Patents by Inventor Tomasz Zbyszko RYBAK

Tomasz Zbyszko RYBAK 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: 20230202847
    Abstract: A super hard polycrystalline construction is disclosed as comprising a first region comprising a body of thermally stable polycrystalline diamond material comprising a plurality of intergrown grains of diamond material; a second region forming a substrate to the first region; and a third region interposed between the first and second regions. The third region extends across a surface of the second region along an interface. The interface comprises at least a portion having an uneven topology, and the third region comprises a diamond composite material including a first phase comprising a plurality of non-intergrown super hard grains, said super hard grains comprising diamond grains; and a matrix material. The superhard material and matrix material of the third region form a diamond composite material which is more acid resistant than polycrystalline diamond material having a binder-catalyst phase comprising cobalt, and/or more acid resistant than cemented tungsten carbide material.
    Type: Application
    Filed: February 22, 2023
    Publication date: June 29, 2023
    Inventors: Rachael Fiona AMBURY, Tomasz Zbyszko RYBAK, Nedret CAN, Changzheng JI
  • Publication number: 20220371962
    Abstract: A polycrystalline super hard construction is disclosed having a first region comprising a body of thermally stable polycrystalline super hard material having an exposed surface forming a working surface, and a peripheral side edge, the polycrystalline super hard material comprising a plurality of grains of super hard material; a second region forming a substrate to the first region; and a third region interposed between the first and second regions. The third region extends across a surface of the second region along an interface, the interface comprising a portion having an uneven topology and a substantially planar portion, the third region comprising a composite material including a first phase comprising a plurality of non-intergrown diamond grains, and a matrix material.
    Type: Application
    Filed: December 22, 2021
    Publication date: November 24, 2022
    Inventors: Nedret CAN, Rachael Fiona AMBURY, Tomasz Zbyszko RYBAK, Changzheng JI
  • Publication number: 20190344351
    Abstract: A super hard polycrystalline construction is disclosed as comprising a first region comprising a body of thermally stable polycrystalline diamond material comprising a plurality of intergrown grains of diamond material; a second region forming a substrate to the first region; and a third region interposed between the first and second regions. The third region extends across a surface of the second region along an interface. The interface comprises at least a portion having an uneven topology, and the third region comprises a diamond composite material including a first phase comprising a plurality of non-intergrown super hard grains, said super hard grains comprising diamond grains; and a matrix material. The superhard material and matrix material of the third region form a diamond composite material which is more acid resistant than polycrystalline diamond material having a binder-catalyst phase comprising cobalt, and/or more acid resistant than cemented tungsten carbide material.
    Type: Application
    Filed: December 28, 2017
    Publication date: November 14, 2019
    Inventors: Rachael Fiona AMBURY, Tomasz Zbyszko RYBAK, Nedret CAN, Changzheng JI
  • Publication number: 20190337857
    Abstract: A polycrystalline super hard construction is disclosed having a first region comprising a body of thermally stable polycrystalline super hard material having an exposed surface forming a working surface, and a peripheral side edge, the polycrystalline super hard material comprising a plurality of grains of super hard material; a second region forming a substrate to the first region; and a third region interposed between the first and second regions. The third region extends across a surface of the second region along an interface, the interface comprising a portion having an uneven topology and a substantially planar portion, the third region comprising a composite material including a first phase comprising a plurality of non-intergrown diamond grains, and a matrix material.
    Type: Application
    Filed: December 28, 2017
    Publication date: November 7, 2019
    Inventors: Nedret CAN, Rachael Fiona AMBURY, Tomasz Zbyszko RYBAK, Changzheng JI
  • Publication number: 20190337855
    Abstract: A super hard polycrystalline construction has a first region comprising a body of thermally stable polycrystalline super hard material having an exposed surface forming a working surface, and a peripheral side edge, said polycrystalline super hard material comprising a plurality of intergrown grains of super hard material; a second region forming a substrate to the first region; and a third region interposed between the first and second regions. The third region extends across a surface of the second region along an interface, the interface comprising at least a portion having an uneven topology, the third region comprising a composite material having a first phase comprising a plurality of non-intergrown grains of super hard material, and a matrix material, the third region having a wear resistance at least three times less than sintered polycrystalline diamond material having the same average grain size of diamond grains as the super hard grains in the third region.
    Type: Application
    Filed: December 28, 2017
    Publication date: November 7, 2019
    Inventors: Nedret CAN, Rachael Fiona AMBURY, Tomasz Zbyszko RYBAK, Changzheng JI