IP Library › Granted Patent US 10,968,970
Granted Patent B2
US 10,968,970 · App. 14/629,381 · Granted Apr 6, 2021

Composite brake disks and methods for coating

Inventor: Nathan K. Meckel (Ramona, CA)
Assignee: Tech M3, Inc.
F16D65/127B05D1/185C23C14/022C23C14/025C23C14/325C23C14/505F16D65/125F16D69/04F16D2069/005F16D2069/0491F16D2200/0039F16D2200/0047F16D2250/0046
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Quick Facts
Patent No.
US 10,968,970
App. No.
14/629,381
Granted
Apr 6, 2021
Kind
B2
Abstract

A brake disk formed of a light weight ceramic and ceramic composite materials, the brake disk having a coating overlying at least a portion of the brake disk. The brake disk includes parallel surfaces wherein at least a portion of the parallel surfaces are coated with a coating material to increase wear and decrease corrosion. The coating over the brake disk includes multiple layers of the coating material, wherein the coating material includes coating material particles configured to construct a pattern of repetition that is consistent with a lattice structure when applied over the parallel surfaces of the brake disk.

Claims (16)

1. A coated brake disk comprising:

a brake disk substrate having parallel surfaces, the brake disk substrate comprising a combination of light weight ceramic materials and ceramic composite materials, the brake disk substrate having a coating overlying at least a portion of the brake disk, the coating comprising:

a first coating layer comprising a first coating material having a crystalline structure, and

a second coating layer comprising a second coating material selected from the group of coating materials consisting of a metal Nitride, a metal Oxide, a metal Boride and a metal Carbide, the first and second coating layers comprising coating particles that combine to construct a pattern of repetition that is consistent with a lattice structure when applied over the parallel surfaces of the brake disk substrate.

2. The coated brake disk of claim 1 , wherein the brake disk substrate comprises ceramic oxides and ceramic non-oxides.

3. The coated brake disk of claim 1 , wherein the first coating layer comprises a crystalline metal selected from the group of metals consisting of Titanium, Chromium, Zirconium, Aluminum, Hafnium and alloys thereof.

4. The coated brake disk of claim 1 , wherein the brake disk substrate comprises ceramic oxides.

5. The coated brake disk of claim 1 , wherein the brake disk substrate comprises ceramic non-oxides.

6. The coated brake disk of claim 1 , wherein the ceramic composite material is selected from the group of ceramic composite materials consisting of particulate reinforced combinations of ceramic oxides and non-oxides in combination with light weight ceramic materials.

7. The coated brake disk of claim 1 , wherein the first coating material source and the second coating material source are the same material.

8. A coated brake disk comprising:

a substrate comprising a ceramic composite material, the substrate defining at least one surface configured to have a brake pad urged against it; and

a coating overlying at least a portion of the at least one surface, the coating comprising:

a first material comprising a vapor-deposited metal, and

a second material comprising a vapor-deposited binary metal compound that combines with the to construct a pattern of repetition that is consistent with a lattice structure when applied over the parallel surfaces of the brake disk.

9. The coated brake disk of claim 8 , wherein the vapor-deposited metal has a crystalline structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2016
From: MECKEL, NATHAN K.
To: TECH M3
Reel/Frame 037788/0218 →
Continuity (4)
Continuation 13859378 · Apr 9, 2013
Division 12034599 · Feb 20, 2008
Provisional Application 60890794 · Feb 20, 2007
Related Publication 20160017944A1 · Jan 21, 2016