Patents by Inventor Ivan Mendenhall

Ivan Mendenhall 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: 9193639
    Abstract: Methods for making a pressed monolithic gas generant for an inflatable restraint device (for example, an airbag system for a vehicle) are provided. The methods include admixing a gas generant material with a ballistic performance modifier to form a mixture. The mixture is granulated. Then, a pressed monolithic gas generant grain is formed by applying pressure to the granulated mixture, where the grain has an actual density of at least about 95% of the maximum theoretical density. The pressure may be applied in a controlled manner to both side of the gas generant material in a die cavity, and removing formed grain from die cavity while maintaining some pressure to both sides of the grain, thereby further improving various pyrotechnic properties.
    Type: Grant
    Filed: March 27, 2007
    Date of Patent: November 24, 2015
    Assignee: AUTOLIV ASP, INC.
    Inventors: Roger Bradford, Thomas Cronin, Ivan Mendenhall, Brett Hussey
  • Publication number: 20100230945
    Abstract: A gas generant for an inflatable restraint device (for example, an airbag system for a vehicle) is a monolithic compressed solid that has a linear burn rate of greater than or equal to about 1.6 inches per second at a pressure of about 3,000 pounds per square inch. The gas generant can be in the form of an annular disk having a plurality of apertures. The gas generant may be substantially free of binder and may have a low initial surface area which progressively increases during burning. The gas generant provides a gas generation profile that improves restraint of vehicle occupants, including those occupants that are out-of-position. Additionally, the shaped gas generant decreases occupant exposure to toxic effluent combustion products and solid respirable particulates.
    Type: Application
    Filed: May 27, 2010
    Publication date: September 16, 2010
    Applicant: Autoliv ASP, Inc.
    Inventors: Brett Hussey, Ivan Mendenhall, Roger Bradford
  • Patent number: 7758709
    Abstract: A gas generant for an inflatable restraint device (for example, an airbag system for a vehicle) is a monolithic compressed solid that has a linear burn rate of greater than or equal to about 1.6 inches per second at a pressure of about 3,000 pounds per square inch. The gas generant can be in the form of an annular disk having a plurality of apertures. The gas generant may be substantially free of binder and may have a low initial surface area which progressively increases during burning. The gas generant provides a gas generation profile that improves restraint of vehicle occupants, including those occupants that are out-of-position. Additionally, the shaped gas generant decreases occupant exposure to toxic effluent combustion products and solid respirable particulates.
    Type: Grant
    Filed: June 21, 2006
    Date of Patent: July 20, 2010
    Assignee: Autoliv ASP, Inc.
    Inventors: Brett Hussey, Ivan Mendenhall, Roger Bradford
  • Publication number: 20080236711
    Abstract: Methods for making a pressed monolithic gas generant for an inflatable restraint device (for example, an airbag system for a vehicle) are provided. The methods include admixing a gas generant material with a ballistic performance modifier to form a mixture. The mixture is granulated. Then, a pressed monolithic gas generant grain is formed by applying pressure to the granulated mixture, where the grain has an actual density of at least about 95% of the maximum theoretical density. The pressure may be applied in a controlled manner to both side of the gas generant material in a die cavity, and removing formed grain from die cavity while maintaining some pressure to both sides of the grain, thereby further improving various pyrotechnic properties.
    Type: Application
    Filed: March 27, 2007
    Publication date: October 2, 2008
    Applicant: Autoliv ASP, Inc.
    Inventors: Roger Bradford, Thomas Cronin, Ivan Mendenhall, Brett Hussey
  • Publication number: 20070296190
    Abstract: A gas generant for an inflatable restraint device (for example, an airbag system for a vehicle) is a monolithic compressed solid that has a linear burn rate of greater than or equal to about 1.6 inches per second at a pressure of about 3,000 pounds per square inch. The gas generant can be in the form of an annular disk having a plurality of apertures. The gas generant may be substantially free of binder and may have a low initial surface area which progressively increases during burning. The gas generant provides a gas generation profile that improves restraint of vehicle occupants, including those occupants that are out-of-position. Additionally, the shaped gas generant decreases occupant exposure to toxic effluent combustion products and solid respirable particulates.
