Mehan et al., “Thermal Degradation of Sintered Diamond Compacts”, JNL of Mats. Science vol. 24 (1989), pp. 942-950. |
Glowka, Use of Single-cutter Data in the Analysis of PCD Bit Designs: Part 1-Development of a PCV Cutting Force Model, JPT (Aug. 1989) pp. 797-849. |
Sani, “Further Developments in PCD Tipped Drills” IDR 194, pp. 6-7. |
Clark et al. “The Use of PCD for Petroleum and Mining Drilling”, Ultrahard Materials Technical Conference, (1998) pp. 349-362. |
Spur et al., Therm-mechanical Stress Cycle Tests on PCD Cutting Tool Materials Industrial Diamond Review (Jan., 1997) pp. 27-34. |
Kear et al., Chemical Processing and Properties of Nanostructured WC-CO Materials, Nanostructured Materials vol. 3 (1993) pp. 19-30. |
Voronov et al., “Nucleation of Diamond Crystals from the SP2 and SP3 Hydrocarbons Decomposed Under High Pressure” Diamond Materials V, Proc. vol. 97-32 of the Electrochemical Society (1997) pp. 197-200. |
Voronov et al., “High Purity Diamond Layers Growing on the Diamond Substratum by Using the Hydrocarbon Decomposition Reactions Under High Pressure” Diamond Materials, V Proc. vol. 97-32 of the Electrochemical Society (1997) pp. 20-24. |
Yakolev et al., The Equilibrium Constants of the Reactions for Obtaining Graphite and Diamond Using the Napthalene Resolution at High Pressure (P<5.0 Gpa, 300<T<1000 K), Diamond, Materials IV, Proc. vol. 95-4 of the Electrochemical Society (1995) pp. 100-105. |
Yakolev, et al., “The Hydrogen Concentration for the Graphite and Diamond Growth CH4 as Species, P=1*103 -5*103Mpa, T=500−1000 K.” Diamond Material Proceedings III, vol. 93-17 of the Electrochemical Society, (1993) pp. 9-16. |
Voronov et al. “Diamond compacts”, Diamond Material Proceedings III, vol. 93-17, pp. 1018-1024. |
Vereshchagin et al., Comparative Drilling Tests of ASPK-Tipped and Hard-Faced Drill Bits, L. Vereshchagin “Synthetic Diamonds and Hydrostatic Extrusion Selected Papers” General Editorial Board for Foreign Language Publications, Moscow, USSR, 1987) pp. 182-186. |
Vereshchagin et al., Synthesis of Ballas-Type Diamond DAN SSSR, (1967) 172, p. 76 in L. Vereshchagin “Synthetic Diamonds, and Hydrostatic Extrusion Selected Papers” General Editorial Board for Foreign Language Publications, Moscow. USSR, 1987) pp. 73-74. |
Yakovlev et al., “Synthesis of Carbonado-Type Diamonds” DAN SSSR, (1969), 185, p. 555 L. Vereshchagin “Synthetic Diamonds and Hydrostatic Extrusion Selected Papers” General Editorial Board for Foreign Language Publications, Moscow. USSR, 1987) pp. 75-77. |
Vereschagin et al., “Microcrystalline Diamond Material and Methods for Growing It Into Bodies With Predetermined Shape” L. Vereshchagin “Synthetic Diamonds and Hydrostatic Extrustion Selected Papers” General Editorial Board for Foreign Language Publications, Moscow, USSR, 1987) pp. 83-86. |
Vereschagin et al., “Thermal Stability of Polycrystalline Diamond and Borazon Sintered to Metal-Ceramics Binders at Pressures up to 50 kbar”, L. Vereshchagin “Synthetic Diamonds and Hydrostatic Extrusion Selected Papers” General Editorial Board for Foreign Language Publications, Moscow, USSR, 1987) pp. 118-121. |
Dovbnya et al., “Application of ACIIK-Diamond Drill Bits for Borehole Surveying” L. Vereshchagin “Synthetic Diamonds and Hydrostatic Extrusion Selected Papers” General Editorial Board for Foreign Language Publications, Moscow. USSR, 1987) pp. 177-180. |
Dovbnya et al., Sinking Prospecting Holes in Hard Rocks with ACIIK-Tipped Drill Bits, L. Vereshchagin “Synthetic Diamonds and Hydrostatic Extrusion Selected Papers” General Editorial Board for Foreign Language Publications, Moscow. USSR, 1987) pp. 181-182. |
Dovbnya et al., Manufacturing Polycrystalline-Tipped Cutting Tool Inserts by Powder Metallurg, Diamonds, Issue 2, Moscow, NMMASh, 1972, pp. 171-173. |