IP Library Granted Patent US 10,465,270
Granted Patent B1
US 10,465,270 · App. 15/883,203 · Granted Nov 5, 2019

Cables having conductive elements formed from aluminum alloys processed with high shear deformation processes

Inventors: Shenjia Zhang (Zionsville, IN); Cornelius A. Muojekwu (Indianapolis, IN); Nhon Q. Vo (Skokie, IL); Terry C. Lowe (Golden, CO)
Assignees: General Cable Technologies Corporation; NanoAI LLC; Manhattan Scientifics, Inc.
C22F1/04H01B1/023H01B13/0036C22C21/00
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Quick Facts
Patent No.
US 10,465,270
App. No.
15/883,203
Granted
Nov 5, 2019
Kind
B1
Abstract

A conductive element of a cable or a wire is formed of a high shear deformation processed aluminum alloy. The aluminum-zirconium alloy exhibits high electrical conductivity and high tensile strength. Methods of forming cables and wires are also further disclosed including the formation of all aluminum alloy cables having high ampacity.

Claims (16)

1. A cable comprising one or more conductors, wherein at least one of the one or more conductors is formed from a high shear deformation (“HSD”) processed aluminum-zirconium alloy,

wherein the HSD processed aluminum-zirconium alloy comprises about 0.1% or more, by weight, zirconium and exhibits:

an ultimate tensile strength of about 250 MPa or greater; and

an electrical conductivity of about 53% International Annealed Copper Standard (“IACS”) or greater when measured at 20° C.

2. The cable of claim 1 is an overhead conductor.

3. The cable of claim 2 , wherein the overhead conductor is an all-aluminum alloy conductor.

4. The cable of claim 1 , wherein the HSD processed aluminum-zirconium alloy further comprises an inoculant.

5. The cable of claim 4 , wherein the inoculant comprises tin.

6. The cable of claim 1 continuously operates at a temperature of about 70° C. or more.

7. The cable of claim 1 , wherein the HSD processed aluminum-zirconium alloy is formed using one or more of a severe plastic deformation process, an equal-channel angular pressing (“ECAP”) process, an equal channel angular extrusion process, and a continuous extrusion process.

8. The cable of claim 1 , wherein the HSD processed aluminum-zirconium alloy has a grain size of about 1 micron or less.

9. The cable of claim 1 , wherein the HSD processed aluminum-zirconium alloy has a grain size of about 100 nanometers to about 200 nanometers.

10. The cable of claim 1 , wherein the HSD processed aluminum-zirconium alloy exhibits an ultimate tensile strength of about 40% to about 100% greater than the ultimate tensile strength of a similar aluminum alloy processed without high shear deformation.

11. The cable of claim 1 , wherein the HSD processed aluminum-zirconium alloy exhibits an ultimate tensile strength of about 400 MPa or greater.

12. The cable of claim 1 , wherein the HSD processed aluminum-zirconium alloy has a softening temperature of about 150° C. to about 450° C.

13. The cable of claim 1 , wherein the HSD processed aluminum-zirconium alloy is Al 99% Fe (0.4-0.5)% Zr (0.25-0.3)% Sn (0.05-0.1)% .

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2019
From: LOWE, TERRY C.
To: MANHATTAN SCIENTIFICS, INC.
Reel/Frame 049590/0332 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2019
From: VO, NHON Q.
To: NANOAL LLC
Reel/Frame 048468/0958 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2018
From: ZHANG, SHENJIA; MUOJEKWU, CORNELIUS A.
To: GENERAL CABLE TECHNOLOGIES CORPORATION
Reel/Frame 044830/0886 →
Continuity (1)
Provisional Application 62452138 · Jan 30, 2017
Cited By (1)
US 12,695,004