What are the significant performance advantages of non-planar PDC compared to traditional flat cutters?
Release time:
2026-01-04
source:
1. Higher Wear Resistance Non-planar cutters demonstrate significantly better wear resistance than flat cutters. Experimental data shows an average improvement of approximately 58.6%.
Reason: The unique structure creates a smaller contact area when grinding rock, making it easier to cut in. This results in lower instantaneous grinding heat and prevents rock debris accumulation, thereby maintaining the thermal stability of the polycrystalline diamond layer and extending its service life.
2. Lower Grinding Load (Higher Rock-Breaking Efficiency) Under identical grinding conditions, the grinding load force required for non-planar cutters is reduced by approximately 41.9% compared to flat cutters.
Mechanism Difference: Traditional flat cutters primarily rely on shearing to break rock, which is less efficient. In contrast, non-planar cutters utilize strong point load plowing to cut into the rock, producing larger debris particles and achieving higher rock-breaking efficiency.
3. Stronger Impact Resistance Non-planar cutters exhibit higher impact toughness, effectively reducing failures such as tooth breakage and delamination.
When the cutting edge is at a 90° angle to the vertical direction, impact resistance improves by approximately 51.8% compared to flat cutters.
When the design optimizes this angle to 99°, the impact resistance improves by an average of about 95.7% compared to flat cutters.
4. Superior Debris Removal and Anti-Mud Balling Multi-ridge cutters (3, 4, and 5 ridges) utilize the curved channels formed by their design to evacuate debris more effectively than flat cutters (and even standard ridge cutters).
Advantage: This structure prevents debris accumulation, thereby improving anti-mud balling performance (preventing the cutter from getting clogged with mud), which helps reduce drilling costs and improves the utilization rate of the compacts.
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