Patents by Inventor Richard K. Brow

Richard K. Brow 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).

  • Patent number: 11909157
    Abstract: An electrical connector comprises an outer shell, at least one pin, and an insulating seal. The outer shell includes at least one side wall defining a cavity and having an inner surface. The outer shell is formed from electrically conductive material. The pin is positioned within the cavity and is also formed from electrically conductive material. The insulating seal is configured to provide electrical isolation of the pin and fills the cavity between the inner surface of the side wall and the pin. The insulating seal is formed from glass doped with a transition metal oxide.
    Type: Grant
    Filed: December 7, 2021
    Date of Patent: February 20, 2024
    Assignee: Honeywell Federal Manufacturing & Technologies, LLC
    Inventors: Dennis J. Eichorst, Tieshu Huang, Kaley M. McLain, Richard K. Brow
  • Publication number: 20230178950
    Abstract: An electrical connector comprises an outer shell, at least one pin, and an insulating seal. The outer shell includes at least one side wall defining a cavity and having an inner surface. The outer shell is formed from electrically conductive material. The pin is positioned within the cavity and is also formed from electrically conductive material. The insulating seal is configured to provide electrical isolation of the pin and fills the cavity between the inner surface of the side wall and the pin. The insulating seal is formed from glass doped with a transition metal oxide.
    Type: Application
    Filed: December 7, 2021
    Publication date: June 8, 2023
    Applicant: Honeywell Federal Manufacturing & Technologies, LLC
    Inventors: Dennis J. Eichorst, Tieshu Huang, Kaley M. McLain, Richard K. Brow
  • Publication number: 20220401913
    Abstract: A silver-doped, nano-porous hydroxyapatite material is provided that can be utilized to capture radioactive iodine, 129I. Methods of using the silver-doped, nano-porous hydroxyapatite material to remove radioactive iodine, and methods of manufacturing the material are also provided.
    Type: Application
    Filed: July 5, 2022
    Publication date: December 22, 2022
    Inventors: Cheol-Woon KIM, Richard K. BROW, Jen-Hsien HSU
  • Patent number: 11013836
    Abstract: Disclosed are biodegradable glass substrates that are useful as functional elements of solid-state devices. In particular, biodegradable glass substrates having a rapidly degradable glass and a slowly degradable glass provide a structural platform that completely dissolves following a desired operational lifetime of devices such as implanted electronic devices, implanted sensor devices, and optical fibers.
    Type: Grant
    Filed: June 16, 2017
    Date of Patent: May 25, 2021
    Assignee: The Curators of the University of Missouri
    Inventors: Chang-Soo Kim, Richard K. Brow, Delbert E. Day
  • Publication number: 20190224642
    Abstract: A silver-doped, nano-porous hydroxyapatite material is provided that can be utilized to capture radioactive iodine, 129I. Methods of using the silver-doped, nano-porous hydroxyapatite material to remove radioactive iodine, and methods of manufacturing the material are also provided.
    Type: Application
    Filed: January 25, 2019
    Publication date: July 25, 2019
    Inventors: Cheol-Woon KIM, Richard K. BROW, Jen-Hsien HSU
  • Publication number: 20170360997
    Abstract: Disclosed are biodegradable glass substrates that are useful as functional elements of solid-state devices. In particular, biodegradable glass substrates having a rapidly degradable glass and a slowly degradable glass provide a structural platform that completely dissolves following a desired operational lifetime of devices such as implanted electronic devices, implanted sensor devices, and optical fibers.
    Type: Application
    Filed: June 16, 2017
    Publication date: December 21, 2017
    Inventors: Chang-Soo Kim, Richard K. Brow, Delbert E. Day
  • Patent number: 9530991
    Abstract: A sealant for forming a seal between at least two solid oxide fuel cell components wherein the sealant comprises a glass material comprising B2O3 as a principal glass former, BaO, and other components and wherein the glass material is substantially alkali-free and contains less than 30% crystalline material.
    Type: Grant
    Filed: July 23, 2013
    Date of Patent: December 27, 2016
    Assignees: MO-SCI Corporation, The Curators of the University of Missouri
    Inventors: Cheol Woon Kim, Richard K. Brow
  • Publication number: 20150125780
    Abstract: A sealant for forming a seal between at least two solid oxide fuel cell components wherein the sealant comprises a glass material comprising B2O3 as a principal glass former, BaO, and other components and wherein the glass material is substantially alkali-free and contains less than 30% crystalline material.
    Type: Application
    Filed: July 23, 2013
    Publication date: May 7, 2015
    Applicants: THE CURATORS OF THE UNIVERSITY OF MISSOURI, MO-SCI CORPORATION
    Inventors: Cheol Woon Kim, Richard K. Brow
  • Patent number: 8679389
    Abstract: A cementitious composite material wherein glass-coated steel rods are positioned in a cementitious matrix. The glass composition for coating the steel reinforcing rods includes between about 33-45 weight percent SiO2, 13.5-19.5 weight percent B2O3, 3.5-4.6 weight percent Al2O3, 4.0-13.5 weight percent K2O, 5.5-15.5 weight percent ZrO2, 8.6-15.9 weight percent Na2O, 4.6-5.1 weight percent CaO, 0.6-0.7 weight percent MnO2, 1.0-1.0 weight percent NiO, and 1.0-1.1 weight percent CoO. The glass composition is typically in compression on the rods at ambient temperatures, has a coefficient of thermal expansion of between about 12.5 and about 13.5, and has a softening temperature of between about 585 degrees Celsius and about 600 degrees Celsius.
