Patents by Inventor Rawley Stanhope

Rawley Stanhope 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: 11807039
    Abstract: A composite wheel structure includes a single continuous fiber reinforcement layer extending axially between inner and outer ends of the wheel structure. The single fiber reinforcement layer is impregnated with different matrix materials at different axial portions of the reinforcement layer to account for specific locations where high strength or high temperature performance is needed, with other portions having different matrix materials where low temperature performance and/or low strength is sufficient. The matrix materials may be provided as separate resin films that are applied side-by-side on the single reinforcement layer, or they may be provided on a single resin film. The matrix materials may be applied to the reinforcement layer in a direct coating process. The reinforcement layer may be prepregged with the matrix materials prior to a wheel layup process, or the reinforcement layer and matrix materials may be consolidated by resin film infusion during the wheel layup process.
    Type: Grant
    Filed: February 4, 2020
    Date of Patent: November 7, 2023
    Assignee: Lacks Enterprises, Inc.
    Inventors: Rawley Stanhope, Colin Snyder, Frederick K. Meyer
  • Patent number: 11370246
    Abstract: A composite wheel assembly and method of fabricating the same is provided. The wheel assembly includes a composite wheel rim, a wheel center, and a plurality of attachment fasteners for attaching the wheel center to the wheel rim. The wheel rim includes a plurality of attachment inserts that are configured to selectively engage with respective attachment fasteners. Each attachment insert is encapsulated by a plurality of composite layers of the wheel rim or is otherwise secured to the wheel rim. The attachment inserts extend from and/or are positioned within a drop well region of the wheel rim. The method of fabricating the wheel assembly includes forming first and second preforms and positioning the same onto a mold assembly. The method further includes positioning the attachment inserts between the first and second preforms such that the attachment inserts are secured therebetween.
    Type: Grant
    Filed: February 11, 2019
    Date of Patent: June 28, 2022
    Assignee: Lacks Enterprises, Inc.
    Inventors: Colin Snyder, Rawley Stanhope
  • Patent number: 11285756
    Abstract: A composite wheel assembly and method of fabricating the same is provided. The wheel assembly includes a composite wheel rim, a wheel center, and a plurality of attachment fasteners for attaching the wheel center to the wheel rim. The wheel rim includes a plurality of attachment inserts that are configured to selectively engage with respective attachment fasteners. Each attachment insert is encapsulated by a plurality of composite layers of the wheel rim or is otherwise secured to the wheel rim. The attachment inserts extend from and/or are positioned within a drop well region of the wheel rim. The method of fabricating the wheel assembly includes forming first and second preforms and positioning the same onto a mold assembly. The method further includes positioning the attachment inserts between the first and second preforms such that the attachment inserts are secured therebetween.
    Type: Grant
    Filed: February 11, 2019
    Date of Patent: March 29, 2022
    Assignee: Lacks Enterprises, Inc.
    Inventors: Colin Snyder, Rawley Stanhope
  • Patent number: 10980589
    Abstract: An orthopedic implant screw driver includes drive shaft. A first gear is operably coupled to the drive shaft and in meshing engagement with a hollow gear which rotates in response to rotation of the drive shaft. The hollow gear includes a passage defining an inwardly facing screw engagement periphery configured to receive and drivingly rotate a threaded portion of the screw. A method of securing an orthopedic implant to a bone includes positioning a screw within the passage which is configured to drivingly engage a threaded portion of the screw and rotating a drive shaft in driving engagement with the gear causing the gear to engage the screw along the threaded portion of the screw and rotatably drive the screw via the threaded portion.
    Type: Grant
    Filed: March 20, 2019
    Date of Patent: April 20, 2021
    Assignee: Zimmer Biomet Spine, Inc.
    Inventors: Anthony C. DeFalco, Rawley Stanhope, Daniel C. Taylor, Rui J. Ferreira
  • Publication number: 20200247178
    Abstract: A composite wheel structure includes a single continuous fiber reinforcement layer extending axially between inner and outer ends of the wheel structure. The single fiber reinforcement layer is impregnated with different matrix materials at different axial portions of the reinforcement layer to account for specific locations where high strength or high temperature performance is needed, with other portions having different matrix materials where low temperature performance and/or low strength is sufficient. The matrix materials may be provided as separate resin films that are applied side-by-side on the single reinforcement layer, or they may be provided on a single resin film. The matrix materials may be applied to the reinforcement layer in a direct coating process. The reinforcement layer may be prepregged with the matrix materials prior to a wheel layup process, or the reinforcement layer and matrix materials may be consolidated by resin film infusion during the wheel layup process.
