IP Library Granted Patent US 8,808,568
Granted Patent B2
US 8,808,568 · App. 12/575,770 · Granted Aug 19, 2014

Magnetorheological materials, method for making, and applications thereof

Inventors: Rui Shen (Rochester, NY); Hong Yang (Rochester, NY); Shai N. Shafrir (Rochester, NY); Chunlin Miao (Rochester, NY); Mimi Wang (San Marino, CA); Joni Mici (Worcester, MA); John C. Lambropoulos (Pittsford, NY); Stephen D. Jacobs (Pittsford, NY)
Assignee: University of Rochester
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,808,568
App. No.
12/575,770
Granted
Aug 19, 2014
Kind
B2
Abstract

A magnetorheological material comprises a magnetic particle and a ceramic material, wherein the magnetorheological material is in a dried form and further wherein a portion of the ceramic material is in the form of a nanocrystalline coating over the entire exterior surface of the magnetic particle and another portion of the ceramic material is in the form of a free nanocrystal. A magnetorheological material comprises a magnetic particle having a ceramic material coating over an external surface thereof as a result of a coating process, and a free nanocrystal of the ceramic material in the form of a residual by-product of the coating process. A sol-gel process for making a magnetorheological product comprises providing a sol of a desired ceramic coating material; combining a desired quantity of carbonyl iron (CI) particles with the sol to coat the CI particles with the ceramic coating material; creating a resulting quantity of nanocrystalline ceramic material-coated CI particles and a quantity of free nanocrystals of the ceramic material; and, drying the resulting quantity of coated CI particles and free nanocrystals to a moisture content equal to or less than 2 wt %.

Claims (8)

1. A powder precursor material composition for a magnetorheological fluid composition comprising:

a magnetic particle; and

a single zirconia ceramic material, wherein the powder precursor material composition is in a dried form and further wherein a portion of the single zirconia ceramic material is in the form of a nanocrystalline coating over the entire exterior surface of the magnetic particle and another portion of the same single zirconia ceramic material is in the form of a free nanocrystal.

2. The powder precursor material composition of claim 1 , further comprising a layer of silica disposed immediately intermediate the exterior surface of the CI particle and the nanocrystalline zirconia coating.

3. The powder precursor material composition of claim 1 , further comprising a layer of one of zirconia, alumina, ceria, tin oxide, titanium oxide, cerium oxide, iron oxide (e.g., maghemites, magnetite, hematite), cobalt oxide, nickel oxide, copper oxide, zinc oxide, silica, vanadium oxide, niobium oxide, molybdenum oxide, tungsten oxide, gallium oxide, indium oxide, bismuth oxide, and a combination thereof disposed immediately intermediate the exterior surface of the CI particle and the nanocrystalline zirconia coating.

4. A powder precursor material composition for a magnetorheological fluid composition comprising:

a magnetic particle having a single zirconia ceramic material coating over an external surface thereof as a result of a coating process; and

a free nanocrystal of the same single zirconia ceramic material in the form of a residual by-product of the coating process.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jun 10, 2026
From: UNIVERSITY OF ROCHESTER
To: NNSA
Reel/Frame 074907/0122 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 8, 2009
From: SHEN, RUI; YANG, HONG; SHAFRIR, SHAI N.; MIAO, CHUNLIN; WANG, MIMI; MICI, JONI; LAMBROPOULOS, JOHN C.; JACOBS, STEPHEN D.
To: UNIVERSITY OF ROCHESTER
Reel/Frame 023345/0899 →
Continuity (2)
Provisional Application 61103666 · Oct 8, 2008
Related Publication 20100171065A1 · Jul 8, 2010