    Type: Grant
    Filed: March 4, 2011
    Date of Patent: March 25, 2014
    Inventors: Richard K Brow, Signo T. Reis, Mike Konigstein, Genda Chen
  • Publication number: 20130302607
    Abstract: A corrosion resistant steel reinforcing rod system, including a steel reinforcing rod having a coefficient of thermal expansion of between about 14 ppm/° C. and about 17 ppm/° C. and a vitreous shell substantially encapsulating the steel reinforcing rod. The vitreous shell has a composition selected from the group consisting essentially, in weight percent, of about 40-45% SiO2, 3-5% Al2O3, 5-15% B2O3, 3-15% K2O, 5-20% Na2O, 4-7% CaO, 1-2% ZrO2, 0-2% NiO, 0-2% CoO, and 5-20% P2O5. The vitreous shell has a coefficient of thermal expansion between about 12.5 ppm/° C. and about 13.5 ppm/° C.
    Type: Application
    Filed: May 9, 2012
    Publication date: November 14, 2013
    Inventors: Richard K. Brow, Signo T. Reis, Genda Chen
  • Publication number: 20120164340
    Abstract: A cementitious composite material wherein glass-coated steel rods are positioned in a cementitious matrix. The glass composition for coating the steel reinforcing rods includes between about 33-45 weight percent SiO2, 13.5-19.5 weight percent B2O3, 3.5-4.6 weight percent Al2O3, 4.0-13.5 weight percent K2O, 5.5-15.5 weight percent ZrO2, 8.6-15.9 weight percent Na2O, 4.6-5.1 weight percent CaO, 0.6-0.7 weight percent MnO2, 1.0-1.0 weight percent NiO, and 1.0-1.1 weight percent CoO. The glass composition is typically in compression on the rods at ambient temperatures, has a coefficient of thermal expansion of between about 12.5 and about 13.5, and has a softening temperature of between about 585 degrees Celsius and about 600 degrees Celsius.
    Type: Application
    Filed: March 4, 2011
    Publication date: June 28, 2012
    Inventors: Richard K. Brow, Signo T. Reis, Mike Konigstein, Genda Chen
  • Patent number: 7901769
    Abstract: A cementitious composite material wherein glass-coated steel rods are positioned in a cementitious matrix. The glass composition for coating the steel reinforcing rods includes between about 33-45 weight percent SiO2, 13.5-19.5 weight percent B2O3, 3.5-4.6 weight percent Al2O3, 4.0-13.5 weight percent K2O, 5.5-15.5 weight percent ZrO2, 8.6-15.9 weight percent Na2O, 4.6-5.1 weight percent CaO, 0.6-0.7 weight percent MnO2, 1.0-1.0 weight percent NiO, and 1.0-1.1 weight percent CoO. The glass composition is typically in compression on the rods at ambient temperatures, has a coefficient of thermal expansion of between about 12.5 and about 13.5, and has a softening temperature of between about 585 degrees Celsius and about 600 degrees Celsius.
    Type: Grant
    Filed: November 20, 2009
    Date of Patent: March 8, 2011
    Inventors: Richard K. Brow, Signo T. Reis, Mike Konigstein, Genda Chen
  • Publication number: 20100221538
    Abstract: A cementitious composite material wherein glass-coated steel rods are positioned in a cementitious matrix. The glass composition for coating the steel reinforcing rods includes between about 33-45 weight percent SiO2, 13.5-19.5 weight percent B2O3, 3.5-4.6 weight percent Al2O3, 4.0-13.5 weight percent K2O, 5.5-15.5 weight percent ZrO2, 8.6-15.9 weight percent Na2O, 4.6-5.1 weight percent CaO, 0.6-0.7 weight percent MnO2, 1.0-1.0 weight percent NiO, and 1.0-1.1 weight percent CoO. The glass composition is typically in compression on the rods at ambient temperatures, has a coefficient of thermal expansion of between about 12.5 and about 13.5, and has a softening temperature of between about 585 degrees Celsius and about 600 degrees Celsius.
    Type: Application
    Filed: November 20, 2009
    Publication date: September 2, 2010
    Inventors: Richard K. Brow, Signo T. Reis, Mike Konigstein, Genda Chen
  • Patent number: 7651966
    Abstract: A substantially alkaline resistant calcium-iron-phosphate (CFP) glass and methods of making and using thereof. In one application, the CFP glass is drawn into a fiber and dispersed in cement to produce glass fiber reinforced concrete (GFRC) articles having the high compressive strength of concrete with the high impact, flexural and tensile strength associated with glass fibers.
