Patents by Inventor Vitalij Pecharsky

Vitalij Pecharsky has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20220259343
    Abstract: Various embodiments disclosed relate to unsaturated polymers that exhibit electrocaloric properties. The polymers can be useful as heat transfer materials in heating and cooling applications.
    Type: Application
    Filed: December 8, 2021
    Publication date: August 18, 2022
    Inventors: Viktor Balema, Vitalij Pecharsky, Duane Johnson
  • Patent number: 9907865
    Abstract: A particle usable as T1 and T2 contrast agents is provided. The particle is a gadolinium silicide (Gd5Si4) particle that is ferromagnetic at temperatures up to 290 K and is less than 2 ?m in diameter. An MRI contrast agent that includes a plurality of gadolinium silicide (Gd5Si4) particles that are less than 1 ?m in diameter is also provided. A method for creating gadolinium silicide (Gd5Si4) particles is also provided. The method includes the steps of providing a Gd5Si4 bulk alloy; grinding the Gd5Si4 bulk alloy into a powder; and milling the Gd5Si4 bulk alloy powder for a time of approximately 20 minutes or less.
    Type: Grant
    Filed: October 24, 2016
    Date of Patent: March 6, 2018
    Assignee: Iowa State University Research Foundation, Inc.
    Inventors: Magundappa Ravi L. Hadimani, Shalabh Gupta, Shane Harstad, Vitalij Pecharsky, David C. Jiles
  • Publication number: 20170119909
    Abstract: A particle usable as T1 and T2 contrast agents is provided. The particle is a gadolinium silicide (Gd5Si4) particle that is ferromagnetic at temperatures up to 290 K and is less than 2 ?m in diameter. An MRI contrast agent that includes a plurality of gadolinium silicide (Gd5Si4) particles that are less than 1 ?m in diameter is also provided. A method for creating gadolinium silicide (Gd5Si4) particles is also provided. The method includes the steps of providing a Gd5Si4 bulk alloy; grinding the Gd5Si4 bulk alloy into a powder; and milling the Gd5Si4 bulk alloy powder for a time of approximately 20 minutes or less.
    Type: Application
    Filed: October 24, 2016
    Publication date: May 4, 2017
    Applicant: Iowa State University Research Foundation, Inc.
    Inventors: Magundappa Ravi L. Hadimani, Shalabh Gupta, Shane Harstad, Vitalij Pecharsky, David C. Jiles
  • Publication number: 20050274439
    Abstract: Article of manufacture fabricated by plastic deformation of an intermetallic compound comprising R and M, such as an RM intermetallic compound and a higher order compound thereof, having a CsCl-type ordered crystal structure wherein R is one or more rare earth elements and M is one or more non-rare earth metals. The article of manufacture has a tensile elongation of at least about 5% prior to fracture when tensile tested at room temperature in ambient air. The article of manufacture also can be fabricated by plastic deformation of an intermetallic compound comprising a M?M compound and a higher order compound thereof having a CsCl-type ordered crystal structure wherein M? and M are one or more different non-rare earth metals.
    Type: Application
    Filed: May 3, 2005
    Publication date: December 15, 2005
    Inventors: Karl Gschneidner, Alexandra Tsokol, Vitalij Pecharsky, Alan Russell
  • Publication number: 20050217280
    Abstract: A multi-stage cryocooler having a relatively low temperature stage to cool to less than about 15K and having a regenerator including a ductile intermetallic compound including one or more rare earth elements and one or more non-rare earth metals.
    Type: Application
    Filed: February 18, 2005
    Publication date: October 6, 2005
    Inventors: Karl Gschneidner, Alexandra Tsokol, Vitalij Pecharsky
  • Patent number: 6680663
    Abstract: A permanent magnet structure for maximizing the flux density per weight of magnetic material comprising a hollow body flux source for generating a magnetic field in the central gap of the hollow body, the magnetic field having a flux density greater than the residual flux density of the hollow body flux source. The hollow body flux source has a generally elliptic-shape, defined by unequal major and minor axis. These elliptic-shaped permanent magnet structures exhibit a higher flux density at the center gap while minimizing the amount of magnetic material used. Inserts of soft magnetic material proximate the central gap, and a shell of soft magnetic material surrounding the hollow body can further increase the strength of the magnetic field in the central gap by reducing the magnetic flux leakage and focusing the flux density lines in the central gap.
    Type: Grant
    Filed: March 22, 2001
    Date of Patent: January 20, 2004
    Assignee: Iowa State University Research Foundation, Inc.
    Inventors: Seong-Jae Lee, David Jiles, Karl A. Gschneidner, Jr., Vitalij Pecharsky