Patents by Inventor Ronald A. Cipriani

Ronald A. Cipriani 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: 20240092481
    Abstract: A propeller according to an embodiment includes a hub and a series of blades extending outward from the hub. Each blade of the series of blades includes a core and a skin covering the core. The core may be formed of a ceramic first material and the skin is formed of a second material different than the ceramic first material. The ceramic first material of the core may be ceramic Si3N4 (silicon nitride), yttria-toughened zirconia ceramic, or alumina-zirconia ceramic, and the second material of the skin may be a polymer. The polymer skin is configured to function as a shock absorber protecting the ceramic core, and the ceramic core is configured to provide rigidity to maintain the shape of the propeller blades under aerodynamic loading, which enables improved aerodynamic efficiency and reduced noise generation.
    Type: Application
    Filed: September 16, 2022
    Publication date: March 21, 2024
    Inventors: Anthony C. Mulligan, Lloyd Vincent Mulligan, Jaime Lara-Martinez, Jay M. Cohen, Drey Dean Platt, Dylan Kylar Allen Gutierrez, Eva Marie Huie, Robert W. Lautrup, Ronald A. Cipriani
  • Publication number: 20060220280
    Abstract: Methods for consolidation and densification of fibrous monolith composite structures are provided. Consolidation and densification of two- and three-dimensional fibrous monolith components having complex geometries can be achieved by pressureless sintering. The fibrous monolith composites are formed from filaments having at least a first material composition generally surrounded by a second material composition. The composites are sintered at a pressure of no more than about 30 psi to provide consolidated and densified fibrous monolith composites.
    Type: Application
    Filed: June 16, 2006
    Publication date: October 5, 2006
    Applicant: Advanced Ceramics Research, Inc.
    Inventors: Manish Sutaria, Mark Rigali, Ronald Cipriani, Gregory Artz, Anthony Mulligan
  • Patent number: 7063812
    Abstract: Methods for consolidation and densification of fibrous monolith composite structures are provided. Consolidation and densification of two- and three-dimensional fibrous monolith components having complex geometries can be achieved by pressureless sintering. The fibrous monolith composites are formed from filaments having at least a first material composition generally surrounded by a second material composition. The composites are sintered at a pressure of no more than about 30 psi to provide consolidated and densified fibrous monolith composites.
    Type: Grant
    Filed: May 24, 2004
    Date of Patent: June 20, 2006
    Assignee: Advanced Ceramics Research, Inc.
    Inventors: Manish P. Sutaria, Mark J. Rigali, Ronald A. Cipriani, Gregory J. Artz, Anthony C. Mulligan
  • Publication number: 20060008549
    Abstract: Methods for preparing fibrous monolith composite materials include continuously extruding cell and boundary material compositions. A filament is formed from a cell material composition and passed through a chamber of an extrusion assembly. A boundary material composition is extruded generally about the cell material composition filament and the two material compositions are co-extruded to form an extruded coated filament.
    Type: Application
    Filed: September 10, 2004
    Publication date: January 12, 2006
    Applicant: Advanced Ceramics Research, Inc.
    Inventors: Mark Rigali, Manish Sutaria, Felix Gafner, Ronald Cipriani, Randy Egner, Randy Cook
  • Publication number: 20050260093
    Abstract: The present invention relates to the fabrication of low cost, in situ, porous metallic, ceramic and cermet foam structures having improved mechanical properties such as energy absorption and specific stiffness. Methods of fabricating the structures from compositions including ceramic and/or metallic powders are provided. The flowable compositions also include an immiscible phase that results in pores within the final structure. Furthermore, the structures may be shaped to have external porosity, such as with mesh-like structures.
    Type: Application
    Filed: January 28, 2005
    Publication date: November 24, 2005
    Applicant: Advanced Ceramics Research, Inc.
    Inventors: Gregory Artz, K. Vaidyanathan, Michael Fulcher, Mark Rigali, John Lombardi, Joseph Walish, Ronald Cipriani
  • Patent number: 6852272
    Abstract: The present invention relates to the fabrication of low cost, in situ, porous metallic, ceramic and cermet foam structures having improved mechanical properties such as energy absorption and specific stiffness. Methods of fabricating the structures from compositions including ceramic and/or metallic powders are provided. The flowable compositions also include an immiscible phase that results in pores within the final structure. Furthermore, the structures may be shaped to have external porosity, such as with mesh-like structures.
    Type: Grant
    Filed: January 27, 2003
    Date of Patent: February 8, 2005
    Assignee: Advanced Ceramics Research, Inc.
