IP Library Granted Patent US 12,345,038
Granted Patent B2
US 12,345,038 · App. 17/982,214 · Granted Jul 1, 2025

Innovation in modular structures

Inventors: Kelly Wayne Pickering (Edgewater, CO); William Walter Finch (Greenwood Village, CO)
E04B1/34861
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Quick Facts
Patent No.
US 12,345,038
App. No.
17/982,214
Granted
Jul 1, 2025
Kind
B2
Abstract

A fast, flexible, and affordable structural building solution is disclosed. Current construction methodologies are prohibitively costly, slow, and wasteful. This construction method provides responsive and adaptive short to long term structural solutions. A reconfigurable flat packed modular structure can be shipped, assembled, and move-in ready in a fraction of the time of standard structural solutions. This system is easy to assemble and reusable with decreased maintenance costs and utilizes standardized shipping infrastructure. The structural elements are designed to build flexible residential, commercial, and industrial spaces. Component standardization reduces construction and maintenance cost over traditional building methods. The ease of construction reduces the learning curve for the assembly process. Embedded utilities in the components further minimize construction time. The modular nature of the design system allows for rapid assembly, disassembly, and redeployment as needed. Components are specifically built to ship using standard shipping containers for optimal organization of components and transportation.

Claims (83)

1. A method of modular construction, the method comprising the steps of:

(a) establishing a rectangular point grid, the rectangular point grid having a plurality of grid points connected by a plurality of grid lines;

(b) designing a floor plan for a structure based on the rectangular point grid, wherein the designing step further comprises:

(b1) laying out at least one interior wall between a first grid point and a second grid point along a grid line between the first grid point and the second grid point of the rectangular point grid;

(b2) laying out a rut wall panel column coincident with the first grid point;

(b3) laying out a second wall panel column coincident with the second grid point, wherein the at least one interior wall abuts against the rut wall column and abuts against the second wall column;

(b4) laying out at least one exterior wall between a third grid point and a fourth grid point along a grid line between the third grid point and the fourth grid point of the rectangular point grid;

(b5) laying out a third wall panel column coincident with the third grid point;

(b6) laying out a fourth wall panel column coincident with the fourth grid point, wherein the at least one exterior wall abuts against the third wall column and abuts against the fourth wall column;

(b7) designing a plurality of components with which to construct the structure that conforms to the rectangular point grid, wherein the plurality of components have dimensions that am integer multiples of a length of a one of the plurality of grid lines; and

(b8) designing a plurality of floor panel border having a thickness equal to a floor panel thickness and a width equal to one half of a wall panel thickness wherein each of the plurality of floor panel borders have a different length such that an end of each of the plurality of floor panel borders when installed are coincident with a grid point or a midpoint of a grid line.

2. The method of modular construction according to claim 1 wherein the rectangular point grid is a 1×1×1 repeatable grid along an x-y-z-axis.

3. The method of modular construction according to claim 1 wherein a plurality of grid lines along the x axis of the rectangular point grid and a plurality of grid lines along the y axis of the rectangular point grid are of a same length.

4. The method of modular construction according to claim 1 wherein a plurality of grid lines along the x axis of the rectangular point grid have a first length, and a plurality of grid lines along the y axis of the rectangular point grid have a second length that is different from the first length.

5. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing a square floor panel and a rectangular floor panel wherein each side of the square floor panel and each side of the rectangular floor panel have a length that is an integer multiple of a length of a one of the plurality of grid lines; and

a designing the square floor panel and the rectangular floor panel to have a predetermined thickness.

6. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing a solid wall panel wherein a width of the solid wall panel is an integer multiple of a length of a one of the plurality of grid lines less a thickness of the solid wall panel;

designing the solid wall panel to have a predetermined height and a predetermined thickness; and

designing the solid wall panel to accommodate an embedded utility selected from the group a consisting of:

water supply lines;

wastewater return lines;

electrical lines;

cable tv lines;

security lines;

gas lines;

oil lines;

fire suppression lines;

climate controls; and

home security.

7. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing a wall panel window wherein a width of the wall panel window is an integer multiple of a length of a one of the plurality of grid lines less a thickness of the wall panel window, designing the wall panel window to have a predetermined height; and

designing the wall panel window to have an opening to accept a style of window, the opening a having a shape to accommodate the style of window.

8. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing a wall panel large window wherein a width of the wall panel large window is an integer multiple of a length of a one of the plurality of grid lines less a half thickness of the wall panel large window;

designing the wall panel large window to have a predetermined height; and

designing the wall panel large window to have an opening along one side to accept a large style of window, the opening having a shape to accommodate the style of window, wherein a first and second wall panel large window mate together to form a space to accommodate the large style of window.

9. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing a wall panel door wherein a width of the wall panel door is an integer multiple of a length of a one of the plurality of grid lines less a thickness of the wall panel door;

designing the wall panel door to have a predetermined height; and

designing the wall panel door to have an opening to accept a style of door, the opening having a a shape to accommodate the style of door.

10. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing a wall panel wide door wherein a width of the wall panel wide door is an integer multiple of a length of a one of the plurality of grid lines less a half thickness of the wall panel wide door;

designing the wall panel wide door to have a predetermined height; and

designing the wall panel wide door to have an opening along one side to accept a large style of a door, the opening having a shape to accommodate the style of door, wherein a first and second wall panel wide door mate together to form a space to accommodate the large style of door.

11. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing the wall panel columns to have a square cross section with a width equal to a thickness of a wall panel; and

designing the wall panel columns to have a height equal to a height of the wall panel, wherein the wall panel columns can connect one, two, three, or four of the wall panels together.

12. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing a square ceiling panel and a rectangular ceiling panel wherein each side of the square ceiling panel and each side of the rectangular ceiling panel have a length that is an integer multiple of a length of a one of the plurality of grid lines; and

designing the square ceiling panel and the rectangular ceiling panel to have a predetermined thickness.

13. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing a plurality of rectangular roof panels having a predetermined thickness; and

designing the plurality of rectangular roof panels to have a width equal to an integer multiple of a length of a one of the plurality of grid lines, and a length slightly wider than an integer multiple of a length a one of the plurality of grid lines to accommodate for a slope of a roof.

14. A method of modular construction, the method comprising the steps of:

(a) establishing a rectangular point grid, the rectangular point grid having a plurality of grid points connected by a plurality of grid lines;

(b) designing a floor Plan for a structure based on the rectangular point grid, wherein the designing step further comprises:

(b1) laying out cat least one interior wall between a first grid point and a second grid point along a grid line between the first grid point and the second grid point of the rectangular point grid;

(b2) laving out a first wall panel column coincident with the first grid point;

(b3) laying out a second wall panel column coincident with the second rid point, wherein the at least one interior wall abuts against the first wall column and abut against the second wall column;

(b4) laying out at least one exterior wall between a third grid point and a fourth grid point along a grid line between the third grid point and the fourth grid point t) the rectangular point grid;

(b5) laying out a third wall panel column coincident with the third grid point;

(b6) laying out a fourth wall panel column coincident with the fourth grid point, wherein the at least one exterior wall abuts against the third wall column and abuts against the fourth wall column;

(b7) designing a plurality of components with which to construct the structure that conforms to the rectangular point grid, wherein the plurality of components have dimensions that an integer multiples of a length of a one of the plurality of rid lines; and

(b8) designing a plurality of ceiling panel borders having a thickness equal to a ceiling panel thickness and a width equal to one half of a wall panel thickness, wherein each of the plurality of ceiling panel borders have a different length such that an end of each of the plurality of ceiling panel borders when installed are coincident with a grid point or a midpoint of a grid line.

15. A method of modular construction, the method comprising the steps of:

(a) establishing a rectangular point grid, the rectangular point grid having a plurality of grid points connected by a plurality of grid lines;

(b) designing a floor plan for a structure based on the rectangular point grid, wherein the designing step further comprises:

(b1) laying out at least one interior wall between a first grid point and a second grid point along a grid line between the first grid point and the second grid point of the rectangular point grid;

(b2) laying out a first wall panel column coincident with the first grid point;

(b3) laying out a second wall panel column coincident with the second grid point, wherein the at least one interior wall abut, against the first wall column and abuts against the second wall column;

(b4) laying out at least one exterior wall between a third grid point and a fourth grid point along a grid line between the third grid point and the fourth grid point of the rectangular point grid;

(b5) laying out a third wall panel column coincident with the third grid point;

(b6) laying out a fourth wall panel column coincident with the fourth grid point, wherein the at least one exterior wall abuts against the third wall column and abuts against the fourth wall column;

(b7) designing a plurality of component, with which to construct the structure that conforms to the rectangular point grid, wherein the plurality of components have dimensions that are integer multiples of a length of a one of the plurality of grid lines; and

(b8) designing an attic end triangle base having a thickness equal to a wall panel thickness, a base having a length equal to an integer multiple of a length of a one of the plurality of grid lines plus one half of the wall panel thickness, and a height such that a slope of the attic end triangle base matches a slope of a roof defined by a rise and run.

16. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing an attic end rectangle base having a thickness equal to a wall panel thickness, a length equal to an integer multiple of a length of a one of the plurality of grid lines, and a height equal to a height of an attic end triangle base.

17. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing an attic end triangle having a thickness equal to a wall panel thickness, a length equal to an integer multiple of a length of a one of the plurality of grid lines, and a height such that a slope of the attic end triangle matches a slope of a roof defined by a rise and run.

18. The method of modular construction according to claim 1 wherein designing step (b7) further comprises the steps of:

designing an attic end rectangle having a thickness equal to a wall panel thickness, a length equal to an integer multiple of a length of a one of the plurality of grid lines, and a height equal to a height of an attic end triangle.

Continuity (2)
Provisional Application 63276837 · Nov 8, 2021
Related Publication 20230147866A1 · May 11, 2023
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