    Type: Application
    Filed: June 21, 2006
    Publication date: December 27, 2007
    Applicant: Autoliv ASP, Inc.
    Inventors: Brett Hussey, Ivan Mendenhall, Roger Bradford
  • Publication number: 20070240797
    Abstract: A compound including at least one copper II complex of a material selected from the group of imidazole and imidazole derivatives is provided for use in a gas generant composition. An associated burn rate enhanced gas generant composition, in addition to such copper complex-containing compound, also includes a nitrogen-containing non-azide fuel. Additionally provided are methods for improving the combustion performance of a non-azide gas generant composition in at least one aspect selected from the group consisting of ignitability, burn rate and burn rate pressure sensitivity, through the addition of such copper complex-containing compound to the non-azide gas generant composition.
    Type: Application
    Filed: March 21, 2006
    Publication date: October 18, 2007
    Inventors: Ivan Mendenhall, Robert Taylor
  • Publication number: 20060289096
    Abstract: Extrudable gas generant compositions which, upon combustion, produce or result in an improved effluent and related methods for generating inflation gas for use in an inflatable restraint system are provided. Such extrudable gas generant compositions include a non-azide, organic, nitrogen-containing fuel, at least one copper-containing compound, a perchlorate additive and a polymeric binder material. The at least one copper-containing compound may be selected from basic copper nitrate, cupric oxide, a copper dianunine-ammonium-nitrate mixture wherein the ammonium nitrate is present in the mixture in a range of about 3 to about 90 weight percent, and/or a copper-nitrate complex resulting from reaction of 5-aminotetrazole with basic copper nitrate.
    Type: Application
    Filed: August 28, 2006
    Publication date: December 28, 2006
    Inventors: Ivan Mendenhall, Robert Taylor
  • Publication number: 20060102259
    Abstract: An autoignition material is provided which contains azodicarbonamide (ADCA) serving as a fuel and an oxidizer including at least basic copper nitrate (BCN) as an oxidizing agent for oxidizing the fuel, present in a ratio of ADCA to BCN of at least about 0.5, and a binder, present in a relative amount of no more than 5 weight percent of the autoignition material, serving as a binding agent for binding at least the fuel and the oxidizer, wherein the autoignition material has an equivalence ratio of less than about 0.8.
    Type: Application
    Filed: November 17, 2004
    Publication date: May 18, 2006
    Inventors: Robert Taylor, Ivan Mendenhall, Gregory Hess
  • Publication number: 20060102258
    Abstract: An improved gas generant composition is provided which contains components including basic copper nitrate, at least one fuel material and a phosphate stabilizer, wherein the phosphate stabilizer inhibits moisture induced deleterious interaction between the basic copper nitrate and other components of the gas generant composition.
    Type: Application
    Filed: November 17, 2004
    Publication date: May 18, 2006
    Inventors: Robert Taylor, Ivan Mendenhall
  • Publication number: 20060096679
    Abstract: The inclusion of between about 15 to about 60 formulation weight percent of a reaction product of basic copper nitrate and at least one transition metal complex of 5-aminotetrazole, wherein the at least one transition metal complex of 5-aminotetrazole and the basic copper nitrate are included in a weight ratio of no more than 1 part of the at least one transition metal complex of 5-aminotetrazole per 1 part of basic copper nitrate in azide fuel-free gas generant formulations exhibiting increased burn rates, as compared to the same formulation without the inclusion of that reaction product.
    Type: Application
    Filed: October 22, 2004
    Publication date: May 11, 2006
    Inventors: Robert Taylor, Ivan Mendenhall
  • Publication number: 20060054257
    Abstract: A gas generant composition includes a non-azide, organic, nitrogen-containing fuel; a substituted basic metal nitrate and at least one transition metal complex of diammonium bitetrazole. The substituted basic metal nitrate can be a reaction product of an acidic organic compound and a basic metal nitrate. The transition metal complex of diammonium bitetrazole is effective to enhance the burn rate presure sensitivity of the gas generant composition as compared to the same gas generant composition without inclusion of the at least one transition metal complex of diammonium bitetrazole.
