Patents by Inventor J. Daniel Belnap

J. Daniel Belnap 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: 7470341
    Abstract: A method of manufacturing a cutting element having a substrate and an ultra hard material layer sintered together where at least a portion of the substrate is partially densified prior to sintering, is provided.
    Type: Grant
    Filed: September 18, 2003
    Date of Patent: December 30, 2008
    Assignee: Smith International, Inc.
    Inventors: Madapusi K. Keshavan, J. Daniel Belnap, Dave Slutz
  • Patent number: 7441610
    Abstract: Ultrahard composite constructions comprise a plurality of first phases dispersed within a matrix second phase, wherein each can comprise an ultrahard material including PCD, PcBN, and mixtures thereof. The constructions are formed from a plurality of granules that are combined and sintered at HP/HT conditions. The granules include a core surrounded by a shell and both are formed from an ultrahard material or precursor comprising an ultrahard constituent for forming the ultrahard material. When sintered, the cores form the plurality of first phases, and the shells form at least a portion of the second phase. The ultrahard material used to form the granule core may have an amount of ultrahard constituent different from that used to form the granule shell to provide desired different properties. The ultrahard constituent in the granule core and shell can have approximately the same particle size.
    Type: Grant
    Filed: February 25, 2005
    Date of Patent: October 28, 2008
    Assignee: Smith International, Inc.
    Inventors: J. Daniel Belnap, Anthony Griffo, Ronald K. Eyre, Stewart N. Middlemiss
  • Publication number: 20080223621
    Abstract: Thermally stable ultra-hard compact constructions of this invention comprise an ultra-hard material body that includes a thermally stable region positioned adjacent a surface of the body. The thermally stable region is formed from consolidated materials that are thermally stable at temperatures greater than about 750° C. The thermally stable region can occupy a partial portion of or the entire ultra-hard material body. The ultra-hard material body can comprise a composite of separate ultra-hard material elements that each form different regions of the body, at least one of the regions being thermally stable. The ultra-hard material body is attached to a desired substrate, an intermediate material is interposed between the body and the substrate, and the intermediate material joins the substrate and body together by high pressure/high temperature process.
    Type: Application
    Filed: May 27, 2008
    Publication date: September 18, 2008
    Applicant: SMITH INTERNATIONAL, INC.
    Inventors: Stewart N. Middlemiss, J. Daniel Belnap, Nephi Mourik, Thomas W. Oldham, Anthony Griffo
  • Publication number: 20080209818
    Abstract: A sintered polycrystalline composite for cutting tools that includes a plurality of diamond or cubic boron nitride particles; a plurality of nanotube materials; and a refractory or binder material is disclosed. Methods of forming such polycrystalline composites that include integrating or mixing a plurality of nanotube materials with diamond or cubic boron nitride particle and/or refractory or binder particles are also disclosed.
    Type: Application
    Filed: November 13, 2007
    Publication date: September 4, 2008
    Applicant: SMITH INTERNATIONAL, INC.
    Inventors: J. Daniel Belnap, Guodong Zhan, Xiayang Sheng, Youhe Zhang, Madapusi K. Keshavan, Harry Pratt, Yuelin Shen
  • Patent number: 7377341
    Abstract: Thermally stable ultra-hard compact constructions of this invention comprise an ultra-hard material body that includes a thermally stable region positioned adjacent a surface of the body. The thermally stable region is formed from consolidated materials that are thermally stable at temperatures greater than about 750° C. The thermally stable region can occupy a partial portion of or the entire ultra-hard material body. The ultra-hard material body can comprise a composite of separate ultra-hard material elements that each form different regions of the body, at least one of the regions being thermally stable. The ultra-hard material body is attached to a desired substrate, an intermediate material is interposed between the body and the substrate, and the intermediate material joins the substrate and body together by high pressure/high temperature process.
    Type: Grant
    Filed: May 26, 2005
    Date of Patent: May 27, 2008
    Assignee: Smith International, Inc.
    Inventors: Stewart N. Middlemiss, J. Daniel Belnap, Nephi Mourik, Thomas W. Oldham, Anthony Griffo
  • Publication number: 20080073127
    Abstract: A sintered body for cutting tools that includes hard particle phase comprising a plurality of hard particles, wherein at least a portion of the hard phase particles comprise a coating deposited by atomic layer deposition disposed thereon; and a binder phase is disclosed. The hard particles that may be included in the sintered bodies may include tungsten carbide, diamond, and boron nitride particles.
    Type: Application
    Filed: September 21, 2007
    Publication date: March 27, 2008
    Applicant: SMITH INTERNATIONAL, INC.
    Inventors: Guodong Zhan, Youhe Zhang, Feng Yu, Xian Yao, J. Daniel Belnap, Yuelin Shen, Madapusi K. Keshavan
  • Patent number: 7152701
    Abstract: A roller cone drill bit includes a bit body adapted to be coupled to a drill string, a bearing journal depending from the bit body, and a single roller cone rotatably attached to the bearing journal. The single roller cone has a plurality of cutting elements, where at least one of the plurality of cutting elements is formed of an inner region that is at least partially surrounded by an outer region, where the inner region is more abrasive resistant than the outer region. Such an arrangement in a single roller cone bit allows the at least one cutting element to be “self-sharpening.