    Type: Application
    Filed: February 4, 2020
    Publication date: August 6, 2020
    Inventors: Rawley Stanhope, Colin Snyder, Frederick K. Meyer
  • Publication number: 20190248175
    Abstract: A composite wheel assembly and method of fabricating the same is provided. The wheel assembly includes a composite wheel rim, a wheel center, and a plurality of attachment fasteners for attaching the wheel center to the wheel rim. The wheel rim includes a plurality of attachment inserts that are configured to selectively engage with respective attachment fasteners. Each attachment insert is encapsulated by a plurality of composite layers of the wheel rim or is otherwise secured to the wheel rim. The attachment inserts extend from and/or are positioned within a drop well region of the wheel rim. The method of fabricating the wheel assembly includes forming first and second preforms and positioning the same onto a mold assembly. The method further includes positioning the attachment inserts between the first and second preforms such that the attachment inserts are secured therebetween.
    Type: Application
    Filed: February 11, 2019
    Publication date: August 15, 2019
    Inventors: Colin Snyder, Rawley Stanhope
  • Publication number: 20190248043
    Abstract: A composite wheel assembly and method of fabricating the same is provided. The wheel assembly includes a composite wheel rim, a wheel center, and a plurality of attachment fasteners for attaching the wheel center to the wheel rim. The wheel rim includes a plurality of attachment inserts that are configured to selectively engage with respective attachment fasteners. Each attachment insert is encapsulated by a plurality of composite layers of the wheel rim or is otherwise secured to the wheel rim. The attachment inserts extend from and/or are positioned within a drop well region of the wheel rim. The method of fabricating the wheel assembly includes forming first and second preforms and positioning the same onto a mold assembly. The method further includes positioning the attachment inserts between the first and second preforms such that the attachment inserts are secured therebetween.
    Type: Application
    Filed: February 11, 2019
    Publication date: August 15, 2019
    Inventors: Colin Snyder, Rawley Stanhope
  • Publication number: 20190216519
    Abstract: An orthopedic implant screw driver includes drive shaft. A first gear is operably coupled to the drive shaft and in meshing engagement with a hollow gear which rotates in response to rotation of the drive shaft. The hollow gear includes a passage defining an inwardly facing screw engagement periphery configured to receive and drivingly rotate a threaded portion of the screw. A method of securing an orthopedic implant to a bone includes positioning a screw within the passage which is configured to drivingly engage a threaded portion of the screw and rotating a drive shaft in driving engagement with the gear causing the gear to engage the screw along the threaded portion of the screw and rotatably drive the screw via the threaded portion.
    Type: Application
    Filed: March 20, 2019
    Publication date: July 18, 2019
    Inventors: Anthony C. DeFalco, Rawley Stanhope, Daniel C. Taylor, Rui J. Ferreira
  • Patent number: 10258403
    Abstract: An orthopedic implant screw driver includes drive shaft. A first gear is operably coupled to the drive shaft and in meshing engagement with a hollow gear which rotates in response to rotation of the drive shaft. The hollow gear includes a passage defining an inwardly facing screw engagement periphery configured to receive and drivingly rotate a threaded portion of the screw. A method of securing an orthopedic implant to a bone includes positioning a screw within the passage which is configured to drivingly engage a threaded portion of the screw and rotating a drive shaft in driving engagement with the gear causing the gear to engage the screw along the threaded portion of the screw and rotatably drive the screw via the threaded portion.
    Type: Grant
    Filed: December 27, 2016
    Date of Patent: April 16, 2019
    Assignee: Zimmer Biomet Spine, Inc.
    Inventors: Anthony C DeFalco, Rawley Stanhope, Daniel C Taylor, Rui J Ferreira
  • Publication number: 20170172639
    Abstract: An orthopedic implant screw driver includes drive shaft. A first gear is operably coupled to the drive shaft and in meshing engagement with a hollow gear which rotates in response to rotation of the drive shaft. The hollow gear includes a passage defining an inwardly facing screw engagement periphery configured to receive and drivingly rotate a threaded portion of the screw. A method of securing an orthopedic implant to a bone includes positioning a screw within the passage which is configured to drivingly engage a threaded portion of the screw and rotating a drive shaft in driving engagement with the gear causing the gear to engage the screw along the threaded portion of the screw and rotatably drive the screw via the threaded portion.
    Type: Application
    Filed: December 27, 2016
    Publication date: June 22, 2017
    Inventors: Anthony C. DeFalco, Rawley Stanhope, Daniel C. Taylor, Rui J. Ferreira
  • Patent number: 9539043
    Abstract: An orthopedic implant screw driver includes drive shaft. A first gear is operably coupled to the drive shaft and in meshing engagement with a hollow gear which rotates in response to rotation of the drive shaft. The hollow gear includes a passage defining an inwardly facing screw engagement periphery configured to receive and drivingly rotate a threaded portion of the screw. A method of securing an orthopedic implant to a bone includes positioning a screw within the passage which is configured to drivingly engage a threaded portion of the screw and rotating a drive shaft in driving engagement with the gear causing the gear to engage the screw along the threaded portion of the screw and rotatably drive the screw via the threaded portion.
    Type: Grant
    Filed: March 13, 2013
    Date of Patent: January 10, 2017
    Assignee: EBI, LLC
    Inventors: Anthony C. DeFalco, Rawley Stanhope, Daniel C. Taylor, Rui J. Ferreira
  • Patent number: 9387021
    Abstract: The present teachings provide an implant. The implant can include an implant body partially defining at least one threaded aperture. The implant can also include a bone fastener including a threaded portion threadably engaged with the at least one threaded aperture. The threaded aperture can circumferentially surround no more than 180° of the bone fastener.