    Type: Grant
    Filed: March 30, 2007
    Date of Patent: January 26, 2010
    Assignees: Mo-Sci Corporation, The Curators of the University of Missouri
    Inventors: Richard K. Brow, Signo T. Reis, Mariano Velez, Delbert E. Day
  • Publication number: 20090239122
    Abstract: A glass ceramic material sealed fuel cell device, including a first fuel cell portion and a sealant layer bonded to the first cell portion. The sealant layer includes at least three metal oxides RO-M2O3—SiO2 combined together. R is selected from the group consisting of zinc, strontium, calcium, magnesium and combinations thereof. M is selected from the group consisting of aluminum, boron, lanthanum, iron and combinations thereof. RO is present in an amount of between about 45 mol % and about 55 mol %. M2O3 is present in an amount of between about 5 mol % and about 10 mol %. SiO2 is present in an amount of about 40 mol %. RO includes RnO present in an amount of at least about 5 mol %.
    Type: Application
    Filed: June 4, 2008
    Publication date: September 24, 2009
    Inventors: Richard K. Brow, Signo Tadeu Dos Reis, Glendon M. Benson
  • Publication number: 20080176731
    Abstract: A glass composition for use as a sealant or otherwise bonded to a fuel cell component, including from about 40 mol % to about 60 mol % RO; from about 2 mol % to about 10 mol % M2O3; and from about 35 mol % to about 45 mol % SiO2. R is selected from the group including strontium, calcium, magnesium and zinc and combinations thereof. M is selected from the group including aluminum, boron, lanthanum, iron and combinations thereof. The glass includes at least about 5 mol % ZnO. Upon heat treatment, the glass at least partially crystallizes with the formation of at least one alkaline earth-zinc pyrosilicate crystalline phases.
    Type: Application
    Filed: October 15, 2004
    Publication date: July 24, 2008
    Inventors: Richard K. Brow, Signo Tadeu Dos Reis, Glendon M. Benson
  • Patent number: 7399720
    Abstract: A glass composition for use as a sealant or otherwise bonded to a fuel cell component, including from about 40 mol % to about 60 mol % RO; from about 2 mol % to about 10 mol % M2O3; and from about 35 mol % to about 45 mol % SiO2. R is selected from the group including strontium, calcium, magnesium and zinc and combinations thereof. M is selected from the group including aluminum, boron, lanthanum, iron and combinations thereof. The glass includes at least about 5 mol % ZnO. Upon heat treatment, the glass at least partially crystallizes with the formation of at least one alkaline earth-zinc pyrosilicate crystalline phases.
    Type: Grant
    Filed: October 15, 2004
    Date of Patent: July 15, 2008
    Inventors: Richard K. Brow, Signo Tadeu Dos Reis, Glen Benson
  • Publication number: 20070243991
    Abstract: A substantially alkaline resistant calcium-iron-phosphate (CFP) glass and methods of making and using thereof. In one application, the CFP glass is drawn into a fiber and dispersed in cement to produce glass fiber reinforced concrete (GFRC) articles having the high compressive strength of concrete with the high impact, flexural and tensile strength associated with glass fibers.
    Type: Application
    Filed: March 30, 2007
    Publication date: October 18, 2007
    Inventors: Richard K. Brow, Signo T. Reis, Mariano Velez, Delbert E. Day
  • Patent number: 6037539
    Abstract: The present invention provides a light-weight, hermetic coaxial radio-frequency (RF) interconnection having an electrically conductive outer housing made of aluminum or an aluminum alloy, a central electrical conductor made of ferrous or non-ferrous material, and a cylinder of dielectric material comprising a low-melting-temperature, high-thermal-expansion aluminophosphate glass composition for hermetically sealing between the aluminum-alloy outer housing and the ferrous or non-ferrous center conductor. The entire RF interconnection assembly is made permanently hermetic by thermally fusing the center conductor, glass, and housing concurrently by bringing the glass to the melt point by way of exposure to an atmospheric temperature sufficient to melt the glass, less than 540.degree. C., but that does not melt the center conductor or the outer aluminum or aluminum alloy housing.
    Type: Grant
    Filed: March 20, 1998
    Date of Patent: March 14, 2000
    Assignee: Sandia Corporation
    Inventors: Riley D. Kilgo, Larry Kovacic, Richard K. Brow
  • Patent number: 5965469
    Abstract: The present invention provides a glass composition for hermetically sealing to high thermal expansion materials such as aluminum alloys, stainless steels, and copper alloys, which includes between about 10 and about 25 mole percent Na.sub.2 O, between about 10 and about 25 mole percent K.sub.2 O, between about 4 and about 15 mole percent Al.sub.2 O.sub.3, between about 35 and about 50 mole percent P.sub.2 O.sub.5, B.sub.2 O.sub.3 in a concentration not exceeding 10 mole percent, and MXO in a concentration not exceeding 12 mole percent, wherein MXO is a metal oxide selected from the group consisting of PbO, BaO, CaO and MgO or a mixture thereof. This composition is suitable to hermetically seal to components for use in RF-interconnection applications.
    Type: Grant
    Filed: March 20, 1998
    Date of Patent: October 12, 1999
    Assignee: Sandia Corporation
    Inventors: Riley D. Kilgo, Richard K. Brow, Larry Kovacic