IP Library Granted Patent US 8,426,010
Granted Patent B2
US 8,426,010 · App. 12/919,444 · Granted Apr 23, 2013

Structural element

Inventor: Klaus Stadthagen-Gonzalez (Houston, TX)
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Quick Facts
Patent No.
US 8,426,010
App. No.
12/919,444
Granted
Apr 23, 2013
Kind
B2
Abstract

A structural element includes a continuous layer comprising a set of first main-faces defining a first surface and a set of second main-faces defining a second surface and the continuous layer extending between the first surface and the second surface, wherein along a first direction, the first main-faces and the second main-faces alternate in order and are connected by first side-faces, along a second direction different from the first direction, the first main-faces and the second main-faces alternate in order and are connected by second side-faces, and along a third direction different from the first direction and different from the second direction, a pair of neighboring first main-faces is connected by a first bridge-face, and the first bridge-face is connected to neighboring second main-faces by first bridge-side-faces.

Claims (68)

1. A structural element comprising:

a continuous layer comprising a set of first main-faces defining a first surface and a set of second main-faces defining a second surface and the continuous layer extending between the first surface and the second surface, wherein

along a first direction, the first main-faces and the second main-faces alternate in order and are connected by first side-faces;

along a second direction different from the first direction, the first main-faces and the second main-faces alternate in order and are connected by second side-faces; and

along a third direction different from the first direction and different from the second direction, a pair of neighboring first main-faces is connected by a first bridge-face, and the first bridge-face is connected to neighboring second main-faces by first bridge-side-faces, and

wherein at least one of the first bridge-faces provides a planar two-dimensional contact area to the first surface, and the first main-faces and the planar two-dimensional contact area of each first bridge-face are coplanar.

2. The structural element of claim 1 , wherein a thickness of the structural element given by a distance between the first surface and the second surface is larger than a thickness of the continuous layer itself.

3. The structural element of claim 1 , wherein at least one of the first bridge-faces has a width of at least 2% of a width of one of the connected first main-faces.

4. The structural element of claim 1 , wherein at least one of the first side-faces is non-perpendicular with respect to at least one of its respective first main-face and its respective second main-face.

5. The structural element of claim 1 , wherein each of the first bridge-side-faces extends from one of the sides of its respective first bridge-face to the side of its respective second main-face.

6. The structural element of claim 1 , wherein at least one of the first main-faces, the second main-faces, the first side-faces, the second side-faces, and first bridge-side-faces is planar.

7. The structural element of claim 1 , wherein at least one of the first main-faces, the second main-faces, the first side-faces, the second side-faces, and first bridge-side-faces has a curved area.

8. The structural element of claim 1 , wherein at least in a partial region at least some of the first and second main-faces are tilted with respect to each other.

9. The structural element of claim 1 , wherein the structural element is tubular.

10. The structural element of claim 1 , wherein at least one of the first and second main-faces has one of a polygon shape, a circular shape and an elliptical shape.

11. The structural element of claim 1 , wherein in the plane of the first surface, the shape of at least one of the first bridge-faces is one of rectangular, trapezoidal, polygon, and elongated having curved sides.

12. The structural element of claim 1 , wherein along a fourth direction different from the first direction and different from the second direction, a pair of neighboring second main-faces is connected by a second bridge-face, and the second bridge-face is connected to neighboring second main-faces by second bridge-side-faces.

13. The structural element of claim 12 , wherein the continuous layer is formed in addition to the first main-faces, the second main-faces, the first side-faces, the second side-faces, the first bridge-faces, and the first bridge-side-faces by the second bridge-faces and second bridge-side-faces.

14. The structural element of claim 12 , wherein at least one of the second bridge-side-face is non-perpendicular with respect to at least one of its respective first bridge-face and its respective second main-face.

15. The structural element of claim 12 , wherein at least in a partial region of the structural element the third direction and fourth direction are identical.

16. The structural element of claim 12 , wherein at least in a partial region of the structural element the third direction and fourth direction are different.

17. The structural element of claim 12 , wherein the third direction and fourth direction are changing from region to region of the structural element.

18. The structural element of claim 1 , wherein at least one of the first main-faces, the second main-faces, the first side-faces, the second side-faces, and the first bridge-faces includes openings.

19. The structural element of claim 18 , wherein the opening is configured to guide a rebar element for forming truss-configurations with the first main-faces, the second main-faces, the first side-faces, and the second side-faces or the first main-faces, the second main-faces, and the first bridge-faces.

20. A composite element comprising:

a structural element as recited in claim 1 as a continuous core component; and

a first face-sheet attached to the first main-faces of the structural element.

