Inventor · Provo, UT, US

Mark P. Chapman

28Patents
6h-index
36Co-inventors
65Inventor score

Filing activity: Sep 14, 2009 → Sep 21, 2023

Most-cited inventions

PatentTitleAreaCited byStatus
US9404310B1 Polycrystalline diamond compacts including a domed polycrystalline diamond table, and applications therefor Fixed Constructions 44 Active
US9062505B2 Method for laser cutting polycrystalline diamond structures Fixed Constructions 34 Active
US10807913B1 Leached superabrasive elements and leaching systems methods and assemblies for processing superabrasive elements Mechanical Engineering; Lighting; Heating 31 Active
US9297411B2 Bearing assemblies, apparatuses, and motor assemblies using the same Emerging Cross-Sectional Technologies 15 Active
US8950519B2 Polycrystalline diamond compacts with partitioned substrate, polycrystalline diamond table, or both Mechanical Engineering; Lighting; Heating 14 Active
US8784517B1 Polycrystalline diamond compacts, methods of fabricating same, and applications therefor Chemistry; Metallurgy 8 Active
US10107043B1 Superabrasive elements, drill bits, and bearing apparatuses Mechanical Engineering; Lighting; Heating 4 Active
US10610999B1 Leached polycrystalline diamond elements Chemistry; Metallurgy 3 Active
US10946500B2 Methods for laser cutting a polycrystalline diamond structure Fixed Constructions 3 Active
US9334694B2 Polycrystalline diamond compacts with partitioned substrate, polycrystalline diamond table, or both Mechanical Engineering; Lighting; Heating 2 Active
US10011000B1 Leached superabrasive elements and systems, methods and assemblies for processing superabrasive materials Mechanical Engineering; Lighting; Heating 2 Active
US10723626B1 Leached superabrasive elements and systems, methods and assemblies for processing superabrasive materials Chemistry; Metallurgy 2 Active
US9999962B2 Method for laser cutting polycrystalline diamond structures Fixed Constructions 2 Active
US10350734B1 Methods of forming a liquid metal embrittlement resistant superabrasive compact, and superabrasive compacts and apparatuses using the same Fixed Constructions 0 Active
US11618718B1 Leached superabrasive elements and leaching systems, methods and assemblies for processing superabrasive elements Mechanical Engineering; Lighting; Heating 0 Active
US11400564B1 Methods of forming a liquid metal embrittlement resistant superabrasive compact, and superabrasive compacts and apparatuses using the same Fixed Constructions 0 Active
US10773480B2 Cell assemblies and methods of using the same Performing Operations; Transporting 0 Active
US12296435B2 Leached superabrasive elements and systems, methods and assemblies for processing superabrasive materials Mechanical Engineering; Lighting; Heating 0 Active
US12233510B1 Leached polycrystalline diamond elements Chemistry; Metallurgy 0 Active
US11253971B1 Leached superabrasive elements and systems, methods and assemblies for processing superabrasive materials Mechanical Engineering; Lighting; Heating 0 Active
US11958133B1 Methods to shape a cemented carbide substrate using a laser Performing Operations; Transporting 0 Active
US12023782B2 Leached superabrasive elements and systems, methods and assemblies for processing superabrasive materials Mechanical Engineering; Lighting; Heating 0 Active
US11766761B1 Group II metal salts in electrolytic leaching of superabrasive materials Mechanical Engineering; Lighting; Heating 0 Active
US10464273B2 Cell assemblies and methods of using the same Performing Operations; Transporting 0 Active
US11535520B1 Leached superabrasive elements and systems, methods and assemblies for processing superabrasive materials Chemistry; Metallurgy 0 Active

Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.