and the supporting hardware can be supplied in pre-cut sizes to fit the size and shape of the panel or be stored in rolls and cut to the desired size and shape from the roll.
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[0038] In step 224, the mold is collapsed and the pre-cured cake, or green cake, is removed from the mold and conveyed to a cutting station 226 where the cake is cut into separate panels with the web of material and associated hardware embedded therein. The collapsed mold is cleaned 230, oiled 232, dosed 234, and the webs of material and associated hardware are inserted into the mold 236 and returned to a location under the mixer 210.
[0039] The green block is conveyed from the cutting station 226 into an autoclave 230 for an effective period of time to cure the green panels into AAC panels. The AAC panels are packaged for shipping at station 232.
[0040] While specific embodiments have been illustrated and described, numerous modifications come to mind without departing from the spirit of the invention and the scope of protection is only limited by the scope of the accompanying claims.