21. The composite element of claim 20 , wherein the second bridge-faces and the second bridge-side-faces of the structural element form a channel of trapezoidal cross-section with the first face sheet.

22. The composite element of claim 21 , further comprising a member within the channel.

23. The composite element of claim 22 , wherein the member is formed to be in contact with at least two of its respective second bridge-face and second bridge-side-face and section of the first face-sheet.

24. The composite element of claim 22 , wherein the member is hollow.

25. The composite element of claim 22 , wherein at least one of the first bridge-side-faces and the side-faces is configured to reflect radiation.

26. The composite element of claim 20 further comprising a second face-sheet attached to the second main-faces of the structural element.

27. The composite element of claim 20 , wherein the first face-sheet is configured to transmit radiation.

28. A modular building system comprising at least one structural element as recited in claim 1 , at least one face-sheet for attaching to the at least one structural element, the at least one structural element and the face-sheet configured to form a channel when attached to each other, and at least one mount element for connecting two structural elements.

29. The modular building system of claim 28 , wherein the at least one mount element is one of a corner post with pins configured for inserting into the channel, a U-connector, and an angled connector structural element.

30. An open lattice structure, comprising at least two structural elements as recited in claim 1 and attached to each other at the main-faces, forming a channel system in-between the structural elements.

31. The open lattice structure of claim 30 , further comprising a face-sheet in-between two neighboring structural elements.

32. The open lattice structure of claim 31 , wherein the at least two structural elements are rotated with respect to each other.

33. The open lattice structure of claim 31 , wherein at least two of the structural elements are structurally identical.

34. The open lattice structure of claim 31 , wherein at least two of the structural elements are structurally different.

35. A structural beam, comprising:

at least one structural element as recited in claim 1 ; and

two flanges attached to the main-faces of the structural element.

36. A structural beam as recited in claim 35 , wherein the structural elements includes at least two main-faces across a width of the structural beam.

37. A wall-element comprising:

a structural element as recited in claim 1 ; and

at least one chord element attached to the structural element for forming at least one truss-configuration with at least one of a first group of faces of the structural element including the first main-faces, the second main-faces, the first side-faces, and a second group of faces of the structural element including the second side-faces or the first main-faces, the second main-faces, the first bridge-faces, and the first bridge-side-faces.

38. The wall-element as recited in claim 37 , wherein the chord element is one of a wire-mesh and a rebar.

39. The wall-element as recited in claim 38 , wherein the rebar is attached to main-faces of the structural element.

40. The wall-element as recited in claim 38 , wherein the rebar is positioned between the first and second main-faces of the structural element.

41. The wall-element as recited in claim 40 , wherein the rebar is guided through openings within the structural element.

42. The wall-element as recited in claim 37 , wherein the chord element is one of a drywall, a fiber reinforced polymer wall, a cement plate, galvanized steel, and a wood board.

43. The wall-element as recited in claim 37 , wherein the chord element and the structural element form a channel system configured for inserted connectors, wherein the channel system is configured such the connectors form themselves a truss configuration.

44. A damping element comprising:

a structural element as recited in claim 1 made of elastic material and attached to two face-sheets.

45. A structural element comprising a continuous layer extending between a first surface and a second surface and formed to comprise:

truncated conical elements and truncated inverted conical elements alternating in order, wherein

top main-faces of the truncated conical elements define the first surface;

bottom main-faces of the inverted truncated conical elements define the second surface;

side-faces each shared by a pair of a truncated conical element and a truncated inverted conical element;

first bridge-faces each connecting a pair of top main-faces of neighboring truncated conical elements;

first bridge-side-faces each connecting a pair of one of the first bridge-faces and the bottom main-face of a neighboring one of the inverted truncated conical elements;

second bridge-faces each connecting a pair of bottom main-faces of neighboring truncated inverted conical elements;

second bridge-side-faces each connecting a pair of one of the second bridge-faces and the top main-face of a neighboring one of the truncated conical elements, and wherein at least one of the first bridge-faces provides a planar two-dimensional contact area to the first surface, and the top main-faces and the planar two-dimensional contact area of each first bridge-face are coplanar.

46. The structural element as recited in claim 45 , wherein the truncated conical elements have a pyramid-shape.

47. The structural element as recited in claim 45 , wherein the top main-faces of the truncated elements, the bottom main-faces of the inverted truncated elements, the side-faces, the bridge-faces, and the bridge-side-faces form a continuous surface.

48. The structural element of claim 1 , wherein at least one of the first and second main-faces has an octagon shape.

Continuity (2)
Provisional Application 61067293 · Feb 26, 2008
Related Publication 20110005165A1 · Jan 13, 2011