    Type: Grant
    Filed: August 17, 2004
    Date of Patent: December 26, 2006
    Assignee: Smith International, Inc.
    Inventors: Richard Butland, John J. Herman, Ronald Birne-Browne, Per Nese, Louis Loiselle, J. Daniel Belnap
  • Publication number: 20040141865
    Abstract: A method of manufacturing a cutting element having a substrate and an ultra hard material layer sintered together where at least a portion of the substrate is partially densified prior to sintering, is provided.
    Type: Application
    Filed: September 18, 2003
    Publication date: July 22, 2004
    Inventors: Madapusi K. Keshavan, J. Daniel Belnap, Dave Slutz
  • Patent number: 6484826
    Abstract: Enhanced inserts are formed having a cylindrical grip and a protrusion extending from the grip. An ultra hard material layer is bonded on top of the protrusion. The inserts are mounted on a rock bit and contact the earth formations off center. The ultra hard material layer is thickest at a critical zone which encompasses a major portion of the region of contact between the insert and the earth formation. Transition layers may also be formed between the ultra hard material layer and the protrusion so as to reduce the residual stresses formed on the interface between the ultra hard material and the protrusion.
    Type: Grant
    Filed: November 7, 2000
    Date of Patent: November 26, 2002
    Assignee: Smith International, Inc.
    Inventors: Nathan R. Anderson, J. Daniel Belnap, Chris E. Cawthorne, Ronald K. Eyre, Madapusi K. Keshavan, Per I. Nese, Michael A. Siracki, Gary R. Portwood
  • Patent number: 6460636
    Abstract: A cutter element for use in a drill bit, comprising a substrate and a cutting layer. The substrate comprises a grip portion and an extension portion, where the grip portion has an insert axis and an extension portion including an interface surface having a first apex. The cutting layer is affixed to the interface surface and has a cutting surface having a second apex. The cutting layer is shaped such that when a plane passing through the first apex and lying parallel to the insert axis and normal to a radius from the insert axis, the plane divides the cutting layer into major and minor portions and the major portion has a major volume that is at least 60 percent of the total volume of said cutting layer. Alternative embodiments of the present invention include variations wherein the first and second apices do not coincide and wherein the interface surface of the substrate is not axisymmetric. Using these variations, cutter elements having sizeable variations in thickness are constructed.
    Type: Grant
    Filed: December 17, 1999
    Date of Patent: October 8, 2002
    Assignee: Smith International, Inc.
    Inventors: Zhou Yong, Suprant J. Huang, Nathan R. Anderson, J. Daniel Belnap, Chris E. Cawthorne, Ronald K. Eyre, Madapusi K. Keshavan, Per I. Nese, Michael A. Siracki, Gary R. Portwood
  • Patent number: 6460637
    Abstract: Enhanced inserts are formed having a cylindrical grip and a protrusion extending from the grip. An ultra hard material layer is bonded on top of the protrusion. The inserts are mounted on a rock bit and contact the earth formations off center. The ultra hard material layer is thickest at a critical zone which encompasses a major portion of the region of contact between the insert and the earth formation. Transition layers may also be formed between the ultra hard material layer and the protrusion so as to reduce the residual stresses formed on the interface between the ultra hard material and the protrusion.
    Type: Grant
    Filed: November 7, 2000
    Date of Patent: October 8, 2002
    Assignee: Smith International, Inc.
    Inventors: Michael A. Siracki, Chris E. Cawthorne, Per I. Nese, Madapusi K. Keshavan, J. Daniel Belnap, Ronald K. Eyre, Nathan R. Anderson
  • Patent number: 6419034
    Abstract: Enhanced inserts are formed having a cylindrical grip and a protrusion extending from the grip. An ultra hard material layer is bonded on top of the protrusion. The inserts are mounted on a rock bit and contact the earth formations off center. The ultra hard material layer is thickest at a critical zone which encompasses a major portion of the region of contact between the insert and the earth formation. Transition layers may also be formed between the ultra hard material layer and the protrusion so as to reduce the residual stresses formed on the interface between the ultra hard material and the protrusion.
    Type: Grant
    Filed: November 7, 2000
    Date of Patent: July 16, 2002
    Assignee: Smith International, Inc.
    Inventors: J. Daniel Belnap, Ronald K. Eyre, Michael A. Siracki, Per I. Nese, Madapusi K. Keshavan, Nathan R. Anderson
  • Patent number: 6199645
    Abstract: Enhanced inserts are formed having a cylindrical grip and a protrusion extending from the grip. An ultra hard material layer is bonded on top of the protrusion. The inserts are mounted on a rock bit and contact the earth formations off center. The ultra hard material layer is thickest at a critical zone which encompasses a major portion of the region of contact between the insert and the earth formation. Transition layers may also be formed between the ultra hard material layer and the protrusion so as to reduce the residual stresses formed on the interface between the ultra hard material and the protrusion.
    Type: Grant
    Filed: February 13, 1998
    Date of Patent: March 13, 2001
    Assignee: Smith International, Inc.
    Inventors: Nathan R. Anderson, J. Daniel Belnap, Chris E. Cawthorne, Ronald K. Eyre, Madapusi K. Keshavan, Per I. Nese, Michael A. Siracki, Gary R. Portwood