    Type: Grant
    Filed: August 20, 2012
    Date of Patent: July 12, 2016
    Assignee: EBI, LLC
    Inventors: Anthony C. DeFalco, Rawley Stanhope
  • Patent number: 9050195
    Abstract: An expandable spinal implant device for supporting vertebral bodies can include first and second body members and first and second expansion mechanisms. The body members can each have a first end positionable toward one of the vertebral bodies and can each define a hollow interior. The expansion mechanisms can be spaced apart from each other and can include a first drive shaft and a second drive shaft, respectively. The first and second drive shafts can each have a gear member fixedly coupled thereto. Each drive shaft can be threadably engaged at a first side to the first body member and at a second side to the second body member. The expansion mechanisms can be operable to effect axial displacement of the first body member relative to the second body member by rotationally driving the gear members of the first and second drive shafts.
    Type: Grant
    Filed: February 7, 2013
    Date of Patent: June 9, 2015
    Assignee: EBI, LLC
    Inventors: Anthony C. DeFalco, Rawley Stanhope
  • Publication number: 20140276891
    Abstract: An orthopedic implant screw driver includes drive shaft. A first gear is operably coupled to the drive shaft and in meshing engagement with a hollow gear which rotates in response to rotation of the drive shaft. The hollow gear includes a passage defining an inwardly facing screw engagement periphery configured to receive and drivingly rotate a threaded portion of the screw. A method of securing an orthopedic implant to a bone includes positioning a screw within the passage which is configured to drivingly engage a threaded portion of the screw and rotating a drive shaft in driving engagement with the gear causing the gear to engage the screw along the threaded portion of the screw and rotatably drive the screw via the threaded portion.
    Type: Application
    Filed: March 13, 2013
    Publication date: September 18, 2014
    Applicant: EBI, LLC
    Inventors: Anthony C. DEFALCO, Rawley Stanhope, Daniel C. Taylor, Rui J. Ferreira
  • Patent number: 8721589
    Abstract: The present general inventive concept relates to a syringe that, when connected to an endotracheal tube (ETT) cuff, automatically inflates the ETT cuff to a safe pressure in a single, full stroke of the syringe, and methods related thereto. The syringe includes a plunger, body, high pressure valve and low pressure valve. The syringe inflates an ETT cuff to a pressure high enough to seal the ETT cuff in a patient's trachea, but not high enough to cause damage. Then the pressure is reduced to a desired optimal pressure by releasing pressure through the low pressure valve.
    Type: Grant
    Filed: November 30, 2010
    Date of Patent: May 13, 2014
    Assignee: Spiritus Technologies, LLC
    Inventors: Rawley Stanhope, Brandon W. Close
  • Publication number: 20140052255
    Abstract: The present teachings provide an implant. The implant can include an implant body partially defining at least one threaded aperture. The implant can also include a bone fastener including a threaded portion threadably engaged with the at least one threaded aperture. The threaded aperture can circumferentially surround no more than 180° of the bone fastener.
    Type: Application
    Filed: August 20, 2012
    Publication date: February 20, 2014
    Applicant: EBI, LLC
    Inventors: Anthony C. DeFalco, Rawley Stanhope
  • Patent number: 8377140
    Abstract: An expandable spinal implant device for supporting vertebral bodies can include first and second body members and first and second expansion mechanisms. The body members can each have a first end positionable toward one of the vertebral bodies and can each define a hollow interior. The expansion mechanisms can be spaced apart from each other and can include a first drive shaft and a second drive shaft, respectively. The first and second drive shafts can each have a gear member fixedly coupled thereto. Each drive shaft can be threadably engaged at a first side to the first body member and at a second side to the second body member. The expansion mechanisms can be operable to effect axial displacement of the first body member relative to the second body member by rotationally driving the gear members of the first and second drive shafts.
    Type: Grant
    Filed: January 12, 2011
    Date of Patent: February 19, 2013
    Assignee: EBI, LLC
    Inventors: Anthony C. DeFalco, Rawley Stanhope
  • Publication number: 20120179255
    Abstract: An expandable spinal implant device for supporting vertebral bodies can include first and second body members and first and second expansion mechanisms. The body members can each have a first end positionable toward one of the vertebral bodies and can each define a hollow interior. The expansion mechanisms can be spaced apart from each other and can include a first drive shaft and a second drive shaft, respectively. The first and second drive shafts can each have a gear member fixedly coupled thereto. Each drive shaft can be threadably engaged at a first side to the first body member and at a second side to the second body member. The expansion mechanisms can be operable to effect axial displacement of the first body member relative to the second body member by rotationally driving the gear members of the first and second drive shafts.
    Type: Application
    Filed: January 12, 2011
    Publication date: July 12, 2012
    Applicant: EBI, LLC
    Inventors: Anthony C. DeFalco, Rawley Stanhope