IP Library Granted Patent US 7,910,193
Granted Patent B2
US 7,910,193 · App. 12/267,867 · Granted Mar 22, 2011

Three-dimensional auxetic structures and applications thereof

Assignee: MKP Structural Design Associates, Inc.
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Quick Facts
Patent No.
US 7,910,193
App. No.
12/267,867
Granted
Mar 22, 2011
Kind
B2
Abstract

Negative Poisson's ratio (NPR) or auxetic structures, including three-dimensional auxetic structures, are disclosed and applied to various applications. One such structure comprises a pyramid-shaped unit cell having four base points A, B, C, and D defining the corners of a square lying in a horizontal plane. Four stuffers of equal length or different lengths extend from a respective one of the base points to a point E spaced apart from the plane. Four tendons of equal length or different lengths, but less than that of the stuffers, extend from a respective one of the base points to a point F between point E and the plane. In three-dimensional configurations, a plurality of unit cells are arranged as tiles in the same horizontal plane with the base points of each cell connected to the base points of adjoining cells, thereby forming a horizontal layer. A plurality of horizontal layers are then stacked with each point E of cells in one horizontal layer being connected to a respective one of the points F of cells in an adjacent layer. Particularly for typical applications, the structure may further including a pair of parallel plates made sandwiching a plurality of horizontal layers of unit cells.

Claims (27)

1. An auxetic structure, comprising:

a pyramid-shaped unit cell having four base points A, B, C, D defining the corners of a square lying in a horizontal plane;

four stuffers, each extending from a respective one of the base points to a point E spaced apart from the plane;

four tendons, each with a length less than that of the corresponding stuffers, each tendon extending from a respective one of the base points to a point F between point E and the plane; and wherein:

a plurality of unit cells are arranged as tiles in the same horizontal plane with the base points of each cell connected to the base points of adjoining cells, thereby forming a horizontal layer, and

a plurality of horizontal layers, the layers being stacked such that each point E of cells in one horizontal layer are connected to a respective one of the points F of cells in an adjacent layer.

2. The auxetic structure of claim 1 , wherein the angles formed between opposing stuffers from points A and C or B and D can be varied to achieve different effective material properties for different requirements.

3. The auxetic structure of claim 1 , wherein the angles formed between opposing tendons from points A and C or B and D are larger than the angles formed between the corresponding opposing stuffers from points A and C or B and D.

4. The auxetic structure of claim 1 , wherein the stuffers are of equal or unequal length.

5. The auxetic structure of claim 1 , wherein the tendons are of equal or unequal length.

6. The auxetic structure of claim 1 , wherein the stuffers are of equal or unequal cross section.

7. The auxetic structure of claim 1 , wherein the tendons are of equal or unequal cross section.

8. The auxetic structure of claim 1 , wherein the tiles are arranged in parallel or diagonal patterns.

9. The auxetic structure of claim 1 , wherein the horizontal layers include unit cells with different dimensions, resulting in a functionally-graded design.

10. The auxetic structure of claim 1 , wherein the horizontal layers include unit cells with different material compositions, resulting in a functionally-graded design.

11. The auxetic structure of claim 1 , wherein the unit cells are based upon different design variables such that different material properties are achieved along different directions.

12. The auxetic structure of claim 1 , wherein the stuffers are made of metals, ceramics, plastics, or other compressive materials.

13. The auxetic structure of claim 1 , wherein the tendons are made of metals, plastics, fibers, fiber ropes, or other tensile materials.

14. The auxetic structure of claim 1 , wherein the stuffers and tendons have a rectangular, round, or other cross section.

15. The auxetic structure of claim 1 , further including a pair of parallel plates sandwiching a plurality of horizontal layers of unit cells.

16. The auxetic structure of claim 1 , further including a pair of parallel metal plates sandwiching a plurality of horizontal layers of unit cells.

17. The auxetic structure of claim 1 , further including a pair of parallel fiber-reinforced polymer composite plates sandwiching a plurality of horizontal layers of unit cells.

18. The auxetic structure of claim 1 , further including an enclosure housing a plurality of horizontal layers of unit cells, thereby forming a mattress.

19. The auxetic structure of claim 1 , wherein the geometry, dimensions or composition of the tendons or stuffers are varied to achieve different effective material properties along different directions.

20. The auxetic structure of claim 1 , wherein the geometry, dimensions or composition of the tendons or stuffers are varied to achieve a different effective Young's modulus along different directions.

21. The auxetic structure of claim 1 , wherein the geometry, dimensions or composition of the tendons or stuffers are varied to achieve different effective Poisson's ratios along different directions.

22. The auxetic structure of claim 1 , including different material density in different layers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2010
From: MA, ZHENG-DONG
To: MKP STRUCTURAL DESIGN ASSOCIATES, INC.
Reel/Frame 025430/0309 →
Continuity (1)
Related Publication 20100119792A1 · May 13, 2010