    Type: Application
    Filed: September 13, 2005
    Publication date: March 16, 2006
    Inventors: Ivan Mendenhall, Robert Taylor
  • Publication number: 20060016529
    Abstract: Alkali metal perchlorate-containing gas generant compositions which, upon combustion, produce or result in an improved effluent and related methods for generating an inflation gas for use in an inflatable restraint system are provided. Such alkali metal perchlorate-containing gas generant compositions include at least one alkali metal perchlorate present with a mean particle size in excess of 100 microns. Such alkali metal perchlorate-containing gas generant compositions also include or contain a suitable non-azide, organic, nitrogen-containing fuel and at least one copper-containing compound selected from the group consisting of basic copper nitrate, cupric oxide, copper diammine dinitrate-ammonium nitrate mixture wherein ammonium nitrate is present in the mixture in a range of about 3 to about 90 weight percent, copper diammine bitetrazole, a copper-nitrate complex resulting from reaction of 5-aminotetrazole with basic copper nitrate and combinations thereof.
    Type: Application
    Filed: July 26, 2004
    Publication date: January 26, 2006
    Inventors: Michael Barnes, Ivan Mendenhall, Robert Taylor
  • Publication number: 20050115650
    Abstract: A foamable igniter composition effective to form a foamed igniter substance for use in an inflator device of an inflatable restraint system and a method for preparing a foamed igniter substance formed from the foamable igniter composition are provided. The foamable igniter composition includes a fluoropolymer binder oxidant, a plasticizer effective to render the fluoropolymer binder oxidant flexible, a metal fuel that is reactive with the fluoropolymer binder oxidant, a blowing agent effective to render the foamable igniter composition porous, and a crosslinking agent effective to structurally stabilize the foamed igniter substance. The foamed igniter substance is formed by heating the foamable igniter composition to a predetermined temperature. The consistency of the foamable igniter composition may be adjusted to allow the composition to be sprayed, extruded or molded as desired.
    Type: Application
    Filed: December 2, 2003
    Publication date: June 2, 2005
    Inventors: Ivan Mendenhall, Robert Smith, David Parkinson
  • Publication number: 20050098246
    Abstract: A method for increasing the burn rate of a gas generant formulation is provided involving the addition of a quantity of at least one of metal aminotetrazole hydroxide to the gas generant formulation. Gas generant formulations containing at least one of metal aminotetrazole hydroxide are also provided.
    Type: Application
    Filed: November 7, 2003
    Publication date: May 12, 2005
    Inventors: Ivan Mendenhall, Robert Taylor
  • Publication number: 20050067076
    Abstract: Ammonium perchlorate-containing gas generant compositions which, upon combustion, produce or result in an improved effluent and related methods for generating an inflation gas for use in an inflatable restraint system are provided. Such ammonium perchlorate-containing gas generant compositions include ammonium perchlorate present with a mean particle size in excess of 100 microns. Such ammonium perchlorate-containing gas generant compositions also include or contain a chlorine scavenger present in an amount effective to result in a gaseous effluent that is substantially free of hydrogen chloride when the gas generant is combusted, wherein at least about 98 weight percent of the chlorine scavenger is a copper-containing compound.
    Type: Application
    Filed: July 26, 2004
    Publication date: March 31, 2005
    Inventors: Michael Barnes, Ivan Mendenhall, Robert Taylor
  • Publication number: 20050016646
    Abstract: A chlorine-containing gas generant composition and a related method for generating an inflation gas for use in an inflatable restraint system are provided. The chlorine-containing gas generant composition includes a nitrogen-containing fuel such as guanidine nitrate, ammonium perchlorate oxidizer, and a chlorine scavenger present in an amount effective to result in a gaseous effluent that is substantially free of hydrogen chloride when the gas generant is combusted, wherein at least about 98 weight percent of the chlorine scavenger is a copper-containing compound such as a copper nitrate complex, basic copper nitrate, cupric oxide or a combination thereof.
    Type: Application
    Filed: July 25, 2003
    Publication date: January 27, 2005
    Inventors: Michael Barnes, Ivan Mendenhall