    Inventors: Gregory Artz, K. Ranji Vaidyanathan, Michael L. Fulcher, Mark J. Rigali, John L. Lombardi, Joseph Walish, Ronald A. Cipriani
  • Publication number: 20050001362
    Abstract: Methods for consolidation and densification of fibrous monolith composite structures are provided. Consolidation and densification of two- and three-dimensional fibrous monolith components having complex geometries can be achieved by pressureless sintering. The fibrous monolith composites are formed from filaments having at least a first material composition generally surrounded by a second material composition. The composites are sintered in an inert gas or nitrogen gas at a pressure of no more than about 30 psi to provide consolidated and densified fibrous monolith composites.
    Type: Application
    Filed: May 24, 2004
    Publication date: January 6, 2005
    Applicant: Advanced ceramics research, inc.
    Inventors: Manish Sutaria, Mark Rigali, Ronald Cipriani, Gregory Artz, Anthony Mulligan
  • Patent number: 6803003
    Abstract: Methods for preparing fibrous monolith composite materials include continuously extruding cell and boundary material compositions. A filament is formed from a cell material composition and passed through a chamber of an extrusion assembly. A boundary material composition is extruded generally about the cell material composition filament and the two material compositions are co-extruded to form an extruded coated filament.
    Type: Grant
    Filed: December 4, 2001
    Date of Patent: October 12, 2004
    Assignee: Advanced Ceramics Research, Inc.
    Inventors: Mark J. Rigali, Manish P. Sutaria, Felix H. Gafner, Ronald A. Cipriani, Randy Egner, Randy C. Cook
  • Patent number: 6740286
    Abstract: Methods for consolidation and densification of fibrous monolith composite structures are provided. Consolidation and densification of two- and three-dimensional fibrous monolith components having complex geometries can be achieved by pressureless sintering. The fibrous monolith composites are formed from filaments having at least a first material composition generally surrounded by a second material composition. The composites are sintered in an inert gas or nitrogen gas at a pressure of no more than about 30 psi to provide consolidated and densified fibrous monolith composites.
    Type: Grant
    Filed: December 4, 2001
    Date of Patent: May 25, 2004
    Assignee: Advanced Ceramics Research, Inc.
    Inventors: Manish P. Sutaria, Mark J. Rigali, Ronald A. Cipriani, Gregory J. Artz, Anthony C. Mulligan
  • Publication number: 20030180171
    Abstract: The present invention relates to the fabrication of low cost, in situ, porous metallic, ceramic and cermet foam structures having improved mechanical properties such as energy absorption and specific stiffness. Methods of fabricating the structures from compositions including ceramic and/or metallic powders are provided. The flowable compositions also include an immiscible phase that results in pores within the final structure. Furthermore, the structures may be shaped to have external porosity, such as with mesh-like structures.
    Type: Application
    Filed: January 27, 2003
    Publication date: September 25, 2003
    Applicant: Advanced Ceramics Research, Inc.
    Inventors: Gregory Artz, K. Ranji Vaidyanathan, Michael L. Fulcher, Mark J. Rigali, John L. Lombardi, Joseph Walish, Ronald A. Cipriani
  • Patent number: 6524522
    Abstract: The present invention relates to the extrusion freeform fabrication of low cost, in situ, metallic foam components having oriented microstructures and improved mechanical properties such as energy absorption and specific stiffness. The present invention relates to the freeform fabrication of metallic foams to form parts having complex geometry that demonstrate superior mechanical properties and energy absorbing capacity.
    Type: Grant
    Filed: March 7, 2002
    Date of Patent: February 25, 2003
    Assignee: Advanced Ceramics Research, Inc.
    Inventors: K. Ranji Vaidyanathan, John L. Lombardi, Joseph Walish, Ronald A. Cipriani
  • Publication number: 20020192101
    Abstract: The present invention relates to the extrusion freeform fabrication of low cost, in situ, metallic foam components having oriented microstructures and improved mechanical properties such as energy absorption and specific stiffness. The present invention relates to the freeform fabrication of metallic foams to form parts having complex geometry that demonstrate superior mechanical properties and energy absorbing capacity.
    Type: Application
    Filed: March 7, 2002
    Publication date: December 19, 2002
    Inventors: K. Ranji Vaidyanathan, John L. Lombardi, Joseph Walish, Ronald A. Cipriani
  • Publication number: 20020140139
    Abstract: Methods for consolidation and densification of multi-phase composite structures are provided. These methods allow for more efficient and less expensive consolidation and densification of two- and three-dimensional multi-phase components having more complex geometries.
    Type: Application
    Filed: December 4, 2001
    Publication date: October 3, 2002
    Inventors: Manish P. Sutaria, Mark J. Rigali, Ronald A. Cipriani, Gregory J. Artz, Anthony C. Mulligan
  • Publication number: 20020130434
    Abstract: Compositions and methods of preparing ceramic filaments are provided.
    Type: Application
    Filed: December 4, 2001
    Publication date: September 19, 2002
    Inventors: Mark J. Rigali, Manish P. Sutaria, Felix H. Gafner, Ronald A. Cipriani, Randy Egner, Randy C. Cook