IP Library › Granted Patent US 12,255,555
Granted Patent B2
US 12,255,555 · App. 17/695,305 · Granted Mar 18, 2025

Self-aware composite mechanical metamaterials and method for making same

Inventors: Amir Alavi (Pittsburgh, PA); Kaveh Barri (Pittsburgh, PA)
Assignee: University of Pittsburgh-Of The Commonwealth System of Higher Education
H02N1/04H01B5/00
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Quick Facts
Patent No.
US 12,255,555
App. No.
17/695,305
Granted
Mar 18, 2025
Kind
B2
Abstract

A self-aware composite mechanical metamaterial, comprising first and second electrically conductive components disposed relative to each other to act as opposite electrodes to induce contact electrification; wherein the first and second electrically conductive components, along with a dielectric component serving as a skeleton of the self-aware composite mechanical metamaterial, form a lattice of snapping curved semicircular-shaped segments, wherein each of the snapping curved semicircular-shaped segments has an elastic snap-through instability mechanism; and wherein the lattice comprises periodic repeatable parallel rows of the snapping curved semicircular-shaped segments.

Claims (19)

1. A medical implant comprising a self-aware composite mechanical metamaterial, comprising:

first and second electrically conductive components disposed relative to each other to act as opposite electrodes to induce contact electrification;

wherein the first and second electrically conductive components, along with a dielectric component serving as a skeleton of the self-aware composite mechanical metamaterial, form a lattice of snapping curved semicircular-shaped segments, wherein each of the snapping curved semicircular-shaped segments has an elastic snap-through instability mechanism; and

wherein the lattice comprises periodic repeatable parallel rows of the snapping curved semicircular-shaped segments.

2. The medical implant of claim 1 , wherein the medical implant comprises a spinal fusion cage, an acetabular cup or a tibial tray.

3. A medical stent comprising a self-aware composite mechanical metamaterial, comprising:

first and second electrically conductive components disposed relative to each other to act as opposite electrodes to induce contact electrification;

wherein the first and second electrically conductive components, along with a dielectric component serving as a skeleton of the self-aware composite mechanical metamaterial, form a lattice of snapping curved semicircular-shaped segments, wherein each of the snapping curved semicircular-shaped segments has an elastic snap-through instability mechanism; and

wherein the lattice comprises periodic repeatable parallel rows of the snapping curved semicircular-shaped segments.

4. The medical stent of claim 3 , wherein the medical stent comprises a cardiovascular stent or an esophageal stent.

5. A shock absorber comprising a self-aware composite mechanical metamaterial, comprising:

first and second electrically conductive components disposed relative to each other to act as opposite electrodes to induce contact electrification;

wherein the first and second electrically conductive components, along with a dielectric component serving as a skeleton of the self-aware composite mechanical metamaterial, form a lattice of snapping curved semicircular-shaped segments, wherein each of the snapping curved semicircular-shaped segments has an elastic snap-through instability mechanism; and

wherein the lattice comprises periodic repeatable parallel rows of the snapping curved semicircular-shaped segments.

6. A concrete system, comprising a self-aware composite mechanical metamaterial, comprising:

first and second electrically conductive components disposed relative to each other to act as opposite electrodes to induce contact electrification;

wherein the first and second electrically conductive components, along with a dielectric component serving as a skeleton of the self-aware composite mechanical metamaterial, form a lattice of snapping curved semicircular-shaped segments, wherein each of the snapping curved semicircular-shaped segments has an elastic snap-through instability mechanism; and

wherein the lattice comprises periodic repeatable parallel rows of the snapping curved semicircular-shaped segments;

and further comprising a conductive cementitious material and an auxetic polymer lattice.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2022
From: ALAVI, AMIR; BARRI, KAVEH
To: UNIVERSITY OF PITTSBURGH - OF THE COMMONWEALTH SYSTEM OF HIGHER EDUCATION
Reel/Frame 060424/0854 →
Continuity (3)
Continuation In Part 17369640 · Jul 7, 2021
Provisional Application 63048943 · Jul 7, 2020
Related Publication 20220209686A1 · Jun 30, 2022
References Cited (8)
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